WO2020019337A1 - 智能手表及其界面控制方法 - Google Patents

智能手表及其界面控制方法 Download PDF

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Publication number
WO2020019337A1
WO2020019337A1 PCT/CN2018/097637 CN2018097637W WO2020019337A1 WO 2020019337 A1 WO2020019337 A1 WO 2020019337A1 CN 2018097637 W CN2018097637 W CN 2018097637W WO 2020019337 A1 WO2020019337 A1 WO 2020019337A1
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WIPO (PCT)
Prior art keywords
touch
instruction
dial
finger
response
Prior art date
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Ceased
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PCT/CN2018/097637
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English (en)
French (fr)
Inventor
夏新元
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Royole Technologies Co Ltd
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Shenzhen Royole Technologies Co Ltd
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Application filed by Shenzhen Royole Technologies Co Ltd filed Critical Shenzhen Royole Technologies Co Ltd
Priority to CN201880093882.7A priority Critical patent/CN112470103A/zh
Priority to PCT/CN2018/097637 priority patent/WO2020019337A1/zh
Publication of WO2020019337A1 publication Critical patent/WO2020019337A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; 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

Definitions

  • the present application relates to the field of smart wearable devices, and in particular, to a smart watch and an interface control method thereof.
  • Wearable devices are gradually favored by users for their advantages such as portability and low cost.
  • the smart watch not only has the basic functions of the watch, can display the current time, but also can interact with mobile phones or other electronic devices.
  • the existing smart watches usually use a touch screen on the dial or its physical buttons for control operations. Due to the size limitation of the smart watch itself, the user cannot use the touch screen or the keys to complete the corresponding control operations when using the smart watch, which greatly affects the user experience.
  • the embodiment of the present application discloses a smart watch and an interface control method thereof to solve the above problems.
  • the smart watch disclosed in the embodiments of the present application includes a dial and two straps, the dial is disposed on the strap, and the smart watch further includes a display screen, a strap touch unit, a processor, a memory, and a A computer program in the memory that can be run on the processor; the display screen is provided on the watch face, the watch band touch unit is provided on the watch face, and the processor is operated or Executing a computer program and / or module stored in the memory to control the display screen to display a graphical user interface, the watchband touch unit sensing a touch operation on the user to generate a touch signal, and
  • the processor executes the computer program, it is realized that: in response to the touch signal, a touch operation of the user with respect to the strap touch unit of the smart watch is obtained; a control instruction corresponding to the touch operation is determined; and Performing control on the graphical user interface according to the control instruction
  • the interface control method disclosed in the embodiment of the present application is applied to a smart watch, where the smart watch displays a graphical user interface, the smart watch includes a watchband touch unit, and the watchband touch unit senses a user's position thereon.
  • a touch signal is generated by a touch operation, and the interface control method includes: acquiring a user's touch operation on the watchband touch unit of the smart watch in response to the touch signal; and determining a phase relationship with the touch operation.
  • a corresponding control instruction and performing control on the graphical user interface according to the control instruction.
  • the smart watch of the smart watch and its interface control method of the present application determine the control instruction corresponding to the touch operation by sensing the touch operation of the user on the strap touch unit respectively, and according to the The control instruction performs page control on the graphical user interface. Therefore, when performing page control, it will not be limited by the size of the smart watch itself, thereby greatly improving the user experience.
  • FIG. 1 is a schematic structural diagram of a smart watch according to an embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of a smart watch in another direction according to an embodiment of the present application.
  • FIG. 3 is a structural block diagram of a smart watch according to an embodiment of the present application.
  • 4 to 11 are schematic diagrams of page control performed by a smart watch according to an embodiment of the present application.
  • FIG. 12 is a flowchart of an interface control method for a smart watch according to an embodiment of the present application.
  • FIG. 1 is a schematic structural diagram of a smart watch 100 according to an embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of the smart watch 100 in another direction according to an embodiment of the present application.
  • FIG. 3 is a structural block diagram of a smart watch 100 according to an embodiment of the present application. It can be understood that the FIGS. 1 to 3 are merely examples of the smart watch 100 and do not constitute a limitation on the smart watch 100.
  • the smart watch 100 may include more or more than those shown in FIGS. 1 to 3 or Fewer parts, or some parts combined, or different parts, will not be repeated here.
  • the smart watch 100 includes a dial 10 and two straps 20.
  • the dial 10 may have a square shape, a round shape, or other suitable shapes.
  • the two straps 20 are disposed on opposite sides of the dial 10.
  • the two straps 20 are used to fix the dial 10 on a user's wrist.
  • the smart watch 100 further includes a processor 30, a memory 40, a display screen 50, a dial touch unit 60, and a strap touch unit 70.
  • the processor 30 is electrically connected to the memory 40, the display screen 50, the dial touch unit 60 and the strap touch unit 70, respectively.
  • the display screen 40 is disposed on the dial 10.
  • the processor 30 controls the display screen 50 to display a graphical user interface (not shown) by running or executing computer programs and / or modules stored in the memory 40.
  • the graphical user interface is a window through which a user performs various interactions with the smart watch 100.
  • the graphical user interface has a plurality of application icons (not shown), for example, a WeChat icon, a QQ icon, a call icon, an information icon, and the like.
  • the shapes of the plurality of icons are circles of different sizes, respectively. It can be understood that, in other embodiments, the multiple icons may be in other suitable shapes, such as oval, polygon, square, etc., which are not limited herein, and are specifically set according to actual needs.
