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CN105496428A - Wearable device control implementation method and device - Google Patents

Wearable device control implementation method and device Download PDF

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Publication number
CN105496428A
CN105496428A CN201510927717.5A CN201510927717A CN105496428A CN 105496428 A CN105496428 A CN 105496428A CN 201510927717 A CN201510927717 A CN 201510927717A CN 105496428 A CN105496428 A CN 105496428A
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China
Prior art keywords
heart rate
rate value
movement parameter
conditioned
wearable device
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Granted
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CN201510927717.5A
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CN105496428B (en
Inventor
施锦岸
唐惠忠
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Beijing Qihoo Technology Co Ltd
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Beijing Qihoo Technology Co Ltd
Qizhi Software Beijing Co Ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/16Devices for psychotechnics; Testing reaction times ; Devices for evaluating the psychological state
    • A61B5/165Evaluating the state of mind, e.g. depression, anxiety
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/0245Detecting, measuring or recording pulse rate or heart rate by using sensing means generating electric signals, i.e. ECG signals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/11Measuring movement of the entire body or parts thereof, e.g. head or hand tremor, mobility of a limb
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • A61B5/6803Head-worn items, e.g. helmets, masks, headphones or goggles
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • A61B5/681Wristwatch-type devices
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient ; user input means
    • A61B5/7465Arrangements for interactive communication between patient and care services, e.g. by using a telephone network

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Veterinary Medicine (AREA)
  • Medical Informatics (AREA)
  • Public Health (AREA)
  • General Health & Medical Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Surgery (AREA)
  • Physics & Mathematics (AREA)
  • Molecular Biology (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Physiology (AREA)
  • Psychiatry (AREA)
  • Cardiology (AREA)
  • Developmental Disabilities (AREA)
  • Hospice & Palliative Care (AREA)
  • Educational Technology (AREA)
  • Psychology (AREA)
  • Child & Adolescent Psychology (AREA)
  • Dentistry (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Signal Processing (AREA)
  • Social Psychology (AREA)
  • Nursing (AREA)
  • Telephone Function (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

The invention provides a wearable device control implementation method. The method comprises steps as follows: acquiring data detected by an electro-cadiography sensor to determine a heart rate value, and acquiring data detected by an acceleration sensor simultaneously to determine activity parameters; judging whether the heart rate value and the activity parameters are matched with preset conditions; transmitting a reminding message through a remote interface when the heart rate value and the activity parameters meet the preset conditions. The invention further provides a wearable device control implementation device. According to the scheme, the physical condition of a user can be monitored, and the user's preference for the environment where the user is located can be judged.

Description

Can wearable device control implementation method and device
Technical field
The present invention relates to technical field of intelligent equipment, particularly relate to a kind of can wearable device control implementation method and device.
Background technology
At present, each institution of higher education requires that student strengthens physical training, but the body constitution of student is uneven, and teacher is also difficult to the constitution status understanding student, and the state in sports, and is difficult to as the head of a family of student the situation understanding child especially.At the volley, often understand some student and easily occur being short of physical strength, move reluctantly, but can fall in a swoon, go into a coma, the situation such as sudden death.
Along with the development of science and technology, in order to the health of better tracking and monitoring people, improve the quality of life of people, Intelligent bracelet is arisen at the historic moment.Intelligent bracelet, as a kind of wearable intelligent equipment, is similar to wrist-watch.The basic tool that wrist-watch obtained as the time, due to small volume, is easy to carry, battery life is long, use unrestricted, and wrist-watch can water, shock, nothing as to swim, still play ball, can carry with, easy to use, but existing watch function is single, the appearance along with mobile phone, panel computer is faded out the sight line of people gradually.Pass through Intelligent bracelet, user can record the real time data such as exercise, sleep, diet in daily life, Intelligent bracelet built-in sensors, and undertaken transmitting and synchrodata by interface that Intelligent bracelet configures and other smart machine, play the effect by data-guiding healthy living.Because Intelligent bracelet is convenient for carrying and outward appearance meets the aesthetic requirement of user, become one of smart machine that user commonly uses gradually.
Intelligent bracelet common at present has following several function: meter step, measurement calorie, measuring distance etc., also have the anti-function of wandering away of old man, child.But most function all concentrates on motion and sleep monitor.From functional perspective, although existing Intelligent bracelet can realize some functions, relative to more single professional intellectual ability equipment, the specific more requirements in a certain respect of user cannot be met; And from technical standpoint, Intelligent bracelet generally adopts super low-power consumption Bluetooth technology, MEMS micro machine technology, microminiature vibrations motor, acceleration of gravity and direction sensor, but not there is the technology of understanding child's changes in heart rate in depth, thus can not determine the hobby of child to residing environment according to child's changes in heart rate, thus realize children's torso condition monitoring and judge the function that child likes residing environment.
Summary of the invention
Object of the present invention be intended to solve at least one problem above-mentioned, provide a kind of can wearable device control implementation method and device, to realize user's body condition monitoring and to judge the function that user likes residing environment.
To achieve these goals, the invention provides a kind of can wearable device control implementation method, comprise the following steps:
Obtain the data that detect of EGC sensor to determine heart rate value, obtain data that acceleration transducer detects to determine movement parameter simultaneously;
Whether judgement heart rate value, movement parameter mate with pre-conditioned;
When heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
Further, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, being considered as matching with pre-conditioned, judging that user is in the mental status of setting thus.
