WO2016165077A1 - 可穿戴设备及其触摸屏、触摸操作方法和图形用户界面 - Google Patents

可穿戴设备及其触摸屏、触摸操作方法和图形用户界面 Download PDF

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Publication number
WO2016165077A1
WO2016165077A1 PCT/CN2015/076586 CN2015076586W WO2016165077A1 WO 2016165077 A1 WO2016165077 A1 WO 2016165077A1 CN 2015076586 W CN2015076586 W CN 2015076586W WO 2016165077 A1 WO2016165077 A1 WO 2016165077A1
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Prior art keywords
wearable device
touch area
specific touch
area
specific
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PCT/CN2015/076586
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English (en)
French (fr)
Inventor
丁祎
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2015/076586 priority Critical patent/WO2016165077A1/zh
Priority to EP15888782.8A priority patent/EP3273336A4/en
Priority to CN201580005669.2A priority patent/CN107077283A/zh
Priority to JP2017553907A priority patent/JP2018514865A/ja
Priority to US15/566,667 priority patent/US20180101290A1/en
Publication of WO2016165077A1 publication Critical patent/WO2016165077A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/163Wearable computers, e.g. on a belt
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0482Interaction with lists of selectable items, e.g. menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/0485Scrolling or panning

Definitions

  • Embodiments of the present invention relate to electronic device technologies, and in particular, to a wearable device, a touch screen of the wearable device, a touch operation method of the wearable device, and a graphical user interface of the wearable device, and a computer program for executing the touch operation method.
  • 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.
  • Traditional smart watches have a physical crown on the side of the watch.
  • the physical crown is used to adjust the time and control of the interface content.
  • designing the physical crown requires adding a physical component, increasing the manufacturing cost and the physical crown.
  • the size is usually small, and it is inconvenient for the user to operate the physical crown, which also affects the accuracy of the adjustment.
  • Embodiments of the present invention provide a wearable device, a touch screen of a wearable device, a touch operation method of the wearable device, and a graphical user interface of the wearable device, and a computer program for performing the touch operation method, so that the user wears the wearable device Control of multiple functions is easier to operate and more precise.
  • a touch operation method of a wearable device comprising: receiving a continuous sliding operation of a specific touch area to generate a continuous sliding signal, wherein the specific touch area is adjacent to a periphery of a touch screen of the wearable device And the specific touch area is a part of the touch screen; and at least one function of the wearable device is continuously adjusted according to the continuous sliding signal.
  • the receiving the continuous sliding of the specific touch area comprises: receiving a sliding operation of the user, generating a sliding operation signal; parsing the sliding operation signal, and acquiring the sliding coordinate; The sliding coordinates are determined to determine that the user performs a continuous sliding operation in a specific touch area.
  • the receiving operation is continuous sliding of a specific touch area Before the moving, including: controlling the touch function of the wearable device to turn off the non-specific touch area.
  • the specific touch area is a closed or a surrounding of the touch screen surrounding the wearable device Semi-enclosed area.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and The specific touch area does not display content;
  • the specific touch area is disposed within an edge of a display area of the touch screen, the specific touch area displaying content.
  • the method before the receiving operation continues sliding of the specific touch area, the method further includes: The user's input operation activates the specific touch area; wherein the activating the specific touch area includes one of: determining that the user's sliding track is a sliding track set in the specific touch area, then activating Determining a specific touch area; determining a starting point of the sliding track of the user as a specified point, and the sliding track coordinate is in the specific touch area, activating the specific touch area; clicking a set number of times of the specific touch area
  • the specific touch area is activated by an arbitrary point or a designated position; determining to press the virtual designated button or the mechanical button activates the specific touch area; the specific touch area is automatically activated upon power on.
  • the performing at least one function of the wearable device according to the continuous sliding signal Continuously adjusting, including at least one of: continuously controlling scaling or switching of interface content according to the continuous sliding signal; continuously controlling navigation of the menu list according to the continuous sliding signal; continuously adjusting audio and video playback according to the continuous sliding signal Progress or volume; continuously mediating system display time based on the continuous sliding signal.
  • a wearable device comprising: an input module, configured to receive a continuous sliding operation of a specific touch zone, to generate a continuous sliding signal, wherein the specific touch zone Adjacent to a periphery of the touch screen of the wearable device, and the specific touch area is a part of the touch screen; and an execution module, configured to continuously adjust at least one function of the wearable device according to the continuous sliding signal.
  • the input module further includes a receiving submodule, a parsing submodule, and a determining submodule: the receiving submodule receives a sliding operation of the user, and generates a sliding operation signal; Parsing the sub-module, parsing the sliding operation signal, and acquiring the sliding coordinate; the determining sub-module determines, according to the sliding coordinate, that the user performs a continuous sliding operation in a specific touch area.
  • the input module further includes a control submodule, where the control submodule is used to control the control unit before receiving the continuous sliding of the specific touch area
  • the wearable device turns off the touch function of the non-specific touch area.
  • the specific touch area is closed or around the periphery of the touch screen of the wearable device Semi-enclosed area.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and The specific touch area does not display content;
  • the specific touch area is disposed within an edge of a display area of the touch screen, the specific touch area displaying content.
  • the wearable device further includes an activation module, where the activation module operates according to a user input Activating the specific touch area, the activation module activating the specific touch area by determining that the sliding track of the user is a sliding track set in the specific touch area, and then activating the specific touch Determining that the starting point of the sliding track of the user is a specified point, and the sliding track coordinate is in the specific touch area, then the specific touch area is activated; clicking the set number of times or specifying the specific touch area Positioning to activate the particular touch zone; determining to press the virtual designated button or mechanical button to activate the particular touch zone; the particular touch zone is automatically activated upon power up.
  • the execution module is configured to the wearable device according to the continuous sliding signal Continuously adjusting a function, including at least one of the following: the execution module continuously controls scaling or switching of interface content according to the continuous sliding signal; the execution module continuously controls navigation of the menu list according to the continuous sliding signal; The execution module continuously adjusts the progress or volume of the audio and video playback according to the continuous sliding signal; and continuously mediates the system display time according to the continuous sliding signal.
  • a wearable device comprising a processor and a touch screen, wherein the touch screen is coupled to the processor via a data bus; the touch screen receiving continuous sliding of an operation of a specific touch area, generating a continuous sliding signal; wherein the specific touch area is adjacent to a perimeter of the touch screen touch screen of the wearable device, and the specific touch area is part of the touch screen; the processor is responsive to the continuous sliding signal At least one function of the wearable device is continuously adjusted.
  • the touch screen receives a sliding operation of a user; the processor parses the sliding operation signal to acquire a sliding coordinate; and according to the sliding coordinate, determines that the user is in the The specific touch zone performs a continuous sliding operation.
  • the processor turns off the touch function of the non-specific touch area of the touch screen before the touch screen receives the continuous sliding of the specific touch area.
  • the specific touch area is closed or around the periphery of the touch screen of the wearable device Semi-enclosed area.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and The specific touch area does not display content;
  • the specific touch area is disposed within an edge of a display area of the touch screen, the specific touch area displaying content.
  • the processor further activates the specific touch area according to a touch operation of a user, where Activating the specific touch area includes one of: determining that the sliding track of the user is a sliding track set in the specific touch area, then activating the specific touch area; determining a starting point of the sliding track of the user To specify a point, and the sliding track coordinate is in the specific touch area, activate the specific touch area; click any number of the specific touch area or a specified position to activate the specific touch area; The specific designated touch area is activated by a virtual designated button or a mechanical button; the specific touch area is automatically activated upon power on.
  • the processor according to the continuous sliding signal, to the at least one of the wearable device
  • the function is continuously adjusted, including at least one of the following ways: the processor continuously controls the scaling or switching of the interface content according to the continuous sliding signal; continuously controls the navigation of the menu list according to the continuous sliding signal; according to the continuous sliding signal Continuously controlling the progress of audio or video playback; continuously mediating system display time based on the continuous sliding signal.
  • a computer program comprising instructions that cause the wearable device to perform a touch operation method of the first aspect or any of the possible implementations of the first aspect.
  • a graphical user interface GUI of a wearable device is received, the wearable device receiving an operation of continuously sliding a specific touch area, wherein the specific touch area is adjacent to a periphery of a touch screen of the wearable device, and The particular touch area is part of the touch screen; the wearable device continues to control continuous display changes of the GUI in accordance with the continuous sliding signal.
  • the wearable device continuously controls the continuous display change of the GUI according to the continuous sliding signal, including at least one of: controlling interface content according to the continuous sliding signal Continuously zooming or switching; controlling continuous navigation of the menu list according to the continuous sliding signal; controlling the progress of the audio or video playback according to the continuous sliding signal to continuously prompt or volume to continuously mediate the prompt; continuously controlling the system display according to the continuous sliding signal Continuous adjustment of time The whole process.
  • the wearable device when the wearable device continues to control navigation of the menu list according to the continuous sliding signal, The wearable device controls the current menu list to be arranged adjacent to the periphery of the touch screen display area such that each menu item has the same distance from the edge of the display area.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and the The content is not displayed in a specific touch area;
  • the specific touch area is disposed within an edge of a display area of the touch screen, the specific touch area displaying content.
  • a touch screen is provided, the touch screen being applied to a wearable device, the touch screen being provided with a specific touch area, wherein the specific touch area is adjacent to a periphery of the touch screen, and the specific touch area is the a portion of the touch screen; the touch screen receives a continuous sliding of the operation of the particular touch area to generate a continuous sliding signal; such that the wearable device continuously adjusts at least one function of the wearable device according to the continuous sliding signal.
  • the specific touch area is a closed or semi-closed area surrounding the periphery of the touch screen.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and the The content is not displayed in a specific touch area;
  • the specific touch area is disposed within an edge of a display area of the touch screen, the specific touch area displaying content.
