CN113397480A - Control method, device and equipment of beauty instrument and storage medium - Google Patents
Control method, device and equipment of beauty instrument and storage medium Download PDFInfo
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- CN113397480A CN113397480A CN202110507390.1A CN202110507390A CN113397480A CN 113397480 A CN113397480 A CN 113397480A CN 202110507390 A CN202110507390 A CN 202110507390A CN 113397480 A CN113397480 A CN 113397480A
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- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/0059—Measuring for diagnostic purposes; Identification of persons using light, e.g. diagnosis by transillumination, diascopy, fluorescence
- A61B5/0077—Devices for viewing the surface of the body, e.g. camera, magnifying lens
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- A61B5/44—Detecting, measuring or recording for evaluating the integumentary system, e.g. skin, hair or nails
- A61B5/441—Skin evaluation, e.g. for skin disorder diagnosis
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H23/00—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms
- A61H23/02—Percussion or vibration massage, e.g. using supersonic vibration; Suction-vibration massage; Massage with moving diaphragms with electric or magnetic drive
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- A61N—ELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
- A61N5/00—Radiation therapy
- A61N5/06—Radiation therapy using light
- A61N5/0613—Apparatus adapted for a specific treatment
- A61N5/0616—Skin treatment other than tanning
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- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H2201/00—Characteristics of apparatus not provided for in the preceding codes
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- A61M37/00—Other apparatus for introducing media into the body; Percutany, i.e. introducing medicines into the body by diffusion through the skin
- A61M2037/0007—Other apparatus for introducing media into the body; Percutany, i.e. introducing medicines into the body by diffusion through the skin having means for enhancing the permeation of substances through the epidermis, e.g. using suction or depression, electric or magnetic fields, sound waves or chemical agents
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- A61N5/00—Radiation therapy
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Abstract
The application provides a control method, a device, equipment and a storage medium of a beauty instrument, wherein the method comprises the following steps: acquiring a face skin measurement result generated based on an image of a user face; acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user; configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part; and controlling the beauty instrument to respectively adopt the beauty instrument operation parameters corresponding to each part to execute beauty operation at each part of the face of the user. The current skin state of the user is determined through the skin data in the face skin measuring result, and the corresponding operation parameters of the beauty instrument are determined according to different parts of the face of the user, so that the beauty operation of each part of the face of the user is realized in different regions, the matching precision of the operation parameters of the beauty instrument and the skin state of the user is high, the beauty effect is good, and the risk of skin injury is low.
Description
Technical Field
The application belongs to the technical field of intelligent equipment, and particularly relates to a control method, a control device, control equipment and a storage medium of a beauty instrument.
Background
Modern people have a series of skin problems of yellow skin, no luster and the like caused by slow excretion of various toxins accumulated in bodies and slow absorption of skin to maintenance products due to increasing living pressure. With the increasing living standard of modern people, the desire of people for pursuing beautiful and healthy life is increasing day by day, and people use some beauty instruments to beautify and maintain the skin.
The beauty instrument is an instrument for beautifying the face of people by using physical, electronic and optical techniques. The beauty instrument is one of the common instruments for beauty treatment of human face skin, such as an introduction instrument, a massage instrument, etc. The existing beauty instrument usually determines working parameters of the beauty instrument by selecting a function mode by a user, but the selectable function modes of the beauty instrument by the user are very limited, so that the working parameters of the beauty instrument which are most suitable for the current skin condition of the user cannot be automatically adapted to the user according to the current skin condition of the user accurately, the beauty effect is greatly reduced, and even the risk of skin injury exists.
Disclosure of Invention
In view of this, embodiments of the present application provide a method, an apparatus, a device, and a storage medium for controlling a beauty instrument, which can automatically adapt to an operation parameter of the beauty instrument most suitable for a current skin condition of a user according to the current skin condition of the user, improve a beauty effect, and reduce a risk of skin injury.
A first aspect of an embodiment of the present application provides a control method of a cosmetic apparatus, including:
acquiring a face skin measurement result generated based on an image of a user face;
acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user;
configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part;
and controlling the beauty instrument to respectively adopt the beauty instrument operation parameters corresponding to each part to execute beauty operation at each part of the face of the user.
With reference to the first aspect, in a first possible implementation manner of the first aspect, the cosmetic apparatus operating parameter includes a vibration duration and/or a vibration frequency; the step of configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part comprises the following steps:
acquiring target skin type data for reflecting the skin type state of a target part from the face skin measuring result, wherein the target part is any part of the face of the user;
inquiring a preset skin data-beauty instrument operation parameter matching relation table according to the target skin data, and obtaining a beauty instrument operation parameter matching value matched with the target skin data from the preset skin data-beauty instrument operation parameter matching relation table;
and multiplying the ratio of the beauty instrument operation parameters matched with the target skin data by the basic operation parameters of the user correspondingly to obtain the beauty instrument operation parameters corresponding to the target part, wherein the basic operation parameters comprise basic vibration duration and/or basic vibration frequency.
With reference to the first possible implementation manner of the first aspect, in a second possible implementation manner of the first aspect, the cosmetic apparatus operating parameter includes a vibration duration; the step of obtaining the beauty instrument operation parameters corresponding to the target part by multiplying the beauty instrument operation parameter matching values matched with the target skin data by the basic operation parameters of the user correspondingly respectively comprises the following steps:
acquiring the current time for using the beauty instrument by a user;
according to the corresponding relation table of the time traversal time-vibration duration threshold value of the cosmetic instrument currently used by the user, acquiring a first vibration duration threshold value matched with the time of the cosmetic instrument currently used by the user from the corresponding relation table of the time-vibration duration threshold value as the basic vibration duration of the user;
and multiplying the vibration duration parameter matching value matched with the target skin data by the basic vibration duration of the user to obtain the vibration duration of the beauty instrument corresponding to the target part.
With reference to the second possible implementation manner of the first aspect, in a third possible implementation manner of the first aspect, after the step of obtaining, from the time-vibration duration threshold correspondence table, a first vibration duration threshold matched with the time when the user currently uses the cosmetic apparatus as a basic vibration duration of the user according to the time traversal time-vibration duration threshold correspondence table when the user currently uses the cosmetic apparatus, the method further includes:
acquiring the current maintenance product coating amount value of the user;
and according to the current maintenance product coating amount value of the user, calculating a ratio between the current maintenance product coating amount value of the user and a standard coating amount, and adjusting the first vibration duration threshold according to the ratio between the current maintenance product coating amount value of the user and the standard coating amount to obtain a second vibration duration threshold matched with the current maintenance product coating amount value of the user as the basic vibration duration of the user.
With reference to the first possible implementation manner of the first aspect, in a fourth possible implementation manner of the first aspect, the cosmetic apparatus operating parameter includes a vibration frequency; the step of obtaining the beauty instrument operation parameters corresponding to the target part by multiplying the beauty instrument operation parameter matching values matched with the target skin data by the basic operation parameters of the user correspondingly respectively comprises the following steps:
acquiring component data of a maintenance product currently used by a user;
traversing a maintenance product component-vibration frequency threshold value corresponding relation table according to the component data of the maintenance product currently used by the user, and acquiring a vibration frequency threshold value matched with the component data of the maintenance product currently used by the user from the maintenance product component-vibration frequency threshold value corresponding relation table as a basic vibration frequency of the user;
and multiplying the vibration frequency parameter matching value matched with the target skin data by the basic vibration frequency of the user to obtain the vibration frequency of the beauty instrument corresponding to the target part.