Further, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus.
Further, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
Further, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.
Further, method also comprises:
In certain time interval, obtain heart rate value and movement parameter.
Further, described when heart rate value and movement parameter meet pre-conditioned, sent the step of prompting message by remote interface, be specially:
When heart rate value and movement parameter meet pre-conditioned, send prompting message to mobile terminal by Bluetooth signal.
Further, described when heart rate value and movement parameter meet pre-conditioned, send prompting message in the step of mobile terminal by Bluetooth signal:
The associated user bound with this wearable device is sent to after prompting message being carried out format process.
Further, described when heart rate value and movement parameter meet pre-conditioned, sent in the step of prompting message by remote interface:
Prompting message after process is stored.
Further, method also comprises:
Described prompting message is stored in can wearable device the machine.
Further, method also comprises:
Described prompting message is stored in cloud server.
Further, this method also comprises subsequent step:
Long-distance user is for the delete instruction of specific prompting message in response, deletes specific prompting message.
Further, method also comprises:
When the changing value of described movement parameter reaches setting threshold value, the enabled instruction of response EGC sensor, obtains heart rate value.
Further, method also comprises:
When the changing value of described heart rate value reaches setting threshold value, the enabled instruction of response acceleration sensor, obtains movement parameter.
Further, method also comprises:
Described can wearable device be intelligent watch, Intelligent bracelet or intelligent glasses.
Can wearable device control an implement device, it is characterized in that, comprising:
Acquisition module: obtain the data that detect of EGC sensor to determine heart rate value, obtains data that acceleration transducer detects to determine movement parameter simultaneously;
Determination module: whether judgement heart rate value, movement parameter mate with pre-conditioned;
Sending module: when heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
Further, described determination module comprises:
First detection module: when detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
Further, described determination module comprises:
Second detection module: when detecting that heart rate value and movement parameter are all greater than setting threshold value, be considered as matching with pre-conditioned, judges that user is in the kinestate of setting thus.
Further, described determination module comprises:
3rd detection module: when detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
Further, described determination module comprises:
4th detection module: when detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.
Further, device also comprises:
Presetting module: in certain time interval, obtains heart rate value and movement parameter.
Further, described sending module also comprises:
Mobile terminal receiver module: when heart rate value and movement parameter meet pre-conditioned, sends prompting message to mobile terminal by Bluetooth signal.
Further, described mobile terminal receiver module also comprises:
Message processing module: be sent to the associated user bound with this wearable device after prompting message being carried out format process.
Further, described message processing module also comprises:
Information storage module: the prompting message after process is stored.
Further, described information storage module comprises:
First memory module: described prompting message is stored in can wearable device the machine.
Further, described information storage module comprises:
Second memory module: described prompting message is stored in cloud server.
Further, device also comprises:
Removing module: long-distance user is for the delete instruction of specific prompting message in response, deletes specific prompting message.
Further, device also comprises:
First starts module: when the changing value of described movement parameter reaches setting threshold value, and the enabled instruction of response EGC sensor, obtains heart rate value.
Further, device also comprises:
Second starts module: when the changing value of described heart rate value reaches setting threshold value, and the enabled instruction of response acceleration sensor, obtains movement parameter.
The solution of the present invention has the following advantages:
1, the present invention is by obtaining the data that detect of EGC sensor to determine heart rate value, obtains data that acceleration transducer detects to determine movement parameter simultaneously; Whether judgement heart rate value, movement parameter mate with pre-conditioned; When heart rate value and movement parameter meet pre-conditioned, prompting message is sent by remote interface, realize user's body condition monitoring and judge the function that user likes residing environment, be different from the function singleness existed on the market cannot judge user to residing environment like can wearable device.
2, the present invention is by the following several situation of setting: when detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, is considered as matching with pre-conditioned, judges that user is in the mental status of setting thus; When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus; When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus; When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus; The different conditions of this kind of mode to user is adopted to judge, novel in design, unique, better effects if.
The aspect that the present invention adds and advantage will part provide in the following description, and these will become obvious from the following description, or be recognized by practice of the present invention.
Accompanying drawing explanation
The present invention above-mentioned and/or additional aspect and advantage will become obvious and easy understand from the following description of the accompanying drawings of embodiments, wherein:
Fig. 1 is that the present invention can the schematic flow sheet of implementation method that controls of wearable device;
Fig. 2 is that the present invention can the structural representation of implement device that controls of wearable device;
Fig. 3 is that the present invention can the structural representation of implement device embodiment one determination module that controls of wearable device;
Fig. 4 is that the present invention can the structural representation of implement device embodiment two determination module that controls of wearable device;
Fig. 5 is that the present invention can the structural representation of implement device embodiment three determination module that controls of wearable device;
Fig. 6 is that the present invention can the structural representation of implement device embodiment four determination module that controls of wearable device;
Fig. 7 is that the present invention can the structural representation of implement device embodiment one information storage module that controls of wearable device;
Fig. 8 is that the present invention can the structural representation of implement device embodiment two information storage module that controls of wearable device.
Detailed description of the invention
Be described below in detail embodiments of the invention, the example of described embodiment is shown in the drawings, and wherein same or similar label represents same or similar element or has element that is identical or similar functions from start to finish.Being exemplary below by the embodiment be described with reference to the drawings, only for explaining the present invention, and can not limitation of the present invention being interpreted as.