  • the user can perform a slide operation on the specific touch area, control the display display change or the progress of the application software, and set a specific touch area. Maximize the length of the control area, allowing users to more accurately control interface changes or application progress, in line with user operating habits.
  • FIG. 1 is a schematic overall view 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.
  • 3A-3B are schematic diagrams showing specific touch areas of the wearable device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of another manner of a specific touch area of a wearable device according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of zooming of an icon interface of a wearable device according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of navigation of a control menu of a wearable device according to an embodiment of the present invention.
  • FIGS. 7A-7B are schematic diagrams showing the volume and progress of controlling audio and video of a wearable device according to an embodiment of the present invention.
  • FIGS. 8A-8B are schematic diagrams showing time of a control adjustment system of a wearable device according to an embodiment of the present invention.
  • FIG. 9 is a flowchart of a touch operation method of a wearable device according to an embodiment of the present invention.
  • FIG. 10 is a block diagram of a wearable device according to an embodiment of the present invention.
  • FIG 11 is a block diagram of a wearable device in accordance with another embodiment of the present invention.
  • the embodiment of the invention describes a wearable device and a touch operation method of the wearable device, wherein the wearable device can be a wearable device with a display screen, such as a smart watch, a smart bracelet, a smart necklace, or the like.
  • the device in this embodiment takes a smart watch as an example to describe the technical solution for implementing the present invention.
  • the touch screen of the smart watch may be any shape, for example, may be a regular circle, an approximately circle or a square, etc., for convenience of description,
  • the shape of the display screen of the smart watch is defined as a regular circle.
  • the shape of the display screen of the wearable device is not limited in any way, and different manufacturers customize according to market needs.
  • the user controls the interface control of the wearable device or the progress of the application software through a mechanical knob, for example, the crown of the smart watch.
  • a mechanical knob for example, the crown of the smart watch.
  • the size of the knob is small, and the user operates. It is not convenient, and it is difficult to ensure the accuracy of the control, and the mechanical knob also increases the design cost.
  • the user can perform a slide operation on the specific touch area, thereby controlling the change of the interface display or the progress of the application software, by setting a specific touch area, the maximum The limit increases the length of the control area, which is convenient for the user to more accurately control the interface change or the progress of the application, and conforms to the user's operating habits.
  • FIG. 1 is a schematic overall view of a wearable device according to an embodiment of the present invention.
  • the wearable device 100 can include a body 10 and a carrying portion 20, and the body 10 can be fixedly connected to the carrying portion 20, or can be detachably connected, and the carrying portion 20 can be used for wearing on the user.
  • the body 10 includes at least a touch screen 11 and at least one processor 12, and the processor 12 controls display of the touch screen 11, wherein the periphery of the touch screen 11 is provided.
  • the wearable device of the embodiment of the present invention conforms to the user's operating habit by setting a specific touch area around the touch screen, and maximizes the length of the control area, so that the user can more accurately perform the corresponding work. Can make continuous adjustments.
  • the specific touch area 110 may be a closed area surrounding the touch screen periphery of the wearable device (FIG. 3A), or may be a semi-closed area (FIG. 3B), and
  • the touch area provided by the area in other manners, the specific touch area set in FIG. 3A-3B is in a ring shape, and is only an example given in the embodiment, and the shape of the area is not limited to a ring shape or other shapes. .
  • the distance between any touch point of the specific touch area and the edge of the touch screen 11 is not greater than a set threshold, and the set threshold may not exceed the center of the touch screen display area to the touch screen 11 Half, one-third or one-quarter of the distance of the edge.
  • the specific touch area 110 is a part of the touch screen 11, and may include: the specific touch area 110 is disposed along an edge of the display area 112 of the touch screen 11, the specific touch area 110 does not display content, only Used to receive a user's touch operation, as shown in FIG. 3A.
  • the specific touch area 110 may also be disposed along an edge of the display area 112 of the touch screen 11. At this time, the specific touch area 110 is a part of the display area 112, and the interface content may be displayed, as shown in FIG. For ease of understanding, the area between the edge of the screen and the dotted line is the illustrated specific touch area 110, and the actual display interface does not have a dashed box of the specific touch area.
  • the specific touch area 110 within the edge is closer to the center of the display area 112 than the specific touch area 110 outside the edge.
  • the implementation principle of the touch operation of the wearable device is further explained by the hardware of the wearable device.
  • the touch screen 11 receives a sliding operation of the user; the processor 12 may parse the sliding operation signal to obtain a sliding coordinate; and according to the sliding coordinate, determine that the user performs a continuous sliding operation in the specific touch area, further, The processor 12 continuously adjusts at least one function of the wearable device according to the continuous sliding signal.
  • the processor 12 receives the operation of the specific touch area 110 on the touch screen 11 Turn off the touch function of the non-specific touch area of the touch screen before sliding. Specifically, in a state where the touch function of the non-specific touch area is turned off, the touch screen 11 does not generate a touch operation signal, and the processor 12 cannot receive the touch operation signal.
  • the touch screen 11 can also generate a touch operation signal in a state where the touch function of the non-specific touch area is turned off.
  • the processor 12 determines that the touch operation of the user is in the non-specific touch area according to the touch operation signal, and does not respond to the touch operation signal. When the processor 11 recognizes that the area operated by the user is in the specific touch area, the processor 11 responds to the touch operation signal.
  • the processor 11 controls the current display interface to be reduced according to the continuous sliding operation signal of the user in the specific touch area 110, so that the current display interface does not overlap with the specific touch area 110 at least. It is also possible that the processor 11 does not change the layout or size of the current display interface before the processor 11 receives the continuous sliding operation signal in the specific touch area 110.
  • the specific touch area 110 can also receive the continuous sliding operation of the user to control the change of the current interface or adjust the progress of the application running in the foreground, etc. only in the activated state. For example, continuously slide clockwise or counterclockwise in the particular touch zone.
  • the specific touch area 110 can receive a normal touch operation as a normal touch area of the display area 112 in an inactive state.
  • the conventional touch operation referred to herein is a touch operation that can be realized by the touch display panel in the prior art.
  • the processor 11 controls the current display interface to be reduced such that the display interface does not overlap at least with the specific touch area 110. It is also possible that when the specific touch area 110 is activated or activated, the processor 11 does not change the current display interface before the continuous sliding operation signal of the specific touch area 110 is received.
  • the layout or size, that is, the display interface when the specific touch area 110 is activated or activated is the same as before the specific touch area 110 is activated, so that the user has no perception and the interface is simple.
  • the manner in which the user activates the specific touch area 110 can be implemented in the following manners, and the manner of activation is diverse. This embodiment is only illustrated by way of example, but is not limited to the manners, by setting activation for the specific touch area 110. In this way, the erroneous operation caused by the user during the use or inadvertently touching the specific touch area 110 can be reduced.
  • the user can slide the operation along the specific touch area 110.
  • the processor 12 activates if the track coordinates of the sliding operation are all within the range of the specific touch area 110 and the sliding track of the user is determined to be a preset sliding track.
  • the user may also activate the specific touch area 110 by clicking any point or a specified point of the specific touch area, and the user's finger or the touch object may not leave the touched touch point, directly starting from the touch point.
  • the specific touch area slides clockwise or counterclockwise to execute an instruction of the corresponding sliding operation, and the processor 12 implements corresponding control according to the instruction of the sliding operation.
  • the user's finger or the touch object may leave the touched touch point and leave the touch screen 11 for a short time.
  • preset for example, 2 s; then the user continues to slide clockwise or counterclockwise along the specific touch area in the short time to execute an instruction of the corresponding sliding operation, and the processor 12 implements corresponding control according to the instruction of the sliding operation.
  • the number of clicks may be preset, such as multiple clicks, double clicks, and the like. This embodiment does not limit this.
  • the activation of the specific touch area 110 can also be implemented by a virtual designated button or by a mechanical button or a knob, which is not described in detail in this embodiment.
  • the specific touch zone 110 can also be activated each time the wearable device 100 is powered on, without setting an activation operation.
  • the processor 12 can also automatically activate the specific touch area 110 according to the display content of the touch screen 11 or the category of the foreground running application, and at least one of the wearable devices according to the continuous sliding of the user in the specific touch area 110.
  • the function is continuously adjusted.
  • the processor 12 identifies that the content of the current display interface is information such as a picture, a webpage, a text, or the like, or determines that the running application software of the current interface is an audio/video player, or the display interface is to adjust the system time, etc., and the specific is automatically activated.
  • the touch area 110 of course, there are other situations in which the specific touch area 110 is automatically activated, which will not be enumerated here.
  • the wearable device 100 may use the operation mode of activating the specific touch area 110 to exit the activation state of the specific touch area 110, or may be exited by other operations, which is not limited herein.
  • the processor 12 continuously adjusts at least one function of the wearable device according to the continuous sliding signal, which can be implemented at least by the following manner.
  • the first adjustment instruction is executed according to the correspondence between the amount of change of the sliding coordinates acquired in the first time period and the adjustment amount of the corresponding function.
  • the processor 12 analyzes the continuous sliding signal received in the second time period, and acquires the sliding coordinate of the second time period; the corresponding relationship between the amount of change of the sliding coordinate acquired in the second time period and the adjustment amount of the corresponding function, The second adjustment command is executed.
  • the processor 12 sequentially parses the continuous slip signal until the sliding coordinates of the Nth time period are acquired, and the Nth adjustment command is executed.
  • the first adjustment instruction is executed according to the corresponding relationship between the change amount of the sliding coordinate acquired in the first time period and the adjustment amount of the corresponding function, and specifically, the sliding distance is calculated according to the sliding coordinate acquired in the first time period, according to The first adjustment command is executed by the correspondence between the sliding distance and the adjustment amount of the corresponding function.