  • the plurality of icons may be arranged in an array on the graphical user interface, or may be arranged in a rotating menu, and may be specifically set in an actual application scenario.
  • the dial touch unit 60 is disposed on a side of the dial 10.
  • the watch band touch unit 70 is disposed on at least one watch band 20.
  • the watch band control unit 70 is provided on the two watch bands 20.
  • the dial touch unit 60 and the strap touch unit 70 sense a touch operation performed by a user on the dial touch unit 60 and generate a touch signal.
  • the processor 30 obtains a user's touch operation on the dial touch unit 60 or the strap touch unit 70 of the smart watch 100 in response to the touch signal, and determines to correspond to the touch operation. Control instructions, and control is performed according to the control instructions. It can be understood that, in other embodiments, the dial touch unit 60 or the strap touch unit 70 may be omitted.
  • the processor 30 determines a control instruction corresponding to the touch operation in response to a touch signal generated by the strap touch unit 70 or the dial touch unit 60, and performs control according to the control instruction. It can be understood that, in other embodiments, the straps 20 are not limited to two, and may also be one, which may be specifically set according to actual needs.
  • the dial touch unit 60 and / or the strap touch unit 70 may sense a touch operation performed by a user on the dial touch unit 60 and / or the watchband touch unit 70 to determine a control instruction corresponding to the touch operation and according to the control.
  • the instructions perform control over the graphical user interface. Therefore, when the control is performed, the size of the smart watch 100 is not limited, and the user experience is improved.
  • the dial touch unit 60 and the strap touch unit 70 are two respectively.
  • the two dial touch units 60 are respectively disposed on two opposite sides of the dial 10.
  • the two watch band touch units 70 are respectively disposed on the two watch bands 20. It can be understood that, in other embodiments, the dial touch unit 60 and the strap touch unit 70 are not limited to two, and may be specifically set according to actual needs.
  • the two dial touch units 60 are symmetrically disposed on two opposite sides of the dial 10.
  • the two watch band touch units 70 are symmetrically disposed on the two watch bands 20. It can be understood that, in other embodiments, the setting manners of the two dial touch units 60 and the two strap touch units 70 are not limited to being symmetrical, and may also be arranged in an asymmetric manner.
  • the touch operation includes, but is not limited to, single-click, double-click, single-finger swipe, two-finger tap, two-finger long press, two-finger swipe, two-finger swipe, and the like.
  • the click operation refers to a touch operation in which the number of pressings is one time within a preset time and the corresponding pressing time is less than or equal to a preset time threshold.
  • the double-click operation refers to a touch operation in which the number of pressing times is two in a preset time and the corresponding pressing time is less than or equal to a preset time threshold.
  • the single-finger sliding operation refers to a single-finger sliding movement on the dial touch unit 60 or the strap touch unit 70 in the first direction 200 or the second direction 300.
  • the first direction 200 refers to a direction from the six o'clock direction to the twelve o'clock direction of the dial 10.
  • the second direction 300 refers to a direction opposite to the first direction 200.
  • the two-finger tap operation means that two fingers each perform a single-click operation on one of the dial touch units 60 simultaneously.
  • the two-finger long press operation means that two fingers each perform a pressing operation on one of the dial touch units 60 simultaneously, and the pressing operation is longer than a preset time.
  • the two-finger same-direction sliding operation refers to a touch operation with two fingers sliding on two dial dial touch units 60 in the same direction, for example, sliding in the first direction 200 at the same time, or simultaneously
  • the second direction 300 slides.
  • the two-finger reverse sliding refers to a touch operation in which two fingers slide on two dial touch units 60 in opposite directions simultaneously, for example, two fingers slide toward each other or two fingers slide against each other.
  • the control instruction includes, but is not limited to, a zoom picture instruction, a spherical picture instruction, a distorted picture instruction, an icon movement instruction, a page turning instruction, a brightness adjustment instruction, an entry and exit application program instruction, and a return to the main page instruction.
  • the zoom picture instruction includes a zoom in picture instruction and a zoom out picture instruction.
  • the zoom-in picture instruction refers to enlarging a picture according to a certain ratio, and the ratio may be a preset ratio, or may be based on a finger on the dial touch unit 60 or the strap touch unit 70. The length is determined by the sliding length.
  • the picture reducing instruction refers to reducing a picture according to a certain ratio, and the ratio may be a preset ratio or a finger on the dial touch unit 60 or the strap touch unit 70 according to a finger.
  • the length is determined by the sliding length.
  • the spherical picture instruction refers to a spherical picture.
  • the spheroidization is a picture editing method, which spheroidizes the picture through a predetermined algorithm to change the visual presentation effect.
  • the distorted picture instruction refers to distorting a flat picture.
  • the distortion is a picture editing method, which uses a predetermined algorithm to distort the picture to change the visual presentation effect.
  • the icon moving instruction refers to changing an icon position on the graphical user interface.
  • the page turning instruction includes a page turning instruction and a page turning instruction.
  • the page turning instruction refers to turning a page to a previous page.
  • the page turning instruction refers to turning a page to the next page.
  • the brightness adjustment instruction includes an increase brightness instruction and a decrease brightness instruction.
  • the brightness increase command refers to increasing the display brightness of the display screen 50.
  • the brightness down command refers to reducing the display brightness of the display screen 50.