With reference to the first possible implementation manner of the first aspect, in a fifth possible implementation manner of the first aspect, the cosmetic apparatus operating parameters further include an illumination parameter, and after the step of obtaining target skin data reflecting a target site skin condition from the facial skin measurement result, the method further includes:
and determining the illumination parameters of the beauty instrument when the beauty instrument performs the beauty operation on the target part according to the target skin data, wherein the illumination parameters comprise an illumination wavelength and an illumination time length.
With reference to the first aspect, in a sixth possible implementation manner of the first aspect, the step of controlling the beauty instrument to perform a beauty treatment operation at each part of the face of the user by using the beauty instrument operation parameters corresponding to each part includes:
identifying the position of each part on the face of a user based on the image of the face of the user, and labeling the beauty instrument operation parameters corresponding to each part into the image of the face of the user based on the position to generate an operation electronic book, so that the user performs beauty operation by adopting the beauty instrument operation parameters corresponding to each part on the face of the user respectively according to the operation electronic book in the process of using the beauty instrument; and/or
Sequencing the beauty instrument operation parameters corresponding to each part according to the part, generating a beauty instrument part use sequence corresponding to the sequence of the beauty instrument operation parameters corresponding to each part, and controlling the beauty instrument to adjust the beauty instrument operation parameters according to the sequence of the beauty instrument operation parameters corresponding to each part and execute beauty operation in the process that the user uses the beauty instrument according to the beauty instrument part use sequence; and/or
The method comprises the steps of acquiring a position image representing the current position of a beauty instrument in real time to determine the current position of the beauty instrument, controlling the beauty instrument to adjust the current operation parameters of the beauty instrument to the operation parameters of the beauty instrument corresponding to the current position according to the current position of the beauty instrument, and executing beauty operation.
A second aspect of the embodiments of the present application provides a control device for a beauty instrument, including:
the skin measurement result acquisition module is used for acquiring a face skin measurement result generated based on the image of the face of the user;
the skin state determining module is used for acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user;
the beauty instrument operating parameter configuration module is used for configuring the beauty instrument operating parameters corresponding to each part according to the skin data corresponding to each part;
and the beauty treatment operation control module is used for controlling the beauty treatment instrument to respectively adopt the beauty treatment instrument operation parameters corresponding to each part of the face of the user to execute beauty treatment operation.
A third aspect of the embodiments of the present application provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the method for controlling the cosmetic apparatus according to any one of the first aspect when executing the computer program.
A fourth aspect of embodiments of the present application provides a computer-readable storage medium, in which a computer program is stored, which, when executed by a processor, implements the steps of the method for controlling a cosmetic apparatus according to any one of the first aspects.
Compared with the prior art, the embodiment of the application has the advantages that:
the method comprises the steps of obtaining a face skin measurement result generated based on an image of a face of a user; acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user; configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part; and controlling the beauty instrument to respectively adopt the beauty instrument operation parameters corresponding to each part to execute beauty operation at each part of the face of the user. The method determines the current skin state of the user through the skin data in the skin measurement result of the face of the user, determines the operation parameters of the beauty instrument corresponding to the part of the face of the user according to the current skin states of different parts of the face of the user, and realizes that the beauty operation is executed on each part of the face of the user in regions. Moreover, the matching precision of the operation parameters of the beauty instrument and the skin state is high, the risk of skin damage caused by wrong skin care operation can be reduced, and the beauty effect is effectively improved.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or the prior art descriptions will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without inventive exercise.
Fig. 1 is a schematic flowchart of a basic method of a control method of a beauty instrument according to an embodiment of the present application;
fig. 2 is a flowchart illustrating a method for configuring operation parameters of a cosmetic apparatus in a control method of a cosmetic apparatus according to an embodiment of the present disclosure;
fig. 3 is a flowchart illustrating a method for configuring a vibration duration parameter of the cosmetic apparatus in a control method of the cosmetic apparatus according to an embodiment of the present application;
fig. 4 is a schematic flowchart of another method for determining a basic vibration duration of a user in the control method of the beauty instrument according to the embodiment of the present application;
fig. 5 is a flowchart illustrating a method for configuring a vibration frequency parameter of a cosmetic apparatus in a control method of a cosmetic apparatus according to an embodiment of the present disclosure;
fig. 6 is a schematic structural diagram of a control device of a beauty instrument according to an embodiment of the present application;
fig. 7 is a schematic view of an electronic device for implementing a control method of a beauty instrument according to an embodiment of the present application.
Detailed Description
In the following description, for purposes of explanation and not limitation, specific details are set forth, such as particular system structures, techniques, etc. in order to provide a thorough understanding of the embodiments of the present application. It will be apparent, however, to one skilled in the art that the present application may be practiced in other embodiments that depart from these specific details. In other instances, detailed descriptions of well-known systems, devices, circuits, and methods are omitted so as not to obscure the description of the present application with unnecessary detail.
In order to explain the technical solution described in the present application, the following description will be given by way of specific examples.
The control method of the beauty instrument provided by the embodiment of the application is mainly applied to an intelligent beauty mirror system, based on a photographing skin measuring function and/or a skin article quantitative output function in the intelligent beauty mirror system, and the operation parameters of the beauty instrument are configured according to the current skin measuring result data and the skin article smearing amount of a user, so that the beauty instrument can be automatically adapted to the operation parameters of the beauty instrument most suitable for the current skin state of the user according to the current skin state of the user, the beauty effect is improved, and the risk of skin injury is reduced. It can be understood that the control method of the beauty instrument can also be directly applied to the beauty instrument, for example, external equipment is used for acquiring skin measurement result data and skin product usage data of a user, the acquired skin measurement result data and skin product usage data of the user are transmitted to the beauty instrument, and the beauty instrument configures operation parameters according to the received skin measurement result data and skin product usage data of the user.
In some embodiments of the present application, please refer to fig. 1, and fig. 1 is a basic flowchart of a control method of a cosmetic apparatus according to an embodiment of the present application, which is detailed as follows:
step S11: a face skin measurement generated based on an image of a user's face is obtained.
In this embodiment, be provided with the end of making a video recording in the intelligence beauty mirror, have and shoot and survey the skin function. When the user uses the intelligent beauty mirror, the intelligent beauty mirror performs photographing and skin measuring processing on the face of the user, and a skin measuring result of the face of the user is generated based on an image of the face of the user, which is obtained by photographing through the camera of the intelligent beauty mirror. In this embodiment, when an image of a face of a user is captured, a camera terminal is first used to capture at least two images with different light supplement parameters, a skin color of the user is determined by analyzing an image brightness difference between the images, then an ambient light brightness value in a current capturing scene is reversely deduced according to the skin color of the user, the light supplement parameters and the camera parameters of the camera terminal are adjusted according to the ambient light brightness value in the current capturing scene, and finally the adjusted camera terminal is used to capture the image of the face of the user for performing a skin measurement operation.