  • the first adjustment instruction may be executed according to the correspondence between the set number of time segments and the adjustment amount of the corresponding function, for example, sampling coordinate data of two time segments, corresponding to adjusting one fifth of the volume, and the like.
  • the processor 12 executes a mediation instruction of the corresponding function according to the continuous sliding signal acquired in each time period, that is, the user continuously slides, The dynamic step-by-step mediation of the corresponding functional parameters, rather than waiting for the continuous sliding to end, then execute the mediation command.
  • the processor 12 continuously adjusts at least one function of the wearable device according to the continuous sliding signal, including at least one of: continuously controlling the scaling or switching of the interface according to the continuous sliding signal; and continuing according to the continuous sliding signal Controlling the navigation of the menu list; continuously adjusting the progress of the audio and video playback according to the continuous sliding signal; continuously adjusting the display time of the system according to the continuous sliding signal.
  • the processor 12 further continually adjusts at least one function of the wearable device according to the continuous sliding signal by a plurality of examples, including but not limited to the embodiments described below.
  • the current interface content may be a plurality of application icons, pictures, or pages, and the processor 12 enlarges or reduces the current icon, picture, or page according to the continuous sliding manner of the specific touch area 110, such as: clockwise sliding corresponding amplification
  • the content of the current interface is counterclockwise sliding corresponding to reducing the content of the current interface (as shown in FIG. 5).
  • the processor 12 may further control switching of the interface according to another continuous sliding manner of the specific touch area 110 by the user, for example, the user clicks and then clockwise in the specific touch area. If the user slides in the specific touch area and then slides counterclockwise, the icon interface, the picture or the page is switched backward.
  • the switching of the interface and the scaling of the interface may be distinguished by different operation manners, for example, the default continuous sliding operation corresponds to the scaling of the specific touch area, and the sliding operation of the specific touch area corresponds to the switching of the interface, or There are a variety of other distinguishable modes of operation, which can be distinguished from different energy modes. This embodiment is no longer an example.
  • FIG. 6 is a schematic diagram of a navigation menu of a wearable device control menu according to an embodiment of the present invention.
  • the processor 12 continuously controls the navigation of the menu list according to the continuous sliding signal. For example, the processor 12 determines that the currently displayed interface is a contact list, and controls the touch screen 11 to move up and down according to the clockwise or counterclockwise sliding of the user.
  • the contact list may also highlight each contact name one by one according to the continuous sliding operation.
  • the present invention may also include other menu lists, and the processor 12 identifies the currently applied category.
  • the processor 12 can control the current menu list to be adjacent to the periphery of the touch screen display area, so that each menu item is equal to the distance of the edge of the display area, so that one can be displayed.
  • the number of menu items added to the page alleviates the problem that the display interface is small and the display content is long.
  • the processor 12 may further adjust the progress or volume of the audio and video playback according to the continuous sliding signal, as shown in FIGS. 7A-7B, wherein the processor 12 is continuously slid according to different
  • the signal continuously controls the progress or volume of the audio and video. Differentiating or controlling the progress or volume of the audio and video according to different continuous sliding manners is similar to the scaling or switching of the above-mentioned continuous control interface, and the description will not be repeated here.
  • the operation mode is various and can be defined by the user or pre-defined by the manufacturer. The embodiment of the present invention does not limit this.
  • the mediation process of the volume and progress of the audio and video can be displayed on the touch screen 11 in real time, which is convenient for the user. Understand the amount of mediation.
  • the processor 12 can further adjust the system display time by the continuous sliding signal. As shown in FIG. 8A-8B, the processor 12 adjusts the virtual clock according to the user sliding the specific touch area clockwise or counterclockwise. Hand or digital time.
  • the continuous sliding signal of the processor 12 continuously controls the navigation of the menu list, controls the volume or progress of the audio and video, switches or scales the control interface, or mediates the system time, in the same interface. Different functions can be controlled by different sliding operations.
  • the wearable device 100 can further include a memory 60 for storing a software program and a module, and the processor 12 executes the wearable device by running a software program and a module stored in the memory 60.
  • the memory 60 can mainly include a storage program area and a storage data area, wherein the storage program area can store an operating system, At least one function required application (such as a sound playing function, a video playing function, etc.), etc.; the storage data area can store data (such as audio data, phone book, etc.) created according to the use of the wearable device 100.
  • 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 touch panel 11 includes a touch panel 31 and a display panel 21, and the touch panel 31 can cover the display panel 21, and the touch panel 31 can be used to receive input touch operation information, digital or character information, and generate and User settings of the wearable device 100 and key signal inputs related to function control.
  • 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 transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 12 is provided and can receive commands from the processor 12 and execute them.
  • the touch panel 31 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the display panel 21 can be used to display information input by the user or information provided to the user and various menus of the wearable device 100 and information displayed after each application runs.
  • the display panel 21 can be configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or the like.
  • the touch panel 31 detects a touch operation on or near it, it is transmitted to the processor 12 to determine the type of the touch event, and then the processor 12 provides a corresponding vision on the display panel 21 according to the type of the touch event.
  • the touch panel 31 and the display panel 21 may be integrated to implement the input and output functions of the wearable device 100, but in some embodiments, the input and input functions of the wearable device 100 may also be implemented as two separate components. .
  • the wearable device 100 can also include an audio unit 80 that further includes a tone Frequency circuit 81 and 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 can also include at least one sensor 40 that can sense body vitals data such as heartbeat, blood pressure, body temperature, sleep, etc., and can also detect motion data and the like.
  • body vitals data such as heartbeat, blood pressure, body temperature, sleep, etc.
  • the wearable device 100 may further include a Bluetooth 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. Provides wireless broadband internet access.
  • 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 or the like, and details are not described herein again.
  • the processor 12 is the control center of the wearable device 100, connecting various portions of the entire wearable device using various interfaces and lines, by running or executing software programs and/or modules stored in the memory 60, and calling the storage in The data within the memory 60 performs various functions and processing data of the wearable device 100 to thereby perform overall monitoring of the device.
  • the processor 12 may include one or more processing units; preferably, the processor 12 may integrate an application processor and a modem processor, where 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 12.
  • FIG. 2 shows a plurality of elements of the wearable device, 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 foregoing embodiment is a physical hardware embodiment of the present invention.
  • An embodiment of the touch operation method of the wearable device is generally described on the basis of the physical hardware embodiment.
  • the implementation of the method embodiment may refer to the foregoing physical hardware. Embodiments, detailed implementations of method embodiments are not described.
  • FIG. 9 is a flowchart of a touch operation method of a wearable device according to an embodiment of the present invention.
  • This embodiment provides a touch operation method of a wearable device, and the method includes the following steps.
  • Step 101 Receive continuous sliding of the operation specific touch area to generate a continuous sliding signal, wherein the specific touch area is adjacent to a periphery of the touch screen of the wearable device, and the specific touch area is a part of the touch screen.
  • Step 102 Continuously adjust at least one function of the wearable device according to the continuous sliding signal.
  • the wearable device of the embodiment of the present invention conforms to the user's operating habit by setting a specific touch area around the touch screen, and maximizes the length of the control area, so that the user can continuously adjust the corresponding function more accurately.
  • the receiving operation continuously slides the specific touch area, including:
  • the method before the receiving the continuous sliding of the specific touch area, the method includes: controlling the touch function of the wearable device to turn off the non-specific touch area.
  • the particular touch zone is a closed or semi-closed area surrounding the perimeter of the touch screen of the wearable device.
  • the particular touch zone is disposed along an edge of the display area of the touch screen, the particular touch zone not displaying content.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and the specific touch area displays content.
  • the specific touch area is a part of the touch screen, and roughly occupies one-half, one-third or one-quarter of the touch screen, etc., and is customized according to the manufacturer.
  • the method further includes activating the particular touch zone.
  • the activating the specific touch area includes at least one of the following ways: determining that the sliding track of the user is a sliding track set in the specific touch area, the specific touch area is activated; determining a starting point of the sliding track of the user is Specify a point, And the sliding track coordinate is in the specific touch area, the specific touch area is activated; clicking any set point or specified position of the specific touch area to activate the specific touch area; determining to press the virtual designated button or the mechanical button to activate The specific touch zone; or, the specific touch zone is automatically activated upon power on.
  • the continually adjusting the at least one function of the wearable device according to the continuous sliding signal includes at least one of: continuously controlling the scaling or switching of the interface content according to the continuous sliding signal; and continuously controlling according to the continuous sliding signal Navigation of the menu list; continuously adjusting the progress or volume of the audio and video playback according to the continuous sliding signal; and continuously adjusting the system display time according to the continuous sliding signal.
  • the processor 12 controls the current menu list to be adjacent to the periphery of the touch screen display area, so that each menu item is equal to the distance of the edge of the display area (as shown in FIG. 6). ), this can increase the number of menu items in one display page, alleviating the problem that the display interface is small and the display content is long.
  • FIG. 10 is a block diagram of a wearable device in accordance with an embodiment of the present invention.
  • This embodiment provides a wearable device 200, which is further described in accordance with the method steps of the foregoing second embodiment.
  • the detailed solution includes the content of any of the foregoing embodiments, and may be referred to each other.
  • the wearable device 200 includes an input module 201 and an execution module 203, and the input module 201 is connected to the execution module 203.
  • the input module 201 is configured to receive a continuous sliding operation of a specific touch area to generate a continuous sliding signal, wherein the specific touch area is adjacent to a periphery of the touch screen of the wearable device, and the specific touch area is a part of the touch screen;
  • the execution module 203 is configured to continuously adjust at least one function of the wearable device according to the continuous sliding signal.
  • the input module further includes a receiving submodule 211, a parsing submodule 212, and a determining submodule 213.
  • the receiving sub-module 211 receives a sliding operation of the user to generate a sliding operation signal; the analyzing sub-module 212 parses the sliding operation signal to obtain the sliding coordinate; and the determining sub-module 213 determines, according to the sliding coordinate, the user is in a specific touch The zone performs a continuous sliding operation.