  • the in and out application program instructions include an entry program instruction and an exit program instruction.
  • the instruction for entering an application program refers to an application program corresponding to a selected icon.
  • the exiting application instruction refers to exiting the application corresponding to the selected icon.
  • the returning to the main page instruction refers to returning to the main page from any sub-page.
  • the memory electrically connected to the processor 30 or the built-in memory of the processor 30 further stores a correspondence table between preset preset touch operations and control instructions, and the processor 30 determines the touch operations For a corresponding preset touch operation, a control instruction corresponding to the preset touch operation is determined according to the correspondence relationship table; and control is performed according to the control instruction.
  • the correspondence table can be set in advance, and can also be set according to the individual needs of the user, which is not limited here.
  • dial touch units 60 there are two dial touch units 60.
  • the two dial touch units 60 are respectively disposed on opposite sides of the dial 10.
  • the user performs a touch operation on the two dial touch units 60 to implement page control of the graphical user interface.
  • FIG. 4 When a picture is displayed on the graphical user interface, the user controls the position by two-finger swiping operation on the two dial touch units 60 in the same direction.
  • the picture is zoomed.
  • the two dial touch units 60 generate a touch signal when the user touches a two-finger touch operation with the user's two fingers sliding along the first direction 200.
  • the processor 30 determines that the touch operation is a two-finger sliding operation in the same direction with two fingers sliding along the first direction 200, it determines that the corresponding control instruction is a zoom-in image instruction.
  • the processor 30 enlarges the selected picture in response to the enlarge picture instruction.
  • the two dial touch units 60 generate a touch signal when the user touches two finger touch operations on the two dial touch units 60 along the second direction 300 respectively.
  • the processor 30 determines that the touch operation is a two-finger swipe operation with two fingers sliding in the second direction 300, it determines that the corresponding control instruction is a picture reduction instruction.
  • the processor 30 reduces the selected picture in response to the picture reduction instruction.
  • the user may control the picture by a two-finger tap operation on the two dial touch units 60.
  • the picture is spherical.
  • the two dial touch units 60 respectively generate a touch signal when a two-finger tap operation on the user's two fingers is sensed.
  • the processor 30 determines that the touch operation is a touch operation in which two fingers perform simultaneous click operations on one dial touch unit 60, and determines that the corresponding control instruction is a spherical picture instruction.
  • the processor 30 responds to the spherical picture instruction to perform a spherical process on the selected picture.
  • the user controls the picture by a two-finger reverse sliding operation on the two dial touch units 60. Distorted changes occur at the corresponding positions.
  • the two dial touch units 60 respectively sense a user's two fingers on the two fingers to slide in opposite directions to generate a touch signal.
  • the processor 30 determines that the touch operation is a touch operation in which two fingers slide on the two dial touch units 60 simultaneously and in opposite directions at the same time, and determines that the corresponding control instruction is a picture distortion instruction.
  • the processor 30 responds to the warped picture instruction to perform a warp change process on a selected picture at a corresponding position.
  • the hour hand is clockwise from twelve o'clock to six o'clock, and is defined as the right side R of the dial 10, and the hour hand is clockwise from six o'clock.
  • the area at twelve o'clock is defined as the left L of the dial 10.
  • the processor 30 determines that the touch operation is a one-finger sliding operation on the dial touch unit 60 located on the left side L of the dial 10 in the first direction 200, and determines the corresponding operation.
  • the control instruction is a page up instruction.
  • the processor 30 responds to the page-up instruction to control page-up and page-up, and controls to display the previous page of the currently displayed page on the graphical user interface.
  • the processor 30 determines that the touch operation is a one-finger swipe operation on the dial touch unit 60 located on the left side L of the dial 10 in the second direction 300, it determines that the corresponding control instruction is page down instruction.
  • the processor 30 controls the page to turn down one page in response to the page down instruction, and controls to display the next page of the currently displayed page on the graphical user interface.
  • the user may control a multi-finger sliding operation on the dial touch unit 60 on the left side L of the dial 10 with a single finger.
  • the icons move in the corresponding direction on the graphical user interface.
  • the dial touch unit 60 located on the left L of the dial 10 senses a single-finger sliding operation on the user's finger to generate a touch signal.
  • the processor 30 determines that the touch operation is a one-finger sliding operation on the dial touch unit 60 located on the left side L of the dial 10 in the first direction 200, and determines the corresponding operation.
  • the control instruction is an icon movement instruction to move the icon in a direction corresponding to the first direction 200.
  • the processor 30 controls a plurality of icons in the menu to move in a corresponding direction in response to the icon moving instruction.
  • the processor 30 determines that the touch operation is a one-finger sliding operation sliding on the dial touch unit 60 on the left side of the dial 10 in the second direction 300, it determines that the corresponding control instruction is along with the An icon movement instruction to move in a direction corresponding to the second direction 300.
  • the processor 30 controls a plurality of icons in the menu to move in the second direction 300 in response to the icon moving instruction.
  • the user When entering any one of the sub-pages on the graphical user interface, the user simultaneously performs a long-press operation on a dial touch unit 60 with two fingers. Press Operation to return to the main page.
  • the two dial touch units 60 respectively sense a long-press operation while the user's two fingers are on it to generate a touch signal.
  • the processor 30 determines that the touch operation is a two-finger long-press operation of the user's two-finger long press on a dial touch unit 60, and determines that the corresponding control instruction is a return to the main page instruction.