Illustratively, when an image of the face of the user is shot, a first face image of the user can be directly shot through the camera, and the light supplement parameters corresponding to the first face image are obtained through recognition. Then, based on the brightness (such as the average brightness value) of the first face image and the corresponding fill-in light parameter, the fill-in light parameter of the camera is adaptively and automatically adjusted, and then a second face image of the user is shot and recorded together to obtain the adjusted fill-in light parameter. In this embodiment, the adjustment of the light supplement parameter may be adaptive adjustment according to a preset adjustment manner, for example, it is preliminarily determined whether the first face image is dark or bright, if so, the light supplement parameter is adjusted up to a preset value, and if so, the light supplement parameter is adjusted down to an adjustment value. It can be understood that, in some specific implementation manners, more than two face images may be acquired based on the precision requirement of the user, and when the more than two face images are acquired, if the initial judgments corresponding to the two face images shot at the present time are different, the adjustment value of the light supplement parameter is half of the adjustment value of the latest face image and the adjustment direction is opposite to the adjustment direction of the latest face image. For example, if the preliminary determination of the first face image is dark, and the fill-in light parameter is adjusted up to 1 adjustment value, then the second face image is captured, and at this time, if the preliminary determination of the second face image is bright, the fill-in light parameter of the third face image is adjusted down to 1/2 adjustment values. In this embodiment, the difference in image brightness between two face images captured under two types of ambient light may be different due to different skin colors of the faces. Therefore, different ambient lights are adopted to shoot various faces with different skin colors to obtain a large number of face image samples, A4 paper is shot to obtain image samples serving as a judgment standard, the image samples are used as experimental data to be analyzed, a corresponding skin color interval can be analyzed, a mathematical model for the skin color is constructed in advance through the analysis of the experimental data, and a corresponding relation between an image brightness difference value and the skin color type is established in the mathematical model. When a mathematical model is constructed, based on a skin color type which is preset manually, for example, a plurality of skin color types are divided according to a color number value in a skin color card, the number of the skin color types is configurable, and an image brightness difference value which can be used for representing the skin color type is obtained for each divided skin color type. In the correspondence between the image brightness difference value and the skin color type, the brightness difference value may be represented as a numerical range. Therefore, the image brightness difference value between any two collected human face images can be obtained by comparing the image brightness values of the two collected human face images, and then the mathematical model is inquired according to the image brightness difference value between the two human face images based on the mathematical model, so that the skin color type of the user can be determined according to the corresponding relation between the image brightness difference value and the skin color type in the mathematical model. In this embodiment, for each preset skin color type, a large number of faces with the same skin color are photographed by using a plurality of known different ambient lights to obtain face image samples, and the correspondence between the image brightness difference value and the ambient light brightness value is analyzed based on the face images, so as to establish a table or a curve for representing the correspondence between the image brightness difference value and the ambient light brightness value. Wherein, one skin color type corresponds to the corresponding relation between the brightness difference value of one image and the brightness value of the environment light. Therefore, after the skin color type of the user is determined, a corresponding table or curve for representing the corresponding relation between the image brightness difference value and the ambient light brightness value can be found according to the skin color type of the user. And then, according to the image brightness difference value between the previously obtained face images, inquiring a table or a curve, and determining the ambient light brightness value in the current shooting scene. On the other hand, in the cosmetic mirror, an optimum imaging brightness value for capturing a skin image, that is, a brightness threshold value set based on a skin image request is set in advance. After the ambient light brightness value in the current shooting scene is determined, the ambient light brightness value in the current shooting scene is compared with a preset brightness threshold value in the cosmetic mirror to calculate a light supplement parameter and a shooting parameter to be adjusted of the shooting end, wherein the shooting parameter comprises the shutter speed, the gain and the like of the shooting end.
In this embodiment, the skin measurement function of the intelligent beauty mirror can be realized by performing image evaluation on the obtained image through a pre-trained skin measurement model. For example, the skin measurement model may be a neural network model trained to a convergence state, the neural network model is configured to compare features extracted from the image of the face of the user with skin data obtained by training in the model and reflecting various skin states, so as to determine the skin state reflected by the features in the image of the face of the user and obtain the skin data reflecting the skin state, and then the model outputs position information of the features in the image and the skin data obtained based on the features, and the face skin measurement result includes position information corresponding to all the features in the image and skin data corresponding to the respective skin states. The skin condition data may be characterized as skin tone data, wrinkle data, speckle data, sensitivity data, dark eye circles, under-eye bags, silkworm data, moisture and oil data, and the like, among others.
Step S12: and acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user.
In the present embodiment, the image of the face of the user for performing the skin measurement operation is divided into a plurality of regions, and for different regions, the skin data corresponding to each region is extracted from the face skin measurement result obtained in the past for each region according to the position of each region in the image, so that the skin state of each region is reflected by the skin data corresponding to each region.
For example, in one specific implementation, the image of the face of the user may be pre-divided into a periocular region, a forehead region, a cheek region, a nose region, a chin region, and the like. Wherein, for the periocular region, the skin data belonging to the periocular region, such as pouch, silkworm decumbent, black eye data, lacrimal duct, and fishtail line data, are extracted according to the position information of each feature in the face skin measurement result, so as to reflect the skin state of the periocular region through the obtained skin data belonging to the periocular region. And aiming at the forehead, extracting skin data such as head raising line data belonging to the forehead according to the position information of each feature in the face skin measurement result, and reflecting the skin state of the forehead by the obtained skin data belonging to the forehead. For a cheek part, extracting skin data, such as French stripe data, belonging to the cheek part according to position information of each feature in a face skin measurement result so as to reflect the skin state of the cheek part through the obtained skin data belonging to the cheek part. For the nose part, skin data such as blackhead data belonging to the nose part is extracted according to position information of each feature in the face skin measurement result so as to reflect the skin state of the nose part through the obtained skin data belonging to the nose part. And extracting skin data, such as fat particle data, belonging to the chin part according to position information of each feature in the face skin measurement result so as to reflect the skin state of the chin part through the obtained skin data belonging to the chin part.
For example, in another specific implementation, the image of the face of the user may be further divided according to the skin problem based on the face skin measurement result, that is, each part is automatically generated according to the obtained face skin measurement result, such as a pox part, a pigmented spot part, a wrinkle part, and the like. Based on the image of the face of the user, the face skin measurement result includes the position information corresponding to each feature in the image and the skin data reflecting the skin state corresponding to each feature, for example, the pox position is taken as an example, the pox data is acquired from the face skin measurement result, the position of the feature corresponding to the pox data is determined, and then a setting region frame is set at the position, so that the region range included by the region frame in the image is the pox position. In this embodiment, when the face skin measurement result includes a plurality of pox data, whether the position of the feature corresponding to each pox data is set in one region frame may be determined according to the position distance of the feature corresponding to each pox data, for example, if the position distance of the feature corresponding to two pox data is greater than a preset distance value, the position of the feature corresponding to the two pox data is set in a region frame respectively, so as to form two pox parts; if the distance between the positions of the features corresponding to the two pox data is smaller than the preset distance value, the positions of the features corresponding to the two pox data are arranged in an area frame, and therefore a pox part is formed. It is to be understood that pigmented spots, wrinkles, etc. may also be formed in a manner similar to that described above.