  • the input module 201 may further include a receiving submodule 211 and a control submodule 214.
  • the control submodule 214 is used before the input module 201 receives the continuous sliding of the specific touch zone.
  • the touch function for controlling the wearable device to turn off the non-specific touch area.
  • the activation module 204 in FIGS. 10 and 11 is not essential, and the present example is not specifically limited.
  • the particular touch zone is a closed or semi-closed area surrounding the perimeter of the touch screen of the wearable device. .
  • the particular touch zone is disposed along an edge of the display area of the touch screen, the particular touch zone not displaying content.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and the specific touch area displays content.
  • the wearable device 200 can further include an activation module 204 for activating the specific touch zone.
  • the activation module 204 activates the specific touch area according to an input operation of the user, and the activation module activates the specific touch area by determining that the sliding track of the user is a sliding track set in the specific touch area. Then, the specific touch area is activated; determining that the starting point of the sliding track of the user is a specified point, and the sliding track coordinate is in the specific touch area, the specific touch area is activated; clicking the set number of times or specifying the specific touch area
  • the location activates the particular touch zone; determining to press the virtual designated button or mechanical button activates the particular touch zone; the particular touch zone is automatically activated upon power up.
  • the execution module 203 continuously adjusts at least one function of the wearable device according to the continuous sliding signal, and includes at least one of the following manners: the execution module continuously controls scaling or switching of the interface content according to the continuous sliding signal; The execution module continuously controls navigation of the menu list according to the continuous sliding signal; the execution module continuously adjusts the progress or volume of the audio and video playback according to the continuous sliding signal; and continuously mediates the system display time according to the continuous sliding signal.
  • the execution module 203 controls the current menu list to be adjacent to the periphery of the touch screen display area, so that each menu item has the same distance from the edge of the display area (as shown in FIG. 6). ), this can increase the number of menu items in one display page, alleviating the problem that the display interface is small and the display content is long.
  • the wearable device of the embodiment controls the display of the specific touch area according to the user's touch, the display of the diversity control interface and the progress of the application, conforms to the user's operating habits, and improves the accuracy of the user control.
  • the present embodiment provides a touch display screen, which is hereinafter referred to as a touch screen, which can be applied to the wearable device 100 of the first embodiment described above, and the touch display screen receives continuous sliding of a specific touch area to generate continuous a sliding signal, wherein the specific touch area is adjacent to a periphery of the touch screen, and the specific touch area is a part of the touch screen, such that the wearable device 100 continuously adjusts at least one function of the wearable device according to the continuous sliding signal.
  • a touch display screen which is hereinafter referred to as a touch screen, which can be applied to the wearable device 100 of the first embodiment described above, and the touch display screen receives continuous sliding of a specific touch area to generate continuous a sliding signal, wherein the specific touch area is adjacent to a periphery of the touch screen, and the specific touch area is a part of the touch screen, such that the wearable device 100 continuously adjusts at least one function of the wearable device according to the continuous sliding signal.
  • the specific touch area is adjacent to the periphery of the touch screen, and the specific touch area is a part of the touch screen.
  • the particular touch zone is a closed or semi-closed area surrounding the perimeter of the touch screen.
  • the particular touch zone is disposed along an edge of the display area of the touch screen, the particular touch zone not displaying content.
  • the specific touch area is disposed along an edge of the display area of the touch screen, and the specific touch area displays content.
  • the touch display screen of this embodiment may be provided with a processor itself, or may be connected to a processor of an external wearable device, and may also include other necessary components.
  • the execution scheme of the processor refers to the solution in the first embodiment. This embodiment will not be described.
  • the touch display screen of the embodiment controls the specific touch area according to the user's touch, and displays the progress of the diversity control interface and the application, conforms to the user's operating habits, and improves the accuracy of the user control.
  • the embodiment provides a graphic for a wearable device.
  • the user interface GUI the wearable device of the embodiment may refer to the architecture and implementation scheme of the foregoing embodiment 1.
  • the wearable device includes at least a touch screen, at least one processor, and the processor controls display of the touch screen 11, wherein the The periphery of the touch screen 11 is provided with a specific touch area 110, which is a part of the touch screen; the processor 12 receives continuous sliding of the operation specific touch area through the touch screen 11, and generates a continuous sliding signal, and the processor continues to slide according to the The signal controls the continuous display change of the GUI.