  • the processor 30 controls the graphical user interface to return from the sub-page to the main page in response to the instruction to return to the main page.
  • FIG. 8 When a plurality of icons on the graphical user interface are arranged in a rotating menu, the user uses a finger on the dial touch unit 60 located on the left side L of the dial 10. One-finger swipe operation to control the rotation menu rotation. Specifically, the dial touch unit 60 located on the left L of the dial 10 senses a single-finger sliding operation on the user's finger to generate a touch signal. In response to the touch signal, the processor 30 determines that the touch operation is a one-finger sliding operation on the dial touch unit 60 located on the left L of the dial 10, and determines that the corresponding control instruction is a rotation menu instruction. The processor 30 controls the plurality of icons on the graphical user interface to rotate in a corresponding direction in response to the rotation menu instruction.
  • a touch is determined in response to the touch signal.
  • the operation is that when a single finger is clicked on the dial touch unit 60 located on the left L of the dial 10, it is determined that the corresponding control instruction is an enter application instruction to enter the application corresponding to the icon, and responds to the entry Application instructions control access to the application corresponding to the selected icon.
  • the processor 30 when the processor 30 enters the application corresponding to the selected icon, in response to the touch signal, it is determined that the touch operation is a single finger located on the left side L of the dial 10
  • the dial touch unit 60 When the dial touch unit 60 is double-clicked, it is determined that the corresponding control instruction is an application exit instruction, and in response to the application exit instruction control, the application of the currently selected icon is controlled to exit.
  • a single-finger sliding operation of the user on the dial touch unit 60 located on the right side R of the dial 10 is used to adjust the brightness of the display screen 50.
  • the dial touch unit 60 located on the right side R of the dial 10 senses a touch operation performed by a user's finger thereon to generate a touch signal.
  • the processor 30 determines that the touch operation is a one-finger sliding operation on the dial touch unit 60 located on the right side R of the dial 10 in the first direction 200, and determines the corresponding control.
  • the instruction is a brightness increase instruction, and the brightness of the display screen is increased in response to the brightness increase instruction.
  • the processor 30 determines that the touch operation is a one-finger sliding operation on the dial touch unit 60 located on the right side R of the dial 10 in the second direction 300, and determines the corresponding control.
  • the instruction is a brightness down instruction, and the brightness of the display screen is reduced in response to the brightness down instruction.
  • the two dial touch units 60 respectively sense the touch of the user's finger on it.
  • a touch signal is generated by the control operation, and the processor 30 determines that the touch operation is a two-finger sliding on the two dial touch units 60 in the opposite direction at the same time in response to the touch signal, and determines that the corresponding control instruction is Form a disc effect instruction, and control the currently playing music file to achieve a disc effect in response to the disc effect forming instruction.
  • the two strap touch units 70 are provided, and the two strap touch units 70 are respectively disposed on two straps 20.
  • the user performs a touch operation on the two strap touch units 70 to implement page control of the graphical user interface.
  • the user controls the picture zooming by a two-finger two-finger reverse sliding operation on the two strap touch units 70 respectively.
  • the two watch band touch units 70 respectively generate a touch signal by sensing a touch operation performed by a user's finger thereon.
  • the processor 30 determines that the touch operation is a two-finger reverse sliding operation of the user's two fingers sliding back and forth on the two strap touch units 70 respectively, and determines that the corresponding control instruction is Enlarge picture command.
  • the processor 30 enlarges the selected picture in response to the enlarge picture instruction.
  • the processor 30 determines that the touch operation is a two-finger reverse sliding operation in which the user's two fingers slide toward each other on the two strap touch units 70 respectively, it determines that the corresponding control instruction is a picture reduction instruction.
  • the processor 30 reduces the selected picture in response to the picture reduction instruction.
  • a twelve o'clock band near the hour hand is defined as the front side band 20 and a six o'clock band near the hour hand is defined as the rear side band 20.
  • the band touch unit 70 on the front side band 20 senses a touch operation performed by a user's finger on the band to generate a touch signal.
  • the processor 30 determines that the touch operation is a single-finger sliding operation with a single finger sliding on the strap touch unit 70 located on the front side strap 20 in the first direction 200 , Determine that the corresponding control instruction is a page up instruction.
  • the processor 30 controls the page turning one page in response to the page turning instruction, and controls to display the previous page of the currently displayed page on the graphical user interface.
  • the processor 30 determines a corresponding control instruction when it is determined that the one-finger touch operation is performed by a one-finger sliding operation on the strap touch unit 70 located on the front-side strap 20 in the second direction 300. Instructions for page down.
  • the processor 30 controls the page to turn down one page in response to the page down instruction, and controls to display the next page of the currently displayed page on the graphical user interface.
  • FIG. 11 Please refer to FIG. 11 together.
  • the user When a menu page is opened on the graphical user interface, the user performs a single-finger sliding operation on the strap touch unit 70 on the front strap 20. Controlling a plurality of icons in the menu page to move in a corresponding direction on the graphical user interface.
  • the strap touch unit 70 located on the front side strap 20 is generated by sensing a touch operation of a user's finger thereon. Touch signal.
  • the processor 30 determines that the touch operation is a single-finger sliding operation with a single finger sliding on the strap touch unit 70 located on the front side strap 20 in the first direction 200 , Determine that the corresponding control instruction is an icon movement instruction to move in a direction corresponding to the first direction 200.