Step S13: and configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part.
In this embodiment, after the face of the user is divided into a plurality of parts, the skin state of each part is represented by the skin data corresponding to each part, after the skin data of each part is obtained by the intelligent beauty mirror, the operating parameters corresponding to each part are configured according to the skin data of each part, and the operating parameters corresponding to each part obtained by the configuration are synchronized into the beauty instrument, so that the beauty instrument performs beauty operation on each part of the face of the user by using the corresponding operating parameters.
Fig. 2 is a schematic flow chart of a method for configuring operation parameters of a cosmetic apparatus in a control method of a cosmetic apparatus according to an embodiment of the present application. The details are as follows:
step S21: acquiring target skin type data for reflecting the skin type state of a target part from the face skin measuring result, wherein the target part is any part of the face of the user;
step S22: inquiring a preset skin data-beauty instrument operation parameter matching relation table according to the target skin data, and obtaining a beauty instrument operation parameter matching value matched with the target skin data from the preset skin data-beauty instrument operation parameter matching relation table;
step S23: and multiplying the ratio of the beauty instrument operation parameters matched with the target skin data by the basic operation parameters of the user correspondingly to obtain the beauty instrument operation parameters corresponding to the target part, wherein the basic operation parameters comprise basic vibration duration and/or basic vibration frequency.
In this embodiment, the face skin measurement result includes the position information corresponding to each of all the features in the image and the skin data corresponding to each of the features for reflecting the skin condition, and therefore, after the regions are divided, the skin data for reflecting the skin condition of each of the regions can be obtained based on the position information of each of the regions. For example, the periocular region may be obtained from the position range of the periocular region in the image, such as pouch, silkworm decumbent, black eye data, and lacrimal duct and fishtail line data, which are the target skin texture data. For another example, the pox position can be obtained according to the position range of the pox position in the image, and the pox data in the position range of the pox position can be the target skin quality data. When configuring the operation parameters of the beauty instrument corresponding to a certain part of the user, the part can be used as a target part, and target skin data for reflecting the skin state of the target part can be acquired based on the position of the target part.
In this embodiment, based on two cosmetic apparatus operation parameters, i.e., a skin data-cosmetic apparatus operation parameter ratio table, which is a correspondence table between skin data and a vibration duration parameter ratio and a correspondence table between skin data and a vibration frequency parameter ratio, is pre-established, wherein the two cosmetic apparatus operation parameters are respectively corresponding to the two cosmetic apparatus operation parameters. In the two corresponding relation tables, the corresponding beauty instrument operation parameter ratio (vibration duration parameter ratio or vibration frequency parameter ratio) is expressed by percentage. Illustratively, by combining a plurality of skin measurement indexes contained in skin measurement result data, a plurality of skin data score intervals used for measuring the skin state according to the skin measurement indexes are preset for each skin measurement index, and each score interval corresponds to one percentage value, so that the corresponding relationship between the skin data corresponding to the skin measurement indexes and the operation parameter ratio of the beauty instrument is constructed and obtained.
In the preset correspondence table of skin type data-cosmetic instrument operation parameter ratios in this embodiment, based on a plurality of skin measurement indexes included in the skin measurement result data, the correspondence between different skin type data and cosmetic instrument operation parameter ratios can be configured correspondingly for each skin measurement index. For example, the skin color data may correspond to a beauty instrument operating parameter ratio, the moisture content data may correspond to a beauty instrument operating parameter ratio, the stain data may correspond to a beauty instrument operating parameter ratio, the wrinkle data may correspond to a beauty instrument operating parameter ratio, the pox data may correspond to a beauty instrument operating parameter ratio, and so on. After the target skin data of the target part is obtained, the corresponding relation between the corresponding skin data and the operation parameter proportion of the beauty instrument can be inquired according to the target skin data of the part, so that the corresponding percentage value is obtained. The obtained percentage value is multiplied by the basic operation parameter, so that the operation parameter of the beauty instrument required to be configured at the target part at present can be obtained. Wherein the basic operating parameter comprises a basic vibration duration and/or a basic vibration frequency. It can be understood that, if the target portion contains multiple target skin data, after the percentage value corresponding to each target skin data is obtained, a lower percentage value is selected from the obtained percentage values to be multiplied by the basic operation parameter, so as to obtain the operation parameter of the beauty instrument, which is required to be configured currently, of the target portion. For example, the target skin data obtained based on a certain part includes wrinkle data and vaccinia data, the percentage value obtained by inquiring the corresponding relationship between the wrinkle data and the operation parameter ratio of the cosmetic instrument according to the wrinkle data is 120%, the percentage value obtained by inquiring the corresponding relationship between the vaccinia data and the operation parameter ratio of the cosmetic instrument according to the vaccinia data is 70%, and at this time, the percentage value of 70% is selected to be multiplied by the basic operation parameter, so that the cosmetic instrument operation parameter which needs to be configured at present at the target part can be obtained.
For example, in the correspondence relationship between the pox data and the cosmetic instrument operation parameter ratio, the pox data is divided into five grades from light to heavy according to the severity of the pox, each grade corresponds to a cosmetic instrument operation parameter ratio, for example, the cosmetic instrument operation parameter ratio corresponding to the first grade is 100%, the cosmetic instrument operation parameter ratio corresponding to the second grade is 80%, the cosmetic instrument operation parameter ratio corresponding to the third grade is 60%, the cosmetic instrument operation parameter ratio corresponding to the fourth grade is 40%, and the cosmetic instrument operation parameter ratio corresponding to the fifth grade is 20%. At this time, if the obtained target skin data shows that the severity of acne at the part of the user is three-level, the cosmetic instrument operation parameter ratio can be correspondingly obtained from the correspondence between the acne data and the cosmetic instrument operation parameter ratio to be 60%. Therefore, the 60 percent value is multiplied by the basic operation parameter, so that the operation parameter of the beauty instrument required to be configured at the part at present can be obtained.
In the present embodiment, the basic vibration duration and the basic vibration frequency may be obtained according to the skin sensitivity of the entire face of the user. Illustratively, the skin sensitivity is divided into a plurality of levels, and a corresponding basic vibration duration and a basic vibration frequency are set for each level, so that the basic vibration duration and the basic vibration frequency of the user can be obtained by judging the skin sensitivity of the user.
