WO2016107257A1 - 可穿戴设备的屏幕的显示方法及可穿戴设备 - Google Patents
可穿戴设备的屏幕的显示方法及可穿戴设备 Download PDFInfo
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- WO2016107257A1 WO2016107257A1 PCT/CN2015/092943 CN2015092943W WO2016107257A1 WO 2016107257 A1 WO2016107257 A1 WO 2016107257A1 CN 2015092943 W CN2015092943 W CN 2015092943W WO 2016107257 A1 WO2016107257 A1 WO 2016107257A1
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Definitions
- the present invention relates to electronic device technologies, and in particular, to a display method of a screen of a wearable device and a wearable device.
- wearable device intelligent technology there are more and more types of wearable devices, and various functions are becoming more and more powerful, such as watches, bracelets, glasses, rings, smart necklaces and the like.
- An existing wearable device such as a watch or a wristband, the display area of the device screen is located at a fixed position on the watch or the wristband, and the display area occupies the entire display screen, and the user is required when the user needs to view the display content of the display area. Manually adjust the display area to a suitable location within the user's line of sight, affecting the user's experience.
- the embodiment of the invention provides a display method of a screen of a wearable device and a wearable device, which solves the problem that the user needs to manually adjust the display area repeatedly when viewing the display content of the screen.
- a display method of a screen of a wearable device comprising: determining a location of a display area of the screen according to an operation mode of a user viewing the current content displayed by the screen, wherein the displaying The area is a partial area of the screen, and the operation mode includes specifying a display The area operates and automatically identifies one of the display area operations; the display area is illuminated at the location of the display area to display the current content.
- the specified display area operation comprises: clicking the screen at a target display position; the automatically identifying the display area operation comprises: at the screen Clicking on the screen, pressing the screen display button, hanging the gesture operation, shaking or tilting the wearable device to set the number of times, the movement track of the wearable device reaches a defined track range and the dwell time at the end of the movement is reached.
- the time is set, or the acceleration of the wearable device is determined to reach a defined threshold and the dwell time at the end of the movement reaches a set time.
- determining the position of the display area of the screen includes: determining a rotation angle of the wearable device; determining according to the first correspondence relationship between the rotation angle and the movement amount of the display area and the reference display area a position of the display area, wherein the first correspondence relationship is a correspondence between the rotation angle and a continuous mapping of the movement amount of the display area or a first threshold value reached by the rotation angle corresponds to the display The relationship of the first fixed value of the amount of movement of the area.
- the screen display when the operation mode is the automatic identification display area operation, the screen display is viewed according to a user
- the operation mode of the current content determining the position of the display area of the screen, comprising: determining an arc length of the rotation track of the wearable device; according to an arc length of the rotation track and a movement amount of the display area And determining, by the second correspondence relationship and the reference display area, the position of the display area, wherein the second correspondence is a correspondence between the arc length of the rotation track and a continuous mapping of the movement amount of the display area or the rotation
- the second threshold value reached by the arc length of the trajectory corresponds to a correspondence relationship between the movement amount of the display area and the second fixed value.
- determining the location of the display area of the screen includes: determining the location of the display area according to the set display area size centering on the user click location.
- the method further includes: lighting the display area at a position of the display area Before displaying the current content, the method further includes: determining a left-right hand mode of the wearable device according to a direction of a movement track of the wearable device, a left-hand mode of the wearable device, displaying the current direction in a first direction Content; a right hand mode of the wearable device, displaying the current content in a second direction.
- the display area is illuminated at a position of the display area to display the current content
- the method includes: when the display space occupied by the current content does not exceed the display area, the current content switches the page according to the movement of the display area; when the display space occupied by the current content exceeds the display area, And displaying at least part of the remaining content of the current content along with the movement of the display area.
- the display area is illuminated at a position of the display area to display the current content Thereafter, the method further includes calibrating the position of the display area based on a calibration signal generated by a user operation.
- the second aspect provides a wearable device, where the wearable device includes: a location determining module, configured to determine a location of a display area of the screen according to an operation mode of a user viewing the current content displayed by the screen, where The display area is a partial area of the screen, and the operation manner includes Designating one of a display area operation and an automatic recognition display area operation; a display control module for lighting the display area at the position of the display area to display the current content.
- a location determining module configured to determine a location of a display area of the screen according to an operation mode of a user viewing the current content displayed by the screen, where The display area is a partial area of the screen, and the operation manner includes Designating one of a display area operation and an automatic recognition display area operation
- a display control module for lighting the display area at the position of the display area to display the current content.
- the specified display area operation comprises: clicking the screen at a target display position; the automatically identifying the display area operation comprises: at the screen Clicking on the screen, pressing the screen display button, hanging the gesture operation, shaking or tilting the wearable device to set the number of times, the movement track of the wearable device reaches a defined track range and the dwell time at the end of the movement is reached.
- the time is set, or the acceleration of the wearable device is determined to reach a defined threshold and the dwell time at the end of the movement reaches a set time.