  • the processor 30 controls a plurality of icons in the menu to move in a direction corresponding to the first direction 200 in response to the icon moving instruction.
  • the processor 30 determines that the touch operation is a single-finger sliding operation with a single finger sliding on the strap touch unit 70 located on the front side strap 20 in the second direction 300 , Determine that the corresponding control instruction is an icon movement instruction to move in a direction corresponding to the second direction 300.
  • the processor 30 controls a plurality of icons in the menu to move in a direction corresponding to the second direction 300 in response to the icon moving instruction.
  • a single-finger sliding operation of the user on the strap touch unit 70 located on the rear side strap 20 is used to adjust the brightness of the display screen 50.
  • the strap touch unit 70 located on the back side strap 20 senses a touch operation performed by a user's finger on it to generate a touch signal.
  • the processor 30 determines that the touch operation is a single-finger sliding operation with a single finger sliding along the first direction 200 on the strap touch unit 70 located on the rear strap 20. Determining that the corresponding control instruction is a brightness increase instruction, and increasing the brightness of the display screen 50 in response to the brightness increase instruction.
  • the processor 30 determines that the touch operation is a single-finger sliding operation of a single-finger sliding along the second direction 300 on the strap-touch unit 70 located on the back-side strap 20, the corresponding control is determined.
  • the instruction is a brightness down command, and the brightness of the display screen 50 is reduced in response to the brightness down command.
  • FIG. 12 is a flowchart of an interface control method for a smart watch 100 according to an embodiment of the present application.
  • the interface control method is applied to the aforementioned smart watch 100, and the execution order of the interface control method is not limited to the order shown in FIG.
  • the method includes steps:
  • Step 1201 Acquire a user's touch operation on the dial touch unit 60 or the strap touch unit 70 of the smart watch in response to a touch signal.
  • Step 1202 Determine a control instruction corresponding to the touch operation.
  • the touch operation includes at least one of clicking, double-clicking, single-finger swiping, two-finger tapping, two-finger long-pressing, two-finger swiping in the same direction, and two-finger swiping in the opposite direction;
  • the control instruction includes a zoom picture instruction, At least one of a spherical picture instruction, a distorted picture instruction, an icon movement instruction, a page turning instruction, a brightness adjustment instruction, an entry and exit application program instruction, and a return to the main page instruction.
  • the step "determining a control instruction corresponding to the touch operation" is specifically:
  • a control instruction corresponding to the preset touch operation is determined according to the correspondence relationship table.
  • Step 1203 Perform control on the graphical user interface according to the control instruction.
  • Interface control methods include:
  • the corresponding control instruction is a picture reduction instruction, and the selected picture is reduced in response to the picture reduction instruction.
  • the second direction 300 is opposite to the first direction 200.
  • Interface control methods include:
  • the two touch control units 60 on the dial respectively generate a touch signal by sensing a touch operation performed by a user's finger thereon, and the interface control method includes:
  • a warp change process is performed on a corresponding position of the selected picture.
  • the dial touch unit 60 located on the left L of the dial 10 senses a touch operation performed by a user's finger on the dial.
  • the interface control method includes:
  • the touch operation is a single finger sliding on the dial touch unit 60 located on the left side L of the dial 10 in the first direction 200, and it is determined that the corresponding control instruction is a page-up instruction And, in response to the page-up instruction, controlling a page to turn one page up, and controlling to display a previous page of a currently displayed page on a graphical user interface;
  • the touch operation is a single finger sliding on the dial touch unit 60 located on the left side L of the dial 10 in the second direction 300
  • the corresponding control instruction is a page down instruction
  • the page-down instruction controls page-down and page-down, and controls displaying the next page of the currently displayed page on the graphical user interface.
  • the dial touch unit 60 located on the left L of the dial 10 senses a touch operation performed by a user's finger on the dial to generate a touch signal
  • the interface control method includes:
  • the touch operation is a single finger sliding on the dial touch unit 60 located on the left side L of the dial 10 in the first direction 200, and it is determined that the corresponding control instruction is icon movement.
  • the two touch control units 60 of the dial when entering any one of the sub-pages, respectively generate a touch signal by sensing a simultaneous pressing operation of a user's two fingers on it, and the interface control method includes :
  • the touch operation is a two-finger simultaneous long-press operation on one dial touch unit 60, and the corresponding control instruction is determined to be a return to the main page instruction;
  • control the graphical user interface In response to the instruction to return to the main page, control the graphical user interface to return to the main page from the sub-page.
  • the dial touch unit 60 located on the left L of the dial 10 senses a user's finger on it.
  • a touch signal is generated by a touch operation on the screen, the interface control method includes:
  • a corresponding control command is determined to be a rotation menu command, and in response to the rotation menu An instruction to control the plurality of icons on the graphical user interface to rotate in a corresponding direction;
  • the dial touch unit 60 When the plurality of icons on the graphical user interface are rotated in a corresponding direction and an icon is selected, it is determined in response to the touch signal that the touch operation is a single finger at all positions on the left side L of the dial 10.
  • the dial touch unit 60 When the dial touch unit 60 is clicked, it is determined that the corresponding control instruction is an instruction to enter an application program, and in response to the instruction to enter the application program, the application program corresponding to the selected icon is controlled to enter;
  • the interface control method includes:
  • control the currently playing music file In response to the instruction for forming a disc effect, control the currently playing music file to achieve a disc effect.