Those skilled in the art of the present technique are appreciated that unless expressly stated, and singulative used herein " ", " one ", " described " and " being somebody's turn to do " also can comprise plural form.Should be further understood that, the wording used in description of the present invention " comprises " and refers to there is described feature, integer, step, operation, element and/or assembly, but does not get rid of and exist or add other features one or more, integer, step, operation, element, assembly and/or their group.Should be appreciated that, when we claim element to be " connected " or " coupling " to another element time, it can be directly connected or coupled to other elements, or also can there is intermediary element.In addition, " connection " used herein or " coupling " can comprise wireless connections or wirelessly to couple.Wording "and/or" used herein comprises one or more whole or arbitrary unit listing item be associated and all combinations.
Those skilled in the art of the present technique are appreciated that unless otherwise defined, and all terms used herein (comprising technical term and scientific terminology), have the meaning identical with the general understanding of the those of ordinary skill in field belonging to the present invention.It should also be understood that, those terms defined in such as general dictionary, should be understood to that there is the meaning consistent with the meaning in the context of prior art, unless and by specific definitions as here, otherwise can not explain by idealized or too formal implication.
Those skilled in the art of the present technique are appreciated that, here used " terminal ", " terminal unit " had both comprised the equipment of wireless signal receiver, it only possesses the equipment of the wireless signal receiver without emissivities, comprise again the equipment receiving and launch hardware, it has and on bidirectional communication link, can perform the reception of two-way communication and launch the equipment of hardware.This equipment can comprise: honeycomb or other communication equipments, its honeycomb or other communication equipment of having single line display or multi-line display or not having multi-line display; PCS (PersonalCommunicationsService, PCS Personal Communications System), it can combine voice, date processing, fax and/or its communication ability; PDA (PersonalDigitalAssistant, personal digital assistant), it can comprise radio frequency receiver, pager, the Internet/intranet access, web browser, notepad, calendar and/or GPS (GlobalPositioningSystem, global positioning system) receptor; Conventional laptop and/or palmtop computer or other equipment, it has and/or comprises the conventional laptop of radio frequency receiver and/or palmtop computer or other equipment.Here used " terminal ", " terminal unit " can be portable, can transport, be arranged in the vehicles (aviation, sea-freight and/or land), or be suitable for and/or be configured at local runtime, and/or with distribution form, any other position operating in the earth and/or space is run.Here used " terminal ", " terminal unit " can also be communication terminal, access terminals, music/video playback terminal, can be such as PDA, MID (MobileInternetDevice, mobile internet device) and/or there is the mobile phone of music/video playing function, also can be the equipment such as intelligent television, Set Top Box.
Those skilled in the art of the present technique are appreciated that used remote network devices here, and it includes but not limited to the cloud that computer, network host, single network server, multiple webserver collection or multiple server are formed.At this, cloud is formed by based on a large amount of computer of cloud computing (CloudComputing) or the webserver, and wherein, cloud computing is the one of Distributed Calculation, the super virtual machine be made up of a group loosely-coupled computer collection.In embodiments of the invention, realize communicating by any communication mode between remote network devices, terminal unit with WNS server, include but not limited to, the mobile communication based on 3GPP, LTE, WIMAX, the computer network communication based on TCP/IP, udp protocol and the low coverage wireless transmission method based on bluetooth, infrared transmission standard.
The method of the invention is mainly applicable to intelligent mobile phone terminal or Intelligent flat terminal etc., is not restricted to the type of its operating system, can be the operating systems such as Android, IOS, Saipan.In order to illustrate of the present invention can the detailed implementation of implementation method that controls of wearable device, refer to Fig. 1, the method comprises the following steps:
S11, obtain the data that detect of EGC sensor to determine heart rate value, obtain data that acceleration transducer detects to determine movement parameter simultaneously.
EGC sensor at least comprises electrode, amplifying circuit, communication module and power supply four parts.Sensing electrode, for obtaining user's signal of telecommunication, due to this signal very faint (the microvolt order of magnitude), therefore needs follow-up amplifying circuit to amplify.Certainly, be many-sided in fact to the requirement of this amplifying circuit, such as, low noise, high input impedance, low-power consumption etc.Amplifying circuit gained analogue signal, in order to realize linking up with computer system, needs to carry out reprocessing.This process, except digital-to-analog conversion (ADC), also will pass through the processes such as data compression, radio communication and radio frequency, and the realization part of this function is referred to as communication module.Certainly, each functional module needs power module to support.Detected the heart rate of user by EGC sensor, obtain the heart rate value of user.
Acceleration transducer is a kind of electronic equipment can surveying acceleration, and acceleration can be a constant, also can be variable, in accelerator, namely act on the power on object when object.Acceleration transducer can be 3-axis acceleration sensor, the sensed data of acceleration transducer can comprise the acceleration information of three axis, the such as acceleration information of X-axis, Y-axis and Z axis three axis: the direction of X-axis is along horizontal direction from left to right, i.e. abscissa; The direction of Y-axis vertically points to top from initial point, i.e. ordinate; The direction of Z axis is from front to back, i.e. high coordinate.The sensed data of acceleration transducer may be not merely the sensed data in a certain moment, and can be include the sensed data in a certain duration.Detected the velocity variations of user by acceleration transducer, obtain the movement parameter of user.