In some embodiments of the present application, the operation parameters of the beauty instrument may further include illumination parameters, and after obtaining the target skin data of each part for reflecting the skin condition, the illumination parameters required by the target part may be determined according to the target skin data of the target part, wherein the illumination parameters include an illumination wavelength and an illumination duration. The beauty instrument is provided with three kinds of illumination of blue light, yellow light and red light, wherein the wavelength of the blue light is 460nm, the blue light is related to acne data, the effect is to repair the problem of rough surface skin, the skin is more fine and smooth, and acne regeneration can be inhibited, namely acne is eliminated. The yellow light wavelength is 590nm, is associated with skin color data, and has the effects of enhancing lymphatic flow, promoting skin cell repair, activating skin tissues, restoring brightness and enabling the skin to be tender and transparent. The red light wavelength is 640nm, is associated with pigment spots and wrinkle data, has the effects of promoting the generation of collagen, solving the problems of skin wrinkles, dark pigments, color spots and the like, relieving the fatigue feeling of the skin and recovering the elasticity and luster of the skin. At this time, according to the target skin data of the target region, if the target skin data of the target region contains the pox data, determining that the illumination parameter required by the target region is blue light, namely configuring a wavelength parameter corresponding to the blue light for the target region. And if the target skin data of the target part contains pigment spot and fine line data, determining that the illumination parameter required by the target part is red light, namely configuring a wavelength parameter corresponding to the red light for the target part. And determining whether the target part is irradiated by yellow light or not by judging whether the skin color value exceeds a threshold value or not according to skin color data contained in target skin data of the target part, and if the skin color value exceeds the threshold value, irradiating by the yellow light. And the yellow light irradiation duration can be determined according to the specific skin color value of the target part, wherein the skin color value shows that the darker the skin is, and the longer the yellow light irradiation duration is configured. In the embodiment, different illumination can be selected to massage according to the skin states of different parts, so that the repair and maintenance of the skin can be effectively promoted, and the beauty effect is improved.
Step S14: and controlling the beauty instrument to respectively adopt the beauty instrument operation parameters corresponding to each part to execute beauty operation at each part of the face of the user.
In this embodiment, the modes for controlling the beauty instrument to perform the beauty operation include, but are not limited to, a manual mode, a semi-automatic mode, and a fully-automatic mode. Wherein:
first, according to a manual mode, the position of each part on the face of a user can be identified based on the image of the face of the user, and the operation parameters of the beauty instrument corresponding to each part are labeled to the image of the face of the user based on the position to generate an operation electronic book, so that the user can respectively adopt the operation parameters of the beauty instrument corresponding to each part on the face of the user to perform beauty operation according to the operation electronic book in the process of using the beauty instrument.
For example, the operation electronic book is generated based on an image of the face of the user, and is characterized in that position regions of various parts are marked in the image of the face of the user, and various operation parameter information corresponding to the various parts, such as vibration duration information, vibration frequency information, illumination wavelength information, illumination duration information and the like, is marked in the position regions of the various parts. Therefore, when the user uses the beauty instrument, the user can manually adjust the operation parameters of the beauty instrument by referring to the parameter information correspondingly marked on each part in the operation electronic book.
Second, according to a semi-automatic mode, the beauty instrument operation parameters corresponding to each part may be sorted by part, and a beauty instrument part use order corresponding to the order of the beauty instrument operation parameters corresponding to each part may be generated, so that the user controls the beauty instrument to adjust the beauty instrument operation parameters in the order of the beauty instrument operation parameters corresponding to each part and perform a beauty operation while using the beauty instrument according to the beauty instrument part use order.
Illustratively, according to the skin measuring result of the face of the user, when the skin states corresponding to different parts in the face of the user are determined, the face of the user is divided into a plurality of parts, and five parts including a periocular part, a forehead part, a cheek part, a nose part and a chin part are assumed. The sequence of the parts can be, for example, the forehead part, the eye periphery part, the nose part, the cheek part and the chin part, when the user uses the beauty instrument to perform the beauty operation, the beauty instrument adjusts the operation parameters of the parts according to the sequence, wherein, the time node when the operation parameters are adjusted between the two parts is the end of the vibration duration of the previous part. For example, the duration of the vibration of the forehead is 3 minutes, and the starting time of the user performing the cosmetic operation is 06: 23 minutes, at this time, the cosmetic instrument adjusts the operation parameters to the operation parameters configured corresponding to the eye circumference at 06: 26 minutes.
Thirdly, according to a full-automatic mode, a position image representing the current position of the beauty instrument can be obtained in real time to determine the current position of the beauty instrument, and according to the current position of the beauty instrument, the beauty instrument is controlled to adjust the current operating parameters of the beauty instrument to the operating parameters of the beauty instrument corresponding to the current position and to execute beauty operation.
Illustratively, by establishing communication connection between the intelligent cosmetic mirror and the cosmetic instrument, the intelligent cosmetic mirror acquires a position image representing the current position of the cosmetic instrument in a mode of shooting an image by a camera end in real time so as to determine the position of the cosmetic instrument on the face of a user; or the position image representing the current position of the beauty instrument is sent to the beauty instrument so that the beauty instrument determines the position of the beauty instrument on the face of the user. Specifically, when the position of the beauty instrument on the face of the user is determined, all angles of the beauty instrument can be input into the system through modeling, and when the user uses the beauty instrument to perform beauty operation on the face, the camera firstly extracts key points of the face and then compares the key points with the position image to judge the position of the face of the user where the beauty instrument is located currently. Then the operation parameters are automatically adjusted to the operation parameters corresponding to the part where the cosmetic instrument is positioned, and the cosmetic operation is executed according to the adjusted operation parameters.
The control method of the beauty instrument provided by the embodiment determines the current skin state of the user through the skin data in the skin measurement result of the face, and determines the corresponding operation parameters of the beauty instrument according to different parts of the face of the user, thereby realizing the execution of beauty operation on each part of the face of the user in different regions. The matching precision of the operation parameters of the beauty instrument obtained by the configuration and the skin state of the user is high, the risk of skin injury caused by wrong skin care operation is reduced, the beauty effect is achieved, and the risk of skin injury is low.
In some embodiments of the present application, please refer to fig. 3, and fig. 3 is a flowchart illustrating a method for configuring a vibration duration parameter of a cosmetic apparatus in a control method of the cosmetic apparatus according to an embodiment of the present application. The details are as follows:
step S31: acquiring the current time for using the beauty instrument by a user;
step S32: according to the corresponding relation table of the time traversal time-vibration duration threshold value of the cosmetic instrument currently used by the user, acquiring a first vibration duration threshold value matched with the time of the cosmetic instrument currently used by the user from the corresponding relation table of the time-vibration duration threshold value as the basic vibration duration of the user;
step S33: and multiplying the vibration duration parameter matching value matched with the target skin data by the basic vibration duration of the user to obtain the vibration duration of the beauty instrument corresponding to the target part.