  • the dial touch unit 60 located on the right side R of the dial 10 senses a touch operation performed by a user's finger to generate a touch.
  • the interface control method includes:
  • the touch operation is a single finger sliding on the dial touch unit 60 located on the right side R of the dial 10 in the first direction 200, and it is determined that the corresponding control instruction is to increase the height.
  • the corresponding control command is a brightness down command, and responds
  • the brightness reduction command decreases the brightness of the display screen 50.
  • the two touch control units 70 of the band respectively generate a touch signal by sensing a touch operation performed by a user's finger thereon
  • the interface control method includes:
  • the corresponding control instruction is a picture reduction instruction, and the selected picture is reduced in response to the picture reduction instruction.
  • the watchband touch unit 70 located on the front-side watchband senses a touch operation performed by a user's finger to generate a touch.
  • the interface control method includes:
  • the touch operation is a single finger sliding on the strap touch unit 70 located on the front-side strap in the first direction 200
  • the corresponding control instruction is determined to be a page-up instruction
  • performing a page-up and page-up control and displaying a previous page of a currently displayed page on a graphical user interface
  • the touch operation is a single finger sliding on the strap touch unit 70 located on the front strap in the second direction 300
  • the corresponding control instruction is a page down instruction
  • responds to the The page down instruction executes page down and controls the display of the next page of the currently displayed page on the graphical user interface.
  • the strap touch unit 70 on the front strap is generated by sensing a touch operation performed by a user's finger on the strap.
  • Touch signal the interface control method includes:
  • the touch operation is a single finger sliding in the first direction 200 on the strap touch unit 70 located on the front side strap, and it is determined that the corresponding control instruction is icon movement An instruction, and controlling a plurality of icons in the menu to move according to the first direction 200 in response to the icon moving instruction;
  • the strap touch unit 70 located on the back side strap senses a touch operation performed by a user's finger thereon to generate a touch signal.
  • the interface control method includes:
  • the touch operation is a single finger sliding on the strap touch unit 70 located on the rear strap in the first direction 200, and the corresponding control instruction is determined to be up A brightness instruction, and increasing the brightness of the display screen 50 in response to the brightness increase instruction;
  • the touch operation is a single finger sliding on the strap touch unit 70 located on the rear strap in the second direction 300
  • the corresponding control instruction is a brightness down instruction
  • responds The brightness reduction command decreases the brightness of the display screen 50.
  • the smart watch and the interface control method of the smart watch of the present application through the dial touch unit 60 and the strap touch unit 70, sense a user's touch operation on the watch, and determine the phase relationship with the touch operation. Corresponding control instructions and performing control on the graphical user interface according to the control instructions. Therefore, it is not limited by the size of the smart watch itself, thereby greatly improving the user experience.
  • the program can be stored in a computer-readable storage medium.
  • the program When executed, the processes of the embodiments of the methods described above may be included.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).
  • the processor 30 may be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), Ready-made programmable gate array (Field-Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • the general-purpose processor may be a microprocessor, or the processor may be any conventional processor.
  • the processor is a control center of the smart watch 100, and uses various interfaces and lines to connect the entire smart watch 100. Various parts.
  • the memory 40 may be used to store the computer program and / or module.
  • the memory 40 is implemented by running or executing a computer program and / or module stored in the memory 40 and calling data stored in the memory 40 to implement Various functions of the smart watch 100.
  • the memory 40 may mainly include a storage program area and a storage data area, where the storage program area may store an operating system, application programs required for multiple functions (such as a sound playback function, an image playback function, etc.), etc .; the storage data area may Stores data (such as audio data, phone book, etc.) created based on the use of the smart watch.
  • the memory 40 may include a high-speed random access memory, and may also include a non-volatile memory, such as a hard disk, an internal memory, a plug-in hard disk, a smart memory card (SMC), a secure digital (Secure Digital, SD) card, flash card, multiple disk storage devices, flash memory devices, or other volatile solid-state storage devices.
  • a non-volatile memory such as a hard disk, an internal memory, a plug-in hard disk, a smart memory card (SMC), a secure digital (Secure Digital, SD) card, flash card, multiple disk storage devices, flash memory devices, or other volatile solid-state storage devices.