  • the particular touch zone is a closed or semi-closed area surrounding the perimeter of the touch screen of the wearable device.
  • Controlling the display change of the GUI according to the continuous sliding signal including at least one of: continuously controlling the scaling or switching of the interface content according to the continuous sliding signal; continuously controlling the navigation of the menu list according to the continuous sliding signal; according to the continuous sliding signal
  • An interface prompt that continuously adjusts the progress or volume of the audio and video playback; according to the continuous sliding signal, the mediation system displays the time.
  • the processor controls the current menu list to be adjacent to the periphery of the touch screen display area, so that each menu item has the same distance from the edge of the display area (as shown in FIG. 6). In this way, the number of menu items can be increased in one display page, and the problem that the display interface is small and the display content is long is alleviated.
  • the graphical user interface GUI of the wearable device of the embodiment controls the change of the display interface according to the operation instruction of the user to operate the specific touch zone, conforms to the usage habit of the user, and increases the accuracy of the control interface change.
  • a computer readable storage medium storing one or more programs, the one or more programs including instructions that, when executed by the wearable device, perform the following events, the wearable device including a touch screen And processor,
  • the touch screen receives a continuous sliding operation of a specific touch area to generate a continuous sliding signal; wherein the specific touch area is adjacent to a periphery of the touch screen touch screen of the wearable device, and the specific touch area is a part of the touch screen;
  • the slip signal continuously adjusts at least one function of the wearable device.
  • Another embodiment may also be a computer program, the one or more programs including instructions that, when executed by the wearable device, perform the following events, the wearable device comprising a touch screen and a processor,
  • the touch screen receives a continuous sliding operation of a specific touch area to generate a continuous sliding signal; wherein the specific touch area is adjacent to a periphery of the touch screen touch screen of the wearable device, and the specific touch area is a part of the touch screen;
  • the slip signal continuously adjusts at least one function of the wearable device.
  • 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

一种可穿戴设备及其触摸屏、触摸操作方法和图形用户界面,所述方法包括:接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分(S101);根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节(S102)。该可穿戴设备通过在触摸屏周围设置特定触摸区,符合用户操作习惯,且最大限度的增加了控制区域的长度,便于用户更准确的对所述可穿戴设备的至少一个功能进行持续调节。

Description

可穿戴设备及其触摸屏、触摸操作方法和图形用户界面 技术领域
本发明实施例涉及电子设备技术,尤其涉及一种可穿戴设备、可穿戴设备的触摸屏、可穿戴设备的触摸操作方法和可穿戴设备的图形用户界面、执行该触摸操作方法的计算机程序。
背景技术
随着可穿戴设备智能化技术的不断发展,可穿戴设备的产品的种类越来越多,各种功能日益强大,比如手表,手环,眼镜,指环,智能项链等等。传统的智能手表都会在手表的侧边设有物理表冠,该物理表冠用于调整时间及界面内容的控制等,但设计物理表冠需要增加一个物理元件,增加制造成本且物理表冠的尺寸通常较小,用户操作该物理表冠不方便,也影响调节的精度。
发明内容
本发明实施例提供了一种可穿戴设备、可穿戴设备的触摸屏、可穿戴设备的触摸操作方法和可穿戴设备的图形用户界面、执行该触摸操作方法的计算机程序,使用户对该可穿戴设备多个功能的控制更易操作,更精确。
第一方面,提供一种可穿戴设备的触摸操作方法,该方法包括:接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
第一方面的第一种可能的实现方式中,所述接收操作特定触摸区的持续滑动,包括:接收用户的滑动操作,产生滑动操作信号;解析所述滑动操作信号,获取滑动坐标;根据所述滑动坐标,确定所述用户在特定触摸区进行持续滑动操作。
第一方面的第二种可能的实现方式中,所述接收操作特定触摸区的持续滑 动之前,包括:控制所述可穿戴设备关闭非特定触摸区的触摸功能。
结合第一方面或第一方面的上述任一可能的实现方式,在第一方面的第三种可能的实现方式中,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
结合第一方面或第一方面的上述任一可能的实现方式,在第一方面的第四种可能的实现方式中,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
结合第一方面或第一方面的上述任一可能的实现方式,在第一方面的第五种可能的实现方式中,所述接收操作特定触摸区的持续滑动之前,所述方法还包括:根据用户的输入操作,激活所述特定触摸区;其中,所述激活所述特定触摸区包括以下方式之一:确定所述用户的滑动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
结合第一方面或第一方面的上述任一可能的实现方式,在第一方面的第六种可能的实现方式中,所述根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:根据所述持续滑动信号持续控制界面内容的缩放或切换;根据所述持续滑动信号持续控制菜单列表的导航;根据所述持续滑动信号持续调节音视频播放的进度或音量;根据所述持续滑动信号持续调解系统显示时间。
第二方面,提供一种可穿戴设备,所述可穿戴设备包括:输入模块,用于接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,所述特定触摸区 临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;执行模块,用于根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
第二方面的第一种可能的实现方式中,所述输入模块还包括接收子模块、解析子模块和确定子模块:所述接收子模块,接收用户的滑动操作,产生滑动操作信号;所述解析子模块,解析所述滑动操作信号,获取滑动坐标;所述确定子模块,根据所述滑动坐标,确定所述用户在特定触摸区进行持续滑动操作。
第二方面的第二种可能的实现方式中,所述输入模块还包括控制子模块,所述控制子模块,在所述输入模块接收操作所述特定触摸区的持续滑动之前,用于控制所述可穿戴设备关闭非特定触摸区的触摸功能。
结合第二方面或第二方面的上述任一可能的实现方式,在第二方面的第三种可能的实现方式中,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
结合第二方面或第二方面的上述任一可能的实现方式,在第二方面的第四种可能的实现方式中,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
结合第二方面或第二方面的上述任一可能的实现方式,在第二方面的第五种可能的实现方式中,所述可穿戴设备还包括激活模块,所述激活模块根据用户的输入操作,激活所述特定触摸区,所述激活模块通过以下方式之一激活所述特定触摸区:确定所述用户的滑动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
结合第二方面或第二方面的上述任一可能的实现方式,在第二方面的第六种可能的实现方式中,所述执行模块,根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:所述执行模块根据所述持续滑动信号持续控制界面内容的缩放或切换;所述执行模块根据所述持续滑动信号持续控制菜单列表的导航;所述执行模块根据所述持续滑动信号持续调节音视频播放的进度或音量;根据所述持续滑动信号持续调解系统显示时间。
第三方面,提供一种可穿戴设备,所述可穿戴设备包括处理器和触摸屏,其中,所述触摸屏通过数据总线与所述处理器连接;所述触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;其中,所述特定触摸区临近所述可穿戴设备的触摸屏触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;所述处理器根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
第三方面的第一种可能的实现方式中,所述触摸屏接收用户的滑动操作;所述处理器解析所述滑动操作信号,获取滑动坐标;根据所述滑动坐标,确定所述用户在所述特定触摸区进行持续滑动操作。
第三方面的第二种可能的实现方式中,所述处理器在所述触摸屏接收操作所述特定触摸区的持续滑动之前,关闭所述触摸屏的非特定触摸区的触摸功能。
结合第三方面或第三方面的上述任一可能的实现方式,在第三方面的第三种可能的实现方式中,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
结合第三方面或第三方面的上述任一可能的实现方式,在第三方面的第四种可能的实现方式中,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