In this embodiment, the time when the user uses the beauty instrument currently is represented as the time when the user performs the beauty operation using the beauty instrument. In this embodiment, a configuration rule of a vibration duration is preset based on a time dimension, and illustratively, a time-vibration duration threshold correspondence table is constructed by dividing a day into a plurality of time periods, each of which is provided with a corresponding vibration duration threshold. In the present embodiment, the correspondence table may be expressed by dividing the time of day into 6: 00-10:00, 10: 00-20: 00. 20: 00-next day 6:00 three time periods, wherein 6: the vibration duration threshold corresponding to the time period of 00-10:00 is configured as A1, 10: 00-20: the vibration duration threshold corresponding to the 00 time period is configured as B1, 20: the vibration duration threshold corresponding to 6:00 on the 00-next day is configured as C1. When the vibration duration threshold is configured, based on the fact that the user is in urgent need of working in the morning, the vibration duration needs to be properly reduced, and the rest time of the user is more in the evening, the vibration duration can be properly increased, and A1 < B1 < C1 is configured. Therefore, after the current time for using the beauty instrument by the user is obtained, the time period range of the current time period for using the beauty instrument by the user can be judged according to the time traversal time-vibration time period threshold value corresponding relation table of the current time for using the beauty instrument by the user, so that a first vibration time period threshold value (A1 or B1 or C1) matched with the current time for using the beauty instrument by the user is obtained from the corresponding relation table according to the time period to which the current time for using the beauty instrument by the user belongs, and at the moment, the first vibration time period threshold value is the basic vibration time period of the beauty operation of the user.
For example, assume that the user currently uses the beauty instrument for 6: and 50, the time period for the current use time of the beauty instrument by the user is 6: and in the time period of 00-10:00, a first vibration duration threshold value matched with the current time for using the beauty instrument by the user can be obtained from the time-vibration duration threshold value corresponding relation table and is A1, namely, A1 is set as the basic vibration duration of the beauty operation of the user.
In this embodiment, after obtaining the basic vibration duration of the user, a correspondence table between the skin data and the vibration duration parameter ratio is queried according to the target skin data of the target portion, so as to obtain the vibration duration parameter ratio of the target portion from the correspondence table, and the obtained vibration duration parameter ratio is multiplied by the basic vibration duration of the user, so as to obtain the vibration duration of the beauty instrument corresponding to the target portion.
It can be understood that, in this embodiment, the time-vibration duration threshold correspondence table may also be set according to the skin sensitivity. For example, different time-vibration duration threshold value corresponding relation tables are set according to different skin sensitivity levels, so that two influence factors of the time for a user to use the beauty instrument to perform beauty operation and the current skin sensitivity of the user are considered when the basic vibration duration is determined.
The embodiment can set different basic vibration durations through the current time difference of using the beauty instrument by the user, so that the appropriate vibration duration can be configured for the user, and the user experience is enhanced.
In some embodiments of the present application, please refer to fig. 4, and fig. 4 is a flowchart illustrating another method for determining the basic vibration duration of the user in the control method of the cosmetic apparatus according to the embodiment of the present application. The details are as follows:
step S41: acquiring the current coating quantity value of the maintenance product of a user;
step S42: and according to the current maintenance product coating amount value of the user, calculating a ratio between the current maintenance product coating amount value of the user and a standard coating amount, and adjusting the first vibration duration threshold according to the ratio between the current maintenance product coating amount value of the user and the standard coating amount to obtain a second vibration duration threshold matched with the current maintenance product coating amount value of the user as the basic vibration duration of the user.
In this embodiment, the intelligent beauty mirror is configured with a skin product usage amount calculation function, so that the skin product usage amount required by the user in the skin state can be calculated according to the current skin state of the user, and the skin product memory built in the intelligent beauty mirror is triggered to output the skin product with the corresponding usage amount according to the amount, and the output usage amount data of each time can be backed up and recorded in the local intelligent beauty mirror. The skin product memory built in the intelligent beauty mirror stores general skin care products, and the massage is used for promoting the introduction and absorption of the care products, so that in the embodiment, before the massage, the user can calculate the required use amount of the care products in the skin state and output the corresponding use amount of the care products, namely, the current care product application amount value of the user can be locally read from the intelligent beauty mirror. In the embodiment, the basic vibration duration of the user can be adjusted according to the current number of the maintenance product coating amount of the user, so that the user is effectively helped to promote the introduction and absorption of the maintenance product. For example, a corresponding standard application amount is preset for each vibration duration threshold configured according to the time period, the standard application amount is a maintenance product usage amount which can help a user to absorb under the vibration duration threshold, and the standard application amount can be determined after a first vibration duration threshold is obtained according to the current time for using the cosmetic instrument by the user. In this embodiment, the vibration duration is positively correlated to the amount of the care product that can help the user to absorb, i.e., the longer the vibration duration is, the more the amount of the care product that can help the user to absorb is. Therefore, after the current maintenance product coating quantity value of the user is obtained, the ratio between the current maintenance product coating quantity value of the user and the standard coating quantity is calculated, the first vibration duration threshold value can be adjusted according to the ratio between the current maintenance product coating quantity value of the user and the standard coating quantity on the basis that the ratio between the current maintenance product coating quantity value of the user and the standard coating quantity is equal to the positive correlation between the actual vibration duration required to be configured by the user and the standard vibration duration, and therefore the second vibration duration threshold value matched with the current maintenance product coating quantity value of the user is obtained and serves as the basic vibration duration of the user. Specifically, the calculation formula of the second vibration duration threshold is as follows: the standard coating amount/the current maintenance product coating amount value of the user is equal to the first vibration duration threshold/the second vibration duration threshold.
In some embodiments of the present application, please refer to fig. 5, and fig. 5 is a flowchart illustrating a method for configuring a vibration frequency parameter of a cosmetic apparatus in a control method of the cosmetic apparatus according to an embodiment of the present application. The details are as follows:
step S51: acquiring component data of a maintenance product currently used by a user;
step S52: traversing a maintenance product component-vibration frequency threshold value corresponding relation table according to the component data of the maintenance product currently used by the user, and acquiring a vibration frequency threshold value matched with the component data of the maintenance product currently used by the user from the maintenance product component-vibration frequency threshold value corresponding relation table as a basic vibration frequency of the user;
step S53: and multiplying the vibration frequency parameter matching value matched with the target skin data by the basic vibration frequency of the user to obtain the vibration frequency of the beauty instrument corresponding to the target part.
In this embodiment, when the skin product memory is built in the intelligent beauty mirror and the skin product memory stores the care product, the information recording is performed on the care product, the efficacy information of the care product is recorded in the local area of the intelligent beauty mirror, and when the composition data of the care product currently used by the user is acquired, the data is directly read from the local area of the intelligent beauty mirror. In this embodiment, a configuration rule of the vibration frequency of the beauty instrument is preset based on the dimension of the components of the care product, for example, a standard vibration frequency is preset, the components of the care product can be divided into six types of components of the care product with efficacies of whitening, moisturizing, spot fading, anti-aging, stability maintaining, acne removing and the like, a corresponding vibration frequency ratio is respectively configured for each type of component, the vibration frequency ratio configured corresponding to each component of the care product is respectively multiplied by the standard vibration frequency to obtain a vibration frequency threshold corresponding to each component, and each component of the care product is mapped and associated with the vibration frequency threshold corresponding to each component of the care product, so that a correspondence table between the components of the care product and the vibration frequency threshold can be obtained. In the table of the relationship between the components of the cosmetic and the vibration frequency threshold in this embodiment, the vibration frequency ratio configured for the components with the stability maintaining effect is less than 1, and the vibration frequency threshold corresponding to the stability maintaining component can be obtained by multiplying the standard vibration frequency by the vibration frequency ratio less than 1. Therefore, the vibration frequency is reduced when the user is helped to perform skin stability maintenance, and the stability maintaining effect is enhanced when the cosmetic operation is performed. And aiming at the components with the anti-aging effect, the configured vibration frequency ratio is larger than 1, and the vibration frequency threshold corresponding to the anti-aging components can be obtained by multiplying the standard vibration frequency by the vibration frequency ratio larger than 1. And aiming at the four components of whitening, moisturizing, spot lightening and acne removing, the standard vibration frequency is directly used as the vibration frequency threshold value corresponding to each component. Thus, after the component data of the care product currently used by the user is obtained, the care product component-vibration frequency threshold value correspondence table can be traversed according to the component data of the care product currently used by the user, and the vibration frequency threshold value matched with the component data of the care product currently used by the user can be obtained from the care product component-vibration frequency threshold value correspondence table as the basic vibration frequency of the user.