Common can wearable device can be used for measuring the calorie that people consume, the distance calculating people's walking, and some also has functions such as detecting people's sleep quality.From functional perspective, wearable device can realize some functions although existing, relative to more single professional intellectual ability equipment, the specific more requirements in a certain respect of user cannot be met; And from technical standpoint, wearable device can generally adopt super low-power consumption Bluetooth technology, MEMS micro machine technology, microminiature vibrations motor, acceleration of gravity and direction sensor, but not there is the technology of understanding user's changes in heart rate in depth, thus can not determine the hobby of user to residing environment according to user's changes in heart rate, thus realize user's body condition monitoring and judge the function that user likes residing environment.
Whether S12, judgement heart rate value, movement parameter mate with pre-conditioned.
Pre-conditionedly can comprise the sight configuration data being pre-stored in local storage medium, sight configuration data is for determining the movement scenarios of terminal.Sight configuration data can comprise the acceleration information of three axis pre-set, the acceleration information of X-axis, Y-axis and Z axis three axis such as preset.The sensed data sensed when acceleration transducer meets default sight configuration data (can be such as be in a scope), is namely judged as that sensed data meets pre-conditioned.
Sight configuration data for determining the movement scenarios of terminal, such as determine terminal use static, walking, run, jump movement scenarios.Comprise the acceleration information of three axis pre-set for sight configuration data, such as sight configuration data comprises the acceleration information of default X-axis, Y-axis and Z axis three axis.Typically, user is when walking, running, jump etc. have the motion of certain rule, and the acceleration transducer in terminal correspondingly can detect the sensed data of rule.Certainly, the sensed data of this rule also needs on the embody rule in conjunction with terminal, if terminal is wearable device (such as Intelligent bracelet, intelligent watch), the sensed data that can there is rule is gone characterizing consumer in walking, runs, jumped; If terminal is intelligent terminal (such as smart mobile phone), the sensed data that also can there is other rule is gone characterizing consumer in walking, runs, is jumped.
Therefore, can arrange and organize sight configuration data for determining the movement scenarios of terminal more, such as many group sight configuration datas determine that terminal use is at static, walking, running, jump etc. movement scenarios respectively.Meet the wherein one group of sight configuration data in sight configuration data when the sensed data of acceleration transducer, then can judge that terminal use is carrying out the corresponding motion of this group sight configuration data.
In the implementation method that controls of wearable device, pre-conditionedly following several situation can be included but not limited to of the present invention:
Wherein, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, being considered as matching with pre-conditioned, judging that user is in the mental status of setting thus.
Namely when EGC sensor detects that the heart rate value of user is greater than the threshold value preset, and, when the movement parameter that acceleration transducer detects is less than or equal to the threshold value preset, then this kind of situation is considered as matching with pre-conditioned, judges that user is now in the mental status of setting thus.
Wherein, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus.
Namely when EGC sensor detects that the movement parameter that the heart rate value of user and acceleration transducer detect all is greater than the threshold value preset, then this kind of situation is considered as matching with pre-conditioned, judges that user is now in the kinestate of setting thus.
Wherein, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
Namely when acceleration transducer detects that the movement parameter of user is always in steady statue, and EGC sensor detects that suddenly the heart rate value of user there occurs suddenly change, then this kind of situation is considered as matching with pre-conditioned, judges that user is now in the mental status of setting thus.
Wherein, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.
Namely when EGC sensor detects that the heart rate value of user is always in steady statue, and acceleration transducer detects that suddenly the movement parameter of user there occurs suddenly change, then this kind of situation is considered as matching with pre-conditioned, judges that user is now in the kinestate of setting thus.
S13, when heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
The User Activity parameter that the user's heart rate value detected once EGC sensor and acceleration transducer detect meets above-mentioned pre-conditioned, then send prompting message by remote interface.
Because each application program operates in the process space of oneself, and another service processes can be run from application program UI, and often can transmit object between different processes.In Android platform, a process can not access the memory headroom of another process usually, so want dialogue, needs object to be resolved into the understandable elementary cell of operating system, and orderly passes through processing border.It is tedious for realizing this data transmission procedure by code, and Android provides this work of AIDL tool for processing.
AIDL (AndroidInterfaceDefinitionLanguage) is a kind of IDL language, for generating the code that can carry out interprocess communication (IPC) in Android device between two processes.If (such as Activity) will call the operation of (such as Service) object in another process in a process, AIDL just can be used to generate the parameter of serializability.
AIDLIPC mechanism towards interface, as COM or Corba, but lightweight more, it uses proxy class in client and realizes end and transmit data.Needed to client exposed interface after the realization completing interface, namely issuing service, the method for realization inherits Service, then realizes returning with Service.onBind (Intent) class object that achieves interface.
By step S11, S12 and S13, obtain the data that detect of EGC sensor to determine heart rate value, obtain data that acceleration transducer detects to determine movement parameter simultaneously; Whether judgement heart rate value, movement parameter mate with pre-conditioned; When heart rate value and movement parameter meet pre-conditioned, prompting message is sent by remote interface, realize user's body condition monitoring and judge the function that user likes residing environment, be different from the function singleness existed on the market cannot judge user to residing environment like can wearable device.And the following several situation of setting: when detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, being considered as matching with pre-conditioned, judging that user is in the mental status of setting thus; When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus; When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus; When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus; Adopt the different conditions of this kind of mode to user to judge, novel in design, unique, better effects if be different from the function singleness existed on the market cannot judge user to residing environment like can wearable device realize.
Wherein, in certain time interval, obtain heart rate value and movement parameter.