- the location determining module determines the The rotation angle of the wearable device determines the position of the display area according to the first correspondence relationship between the rotation angle and the movement amount of the display area and the reference display area, wherein the first correspondence relationship is the rotation angle and the A correspondence relationship of the continuous mapping of the movement amount of the display area or a first threshold value reached by the rotation angle corresponds to a correspondence relationship of the first fixed value of the movement amount of the display area.
- the location determining module determines the Determining an arc length of a rotation trajectory of the wearable device, determining a position of the display area according to a second correspondence relationship between an arc length of the rotation trajectory and a movement amount of the display area, and a reference display area; wherein the second Corresponding relationship is a correspondence between a arc length of the rotation trajectory and a continuous mapping of the movement amount of the display area or a second threshold value of an arc length of the rotation trajectory corresponding to a movement amount of the display area is a second The correspondence between fixed values.
- the location determining module is a user
- the click position is centered, and the position of the display area is determined according to the set display area size.
- the wearable device further includes a pattern recognition module, Determining a left-right hand pattern of the wearable device, wherein a left-hand mode of the wearable device displays the current content in a first direction; a right-hand mode of the wearable device The second direction displays the current content.
- the display control module determines that the display space occupied by the current content does not exceed the display a region, controlling the current content to switch pages according to the movement of the display area; the display control module determines that the display space occupied by the current content exceeds the display area, and controls movement of the display area to extend the display At least part of the remaining content of the current content.
- the wearable device further includes a calibration module, where the calibration module is generated according to a user operation Calibrate the signal to calibrate the position of the display area.
- a wearable device comprising at least one processor, a display screen and an input unit, wherein the display screen and the input unit are coupled to the processor via a data bus; the input The unit receives an operation of the user viewing the current content displayed by the display screen, and the processor determines a location of the display area of the display screen according to an operation mode of the user viewing the current content displayed by the display screen, where The display area is a partial area of the screen, the operation mode includes one of specifying a display area operation and automatically recognizing a display area operation; the processor controls the display screen to light up at a position of the display area The display area is displayed to display the current content.
- the designated display area The domain operation includes: clicking the screen at the target display location; the automatically identifying the display region operation comprises: clicking the screen at any position of the screen, pressing a screen display button, a dangling gesture operation, shaking or tilting
- the number of times the wearable device is set the movement trajectory of the wearable device reaches a defined trajectory range and the dwell time at the end of the movement reaches a set time, or the acceleration of the wearable device reaches a defined threshold and the dwell time at the end of the movement The set time is reached.
- the processor determines the The rotation angle of the wearable device determines the position of the display area according to the first correspondence relationship between the rotation angle and the movement amount of the display area and the reference display area, wherein the first correspondence relationship is the rotation angle and the A correspondence relationship of the continuous mapping of the movement amount of the display area or a first threshold value reached by the rotation angle corresponds to a correspondence relationship of the first fixed value of the movement amount of the display area.
- the processor determines the Determining an arc length of a rotation path of the wearable device, determining a position of the display area according to a second correspondence relationship between an arc length of the rotation track and a movement amount of the display area, and a reference display area; wherein the second correspondence a relationship between a relationship between an arc length of the rotation trajectory and a continuous map of the movement amount of the display area or a second threshold value of an arc length of the rotation trajectory corresponding to the movement amount of the display area is a second fixed The correspondence of values.
- the processor when the operation mode is the specified display area operation, the processor is centered on a user click location The position of the display area is determined according to the set display area size.
- the processor is further configured according to a direction of a movement track of the wearable device, Determining a right and left hand mode of the wearable device, wherein the left hand mode of the wearable device displays the current content in a first direction; the right hand mode of the wearable device displays the current content in a second direction.
- the processor determines that the display space occupied by the current content does not exceed the display area Controlling the current content to switch pages according to the movement of the display area; the processor determining that the display space occupied by the current content exceeds the display area, controlling movement of the display area to extend display of the current At least part of the remaining content of the content.
- the processor is further configured to calibrate the display area according to a calibration signal generated by a user operation position.
- FIG. 1 is a schematic diagram of a wearable device according to an embodiment of the present invention.
- FIG. 2 is a schematic diagram of a hardware architecture of the wearable device according to an embodiment of the present invention.
- FIG. 3 is a schematic diagram of a reference coordinate system of movement or rotation of the wearable device defined in the embodiment of the present invention.
- FIG. 4 is a schematic diagram of a movement trajectory of a left and right hand mode of a wearable device according to an embodiment of the present invention
- FIG. 5 is a schematic diagram of a rotational acceleration coordinate system of a wearable device according to an embodiment of the present invention.
- FIG. 6 is a schematic diagram of a rotation angle of a wearable device according to an embodiment of the present invention.
- FIG. 7 is a flowchart of a display processing method of a screen of a wearable device according to an embodiment of the present invention.
- FIG. 8 is a schematic structural diagram of a wearable device module according to an embodiment of the present invention.