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Abstract

本申请公开一种智能手表,包括表盘和表带,表盘设置在表带上,智能手表还包括显示屏、表带触控单元、处理器、存储器及存储在存储器中并可在处理器上运行的计算机程序;显示屏设置在表盘上,表带触控单元设置在表带上,处理器通过运行或执行存储在存储器内的计算机程序和/或模块而控制显示屏显示一图形用户界面,表带触控单元感应用户在其上的触控操作而产生触控信号,处理器执行计算机程序时实现:响应触控信号获取用户针对智能手表的表带触控单元的触控操作;确定与触控操作相对应的控制指令;及根据控制指令对图形用户界面执行控制。本申请还提供一种界面控制方法。通过表带触控单元执行控制。从而,控制不会受到智能手表本身大小的限制。

Description

智能手表及其界面控制方法 技术领域
本申请涉及一种智能穿戴设备领域,尤其涉及一种智能手表及其界面控制方法。
背景技术
穿戴式设备以便携、低成本等优势逐渐受到使用者的青睐。以智能手表为例,智能手表不仅具有手表的基本功能,能够显示当前时间,还可以与手机或其它电子设备进行交互。然而,现有的智能手表通常利用表盘上的触摸屏或者其实体按键进行控制操作。由于智能手表本身大小的限制,使用者在使用智能手表时无法很好的利用触摸屏或者按键完成相应的控制操作,从而大大影响使用者的使用体验。
发明内容
本申请实施例公开一种智能手表及其界面控制方法,以解决上述问题。
本申请实施例公开的智能手表,包括表盘和两条表带,所述表盘设置在所述表带上,所述智能手表还包括显示屏、表带触控单元、处理器、存储器及存储在所述存储器中并可在所述处理器上运行的计算机程序;所述显示屏设置在所述表盘上,所述表带触控单元设置在所述表带上,所述处理器通过运行或执行存储在所述存储器内的计算机程序和/或模块而控制所述显示屏显示一图形用户界面,所述表带触控单元感应用户在其上的触控操作而产生触控信号,所述处理器执行所述计算机程序时实现:响应所述触控信号获取用户针对所述智能手表的所述表带触控单元的触控操作;确定与所述触控操作相对应的控制指令;及根据所述控制指令对所述图形用户界面执行控制
本申请实施例公开的界面控制方法,应用在一智能手表上所述智能手表显示一图形用户界面,所述智能手表包括表带触控单元,所述表带触控单元感应用户在其上的触控操作而产生触控信号,所述界面控制方法包括:响应所述触控信号获取用户针对所述智能手表的所述表带触控单元的触控操作;确定与所述触控操作相对应的控制指令;及根据所述控制指令对所述图形用户界面执行控制。
本申请的智能手表的智能手表及其界面控制方法,通过所述表带触控单元各自感应用户在其上的触控操作,而确定与所述触控操作相对应的控制指令及根据所述控制指令对所述图形用户界面执行页面控制。从而,在进行页面控制时,不会受到智能手表本身大小的限制,从而大大提高用户体验。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例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申请的一些实施例,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为本申请一实施例中的智能手表的结构示意图。
图2为本申请一实施例中的智能手表在另一方向上的结构示意图。
图3为本申请一实施例中的智能手表的结构框图。
图4至图11为本申请一实施例中的智能手表进行页面控制的示意图。
图12为本申请一实施例中的智能手表的界面控制方法的流程图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,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,都属于本申请保护的范围。
请参阅图1、图2和图3,图1为本申请一实施例中的智能手表100的结构示意图。图2为本申请一实施例中的智能手表100在另一方向上的结构示意图。图3为本申请一实施例中的智能手表100的结构框图。可理解,所述图1至图3仅是所述智能手表100的示例,并不构成对所述智能手表100的限定,所述智能手表100可以包括比图1至图3所示更多或更少的部件,或者组合某些部件,或者不同的部件,此处不再赘述。
具体地,所述智能手表100包括表盘10和两条表带20。所述表盘10可以呈方形状、圆形状或者其它适合的形状。所述两条表带20设置在所述表盘10相对的两侧上。所述两条表带20用于将所述表盘10固定在使用者的腕部。所述智能手表100还包括处理器30、存储器40、显示屏50、表盘触控单元60和表带触控单元70。所述处理器30分别与所述存储器40、显示屏50、表盘触控单元60和表带触控单元70电性连接。所述显示屏40设置在所述表盘10上。所述处理器30通过运行或执行存储在所述存储器40内的计算机程序和/或模块而控制所述显示屏50显示一图形用户界面(图未示)。所述图形用户界面是用户与所述智能手表100进行各种交互的窗口。所述图形用户界面上具有多个应用程序图标(图未示),例如,微信图标、QQ图标、通话图标、信息图标等。所述多个图标的形状分别为不同尺寸的圆形。可理解,在其它实施例中,所述多个图标可呈其它适合的形状,例如,椭圆形,多边形,方形等,此处不做限制,具体根据实际需要设置。所述多个图标在所述图形用户界面上可以呈阵列状排列,也可以呈旋转菜单状排列,具体可以实际应用场景设置。所述表盘触控单元60设置在所述表盘10的侧部。所述表带触控单元70设置在至少一表带20上。在本实施例中,表带控制单元70设置在两表带20上。所述表盘触控单元60和所述表带触控单元70感应用户在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号获取用户针对所述智能手表100的所述表盘触控单元60或所述表带触控单元70的触控操作,确定与所述触控操作相对应的控制指令,及根据所述控制指令执行控制。可理解,在其它实施例中,所述表盘触控单元60或所述表带触控单元70可省略。所述处理器30响应所述表带触控单元70或所述表盘触控单元60产生的触控信号而确定与所述触控操作对应的控制指令,及根据所述控制指令执行控制。可理解,在其它实施例中,所述表带20不限于两条,还可以是一条,具体可根据实际需要设置。