For the operation law of EGC sensor and acceleration transducer, detect the heart rate value of user except EGC sensor can be set always, acceleration transducer detects outside the movement parameter of user always, EGC sensor and acceleration transducer can also be set as that (such as five seconds) are detected the state of user in certain time interval.
In addition, can the Consumer's Experience of wearable device in order to better improve, and play the effect of economize on electricity, can limit EGC sensor, acceleration transducer: suspend the heart rate value that EGC sensor detects user, set acceleration transducer detecting the movement parameter of user simultaneously always, to be checked measure the changing value of movement parameter within the scope of certain hour reach setting threshold value time, then start EGC sensor, the heart rate value of user is detected by EGC sensor, obtain the HR values of user, then user's state is now judged; In addition, the movement parameter that acceleration transducer detects user can also be suspended, set EGC sensor detecting the heart rate value of user simultaneously always, to be checked measure the changing value of heart rate value within the scope of certain hour reach setting threshold value time, then starting loop sensor, detected the movement parameter of user by acceleration transducer, obtain the movement parameter of user, then user's state is now judged.
Wherein, when the changing value of described movement parameter reaches setting threshold value, the enabled instruction of response EGC sensor, obtains heart rate value.
Wherein, when the changing value of described heart rate value reaches setting threshold value, the enabled instruction of response acceleration sensor, obtains movement parameter.
Wherein, described when heart rate value and movement parameter meet pre-conditioned, sent the step of prompting message by remote interface, be specially:
When heart rate value and movement parameter meet pre-conditioned, send prompting message to mobile terminal by Bluetooth signal.
Bluetooth be a kind of wireless technology standard, fixing device can be realized, short-range data between mobile device and building personal area network exchanges (the UHF radio wave using the ISM wave band of 2.4-2.485GHz).Bluetooth uses frequency hopping, and the Data Segmentation of transmission is become packet, and the bluetooth channel of being specified by 79 transmits packet respectively.The frequency range of each channel is 1MHz, and bluetooth 4.0 uses 2MHz spacing, can hold 40 channels.First channel starts from 2402MHz, and every 1MHz channel, to 2480MHz.There is adaptive frequency hopping (AdaptiveFrequency-Hopping is called for short AFH) function, usual jumping per second 1600 times.Bluetooth is based on packet, the agreement having client/server.Main equipment at the most can with seven in same piconet from device talk.All devices shares the clock of main equipment.Base clock that packet switch defines based on main equipment, that run for interval with 312.5 μ s.Two clock cycle form the groove of 625 μ s, and when two, gap just constitutes the gap pair of 1250 μ s.Under the simple scenario of single cavity package, main equipment sends information at even numbers groove, odd number groove is received information.Then just in time contrary from equipment.Gap when package capacity is 1,3 or 5, but no matter be which kind of situation, main equipment all can transmit from even numbers groove, transmits from odd number groove from equipment.
Bluetooth technology is a kind of wireless data of opening and the equipment of information transmission, is a kind of short range transmission equipment utilizing wireless replacement wire cable.The data transmission utilizing bluetooth to carry out, data transmission can be carried out (applying except few broadcast mode) at any time between main equipment and other equipment.Main equipment can select to access from equipment; Typically, it can between devices with the mode rapid translating of rotating.Because be main equipment select to access from equipment, will await orders in receiving slit from equipment in theory, the burden of main equipment is than fewer from equipment.Main equipment can be connected from equipment with seven, but is but difficult to be connected with more than one main equipment from equipment.
Realize the method for Bluetooth data transfer: joined by Bluetooth communication modules in data detection instrument, every user data that so just can realize detecting is transferred to the intelligent android system equipment end opening bluetooth port in the mode of electric wave.Because mobile terminal can scan neighbouring a lot of equipment, so need to confirm that device port carries out data transmission again.Corresponding reception interface can be opened when mobile terminal receives data simultaneously, thus realize the display of data.
Except adopting Bluetooth technology to send prompting message to except mobile terminal, according to actual needs, other wired and/or wireless mode, such as GPRS, WIFI, ZIGBEE etc. also can be adopted.Communication between wearable device and mobile terminal automatically can select communication channel according to the size of data, the communication of both realizations data is smooth.
Wherein, described when heart rate value and movement parameter meet pre-conditioned, send prompting message in the step of mobile terminal by Bluetooth signal:
The associated user bound with this wearable device is sent to after prompting message being carried out format process.
HTTPS (full name: HyperTextTransferProtocoloverSecureSocketLayer), take safety as the HTTP passage of target, it is briefly the safe version of HTTP, namely SSL layer is added under HTTP, the foundation for security of HTTPS is SSL, and the detailed content of therefore encrypting just needs SSL.It is a URIscheme (abstract identifier system), and syntax is http roughly the same: system, and the HTTP data for safety are transmitted.Https:URL shows to it use HTTP, but HTTPS exists the default port and the encryption/authentication layer (between HTTP and TCP) that are different from HTTP.
HTML (Hypertext Markup Language) http protocol is used to transmission of information between Web browser and Website server.Http protocol sends content with clear-text way, the data encryption of any mode is not provided, if assailant has intercepted the message transmission between Web browser and Website server, just directly can understand information wherein, therefore http protocol is not suitable for transmitting some sensitive informations, such as credit number, password etc.In order to solve this defect of http protocol, need to use another kind of agreement: security socket layer HTML (Hypertext Markup Language) HTTPS.In order to the safety of data transmission, HTTPS adds ssl protocol on the basis of HTTP, and SSL relies on certificate to carry out the identity of authentication server, and is the communication encryption between browser and server.Therefore, of the present invention can wearable device control implementation method and device in, adopt encrypted tunnel information is transmitted, ensure that the use safety of user.