- the embodiment of the invention describes a wearable device and a display method of the screen of the wearable device, wherein the wearable device can be an electronic device such as a watch, a wristband or a ring, mainly for a wearable device having a longer screen, for example,
- the screen of the watch or bracelet may be a full-circular curved screen, a partial long flat screen, a partial curved screen, a plane combined with a surface or a screen with multiple display areas connected by at least two flat screens, with a bracelet
- the screen of the wristband is a circular curved screen.
- the display area is adaptively positioned.
- the display area is illuminated within the line of sight of the human eye, and the display area is illuminated at the adapted position.
- the display area moves with the rotation of the wearable device, facilitating the user to view the screen, and solving the wear
- the display area deviates from the user's line of sight, making it impossible for the user to view the displayed content.
- FIG. 2 is a schematic structural diagram of a wearable device 100 according to an embodiment of the present invention.
- a wearable device 100 may include at least one processor 10, a display screen 20, an input unit 30, and a position sensor 40, wherein the display screen 20 and the position indicator are transmitted.
- the sensor 40 and the input unit 30 are connected to the processor 10 via a data bus, and the input unit 30 receives an operation of a user viewing the current content displayed by the display screen, and the processor 10 views the location according to the user. Determining the position of the display area of the display screen 20, wherein the display area is a partial area of the display screen 20, the operation mode includes specifying the display area operation and automatic Identifying one of the display area operations, the processor 10 controls the display screen 20 to illuminate the display area at the position of the display area to display the current content.
- the wearable device of the embodiment of the present invention can determine that the user operates the wearable device to locate the display area of the display screen, thereby lighting the display area to display the current content, without the user manually adjusting the wearable device to The right location to see the current display.
- the position sensor 40 may be at least one three-axis acceleration sensor, and the acceleration sensor may be used to detect the tilt angle of the device, but may also be affected by the motion acceleration, so that the tilt angle measurement may be biased, and the gyro may also be utilized.
- a compensation measurement sensor such as an instrument and a magnetic sensor compensates for the angle of rotation of the wearable device.
- the wearable device is worn or held by the user.
- the user wants to view the content displayed on the display screen of the wearable device, the user can view the display content by using the following operations.
- the operation mode may be an operation of the user designating the display area. For example, the user clicks on the screen at the target display position, and the processor 10 determines the location where the user clicks, centering on the user's click position, according to the set display area. The size determines the position of the display area.
- the user may also determine the location of the display area by automatically recognizing the display area operation.
- the automatic identification display area operation may be: clicking the display screen 20 at any position of the screen, Pressing a set button, a dangling gesture operation, shaking or shaking the wearable device to set a number of times, determining a movement trajectory of the wearable device to reach a defined trajectory range, and a dwell time at the end of the movement trajectory reaches a set time Or determining that the acceleration value of the wearable device reaches a defined threshold, and the dwell time of the wearable device at the end of the movement reaches a set time, and by the above operation, the processor 10 determines the user according to the operation signal of the operation described above.
- a standard three-dimensional coordinate system XYZ is defined, and the position sensor 40 detects acceleration values of the wearable device in three directions of X, Y, and Z axes, and is set to Rx, Ry, and Rz, respectively.
- the device 10 uses a vector synthesis method to determine a composite vector R of the X-axis acceleration, the Y-axis acceleration, and the Z-axis acceleration, if the position sensing
- the acceleration value of the Y-axis measured by the device 40 changes from the gravitational acceleration g to the non-gravity acceleration
- the acceleration value of the Z-axis changes from the non-gravity acceleration to the gravitational acceleration g, indicating that the wearable device is stationary
- the processor records its rest time. If the rest time exceeds a certain threshold T (such as 1 s), it is determined that the user needs to view the screen at this time.
- the threshold T may be a learned experience threshold or a device manufacturer defined threshold, and the user may change the threshold.
- the processor 10 acquires the movement trajectory coordinates of the wearable device detected by the position sensor 40, and the processor 10 may determine the trajectory according to the movement trajectory coordinates.
- the movement track of the wearable device is clockwise direction d1 or counterclockwise direction d2, for example, if the movement track is clockwise direction d1, it is determined that the wearable device is worn in the left hand mode of the user, that is, the left hand mode; if the movement track is counterclockwise
- the direction d2 determines that the wearable device is worn in the right hand of the user, that is, the right hand mode.
- the left hand mode of the wearable device displays the current content in a first direction; the right hand mode of the wearable device displays the current content in a second direction.
- the processor 10 determines an acceleration of the wearable device according to the monitoring data of the position sensor 40, and determines a left and right hand mode according to the acceleration value. Specifically, the processor 10 determines the according to the determined composite vector R. The left and right hand mode of the wearable device.
- the composite vector R is in the first quadrant, that is, the component in the triaxial direction is positive, it is determined that the user wears the wearable device in the left hand, that is, the left hand mode; if the composite vector R is located in the second quadrant of the coordinate system, That is, the component in the Y-axis direction is a negative number, and the components in the X and Z-axis directions are positive, and it is determined that the user wears the wearable device with his right hand.