In this embodiment, after obtaining the basic vibration frequency of the user, a correspondence table between the skin data and the vibration frequency parameter ratio is queried according to the target skin data obtained from the target site, so as to obtain the vibration frequency parameter ratio of the target site from the correspondence table, and the obtained vibration frequency parameter ratio is multiplied by the basic vibration frequency of the user, so as to obtain the vibration frequency of the beauty instrument corresponding to the target site.
The embodiment can effectively enhance the beauty effect and improve the user experience by configuring different vibration frequencies for different components of the care products.
It should be understood that, the sequence numbers of the steps in the foregoing embodiments do not imply an execution sequence, and the execution sequence of each process should be determined by its function and inherent logic, and should not constitute any limitation to the implementation process of the embodiments of the present application.
In some embodiments of the present application, please refer to fig. 6, fig. 6 is a schematic structural diagram of a control device of a beauty instrument according to an embodiment of the present application, which is detailed as follows:
the control device of the beauty instrument comprises: a skin measurement result acquisition module 61, a skin condition determination module 62, a beauty instrument operation parameter configuration module 63 and a beauty operation control module 64. The skin measurement result obtaining module 61 is configured to obtain a face skin measurement result generated based on an image of the face of the user. The skin condition determining module 62 is configured to obtain skin condition data corresponding to different parts of the face of the user according to the face skin measurement result, where one part corresponds to one position region of the face of the user. The beauty instrument operating parameter configuration module 63 is configured to configure the beauty instrument operating parameters corresponding to each part according to the skin data corresponding to each part. The beauty treatment operation control module 64 is configured to control the beauty treatment apparatus to perform beauty treatment operations at each part of the face of the user by using the beauty treatment apparatus operation parameters corresponding to each part.
The control device of the beauty instrument corresponds to the control method of the beauty instrument one by one.
In some embodiments of the present application, please refer to fig. 7, and fig. 7 is a schematic diagram of an electronic device for implementing a control method of a beauty instrument according to an embodiment of the present application. As shown in fig. 7, the electronic apparatus 7 of this embodiment includes: a processor 71, a memory 72 and a computer program 73, such as a control program for a cosmetic instrument, stored in said memory 72 and operable on said processor 71. The processor 71 implements the steps in the above-described embodiments of the control method of each cosmetic device when executing the computer program 72. Alternatively, the processor 71 implements the functions of the modules/units in the above-described device embodiments when executing the computer program 73.
Illustratively, the computer program 73 may be partitioned into one or more modules/units, which are stored in the memory 72 and executed by the processor 71 to accomplish the present application. The one or more modules/units may be a series of computer program instruction segments capable of performing specific functions, which are used to describe the execution of the computer program 73 in the electronic device 7. For example, the computer program 73 may be divided into:
the skin measurement result acquisition module is used for acquiring a face skin measurement result generated based on the image of the face of the user;
the skin state determining module is used for acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user;
the beauty instrument operating parameter configuration module is used for configuring the beauty instrument operating parameters corresponding to each part according to the skin data corresponding to each part;
and the beauty treatment operation control module is used for controlling the beauty treatment instrument to respectively adopt the beauty treatment instrument operation parameters corresponding to each part of the face of the user to execute beauty treatment operation.
The electronic device may include, but is not limited to, a processor 71, a memory 72. It will be appreciated by those skilled in the art that fig. 7 is merely an example of the electronic device 7, and does not constitute a limitation of the electronic device 7, and may include more or less components than those shown, or combine certain components, or different components, for example, the electronic device may also include input output devices, network access devices, buses, etc.
The Processor 71 may be a Central Processing Unit (CPU), other general purpose Processor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), an off-the-shelf Programmable Gate Array (FPGA) or other Programmable logic device, discrete Gate or transistor logic device, discrete hardware component, etc. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
The memory 72 may be an internal storage unit of the electronic device 7, such as a hard disk or a memory of the electronic device 7. The memory 72 may also be an external storage device of the electronic device 7, such as a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) Card, a Flash memory Card (Flash Card), and the like, which are provided on the electronic device 7. Further, the memory 72 may also include both an internal storage unit and an external storage device of the electronic device 7. The memory 72 is used for storing the computer program and other programs and data required by the electronic device. The memory 72 may also be used to temporarily store data that has been output or is to be output.
It will be apparent to those skilled in the art that, for convenience and brevity of description, only the above-mentioned division of the functional units and modules is illustrated, and in practical applications, the above-mentioned function distribution may be performed by different functional units and modules according to needs, that is, the internal structure of the apparatus is divided into different functional units or modules to perform all or part of the above-mentioned functions. Each functional unit and module in the embodiments may be integrated in one processing unit, or each unit may exist alone physically, or two or more units are integrated in one unit, and the integrated unit may be implemented in a form of hardware, or in a form of software functional unit. In addition, specific names of the functional units and modules are only for convenience of distinguishing from each other, and are not used for limiting the protection scope of the present application. The specific working processes of the units and modules in the system may refer to the corresponding processes in the foregoing method embodiments, and are not described herein again.
In the above embodiments, the descriptions of the respective embodiments have respective emphasis, and reference may be made to the related descriptions of other embodiments for parts that are not described or illustrated in a certain embodiment.
Those of ordinary skill in the art will appreciate that the various illustrative elements and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware or combinations of computer software and electronic hardware. Whether such functionality is implemented as hardware or software depends upon the particular application and design constraints imposed on the implementation. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the present application.
In the embodiments provided in the present application, it should be understood that the disclosed apparatus/terminal device and method may be implemented in other ways. For example, the above-described embodiments of the apparatus/terminal device are merely illustrative, and for example, the division of the modules or units is only one logical division, and there may be other divisions when actually implemented, for example, a plurality of units or components may be combined or integrated into another system, or some features may be omitted, or not executed. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices or units, and may be in an electrical, mechanical or other form.
The units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of the embodiment.
In addition, functional units in the embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit.