OAuth (open mandate) is an open standard, user is allowed to allow third-party application access the resource of the secret that this user stores on a certain website (as photo, video, contacts list), and without the need to username and password is supplied to third-party application.OAuth2.0 pays close attention to the simplification of client developer, is Web application simultaneously, desktop application and mobile phone, and living room equipment provides special identifying procedure.With intelligent mobile terminal---hands machine, mobile phone and can be example by Bluetooth-mode communication between wearable device, the step realizing binding between mobile phone and bracelet is as follows: first, mobile phone detects can the Bluetooth signal intensity rssi of wearable device, the relatively value of rssi and initializing signal intensity threshold SIT, if rssi is more than or equal to the threshold value preset, (threshold value also can by user's self-defined setting as required, in order to by mobile phone and can the communication distance between wearable device control as far as possible little of to ensure channel safety, what threshold value can be arranged is larger), then continue initialization procedure, enter next step, afterwards, in conjunction with can produce can the exclusive identification code of wearable device the address of wearable device, read can the current time of wearable device simultaneously, and MAC (MediaAccessControl, the medium access control) address of wearable device, identification code and the data of time can send to mobile phone, mobile phone receives and after the information that sends of wearable device, first Check-Out Time, then simultaneously in conjunction with the exclusive identification code of the generation mobile phone terminal of mobile phone, can read the time of current phone, and be encrypted information, and issuing can wearable device, wearable device can receive mobile phone after the message sent, first Check-Out Time, then decipher the message received, then judge can the identification code of wearable device whether equal with the identification code of mobile phone terminal, if namely equal, return the successful message of initialization to mobile phone, after successful initialization, namely realizing can binding between wearable device and mobile phone.
Realizing mobile phone and can after the initialization between wearable device binds; need to access the protected information (privacy information in mobile phone user; by user, labelling can be set voluntarily) time; people can utilize the parameters for authentication that can store in wearable device to carry out certification to mobile phone, thus realize convenient, safe access control.
In practical implementations, after user accesses to your account name and password successful log, will demonstrate described that terminal gets can wearable device list.Can include in wearable device list can the binding state of wearable device and active user's account, wherein, when binding state is for binding, namely describedly can wearable device and active user's account to bind, then can represent in wearable device list can the current operating state of wearable device, such as: whether intelligent camera is opened, whether automatic alarm starts.When binding state is not for binding, wearable device and active user's account can not bind, then can present the labelling do not bound in wearable device list, humanizedly, can for wearable device the button of " binding " can be provided, so as user can a key binding is described can wearable device.Except the button by pressing " binding ", can also according to actual needs, adopt the modes such as phonetic entry, realize terminal unit with can the binding of wearable device.
Get for described can after the binding instruction of wearable device, terminal can wearable device and active user's account be bound.In the implementation, terminal can send carry can the bind request of wearable device information and active user's accounts information to service end, such as: terminal is carried in bind request can the device id of wearable device and the account name of active user's account, service end is after receiving this bind request, preservation can the binding relationship of the device id of wearable device and the account name of active user's account, and the message of binding success is returned to terminal, terminal and then can also after receiving the message of binding success, prompting user binding success, and upgrade can the binding state of wearable device in wearable device list.
Wherein, described when heart rate value and movement parameter meet pre-conditioned, sent in the step of prompting message by remote interface:
Prompting message after process is stored.
Wherein, be stored in can wearable device the machine for described prompting message.
Wherein, described prompting message is stored in cloud server.
Android provides following four kinds of storage modes: SharePreference, SQLite, File, ContentProvider.Data in android system are substantially all privately owned, under generally leaving " data/data/ program package name " catalogue in.If realize data sharing, correct mode uses ContentProvider.
SharedPreference is a kind of light-duty data storage method, is actually " key-value " key-value pair data stored based on XML file.Be commonly used to more stored program configuration informations.It is stored in " under data/data/ program package name/shared_prefs catalogue.SharedPreference itself can only obtain data, does not support to store and amendment, stores and revises and will be realized by Editor object.SQLite is a lightweight relevant database, and SQLite only has NULL, INTEGER, REAL (floating number), TEXT (character string) and BLOB (large data) five types, there is not BOOLEAN and DATE type.File is file storing mode.ContentProvider is complicated relative to other Method compare, and its function is also revolutionary change relative to other mode certainly.It can realize across application between data manipulation.Utilize the methods such as delete, update, insert, query of ContentResolver object to remove to grasp the object of ContentProvider, allow the method for ContentProvider object go data manipulation.
Lower SQLiteDatabase is introduced at this, encapsulate the API of certain operations data base, use such can to carry out adding (Create), inquiry (Retrieve), upgrade (Update) and delete (Delete) operation by complete paired data.In order to realize managing database version, SQLiteOpenHelper class provides two important methods, onCreate (SQLiteDatabasedb) and onUpgrade (SQLiteDatabasedb respectively, intoldVersion, intnewVersion), the former generates database table for using for the first time during software, upgrades database table structure when the latter is used for upgrade software.When getWritableDatabase or the getReadableDatabase method calling SQLiteOpenHelper obtains the SQLiteDatabase example for operating database time, if data base does not exist, android system can generate a data base automatically, then onCreate method is called, onCreate method just can be called when first generation data base, can generate database table structure and add some to apply the initialization data used in onCreate method.