- the processor 10 in this embodiment determines that the left and right hand mode of the wearable device can control the direction of displaying the content, and the user can wear the device in the left and right hands without adjusting the wearing direction.
- the processor 10 also The left and right hand mode of the wearable device may not be recognized and manually adjusted by the user.
- the processor 10 may acquire the coordinate data detected by the position sensor 40, determine the rotation angle of the wearable device, specifically, the three-axis acceleration value detected by the position sensor 40 and the three axes of the reference point.
- the acceleration value calculates a rotation angle of the wearable device, and further determines a position of the display area according to a first correspondence relationship between the rotation angle and a movement amount of the display area and a reference display area.
- a person skilled in the art can calculate the rotation angle ⁇ of the wearable device as follows.
- a direction defining a vertical screen of the wearable device is a Y-axis direction, and two axes perpendicular to each other along a plane direction of the screen of the wearable device
- the rotation arc length of the wearable device that is, the arc length of the rotation of the position sensor 40, may be calculated by the rotation angle ⁇ .
- ⁇ is the angle of rotation
- R is the radius corresponding to the arc length, that is, the radius corresponding to the circumference formed by the rotation of the position sensor.
- the reference display area is a predefined display area, and the position of the reference display area may be determined according to user usage habits.
- the rotation arc length L may be calculated according to the rotation angle ⁇ , and further determining the display area according to the second correspondence relationship between the rotation arc length and the movement amount of the display region. The amount of movement; and according to the reference display area, the final display position of the display area is determined.
- the first correspondence relationship or the second correspondence relationship in the foregoing embodiment may include the following two corresponding rules, one is a correspondence relationship of consecutive mappings, and the concept of the continuous mapping may be understood as consistent continuity, and a function is in a certain If the metric space is consistently continuous, it is necessarily continuous in this metric space, but the reverse is not necessarily true. Intuitively, consistent continuous can be understood as the variation of the function value y is limited to a sufficiently small range when the independent variable x varies within a sufficiently small range. From the user's perspective, the display area can flow on the display screen 20 as the wearable device rotates.
- the continuous mapping defined in this embodiment may also adopt a non-uniform continuous mapping as needed, and is only described as an example here.
- the other correspondence may be that when the rotation angle reaches the first threshold, the amount of movement corresponding to the display area is a first fixed value, for example, the first threshold is defined as K, and the The rotation angle of the wearable device is ⁇ 1 , and if the rotation angle ⁇ 1 ⁇ K, determining that the movement amount of the display area is H; if the rotation angle ⁇ 1 ⁇ K, determining that the movement amount of the display area is 0, That is, the display area is not moved.
- another correspondence may be that when the rotation threshold reaches a second threshold value, the movement amount corresponding to the display area is a second fixed value, and the implementation manner is equivalent to the upper rotation angle and the movement amount of the display area. Correspondence, no longer here.
- the display area is sequentially displayed on the display screen as the wearable device rotates.
- the display screen 20 is controlled to display the current content at the position of the display area.
- the size of the display area is a partial size of the display screen 20, and the size can be based on The manufacturer needs to design, and can also set according to the user's operation. For example, if the user thinks that the display area is too small, the user can drag or gesture or press the button to display the frame to enlarge the display area, which can meet the needs of different users and browse without the page.
- the processor 10 confirms that the display space occupied by the current content does not exceed the display area, the current The content is switched with the movement of the display area, for example, the current content is a short message or a small photo, etc., the processor 10 switches the next page according to the movement of the display area; when the current content is occupied The display space is beyond the display area, and the current content does not move with the movement of the display area.
- the current content is an address book or a long mail, and the processor 10 controls the display according to the movement of the display area.
- the area extension displays at least part of the remaining content of the current content, that is, the remaining content that is not displayed in the current display area.
- the program can select the display mode for different size pages, so that users can view files of different sizes without defining file categories.
- the previous display area of the display area may be blackened to achieve a power saving effect, or the previous display area of the display area may not be extinguished. , to achieve the effect of gradually lighting the entire display 20.
- the processor 10 may further display the display according to the user.
- the operation of the area calibrates the position of the display area. For example, the display area can be dragged to a suitable position, or the display area can be moved to a suitable position by clicking/double-clicking or pressing a button.
- calibrating the display area the needs of different users for the position of the display area can be met, the flexibility of the display area adaptation is improved, and the user is provided with a better experience.
- the rotation angle, the rotation arc, the movement amount of the display area, and the like involved in the embodiment are all vector data.
- the wearable device 100 can further include a memory 60 for storing a software program and a module, and the processor 10 executes the wearable device by running a software program and a module stored in the memory 60.
- the memory 60 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may be stored. Data created according to the use of the wearable device 100 (such as audio data, phone book, etc.) and the like.
- memory 60 may include high speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
- the input unit 30 can be configured to receive input numeric or character information and to generate key signal inputs related to user settings and function control of the wearable device 100.
- the input unit 30 may include a touch panel 31 and other input devices 32.