The integrated modules/units, if implemented in the form of software functional units and sold or used as separate products, may be stored in a computer readable storage medium. Based on such understanding, all or part of the flow in the method of the embodiments described above can be realized by a computer program, which can be stored in a computer-readable storage medium and can realize the steps of the embodiments of the methods described above when the computer program is executed by a processor. . Wherein the computer program comprises computer program code, which may be in the form of source code, object code, an executable file or some intermediate form, etc. The computer-readable medium may include: any entity or device capable of carrying the computer program code, recording medium, usb disk, removable hard disk, magnetic disk, optical disk, computer Memory, Read-Only Memory (ROM), Random Access Memory (RAM), electrical carrier wave signals, telecommunications signals, software distribution medium, and the like. It should be noted that the computer readable medium may contain other components which may be suitably increased or decreased as required by legislation and patent practice in jurisdictions, for example, in some jurisdictions, computer readable media which may not include electrical carrier signals and telecommunications signals in accordance with legislation and patent practice.
The above-mentioned embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the same; although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the spirit and scope of the embodiments of the present application and are intended to be included within the scope of the present application.
Claims (10)
1. A control method of a beauty instrument is characterized by comprising the following steps:
acquiring a face skin measurement result generated based on an image of a user face;
acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user;
configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part;
and controlling the beauty instrument to respectively adopt the beauty instrument operation parameters corresponding to each part to execute beauty operation at each part of the face of the user.
2. The cosmetic instrument control method of claim 1 wherein the cosmetic instrument operating parameters include vibration duration and/or vibration frequency; the step of configuring the operation parameters of the beauty instrument corresponding to each part according to the skin data corresponding to each part comprises the following steps:
acquiring target skin type data for reflecting the skin type state of a target part from the face skin measuring result, wherein the target part is any part of the face of the user;
inquiring a preset skin data-beauty instrument operation parameter matching relation table according to the target skin data, and obtaining a beauty instrument operation parameter matching value matched with the target skin data from the preset skin data-beauty instrument operation parameter matching relation table;
and multiplying the ratio of the beauty instrument operation parameters matched with the target skin data by the basic operation parameters of the user correspondingly to obtain the beauty instrument operation parameters corresponding to the target part, wherein the basic operation parameters comprise basic vibration duration and/or basic vibration frequency.
3. The cosmetic instrument control method of claim 2 wherein the cosmetic instrument operating parameter comprises a vibration duration; the step of obtaining the beauty instrument operation parameters corresponding to the target part by multiplying the beauty instrument operation parameter matching values matched with the target skin data by the basic operation parameters of the user correspondingly respectively comprises the following steps:
acquiring the current time for using the beauty instrument by a user;
according to the corresponding relation table of the time traversal time-vibration duration threshold value of the cosmetic instrument currently used by the user, acquiring a first vibration duration threshold value matched with the time of the cosmetic instrument currently used by the user from the corresponding relation table of the time-vibration duration threshold value as the basic vibration duration of the user;
and multiplying the vibration duration parameter matching value matched with the target skin data by the basic vibration duration of the user to obtain the vibration duration of the beauty instrument corresponding to the target part.
4. The method for controlling a cosmetic apparatus according to claim 3, wherein after the step of traversing the time-vibration duration threshold value correspondence table according to the time when the user currently uses the cosmetic apparatus, acquiring a first vibration duration threshold value matching the time when the user currently uses the cosmetic apparatus from the time-vibration duration threshold value correspondence table as the basic vibration duration of the user, the method further comprises:
acquiring the current coating quantity value of the maintenance product of a user;
and according to the current maintenance product coating amount value of the user, calculating a ratio between the current maintenance product coating amount value of the user and a standard coating amount, and adjusting the first vibration duration threshold according to the ratio between the current maintenance product coating amount value of the user and the standard coating amount to obtain a second vibration duration threshold matched with the current maintenance product coating amount value of the user as the basic vibration duration of the user.
5. The cosmetic instrument control method of claim 2 wherein the cosmetic instrument operating parameter comprises a vibration frequency; the step of obtaining the beauty instrument operation parameters corresponding to the target part by multiplying the beauty instrument operation parameter matching values matched with the target skin data by the basic operation parameters of the user correspondingly respectively comprises the following steps:
acquiring component data of a maintenance product currently used by a user;
traversing a maintenance product component-vibration frequency threshold value corresponding relation table according to the component data of the maintenance product currently used by the user, and acquiring a vibration frequency threshold value matched with the component data of the maintenance product currently used by the user from the maintenance product component-vibration frequency threshold value corresponding relation table as a basic vibration frequency of the user;
and multiplying the vibration frequency parameter matching value matched with the target skin data by the basic vibration frequency of the user to obtain the vibration frequency of the beauty instrument corresponding to the target part.
6. The method of controlling a cosmetic apparatus according to claim 2, wherein the cosmetic apparatus operating parameters further include illumination parameters, and wherein the step of obtaining target skin condition data reflecting a target skin condition from the facial skin measurement result further comprises:
and determining the illumination parameters of the beauty instrument when the beauty instrument performs the beauty operation on the target part according to the target skin data, wherein the illumination parameters comprise an illumination wavelength and an illumination time length.
7. The method of claim 1, wherein the step of controlling the cosmetic apparatus to perform a cosmetic operation at each part of the user's face using the cosmetic apparatus operation parameters corresponding to each part comprises:
identifying the position of each part on the face of a user based on the image of the face of the user, and labeling the beauty instrument operation parameters corresponding to each part into the image of the face of the user based on the position to generate an operation electronic book, so that the user performs beauty operation by adopting the beauty instrument operation parameters corresponding to each part on the face of the user respectively according to the operation electronic book in the process of using the beauty instrument; and/or
Sequencing the beauty instrument operation parameters corresponding to each part according to the part, generating a beauty instrument part use sequence corresponding to the sequence of the beauty instrument operation parameters corresponding to each part, and controlling the beauty instrument to adjust the beauty instrument operation parameters according to the sequence of the beauty instrument operation parameters corresponding to each part and execute beauty operation in the process that the user uses the beauty instrument according to the beauty instrument part use sequence; and/or
The method comprises the steps of acquiring a position image representing the current position of a beauty instrument in real time to determine the current position of the beauty instrument, controlling the beauty instrument to adjust the current operation parameters of the beauty instrument to the operation parameters of the beauty instrument corresponding to the current position according to the current position of the beauty instrument, and executing beauty operation.
8. A control device of a beauty instrument is characterized by comprising:
the skin measurement result acquisition module is used for acquiring a face skin measurement result generated based on the image of the face of the user;
the skin state determining module is used for acquiring skin data corresponding to different parts of the face of the user according to the face skin measuring result, wherein one part corresponds to one position area of the face of the user;
the beauty instrument operating parameter configuration module is used for configuring the beauty instrument operating parameters corresponding to each part according to the skin data corresponding to each part;
and the beauty treatment operation control module is used for controlling the beauty treatment instrument to respectively adopt the beauty treatment instrument operation parameters corresponding to each part of the face of the user to execute beauty treatment operation.
9. An electronic device comprising a memory, a processor and a computer program stored in said memory and executable on said processor, characterized in that said processor implements the steps of the control method of the cosmetic apparatus according to any one of claims 1 to 7 when executing said computer program.
10. A computer-readable storage medium, in which a computer program is stored, which, when being executed by a processor, carries out the steps of a method for controlling a cosmetic apparatus according to any one of claims 1 to 7.
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