Terminal unit generally can comprise communication unit, the memorizer including one or more computer-readable recording mediums, input block, display unit, sensor, voicefrequency circuit, WiFi module, include the parts such as processor and power supply that more than or processes core.Communication unit can be used for receiving and sending messages or in communication process, the reception of signal and transmission, this communication unit can be the network communication equipments such as RF (RadioFrequency, radio frequency) circuit, router, modem.Especially, when communication unit is RF circuit, after being received by the downlink information of base station, transfer to more than one or one processor process; In addition, base station is sent to by relating to up data.Usually, RF circuit as communication unit includes but not limited to antenna, at least one amplifier, tuner, one or more agitator, subscriber identity module (SIM) card, transceiver, bonder, LNA (LowNoiseAmplifier, low-noise amplifier), duplexer etc.In addition, communication unit can also by radio communication and network and other devices communicatings.Described radio communication can use arbitrary communication standard or agreement, include but not limited to GSM (GlobalSystemofMobilecommunication, global system for mobile communications), GPRS (GeneralPacketRadioService, general packet radio service), CDMA (CodeDivisionMultipleAccess, CDMA), WCDMA (WidebandCodeDivisionMultipleAccess, WCDMA), LTE (LongTermEvolution, Long Term Evolution), Email, SMS (ShortMessagingService, Short Message Service) etc.Memorizer can be used for storing software program and module, and processor is stored in software program and the module of memorizer by running, thus performs the application of various function and date processing.Memorizer mainly can comprise storage program district and store data field, and wherein, storage program district can store operating system, application program (such as sound-playing function, image player function etc.) etc. needed at least one function; Store data field and can store the data (such as voice data, phone directory etc.) etc. created according to the use of terminal unit.In addition, memorizer can comprise high-speed random access memory, can also comprise nonvolatile memory, such as at least one disk memory, flush memory device or other volatile solid-state parts.Correspondingly, memorizer can also comprise Memory Controller, to provide processor and input block to the access of memorizer.
Wherein, this method also comprises subsequent step:
Long-distance user is for the delete instruction of specific prompting message in response, deletes specific prompting message.
At present, editable text (EditText) control general on Android system, the soft keyboard that the system of employing provides is to obtain user's input and to be presented in the middle of control by input content.When user want to delete input content time, need to be deleted singly by the delete button on soft keyboard, but when user has inputted more word and has thought that all deletion is re-entered, to have to the delete button repeatedly triggered on soft keyboard, make the requirement of word processing ease for use on user's handheld device more and more higher.User can pass through entirely to select disposable deletion input content in PC, but this operation is not very convenient in mobile terminal.At present in mobile terminal, had and increased a button control that can click by the appropriate location in editable text control, the click event monitoring Button control deletes the implementation of content.To in the research and practice process of prior art, inventor finds to there is following problem in prior art: each needs use the layout can deleting text edit box needs definition EditText and Button two controls, need the click of registering Button control to monitor simultaneously, thus make control layout complexity loaded down with trivial details; Further, two different controls are superimposed, and need the suitability considering the many picture element densities of multiresolution, thus cause implementation feasible on a certain station terminal, and may face the problem of layout entanglement on another station terminal.
Therefore, whether the present invention can adopt judging unit to listen to by monitoring unit the touch point that screen touch event judges that user inputs to be in the region of the delete button that display unit is shown, content processing unit, when this touch point is in the region of this delete button, deletes the specific prompting message that user specifies.For using the layout can deleting text edit box can only need to define a kind of editable text control, thus the complexity that can simplify control layout is loaded down with trivial details, and can the many picture element densities of multiresolution of adaptive multiple terminal unit.In addition, the accuracy deleting the operation of specific prompting message can be improved, thus strengthen Consumer's Experience.
Under the prompting message of long-distance user generally can leave getCacheDir or getExternalCacheDir path in, the delete instruction of response user, empties the specific prompting message stored under above-mentioned path.For sending and being stored to the prompting message of remote user terminals equipment, according to the actual needs of user, the delete instruction of long-distance user for specific prompting message can be responded, delete specific prompting message.As for specific prompting message, can be defined as the prompting message not had reserve value, reference value etc., long-distance user is by delete instruction, and one is the data that can upgrade in time, and two is can expand tag memory in good time.
Wherein, described can wearable device be intelligent watch, Intelligent bracelet or intelligent glasses.
With it namely wearable device be directly through, or the clothes of user or a kind of portable set of accessory can be incorporated into.Can wearable device be not only a kind of hardware device, realize powerful function alternately by software support and data interaction, high in the clouds especially, wearable device can will bring very large transformation to the life of people, perception.Can wearable device mainly with possessing part computing function, the portable accessory form of mobile phone and each Terminal Type can be connected exist, it is the product such as wrist-watch, wrist strap supported that the product form of main flow comprises with wrist, with foot be support other lower limb such as footwear, socks on wearable product, take head as the glasses, the helmet etc. that support, also comprise all kinds of non-mainstream product form such as intelligent clothing, school bag, crutch, accessories.In the present embodiment, wearable device intelligent watch, Intelligent bracelet or intelligent glasses can be included but not limited to.