结合第三方面或第三方面的上述任一可能的实现方式,在第三方面的第五种可能的实现方式中,所述处理器,还根据用户的触摸操作激活所述特定触摸区,其中,激活所述特定触摸区包括以下方式之一:确定所述用户的滑动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
结合第三方面或第三方面的上述任一可能的实现方式,在第三方面的第六种可能的实现方式中,所述处理器根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:所述处理器根据所述持续滑动信号持续控制界面内容的缩放或切换;根据所述持续滑动信号持续控制菜单列表的导航;根据所述持续滑动信号持续控制音频或视频播放的进度;根据所述持续滑动信号持续调解系统显示时间。
第四方面,提供一种计算机程序,所述计算机程序包括指令,所述指令使所述可穿戴设备执行第一方面或第一方面的任一可能的实现方式的触摸操作方法。
第五方面,提供一种可穿戴设备的图形用户界面GUI,所述可穿戴设备接收用户持续滑动特定触摸区的操作,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;所述可穿戴设备根据所述持续滑动信号持续控制所述GUI的持续显示变化。
第五方面的第一种可能的实现方式中,所述可穿戴设备根据所述持续滑动信号持续控制所述GUI的持续显示变化,包括以下至少一种方式:根据所述持续滑动信号控制界面内容的持续缩放或切换;根据所述持续滑动信号控制菜单列表的持续导航;根据所述持续滑动信号控制音频或视频播放的进度持续提示或音量持续调解提示;根据所述持续滑动信号持续控制系统显示时间的持续调 整过程。
结合第五方面或第五方面的第一种可能的实现方式,在第五方面的第二种可能的实现方式,当所述可穿戴设备根据所述持续滑动信号持续控制菜单列表的导航时,所述所述可穿戴设备控制所述当前菜单列表临近所述触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等。
结合第五方面或第五方面的任一种可能的实现方式,在第五方面的第三种可能的实现方式,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
第六方面,提供一种触摸屏,所述触摸屏应用于可穿戴设备,所述触摸屏设有特定触摸区,其中,所述特定触摸区临近所述触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;所述触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;以使所述可穿戴设备根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
第六方面的第一种可能的实现方式中,所述特定触摸区为环绕所述触摸屏周边的封闭或半封闭的区域。
结合第六方面或第六方面的第一种可能的实现方式,在第六方面的第二种可能的实现方式,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
本发明实施例的上述几个方面,通过在穿戴设备的触摸屏的周边设置特定触摸区,用户可以在该特定触摸区进行滑动操作,控制界面显示变化或应用软件的进度,通过设置特定触摸区,最大限度的增加了控制区域的长度,便于用户更准确控制界面改变或应用程序进度,符合用户操作习惯。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例的可穿戴设备的整体示意图;
图2是本发明实施例的该可穿戴设备的硬件架构示意图;
图3A-3B是本发明实施例的该可穿戴设备的特定触摸区的示意图;
图4是本发明实施例的可穿戴设备的特定触摸区的另一种方式的示意图;
图5是本发明实施例的可穿戴设备的图标界面缩放的示意图;
图6为本发明实施例的可穿戴设备的控制菜单导航的示意图;
图7A-7B为本发明实施例的可穿戴设备的控制音视频音量和进度的示意图;
图8A-8B为本发明实施例的可穿戴设备的控制调节系统时间的示意图;
图9是本发明实施例的可穿戴设备的触摸操作方法的流程图;
图10是本发明实施例的可穿戴设备的模块图;
图11是本发明另一实施例的可穿戴设备的模块图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例描述一种可穿戴设备及该穿戴设备的触摸操作方法,其中,该可穿戴设备可以为智能手表、智能手环、智能项链等带有显示屏的可穿戴式 设备,本实施例以智能手表为例详细说明实现本发明的技术方案,该智能手表的触摸屏可以为任何形状,例如,可以为规则圆形、近似圆形或方形等,这里为了便于说明,该智能手表的显示屏的形状定义为规则的圆形,当然,本发明实施例对该可穿戴设备的显示屏形状不做任何限定,不同厂家根据市场需要定制。
目前,用户对可穿戴设备的界面控制或者应用软件进度的控制是通过机械的旋钮,例如,智能手表的表冠,通常由于可穿戴设备本身大小的限制,该旋钮的尺寸较小,用户操作起来并不方便,也难以保证控制的精确度,同时机械旋钮也增加了设计成本。本发明实施例考虑上述问题,通过在穿戴设备的触摸屏的周边设置特定触摸区,用户可以在该特定触摸区进行滑动操作,从而控制界面显示变化或应用软件的进度,通过设置特定触摸区,最大限度的增加了控制区域的长度,便于用户更准确控制界面改变或应用程序进度,符合用户操作习惯。
以下通过具体实施例对如何解决上述问题进一步描述。
实施例一
图1为本发明实施例的可穿戴设备的整体示意图。
该可穿戴设备100可以包括本体10和承载部20,该本体10与该承载部20可以固定连接,也可以可拆卸连接,该承载部20可用于佩戴于用户身上。
进一步,图2本发明实施例的可穿戴设备的硬件结构示意图,该本体10至少包括触摸屏11、至少一个处理器12,该处理器12控制该触摸屏11的显示,其中,该触摸屏11的周边设有特定触摸区110,该特定触摸区是该触摸屏的一部分;所述处理器12通过所述触摸屏11接收用户操作所述特定触摸区的持续滑动操作信号,所述处理器根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
本发明实施例的可穿戴设备通过在触摸屏周围设置特定触摸区,符合用户操作习惯,且最大限度的增加了控制区域的长度,便于用户更准确的对相应功 能进行持续调节。
以下进一步说明如何设置该特定触摸区。
具体地,如图3A-3B所示,该特定触摸区110可以为环绕该可穿戴设备的触摸屏周边的封闭的区域(图3A),或者可以为半封闭的区域(图3B),以及在该区域以其他方式设置的触摸区,图3A-3B的设置的特定触摸区是以环形的方式,仅为本实施例中给出的例子说明,该区域的形状不限定为环形也可以为其他形状。
进一步的或可选的,该特定触摸区的任一触摸点与该触摸屏11边缘的距离不大于设定阈值,所述设定阈值可以不超过所述触摸屏显示区的中心到所述触摸屏11的边缘的距离的一半、三分之一或四分之一等。
需要说明一点的是,该特定触摸区110是所述触摸屏11的一部分,可以包括:该特定触摸区110沿该触摸屏11的显示区域112的边缘以外设置,该特定触摸区110不显示内容,仅用于接收用户的触摸操作,如图3A所示。
可选的,该特定触摸区110也可以沿该触摸屏11的显示区域112的边缘以内设置,此时,该特定触摸区110是该显示区域112的一部分,可以显示界面内容,如图4所示,为便于理解,屏幕边缘与虚线之间的区域为示意出的该特定触摸区110,实际的显示界面不存在该特定触摸区的虚线框。
需要说明是,该边缘以内的特定触摸区110比该边缘以外的特定触摸区110更靠近该显示区域112的中心。
根据上述定义的该特定触摸区,以下通过该可穿戴设备的各硬件进一步说明该可穿戴设备的触摸操作的实现原理。
可选的,该触摸屏11接收用户的滑动操作;该处理器12可以解析该滑动操作信号,获取滑动坐标;根据该滑动坐标,确定该用户在该特定触摸区进行持续滑动操作,进一步的,所述处理器12根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
可选的,该处理器12在该触摸屏11接收操作所述特定触摸区110的持续 滑动之前,关闭该触摸屏的非特定触摸区的触摸功能。具体的,在该非特定触摸区的触摸功能关闭的状态下,该触摸屏11不产生触摸操作信号,处理器12也就无法接收触摸操作信号。可选的,在该非特定触摸区的触摸功能关闭的状态下,该触摸屏11也可以产生触摸操作信号。该处理器12根据该触摸操作信号,确定该用户的触摸操作在该非特定触摸区,则不响应该触摸操作信号。当该处理器11识别用户操作的区域在该特定触摸区时,则该处理器11响应该触摸操作信号。比如,该处理器11根据用户在该特定触摸区110的该持续滑动操作信号,控制当前的显示界面缩小,使得该当前的显示界面与该特定触摸区110至少不重叠。也可以是,该处理器11在未接收到在该特定触摸区110的该持续滑动操作信号之前,该处理器11不改变该当前的显示界面的布局或尺寸。
还可以选择的,该特定触摸区110也可以只有在激活的状态下,才会接收用户的持续滑动操作来控制当前界面的变化或者调节前台运行的应用的进度等。比如,在该特定触摸区顺时针或逆时针持续滑动。该特定触摸区110在未激活的状态下,可以作为该显示区域112的常规触摸区域,接收常规的触摸操作。这里所说的常规的触摸操作为现有技术中的触摸显示屏所能实现的触摸操作。
当该特定触摸区110被激活时或激活后,该处理器11控制当前的显示界面缩小,使得该显示界面与该特定触摸区110至少不重叠。也可以的是,当该特定触摸区110被激活时或激活后,该处理器11在未接收到在该特定触摸区110的该持续滑动操作信号之前,该处理器11不改变当前显示界面的布局或尺寸,也就是该特定触摸区110被激活时或激活后的显示界面与该特定触摸区110被激活前相同,使得用户无感知,界面简洁。
用户激活该特定触摸区110的方式可以通过以下几种方式实现,激活的方式具有多样性,本实施例仅作为示例说明,但并不限于该些方式,通过为该特定触摸区110设定激活方式,可以减少用户在使用过程中或无意中碰触该特定触摸区110而引起的误操作。
用户可以沿该特定触摸区110滑动操作,该处理器12若检测到该滑动操作的轨迹坐标均在该特定触摸区110的范围且确定该用户的滑动轨迹为预先设定的滑动轨迹,则激活该特定触摸区110,并执行相应滑动操作的指令。
可选的,用户还可以通过点击该特定触摸区的任意一点或指定点来激活该特定触摸区110,用户手指或触摸物体可以不离开点击的触摸点,直接以该触摸点为起始点沿该特定触摸区顺时针或逆时针滑动,执行相应滑动操作的指令,该处理器12根据该滑动操作的指令从而实现相应的控制。
可选的,用户通过点击所述特定触摸区的任意一点或指定点来激活该特定触摸区110后,用户手指或触摸物体可以短时间离开该点击的触摸点并离开触摸屏11,该短时间可以通过预先设定,比如2s;然后用户在该短时间内再沿该特定触摸区顺时针或逆时针持续滑动,执行相应滑动操作的指令,该处理器12根据该滑动操作的指令实现相应的控制。
需要说明的是,用户点击该特定触摸区110的任一点或指定点以激活该特定触摸区110过程中,其中的点击的次数可以预先设定,如可以包括单击、双击等多种点击方式,本实施例对此不做限定。
可选的,激活该特定触摸区110也可以通过虚拟指定按键或者通过机械按钮或旋钮来实现,本实施例中不再详细说明。
可选的,也可以在该可穿戴设备100每次开机时就激活该特定触摸区110,无需设定激活操作。
可选的,该处理器12也可以根据触摸屏11的显示内容或前台运行应用的类别,自动激活该特定触摸区110,根据用户在该特定触摸区110的持续滑动对该可穿戴设备的至少一个功能进行持续调节。
例如;该处理器12识别当前显示界面的内容为图片、网页、文字等信息或者确定当前界面的运行应用软件为音视频播放器,又或者是显示界面为调节系统时间等,则自动激活该特定触摸区110,当然,还有其他满足自动激活该特定触摸区110的情形,这里不再一一列举。
可选的或进一步的,该可穿戴设备100可以使用激活该特定触摸区110的操作方式,退出该特定触摸区110的激活状态,或者也可以通过其他操作方式退出,这里不做限定。
该处理器12具体根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节,可以至少通过以下方式实现。
该处理器12接收该持续滑动信号,解析第一时间段接收的该持续滑动信号,获取该第一时间段的滑动坐标,其中,该持续滑动的始点到终点的时间被划分为N个时间段,N=1,…,n,n为正整数,该第一时间段为该N个时间段的第一个时间段,第二时间段为N个时间段的第二个时间段,以此类推,第N时间段为N个时间段的第N个时间段,该N个时间段的时间长度可以相等也可以不等,其中,该每个时间段可以包括至少一个采样坐标;
根据该第一时间段获取的滑动坐标的变化量与相应功能的调节量的对应关系,执行第一调节指令。
该处理器12解析第二时间段接收的该持续滑动信号,获取该第二时间段的滑动坐标;根据该该第二时间段获取的滑动坐标的变化量与相应功能的调节量的对应关系,执行第二调节指令。
以此类推,该处理器12顺次解析该持续滑动信号,直至获取第N时间段的滑动坐标,执行第N调节指令。
其中,根据该第一时间段获取的滑动坐标的变化量与相应功能的调节量的对应关系,执行第一调节指令,具体可以为,根据该第一时间段获取的滑动坐标计算滑动距离,根据该滑动距离与与相应功能的调节量的对应关系,执行第一调节指令。
可选的,也可以根据设定数量的时间段与相应功能的调节量的对应关系,执行第一调节指令,比如,采样两个时间段的坐标数据,对应调节音量的五分之一等。
以上仅为该处理器12具体根据该持续滑动信号对该可穿戴设备的至少一 个功能进行持续调节的实现原理的举例,可实现的方案多样化,实际产品还可以通过其他方式实现,本实施例不对此限定。
由上可知上述出现的持续调解,则可以理解为,该处理器12根据每个时间段获取的该持续滑动信号,都会执行一次相应功能的调解指令,也就是,用户在持续滑动的同时,也在动态的逐步调解相应的功能参数,而并非等该持续滑动结束后再执行调解指令。