- the touch panel 31 also referred to as a touch screen, can collect touch operations on or near the user (such as the user using a finger, a stylus, or the like on the touch panel 31 or near the touch panel 31. Operation), and drive the corresponding connecting device according to a preset program.
- the touch panel 31 may include two parts: a touch detection device and a touch controller.
- the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and the letter is The number is transmitted to the touch controller; the touch controller receives the touch information from the touch detection device and converts it into contact coordinates, sends it to the processor 10, and can receive and execute the command from the processor 10.
- the touch panel 31 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
- the input unit 30 may also include other input devices 32.
- other input devices 32 may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like.
- the display screen 20 can be used to display information input by the user or information provided to the user and various menus of the wearable device 100.
- the display panel 20 may include a display panel 21, and the display panel 21 may be configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or the like.
- the touch panel 31 can cover the display panel 21, and when the touch panel 31 detects a touch operation on or near it, the touch panel 31 transmits to the processor 10 to determine the type of the touch event, and then the processor 10 according to the touch event. The type provides a corresponding visual output on the display panel 21.
- the touch panel 31 and the display panel 21 are two independent components to implement the input and input functions of the wearable device 100, in some embodiments, the touch panel 31 and the display panel may be The integration and implementation of the input and output functions of the wearable device 100.
- the wearable device 100 can also include an audio unit 80 that further includes an audio circuit 81 and a speaker 82.
- the audio circuit 81 can transmit the converted electrical data of the received audio data to the speaker 82 for conversion to the sound signal output by the speaker 82.
- the wearable device 100 may further include a radio frequency module 50 and a WiFi module 90, and belongs to a short-range wireless transmission technology.
- the wearable device 100 can help a user to send and receive emails, browse web pages, access streaming media, etc. through the WiFi module 90.
- FIG. 2 shows the WiFi module 90, it can be understood that it does not belong to the essential configuration of the wearable device 100, and may be omitted as needed within the scope of not changing the essence of the invention.
- the wearable device 100 also includes a power source 91 (such as a battery) that supplies power to various components.
- a power source 91 such as a battery
- the power source 91 can be logically coupled to the processor 30 through a power management system to manage charging, discharging, and power consumption through the power management system. And other functions.
- the wearable device 100 may further include a camera, a Bluetooth module, and the like, and details are not described herein.
- the processor 10 is the control center of the wearable device 100, connecting various portions of the entire handset with various interfaces and lines, by running or executing software programs and/or modules stored in the memory 60, and by calling stored in the memory 60.
- the internal data performs various functions and processing data of the wearable device 100, thereby performing overall monitoring of the mobile phone.
- the processor 10 may include one or more processing units; preferably, the processor 10 may integrate an application processor and a modem processor, wherein the application processor mainly processes an operating system, a user interface, and an application. Etc.
- the modem processor primarily handles wireless communications. It will be appreciated that the above described modem processor may also not be integrated into the processor 10.
- the foregoing embodiment is an embodiment of the physical hardware of the present invention.
- the embodiment of the method for processing the screen display of the wearable device is generally described on the basis of the physical hardware embodiment.
- the physical hardware embodiment, the detailed implementation of the method embodiment is not described.
- FIG. 7 is a flowchart of a screen display processing method of a wearable device according to an embodiment of the present invention.
- This embodiment provides a display method of a screen of a wearable device, and the method includes the following steps.
- Step 101 Determine a location of a display area of the screen according to an operation mode of a user viewing the current content displayed on the screen, where the display area is a partial area of the screen, and the operation manner includes specifying a display area operation. And automatically recognize one of the display area operations.
- Step 102 Lighting the display area at a position of the display area to display the current content.
- the user can determine the operation mode of the wearable device to locate the display area of the screen, thereby lighting the display area to display the current content, without the user. Manually adjust the wearable device to a suitable location and view the displayed content.
- the designating the display area operation includes: clicking the screen at the target display position; the automatically recognizing the display area operation comprises: clicking the screen at any position of the screen, pressing a set button, a dangling gesture operation, Shaking or tilting the wearable device to set a number of times, moving a movement trajectory of the wearable device to a defined trajectory range, and a dwell time at the end of the movement trajectory reaches a set time, or an acceleration of the wearable device The defined value is reached and the set time is reached at the dwell time of the wearable device at the end of the movement.
- determining the position of the display area of the screen according to the operation mode of the user viewing the current content displayed by the screen includes: determining the rotation of the wearable device An angle; determining a position of the display area according to a first correspondence relationship between the rotation angle and a movement amount of the display area and a reference display area.
- the first correspondence relationship is a correspondence between the rotation angle and a continuous mapping of the movement amount of the display area, or a first threshold value reached by the rotation angle corresponds to a first movement amount of the display area.
- determining a location of the display area of the screen according to an operation mode of the user viewing the current content displayed by the screen including: determining the An arc length of a rotation trajectory of the wearable device; determining a position of the display area according to a second correspondence relationship between an arc length of the rotation trajectory and a movement amount of the display area and a reference display area.