Refer to Fig. 2 to Fig. 8, the present invention can the implement device that controls of wearable device, comprising: acquisition module 11, determination module 12, sending module 13, presetting module 14, mobile terminal receiver module 15, message processing module 16, information storage module 17, removing module 18, first start module 19 and second and start module 20.
The function of above-mentioned each module is as follows:
Acquisition module 11: obtain the data that detect of EGC sensor to determine heart rate value, obtains data that acceleration transducer detects to determine movement parameter simultaneously;
Determination module 12: whether judgement heart rate value, movement parameter mate with pre-conditioned;
Sending module 13: when heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
Presetting module 14: in certain time interval, obtains heart rate value and movement parameter.
Mobile terminal receiver module 15: when heart rate value and movement parameter meet pre-conditioned, sends prompting message to mobile terminal by Bluetooth signal.
Message processing module 16: be sent to the associated user bound with this wearable device after prompting message being carried out format process.
Information storage module 17: the prompting message after process is stored.
Removing module 18: long-distance user is for the delete instruction of specific prompting message in response, deletes specific prompting message.
First starts module 19: when the changing value of described movement parameter reaches setting threshold value, and the enabled instruction of response EGC sensor, obtains heart rate value.
Second starts module 20: when the changing value of described heart rate value reaches setting threshold value, and the enabled instruction of response acceleration sensor, obtains movement parameter.
Wherein, described determination module 12 also comprises: first detection module 21: when detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, is considered as matching with pre-conditioned, judges that user is in the mental status of setting thus.
Wherein, described determination module 12 also comprises: the second detection module 22: when detecting that heart rate value and movement parameter are all greater than setting threshold value, be considered as matching with pre-conditioned, judges that user is in the kinestate of setting thus.
Wherein, described determination module 12 also comprises: the 3rd detection module 23: when detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
Wherein, described determination module 12 also comprises: the 4th detection module 24: when detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.
Wherein, described information storage module 17 also comprises: the first memory module 25: described prompting message is stored in can wearable device the machine.
Wherein, described information storage module 17 also comprises: the second memory module 26: described prompting message is stored in cloud server.
The present invention by acquisition module, obtains data that EGC sensor detects to determine heart rate value, obtains data that acceleration transducer detects to determine movement parameter simultaneously; Again by determination module, whether judgement heart rate value, movement parameter mate with pre-conditioned; When the heart rate value that measures to be checked and movement parameter meet pre-conditioned, prompting message is sent by remote interface through sending module, realize user's body condition monitoring and judge the function that user likes residing environment, be different from the function singleness existed on the market cannot judge user to residing environment like can wearable device.
Of the present invention can the implementation method that controls of wearable device and the embody rule of device as follows: user can in the process of wearable device in use, this wearable device can detect heart rate value and the movement parameter of user, by data processing circuit according to the account form preset, calculate different exercise datas; And User Status is mated: such as, when detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, being considered as matching with pre-conditioned, judging that user is in the mental status of setting thus; When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus; When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus; When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.After data when meeting pre-conditioned being processed, by remote interface, such as Bluetooth signal etc., send prompting message to mobile terminal.Be sent to the associated user of this wearable device binding after prompting message being carried out format process, and stored by this prompting message, can be stored in can wearable device the machine, also can be stored in cloud server.In addition, for some specific prompting messages, the delete instruction of long-distance user can be responded, delete specific prompting message.
The above is only some embodiments of the present invention; it should be pointed out that for those skilled in the art, under the premise without departing from the principles of the invention; can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.

Claims (10)

1. can wearable device control an implementation method, it is characterized in that, comprise the following steps:
Obtain the data that detect of EGC sensor to determine heart rate value, obtain data that acceleration transducer detects to determine movement parameter simultaneously;
Whether judgement heart rate value, movement parameter mate with pre-conditioned;
When heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
2. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value is greater than setting threshold value, and when movement parameter is less than or equal to setting threshold value, being considered as matching with pre-conditioned, judging that user is in the mental status of setting thus.
3. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value and movement parameter are all greater than setting threshold value, being considered as matching with pre-conditioned, judging that user is in the kinestate of setting thus.
4. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that movement parameter keeps stable, and heart rate value sudden change, be considered as matching with pre-conditioned, judge that user is in the mental status of setting thus.
5. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that, at described judgement heart rate value, movement parameter whether with pre-conditioned step of mating:
When detecting that heart rate value keeps stable, and movement parameter sudden change, be considered as matching with pre-conditioned, judge that user is in the kinestate of setting thus.
6. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that:
In certain time interval, obtain heart rate value and movement parameter.
7. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that, described when heart rate value and movement parameter meet pre-conditioned, by remote interface transmission prompting message step, be specially:
When heart rate value and movement parameter meet pre-conditioned, send prompting message to mobile terminal by Bluetooth signal.
8. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that:
When the changing value of described movement parameter reaches setting threshold value, the enabled instruction of response EGC sensor, obtains heart rate value.
9. according to claim 1 a kind of can wearable device control implementation method, it is characterized in that:
When the changing value of described heart rate value reaches setting threshold value, the enabled instruction of response acceleration sensor, obtains movement parameter.
10. can wearable device control an implement device, it is characterized in that, comprising:
Acquisition module: obtain the data that detect of EGC sensor to determine heart rate value, obtains data that acceleration transducer detects to determine movement parameter simultaneously;
Determination module: whether judgement heart rate value, movement parameter mate with pre-conditioned;
Sending module: when heart rate value and movement parameter meet pre-conditioned, send prompting message by remote interface.
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