其中,该处理器12根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节,包括至少一种以下方式:根据该持续滑动信号持续控制界面的缩放或切换;根据该持续滑动信号持续控制菜单列表的导航;根据该持续滑动信号持续调节音视频播放的进度;根据该持续滑动信号持续调解系统显示时间等。
如下通过多个例子来进一步说明该处理器12根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节,包括但不限于以下说明的实施例。
当前界面内容可以为多个应用图标、图片或页面等,该处理器12根据用户操作该特定触摸区110的持续滑动方式,放大或缩小当前该图标、图片或页面,如:顺时针滑动对应放大该当前界面的内容,逆时针滑动对应缩小该当前界面的内容(如图5所示)。
可选的或进一步的,所述处理器12还可以根据用户对所述特定触摸区110另一持续滑动方式,控制所述界面的切换,如,用户在所述特定触摸区单击再顺时针滑动,则所述图标界面、图片或页面等向前切换;用户在该特定触摸区单击再逆时针滑动,则该图标界面、图片或页面等向后切换。
其中,该界面的切换和界面的缩放可以通过不同的操作方式区分,例如,默认持续滑动操作该特定触摸区对应该界面的缩放,单击再滑动操作该特定触摸区对应该界面的切换,或者其他可区分的操作方式,可以区分不同能的操作方式有多种,本实施例不再一一例举。
可选的或进一步的,图6为本发明实施例的可穿戴设备控制菜单导航的示 意图。该处理器12根据该持续滑动信号持续控制菜单列表的导航,例如,该处理器12确定当前显示的界面为联系人列表,则根据用户的顺时针或逆时针滑动,控制该触摸屏11上下移动显示该联系人列表,也可以根据该持续滑动操作逐个高亮显示每个联系人姓名,本发明还可以包括其他菜单列表的情形,该处理器12根据当前应用的类别进行识别。
可选的或进一步的,当前界面为菜单列表时,该处理器12可以控制该当前菜单列表临近该触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等,这样可以一个显示页面中增加菜单条目的数量,缓解显示界面较小而显示内容较长的问题。
可选的或进一步的,所述处理器12还可以根据该持续滑动信号持续调节音视频播放的进度或者音量,如图7A-7B所示,其中,该处理器12根据根据不同的该持续滑动信号持续控制该音视频的进度或音量。根据不同的持续滑动方式来区分控制该音视频的进度或音量与上述持续控制界面的缩放或切换类似,此处不再重复说明。操作方式多种多样,可以由用户来定义也可以厂家预先定义,本发明实施例对此不做限定,其中,该音视频的音量和进度的调解过程可以实时显示于该触摸屏11,便于用户事实了解调解量。
可选的或进一步的,该处理器12还可以该持续滑动信号持续调解系统显示时间,如图8A-8B所示,该处理器12根据用户顺时针或逆时针滑动该特定触摸区调解虚拟时钟表针或者数字时间。
需要说明的是,上述实施例中,该处理器12该持续滑动信号持续控制菜单列表的导航、控制音视频的音量或进度、控制界面的切换或缩放、或者调解系统时间时,在同一个界面上可以通过不同的滑动操作实现不同功能的控制。
可以理解的,如图2所示,该可穿戴设备100还可以包括存储器60,可用于存储软件程序以及模块,处理器12通过运行存储在存储器60的软件程序以及模块,从而执行该可穿戴设备100的各种功能应用以及数据处理。存储器60可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、 至少一个功能所需的应用程序(比如声音播放功能、图象播放功能等)等;存储数据区可存储根据可穿戴设备100的使用所创建的数据(比如音频数据、电话本等)等。此外,存储器60可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
该触摸屏11,包括,触控面板31和显示面板21,该触控面板31可覆盖显示面板21,该触控面板31,可用于接收输入的触摸操作信息、数字或字符信息,以及产生与可穿戴设备100的用户设置以及功能控制有关的键信号输入。触控面板31,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板31上或在触控面板31附近的操作),并根据预先设定的程式驱动相应的连接装置。可选的,触控面板31可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器12,并能接收处理器12发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板31。
显示面板21可用于显示由用户输入的信息或提供给用户的信息以及可穿戴设备100的各种菜单及各应用程序运行后显示的信息。显示面板21可以采用LCD(Liquid Crystal Display,液晶显示器)、OLED(Organic Light-Emitting Diode,有机发光二极管)等形式来配置显示面板21。进一步的,当触控面板31检测到在其上或附近的触摸操作后,传送给处理器12以确定触摸事件的类型,随后处理器12根据触摸事件的类型在显示面板21上提供相应的视觉输出。触控面板31与显示面板21可以集成一体而实现可穿戴设备100的输入和输出功能,但是在某些实施例中,也可以作为两个独立的部件来实现可穿戴设备100的输入和输入功能。
该可穿戴设备100还可以包括音频单元80,该音频单元80进一步包括音 频电路81和扬声器82。音频电路81可将接收到的音频数据转换后的电信号,传输到扬声器82,由扬声器82转换为声音信号输出。
该可穿戴设备100还可以包括至少一个传感器40,可以感测人体体征数据,如:心跳、血压、体温、睡眠等,还可以检测运动数据等。
该可穿戴设备100还可以包括蓝牙模块50、WiFi模块90,属于短距离无线传输技术,可穿戴设备100通过WiFi模块90可以帮助用户收发电子邮件、浏览网页和访问流式媒体等,它为用户提供了无线的宽带互联网访问。
该可穿戴设备100还包括给各个部件供电的电源91(比如电池),优选的,电源91可以通过电源管理系统与处理器30逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗等功能。
尽管未示出,该可穿戴设备100还可以包括摄像头等,在此不再赘述。
该处理器12是该可穿戴设备100的控制中心,利用各种接口和线路连接整个可穿戴设备的各个部分,通过运行或执行存储在存储器60内的软件程序和/或模块,以及调用存储在存储器60内的数据,执行可穿戴设备100的各种功能和处理数据,从而对设备进行整体监控。可选的,该处理器12可包括一个或多个处理单元;优选的,处理器12可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器12中。
虽然图2示出了该可穿戴设备的多个元件,但是可以理解的是,其并不属于可穿戴设备100的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
实施例二
上述实施例为本发明的实体硬件实施例,以下在该实体硬件实施例的基础上概括性的描述该可穿戴设备的触摸操作方法的实施例,该方法实施例的实现方案可参考上述实体硬件实施例,方法实施例的详细实现方案不再敷述。
图9是本发明实施例的可穿戴设备的触摸操作方法的流程图。
本实施例提供一种可穿戴设备的触摸操作方法,该方法包括如下步骤。
步骤101:接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,该特定触摸区临近该可穿戴设备的触摸屏的周边,且该特定触摸区是该触摸屏的一部分。
步骤102:根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
本发明实施例的可穿戴设备通过在触摸屏周围设置特定触摸区,符合用户操作习惯,且最大限度的增加了控制区域的长度,便于用户更准确的对相应功能进行持续调节。
具体的,该接收操作特定触摸区的持续滑动,包括:
接收用户的滑动操作,产生滑动操作信号;
解析该滑动操作信号,获取滑动坐标;
根据该滑动坐标,确定该用户在特定触摸区进行持续滑动操作。
可选的,该接收操作特定触摸区的持续滑动之前,包括:控制该可穿戴设备关闭非特定触摸区的触摸功能。
该特定触摸区为环绕该可穿戴设备的触摸屏周边的封闭的或半封闭的区域。该特定触摸区沿该触摸屏的显示区域的边缘以外设置,该特定触摸区不显示内容。
可选的,该特定触摸区沿该触摸屏的显示区域的边缘以内设置,该特定触摸区显示内容。
需要说明的是,该特定触摸区是该触摸屏的一部分,大致占该触摸屏的二分之一、三分之一或四分之一等,根据厂家自定义。
在该步骤102之前,该方法还包括:激活该特定触摸区。其中,该激活该特定触摸区至少包括以下方式之一:确定该用户的滑动轨迹为在该特定触摸区设定的滑动轨迹该,则激活该特定触摸区;确定该用户的滑动轨迹的起点为指定点, 且该滑动轨迹坐标在该特定触摸区,则激活该特定触摸区;点击设定次数该特定触摸区的任意点或指定位置来激活该特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活该特定触摸区;或者,开机时自动激活该特定触摸区。
进一步的,该根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:根据该持续滑动信号持续控制界面内容的缩放或切换;根据该持续滑动信号持续控制菜单列表的导航;根据该持续滑动信号持续调节音视频播放的进度或音量;根据该持续滑动信号持续调解系统显示时间。
当根据该持续滑动信号持续控制菜单列表的导航时,该处理器12控制该当前菜单列表临近该触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等(如图6所示),这样可以在一个显示页面中增加菜单条目的数量,缓解显示界面较小而显示内容较长的问题。
需要说明的是,本实施例的可穿戴设备的触摸操作方法更细节的技术方案可以参考实施例一的所有内容。
实施例三
图10是本发明实施例的可穿戴设备的模块图。
本实施例提供一种可穿戴设备200,依据上述第二实施例的方法步骤进一步描述,细节方案包括上述任一实施例的内容,可相互参考引用。
该可穿戴设备200包括输入模块201和执行模块203,该输入模块201和该执行模块203连接,
该输入模块201,用于接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,该特定触摸区临近该可穿戴设备的触摸屏的周边,且该特定触摸区是该触摸屏的一部分;
该执行模块203,用于根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
该输入模块还包括接收子模块211、解析子模块212和确定子模块213, 该接收子模块211,接收用户的滑动操作,产生滑动操作信号;该解析子模块212,解析该滑动操作信号,获取滑动坐标;该确定子模块213,根据该滑动坐标,确定该用户在特定触摸区进行持续滑动操作。
可选的,如图11所示,该输入模块201还可以包括接收子模块211和控制子模块214,该控制子模块214,在该输入模块201接收操作该特定触摸区的持续滑动之前,用于控制该可穿戴设备关闭非特定触摸区的触摸功能。图10和图11中的该激活模块204不是必要的,本事实例不做具体限定。
具体地,该特定触摸区为环绕该可穿戴设备的触摸屏周边的封闭的或半封闭的区域。。
该特定触摸区沿该触摸屏的显示区域的边缘以外设置,该特定触摸区不显示内容。
可选的,该特定触摸区沿该触摸屏的显示区域的边缘以内设置,该特定触摸区显示内容。
进一步或可选的,该可穿戴设备200还可以包括激活模块204,该激活模块204,用于激活该特定触摸区。其中,激活模块204根据用户的输入操作,激活该特定触摸区,该激活模块通过以下方式之一激活该特定触摸区:确定该用户的滑动轨迹为在该特定触摸区设定的滑动轨迹该,则激活该特定触摸区;确定该用户的滑动轨迹的起点为指定点,且该滑动轨迹坐标在该特定触摸区,则激活该特定触摸区;点击设定次数该特定触摸区的任意点或指定位置来激活该特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活该特定触摸区;开机时自动激活该特定触摸区。
进一步的,该执行模块203,根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:该执行模块根据该持续滑动信号持续控制界面内容的缩放或切换;该执行模块根据该持续滑动信号持续控制菜单列表的导航;该执行模块根据该持续滑动信号持续调节音视频播放的进度或音量;根据该持续滑动信号持续调解系统显示时间。
当根据该持续滑动信号持续控制菜单列表的导航时,该执行模块203控制该当前菜单列表临近该触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等(如图6所示),这样可以在一个显示页面中增加菜单条目的数量,缓解显示界面较小而显示内容较长的问题。
本实施例的可穿戴设备,根据用户触摸操作特定触摸区,多样性的控制界面显示及应用的进度,符合用户的操作习惯,且提高用户控制的准确性。
实施例四
本实施例提供一种触摸显示屏,以下均简称该触摸显示屏为触摸屏,可以应用于上述第一实施例的可穿戴设备100中,该触摸显示屏接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,该特定触摸区临近该触摸屏的周边,且该特定触摸区是该触摸屏的一部分,使得该可穿戴设备100根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
其中,该特定触摸区临近该的触摸屏的周边,且该特定触摸区是该触摸屏的一部分。