- the second correspondence relationship is a correspondence relationship between an arc length of the rotation trajectory and a continuous mapping of the movement amount of the display area or a second threshold value of an arc length of the rotation trajectory corresponding to the display area.
- the amount of movement is the correspondence of the second fixed value.
- determining a location of the display area of the screen according to an operation mode of the user viewing the current content displayed by the screen including: centering on a user click location
- the position of the display area is determined according to the set display area size.
- the method further includes determining a left-right hand mode of the wearable device according to a direction of a movement trajectory of the wearable device, and a left-hand mode of the wearable device The current content is displayed in one direction; the right hand mode of the wearable device displays the current content in a second direction.
- the method further includes: when the display space occupied by the current content does not exceed the display area, the current content switches pages according to the movement of the display area; The display space occupied by the current content is beyond the display area, and at least part of the remaining content of the current content is displayed as the display area moves.
- the method further comprises calibrating the position of the display area based on a calibration signal generated by a user operation.
- the above is a method step embodiment based on the entity hardware embodiment.
- the following describes an embodiment of the virtual device of the wearable device based on the physical hardware embodiment, and the implementation of the virtual device embodiment is implemented.
- FIG. 8 is a block diagram of a wearable device in accordance with an embodiment of the present invention.
- the embodiment of the present invention provides a wearable device 200.
- the wearable device 200 includes a location determining module 201 and a display control module 202.
- the location determining module 201 is connected to the display control module 202, and the location determining module 201 is connected. Determining, according to an operation manner of the current content displayed by the user on the screen, determining a location of the display area of the screen, wherein the display area is a partial area of the screen, and the operation manner includes specifying a display area operation And automatically recognize one of the display area operations;
- the display control module 202 is configured to illuminate the display area at a position of the display area to display the current content.
- the wearable device of the embodiment of the present invention can determine the operation mode of the wearable device by the user.
- the position of the display area of the screen is displayed, thereby lighting the display area to display the current content, without the user manually adjusting the wearable device to a suitable location and then viewing the display content.
- the designating the display area operation includes: clicking the screen at the target display position; the automatically recognizing the display area operation comprises: clicking the screen at any position of the screen, pressing a set button, a dangling gesture operation, Shaking or tilting the wearable device to set a number of times, moving a movement trajectory of the wearable device to a defined trajectory range, and a dwell time at the end of the movement trajectory reaches a set time, or an acceleration of the wearable device The defined value is reached and the set time is reached at the dwell time of the wearable device at the end of the movement.
- the location determining module 201 determines the location of the display area of the screen according to the operation mode of the user viewing the current content displayed on the screen, including: The position determining module 201 determines a rotation angle of the wearable device; and determines a position of the display area according to the first correspondence relationship between the rotation angle and the movement amount of the display area and the reference display area.
- the first correspondence relationship is a correspondence between the rotation angle and a continuous mapping of the movement amount of the display area, or a first threshold value reached by the rotation angle corresponds to a first movement amount of the display area.
- the location determining module 201 determines the location of the display area of the screen according to an operation mode of the user viewing the current content displayed on the screen.
- the method includes: determining an arc length of a rotation track of the wearable device; determining a position of the display area according to a second correspondence relationship between an arc length of the rotation track and a movement amount of the display area and a reference display area.
- the second correspondence relationship is a correspondence relationship between an arc length of the rotation trajectory and a continuous mapping of the movement amount of the display area or a second threshold value of an arc length of the rotation trajectory corresponding to the display area.
- the amount of movement is the correspondence of the second fixed value.
- the location determining module 201 determines the location of the display area of the screen according to the operation mode of the user viewing the current content displayed on the screen, including: The position determining module 201 determines the position of the display area according to the set display area size centering on the user click position.
- the wearable device 200 further includes a pattern recognition module 203, and the pattern recognition module 203 determines a left and right hand pattern of the wearable device according to a direction of a movement trajectory of the wearable device 200, The left hand mode of the wearable device displays the current content in a first direction; the right hand mode of the wearable device displays the current content in a second direction.
- the display control module 202 determines that the display space occupied by the current content does not exceed the display area, and controls the current content to switch pages according to the movement of the display area; the display control module 202 Determining that the display space occupied by the current content exceeds the display area, controlling movement of the display area to extend display of at least part of remaining content of the current content.
- the wearable device 200 may further include a position calibration module 204 that calibrates the position of the display area according to a calibration signal generated by a user operation.
- the wearable device 200 of this embodiment can determine that the user operates the wearable device to locate the display area of the screen, thereby lighting the display area to display the current content, without the user manually adjusting the wearable device to the appropriate The location then looks at the display.
- RAM random access memory
- ROM read only memory
- EEPROM electrically programmable ROM
- EEPly erasable programmable ROM registers
- hard disk removable disk
- CD-ROM computer-readable media
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Abstract
Description
Claims (24)
- 一种可穿戴设备的屏幕的显示方法,所述方法包括:根据用户查看所述屏幕显示的当前内容的操作方式,确定所述屏幕的显示区域的位置,其中,所述显示区域是所述屏幕的部分区域,所述操作方式包括指定显示区域操作和自动识别显示区域操作的其中之一;在所述显示区域的位置点亮所述显示区域以显示所述当前内容。
- 根据权利要求1所述的方法,其特征在于,所述指定显示区域操作,包括:在目标显示位置点击所述屏幕;所述自动识别显示区域操作包括:在所述屏幕的任意位置点击所述屏幕、按压屏幕显示按键、悬空手势操作、晃动或甩动所述可穿戴设备设定次数、所述可穿戴设备的移动轨迹达到定义轨迹范围并在移动终点的停留时间达到设定时间、或者确定所述可穿戴设备的加速度达到定义阈值并在移动终点的停留时间达到设定时间。
- 根据权利要求2所述的方法,其特征在于,当所述操作方式为所述自动识别显示区域操作时,则根据用户查看所述屏幕显示的当前内容的操作方式,确定所述屏幕的显示区域的位置,包括:确定所述可穿戴设备的转动角度;根据所述转动角度与显示区域移动量的第一对应关系及基准显示区域,确定所述显示区域的位置,其中,所述第一对应关系为所述转动角度与所述显示区域的移动量的连续映射的对应关系或所述转动角度达到的第一门限值对应所述显示区域的移动量的第一固定值的关系。
- 根据权利要求2所述的方法,其特征在于,当所述操作方式为所述自动识别显示区域操作时,则根据用户查看所述屏幕显示的当前内容的操作方式,确定所述屏幕的显示区域的位置,包括:确定所述可穿戴设备的转动轨迹的弧长;根据所述转动轨迹的弧长与所述显示区域的移动量的第二对应关系及基准 显示区域,确定所述显示区域的位置,其中,所述第二对应关系为所述转动轨迹的弧长与所述显示区域的移动量的连续映射的对应关系或所述转动轨迹的弧长达到的第二门限值对应所述显示区域的移动量为第二固定值的对应关系。
- 根据权利要求2所述的方法,其特征在于,当所述操作方式为所述指定显示区域操作,则根据用户查看所述屏幕显示的当前内容的操作方式,确定所述屏幕的显示区域的位置,包括:以用户点击位置为中心,根据设定的显示区域尺寸确定所述显示区域的位置。
- 根据权利要求1-5任一项所述的方法,其特征在于,所述方法还包括,在所述显示区域的位置点亮所述显示区域以显示所述当前内容之前,还包括,根据所述可穿戴设备的移动轨迹的方向,确定所述可穿戴设备的左右手模式,所述可穿戴设备的左手模式,在第一方向显示所述当前内容;所述可穿戴设备的右手模式,在第二方向显示所述当前内容。
- 根据权利要求1-6任一项所述的方法,其特征在于,在所述显示区域的位置点亮所述显示区域以显示所述当前内容之后,所述方法还包括,当所述当前内容占用的显示空间未超出所述显示区域,所述当前内容随所述显示区域的移动而切换页面;当所述当前内容占用的显示空间超出所述显示区域,则随所述显示区域的移动延展显示所述当前内容的至少部分剩余内容。
- 根据权利要求1-7任一项所述的方法,其特征在于,在所述显示区域的位置点亮所述显示区域以显示所述当前内容之后,所述方法还包括,根据用户操作产生的校准信号,校准所述显示区域的位置。
- 一种可穿戴设备,其特征在于,所述可穿戴设备包括:位置确定模块,用于根据用户查看所述屏幕显示的当前内容的操作方式,确定所述屏幕的显示区域的位置,其中,所述显示区域是所述屏幕的部分区域, 所述操作方式包括指定显示区域操作和自动识别显示区域操作的其中之一;显示控制模块,用于在所述显示区域的位置点亮所述显示区域以显示所述当前内容。
- 根据权利要求9所述的可穿戴设备,其特征在于,所述指定显示区域操作,包括:在目标显示位置点击所述屏幕;所述自动识别显示区域操作包括:在所述屏幕的任意位置点击所述屏幕、按压屏幕显示按键、悬空手势操作、晃动或甩动所述可穿戴设备设定次数、所述可穿戴设备的移动轨迹达到定义轨迹范围并在移动终点的停留时间达到设定时间、或者确定所述可穿戴设备的加速度达到定义阈值并在移动终点的停留时间达到设定时间。
- 根据权利要求10所述的可穿戴设备,其特征在于,当所述操作方式为所述自动识别显示区域操作时,所述位置确定模块确定所述可穿戴设备的转动角度,根据所述转动角度与显示区域移动量的第一对应关系及基准显示区域,确定所述显示区域的位置,其中,所述第一对应关系为所述转动角度与所述显示区域的移动量的连续映射的对应关系或所述转动角度达到的第一门限值对应所述显示区域的移动量的第一固定值的对应关系。