具体地,该特定触摸区为环绕该触摸屏周边的封闭或半封闭的区域。该特定触摸区沿该触摸屏的显示区域的边缘以外设置,该特定触摸区不显示内容。
可选的,该特定触摸区沿该触摸屏的显示区域的边缘以内设置,该特定触摸区显示内容。
可以理解的,本实施例的触摸显示屏可以自身设置有处理器,也可以与外部可穿戴设备的处理器连接,还可以包括其他必要元件,该处理器的执行方案引用实施例一中的方案,本实施例不再敷述。
本实施例的触摸显示屏,根据用户触摸操作特定触摸区,多样性的控制界面显示及应用的进度,符合用户的操作习惯,且提高用户控制的准确性。
实施例五
基于上述任一实施例的技术方案,本实施例提供一种可穿戴设备的图形用 户界面GUI,本实施例的该可穿戴设备可以引用上述实施例一的架构和执行方案,该可穿戴设备至少包括触摸屏、至少一个处理器,该处理器控制该触摸屏11的显示,其中,该触摸屏11的周边设有特定触摸区110,该特定触摸区是该触摸屏的一部分;该处理器12通过该触摸屏11接收操作特定触摸区的持续滑动,产生持续滑动信号,该处理器根据该持续滑动信号控制该GUI的持续显示变化。
该特定触摸区为环绕该可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
根据该持续滑动信号控制该GUI的显示变化,包括以下至少一种方式:根据该持续滑动信号持续控制界面内容的缩放或切换;根据该持续滑动信号持续控制菜单列表的导航;根据该持续滑动信号持续调节音视频播放的进度或音量的界面提示;根据该持续滑动信号持续调解系统显示时间。
当根据该持续滑动信号持续控制菜单列表的导航时,该处理器控制该当前菜单列表临近该触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等(如图6所示),这样可以在一个显示页面中增加菜单条目的数量,缓解显示界面较小而显示内容较长的问题。
本实施例的可穿戴设备的图形用户界面GUI,根据用户操作特定触摸区的操作指令控制显示界面的变化,符合用户的使用习惯,增加控制界面改变的精确度。
其他实施例中,还可以是存储一个或多个程序的计算机可读存储介质,该一个或多个程序包括指令,该指令当被该可穿戴设备执行时执行以下事件,该可穿戴设备包括触摸屏和处理器,
该触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;其中,该特定触摸区临近该可穿戴设备的触摸屏触摸屏的周边,且该特定触摸区是该触摸屏的一部分;该处理器根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
另一实施例,还可以是一个计算机程序,该一个或多个程序包括指令,该指令当被该可穿戴设备执行时执行以下事件,该可穿戴设备包括触摸屏和处理器,
该触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;其中,该特定触摸区临近该可穿戴设备的触摸屏触摸屏的周边,且该特定触摸区是该触摸屏的一部分;该处理器根据该持续滑动信号对该可穿戴设备的至少一个功能进行持续调节。
实施方案可以参考上述实施例一的实现方式,本实施例不再重复说明。
需要说明的是,上述本发明各实施例之间不是孤立的,技术方案可以相互引用,未免造成重复冗余不进行重复性的说明。
结合本文中所公开的实施例中描述的各方法步骤和模块,能够以电子硬件或者计算机软件和硬件二者的结合来实现,在上述说明中已经按照功能一般性地描述了各实施例的步骤及组成。这些功能究竟以硬件还是软件和硬件的方式来执行,取决于技术方案的特定应用和设计约束条件。本领域普通技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
结合本文中所公开的实施例描述的方法或步骤可以用硬件、处理器执行的软件程序,或者二者的结合来实施。软件程序可以置于随机存储器(RAM)、内存、只读存储器(ROM)、电可编程ROM、电可擦除可编程ROM、寄存器、硬盘、可移动磁盘、CD-ROM、或技术领域内所公知的任意其它形式的存储介质中。
尽管通过参考附图并结合优选实施例的方式对本发明进行了详细描述,但本发明并不限于此。在不脱离本发明的精神和实质的前提下,本领域普通技术人员可以对本发明的实施例进行各种等效的修改或替换,而这些修改或替换都应在本发明的涵盖范围内。

Claims (29)

  1. 一种可穿戴设备的触摸操作方法,该方法包括:接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;
    根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
  2. 根据权利要求1所述的方法,其特征在于,所述接收操作特定触摸区的持续滑动,包括:
    接收用户的滑动操作,产生滑动操作信号;
    解析所述滑动操作信号,获取滑动坐标;
    根据所述滑动坐标,确定所述用户在特定触摸区进行持续滑动操作。
  3. 根据权利要求1所述的方法,其特征在于,所述接收操作特定触摸区的持续滑动之前,包括:控制所述可穿戴设备关闭非特定触摸区的触摸功能。
  4. 根据权利要求1-3任一项所述的方法,其特征在于,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
  5. 根据权利要求1-4任一项所述的方法,其特征在于,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
    或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
  6. 根据权利要求1-5任一项所述的方法,其特征在于,所述接收操作特定触摸区的持续滑动之前,所述方法还包括:根据用户的输入操作,激活所述特定触摸区;其中,所述激活所述特定触摸区包括以下方式之一:确定所述用户的滑 动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
  7. 根据权利要求1-6任一项所述的方法,其特征在于,所述根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:根据所述持续滑动信号持续控制界面内容的缩放或切换;根据所述持续滑动信号持续控制菜单列表的导航;根据所述持续滑动信号持续调节音视频播放的进度或音量;根据所述持续滑动信号持续调解系统显示时间。
  8. 一种可穿戴设备,其特征在于,所述可穿戴设备包括:
    输入模块,用于接收操作特定触摸区的持续滑动,产生持续滑动信号,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;
    执行模块,用于根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
  9. 根据权利要求8所述的可穿戴设备,其特征在于,所述输入模块还包括接收子模块、解析子模块和确定子模块:
    所述接收子模块,接收用户的滑动操作,产生滑动操作信号;
    所述解析子模块,解析所述滑动操作信号,获取滑动坐标;
    所述确定子模块,根据所述滑动坐标,确定所述用户在特定触摸区进行持续滑动操作。
  10. 根据权利要求8所述的可穿戴设备,其特征在于,所述输入模块还包 括控制子模块,所述控制子模块,在所述输入模块接收操作所述特定触摸区的持续滑动之前,用于控制所述可穿戴设备关闭非特定触摸区的触摸功能。
  11. 根据权利要求8-10任一项所述的可穿戴设备,其特征在于,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭的或半封闭的区域。
  12. 根据权利要求8-11任一项所述的可穿戴设备,其特征在于,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
    或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
  13. 根据权利要求8-12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激活模块,所述激活模块根据用户的输入操作,激活所述特定触摸区,所述激活模块通过以下方式之一激活所述特定触摸区:确定所述用户的滑动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
  14. 根据权利要求8-13任一项所述的可穿戴设备,其特征在于,所述执行模块,根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:所述执行模块根据所述持续滑动信号持续控制界面内容的缩放或切换;所述执行模块根据所述持续滑动信号持续控制菜单列表的导航;所述执行模块根据所述持续滑动信号持续调节音视频播放的进度或音量;根据所述持续滑动信号持续调解系统显示时间。
  15. 一种可穿戴设备,其特征在于,所述可穿戴设备包括处理器和触摸屏,其中,所述触摸屏通过数据总线与所述处理器连接;所述触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;其中,所述特定触摸区临近所述可穿戴设备的触摸屏触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;所述处理器根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
  16. 根据权利要求15所述的可穿戴设备,其特征在于,所述触摸屏接收用户的滑动操作;所述处理器解析所述滑动操作信号,获取滑动坐标;根据所述滑动坐标,确定所述用户在所述特定触摸区进行持续滑动操作。
  17. 根据权利要求15所述的可穿戴设备,其特征在于,所述处理器在所述触摸屏接收操作所述特定触摸区的持续滑动之前,关闭所述触摸屏的非特定触摸区的触摸功能。
  18. 根据权利要求15-17任一项所述的可穿戴设备,其特征在于,所述特定触摸区为环绕所述可穿戴设备的触摸屏周边的封闭或半封闭的区域。
  19. 根据权利要求15-18任一项所述的可穿戴设备,其特征在于,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
    或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
  20. 根据权利要求15-19任一项所述的可穿戴设备,其特征在于,所述处理器,还根据用户的触摸操作激活所述特定触摸区,其中,激活所述特定触摸 区包括以下方式之一:确定所述用户的滑动轨迹为在所述特定触摸区设定的滑动轨迹,则激活所述特定触摸区;确定所述用户的滑动轨迹的起点为指定点,且所述滑动轨迹坐标在所述特定触摸区,则激活所述特定触摸区;点击设定次数所述特定触摸区的任意点或指定位置来激活所述特定触摸区;确定按压虚拟指定按键或者机械按钮,则激活所述特定触摸区;开机时自动激活所述特定触摸区。
  21. 根据权利要求15-20任一项所述的可穿戴设备,其特征在于,所述处理器根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节,包括以下至少一种方式:所述处理器根据所述持续滑动信号持续控制界面内容的缩放或切换;根据所述持续滑动信号持续控制菜单列表的导航;根据所述持续滑动信号持续控制音频或视频播放的进度;根据所述持续滑动信号持续调解系统显示时间。
  22. 一种计算机程序,所述计算机程序包括指令,所述指令使所述可穿戴设备执行根据权利要求1至7任一项所述的方法。
  23. 一种可穿戴设备的图形用户界面GUI,所述可穿戴设备接收用户持续滑动特定触摸区的操作,其中,所述特定触摸区临近所述可穿戴设备的触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;
    所述可穿戴设备根据所述持续滑动信号持续控制所述GUI的持续显示变化。
  24. 根据权利要求23所述的GUI,其特征在于,所述可穿戴设备根据所述持续滑动信号持续控制所述GUI的持续显示变化,包括以下至少一种方式:根据所述持续滑动信号控制界面内容的持续缩放或切换;根据所述持续滑动信号控制菜单列表的持续导航;根据所述持续滑动信号控制音频或视频播放的进度持续提示或音量持续调解提示;根据所述持续滑动信号持续控制系统显示时间 的持续调整过程。
  25. 根据权利要求23或24所述的GUI,其特征在于,当所述可穿戴设备根据所述持续滑动信号持续控制菜单列表的导航时,所述所述可穿戴设备控制所述当前菜单列表临近所述触摸屏显示区周边排列,使每个菜单条目与该显示区边缘的距离相等。
  26. 根据权利要求23-25任一项所述的GUI,其特征在于,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
    或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
  27. 一种触摸屏,所述触摸屏应用于可穿戴设备,所述触摸屏设有特定触摸区,其中,所述特定触摸区临近所述触摸屏的周边,且所述特定触摸区是所述触摸屏的一部分;
    所述触摸屏接收操作特定触摸区的持续滑动,产生持续滑动信号;以使所述可穿戴设备根据所述持续滑动信号对所述可穿戴设备的至少一个功能进行持续调节。
  28. 根据权利要求27所述的触摸屏,其特征在于,所述特定触摸区为环绕所述触摸屏周边的封闭或半封闭的区域。
  29. 根据权利要求27或28所述的触摸屏,其特征在于,所述特定触摸区沿所述触摸屏的显示区域的边缘以外设置,且所述特定触摸区不显示内容;
    或者,所述特定触摸区沿所述触摸屏的显示区域的边缘以内设置,所述特定触摸区显示内容。
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