- 根据权利要求10所述的可穿戴设备,其特征在于,当所述操作方式为所述自动识别显示区域操作时,所述位置确定模块确定所述可穿戴设备的转动轨迹的弧长,根据所述转动轨迹的弧长与所述显示区域的移动量的第二对应关系及基准显示区域,确定所述显示区域的位置;其中,所述第二对应关系为所述转动轨迹的弧长与所述显示区域的移动量的连续映射的对应关系或所述转动轨迹的弧长达到的第二门限值对应所述显示区域的移动量为第二固定值的对应关系。
- 根据权利要求10所述的可穿戴设备,其特征在于,当所述操作方式为所述指定显示区域操作,所述位置确定模块以用户点击位置为中心,根据设定 的显示区域尺寸确定所述显示区域的位置。
- 根据权利要求9-13所述的可穿戴设备,其特征在于,所述可穿戴设备还包括模式识别模块,所述模式识别模块根据所述可穿戴设备的移动轨迹的方向,确定所述可穿戴设备的左右手模式,其中,所述可穿戴设备的左手模式,在第一方向显示所述当前内容;所述可穿戴设备的右手模式,在第二方向显示所述当前内容。
- 根据权利要求9-14所述的可穿戴设备,其特征在于,所述显示控制模块确定所述当前内容占用的显示空间未超出所述显示区域,控制所述当前内容随所述显示区域的移动而切换页面;所述显示控制模块确定所述当前内容占用的显示空间超出所述显示区域,则控制所述显示区域的移动以延展显示所述当前内容的至少部分剩余内容。
- 根据权利要求9-15任一项所述的可穿戴设备,其特征在于,所述可穿戴设备还包括校准模块,所述校准模块根据用户操作产生的校准信号,校准所述显示区域的位置。
- 一种可穿戴设备,其特征在于,所述可穿戴设备包括至少一个处理器,显示屏和输入单元,其中,所述显示屏和输入单元通过数据总线与所述处理器连接;所述输入单元接收用户查看所述显示屏显示的当前内容的操作,所述处理器根据所述用户查看所述显示屏显示的当前内容的操作方式,确定所述显示屏的显示区域的位置,其中,所述显示区域是所述屏幕的部分区域,所述操作方式包括指定显示区域操作和自动识别显示区域操作的其中之一;所述处理器控制所述显示屏在所述显示区域的位置点亮所述显示区域以显示所述当前内容。
- 根据权利要求17所述的可穿戴设备,其特征在于,所述指定显示区域操作,包括:在目标显示位置点击所述屏幕;所述自动识别显示区域操作包括: 在所述屏幕的任意位置点击所述屏幕、按压屏幕显示按键、悬空手势操作、晃动或甩动所述可穿戴设备设定次数、所述可穿戴设备的移动轨迹达到定义轨迹范围并在移动终点的停留时间达到设定时间、或者确定所述可穿戴设备的加速度达到定义阈值并在移动终点的停留时间达到设定时间。
- 根据权利要求18所述的可穿戴设备,其特征在于,当所述操作方式为所述自动识别显示区域操作时,所述处理器确定所述可穿戴设备的转动角度,根据所述转动角度与显示区域移动量的第一对应关系及基准显示区域,确定所述显示区域的位置,其中,所述第一对应关系为所述转动角度与所述显示区域的移动量的连续映射的对应关系或所述转动角度达到的第一门限值对应所述显示区域的移动量的第一固定值的对应关系。
- 根据权利要求18所述的可穿戴设备,其特征在于,当所述操作方式为所述自动识别显示区域操作时,所述处理器确定所述可穿戴设备的转动轨迹的弧长,根据所述转动轨迹的弧长与所述显示区域的移动量的第二对应关系及基准显示区域,确定所述显示区域的位置;其中,所述第二对应关系为所述转动轨迹的弧长与所述显示区域的移动量的连续映射的对应关系或所述转动轨迹的弧长达到的第二门限值对应所述显示区域的移动量为第二固定值的对应关系。
- 根据权利要求18所述的可穿戴设备,其特征在于,当所述操作方式为所述指定显示区域操作,所述处理器以用户点击位置为中心,根据设定的显示区域尺寸确定所述显示区域的位置。
- 根据权利要求17-21任一项所述的可穿戴设备,其特征在于,所述处理器还根据所述可穿戴设备的移动轨迹的方向,确定所述可穿戴设备的左右手模式,其中,所述可穿戴设备的左手模式,在第一方向显示所述当前内容;所述可穿戴设备的右手模式,在第二方向显示所述当前内容。
- 根据权利要求17-22所述的可穿戴设备,其特征在于,所述处理器确定 所述当前内容占用的显示空间未超出所述显示区域,控制所述当前内容随所述显示区域的移动而切换页面;所述处理器确定所述当前内容占用的显示空间超出所述显示区域,则控制所述显示区域的移动以延展显示所述当前内容的至少部分剩余内容。
- 根据权利要求17-23任一项所述的可穿戴设备,其特征在于,所述处理器还根据用户操作产生的校准信号,校准所述显示区域的位置。
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JP2018502396A (ja) | 2018-01-25 |
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EP3229105A4 (en) | 2018-04-25 |
US20180173483A1 (en) | 2018-06-21 |
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