本申请可通过所述表盘触控单元60和/或所述表带触控单元70感应用户在其上的触 控操作,而确定与所述触控操作相对应的控制指令及根据所述控制指令对所述图形用户界面执行控制。从而,在进行控制时,不会受到智能手表100本身大小的限制,提高用户体验。
具体地,本实施例中,所述表盘触控单元60和所述表带触控单元70分别为两条。两条表盘触控单元60分别设置在表盘10相对的两侧上。两条表带触控单元70分别设置在两条表带20上。可理解,在其它实施例中,所述表盘触控单元60和所述表带触控单元70分别不限于两条,具体可根据实际需要设置。
进一步具体地,所述两条表盘触控单元60对称设置在所述表盘10的相对的两侧上。所述两条表带触控单元70对称的设置在所述两条表带20上。可理解,在其它实施例中,所述两条表盘触控单元60和所述两条表带触控单元70的设置方式不限于对称,还可以不对称的方式设置。
具体地,所述触控操作包括但不限于单击、双击、单指滑动、双指点击、双指长按、双指同向滑动、双指反向滑动等。其中,所述单击操作是指预设时间内的按压次数为一次且对应的按压时长小于或等于预设时间阈值的触控操作。所述双击操作是指预设时间内的按压次数为两次且对应的按压时长小于或等于预设时间阈值的触控操作。所述单指滑动操作是指单指在所述表盘触控单元60或所述表带触控单元70沿第一方向200滑动或者第二方向300滑动。所述第一方向200是指从所述表盘10的六点钟方向到十二点钟方向之间连线的方向。所述第二方向300是指与所述第一方向200相反的方向。所述双指点击操作是指双指各在一条所述表盘触控单元60上同时执行单击操作。所述双指长按操作是指双指各在一条所述表盘触控单元60上同时执行按压操作且该按压操作的时长大于预设时间。所述双指同向滑动操作是指双指分别在两条所述表盘触控单元60沿相同的方向滑动的触控操作,例如,同时沿所述第一方向200滑动,或者,同时沿所述第二方向300滑动。所述双指反向滑动是指双指分别在两条所述表盘触控单元60上沿相反的方向同时滑动的触控操作,例如,双指相向滑动或者双指相背滑动。
所述控制指令包括但不限于缩放图片指令、球面化图片指令、扭曲图片指令、图标移动指令、页面翻页指令、亮度调节指令、进出应用程序指令、返回主页面指令。所述缩放图片指令包括放大图片指令和缩小图片指令。所述放大图片指令是指将图片按照一定比例放大,所述比例可以是预先设定好的比例,还可以是根据手指在所述表盘触控单元60或所述表带触控单元70上的滑动长度而确定的比例。所述缩小图片指令是指将图片按照一定比例缩小,所述比例可以是预先设定好的比例,还可以是根据手指在所述表盘触控单元60或所述表带触控单元70上的滑动长度而确定的比例。所述球面化图片指令是指将平面图片球面化。所述球面化是一种图片编辑方式,其通过既定的算法使得图片球面化,以改变视觉呈现效果。所述扭曲图片指令是指将平面图片扭曲化。所述扭曲化是一种图片编辑方式,其通过既定的算法使得图片扭曲化,以改变视觉呈现效果。所述图标移动指令是指将图标在所述图形用户界面上改变位置。所述页面翻页指令包括上翻页指令和下翻页指令。所述上翻页指令是指将页面翻到上一页。所述下翻页指令是指将页面翻到下一页。所述亮度调节指令包括上调亮度指令和下调亮度指令。所述上调亮度指令是指将所述显示屏 50的显示亮度调高。所述下调亮度指令是指将所述显示屏50的显示亮度调低。所述进出应用程序指令包括进入程序指令和退出程序指令。所述进入应用程序指令是指进入选定图标对应的应用程序。所述退出应用程序指令是指退出选定图标对应的应用程序。所述返回主页面指令是指从任一子页面返回主页面。
具体地,与所述处理器30电连接的存储器或处理器30内置的存储器还存储预先设定预设触控操作和控制指令之间的对应关系表,处理器30确定与所述触控操作相对应的预设触控操作,根据所述对应关系表确定与所述预设触控操作相对应的控制指令;及根据所述控制指令执行控制。可理解,所述对应关系表可预先设置,还可根据用户的个性化需求设定,此处不做限制。
以下将在不同应用场景中举例说明本申请,可理解,以下示例并不能用于限定本申请的保护范围。
第一应用场景,所述表盘触控单元60为两条。两条表盘触控单元60分别设置在表盘10相对的两侧。用户在两条表盘触控单元60上执行触控操作以实现对所述图形用户界面的页面控制。
具体地,在一实施例中,请一并参考图4,当在所述图形用户界面上显示一图片时,用户通过在两条表盘触控单元60上的双指同向滑动操作来控制所述图片的缩放。具体地,所述两条表盘触控单元60感应用户双指分别在其上沿第一方向200滑动的触控操作时产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为双指沿第一方向200滑动的双指同向滑动的操作时,确定对应的控制指令为放大图片指令。所述处理器30响应所述放大图片指令放大选定的图片。所述两条表盘触控单元60感应用户双指分别在两条表盘触控单元60上沿第二方向300滑动的触控操作时产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为双指沿第二方向300滑动的双指同向滑动的操作时,确定对应的控制指令为缩小图片指令。所述处理器30响应所述缩小图片指令缩小选定的图片。
请一并参考图5和图6,在一实施例中,当所述图形用户界面上显示一图片P时,用户可通过在两条表盘触控单元60上的双指点击操作来控制所述图片球面化。所述两条表盘触控单元60分别感应用户双指在其上的双指点击操作时产生触控信号。所述处理器30响应所述触控信号来确定触控操作为双指各在一条表盘触控单元60上执行同时点击操作的触控操作时,确定对应的控制指令为球面化图片指令。所述处理器30响应所述球面化图片指令将选定的图片进行球面化处理。
请一并参考图7,在一实施例中,当在所述图形用户界面上显示一图片P时,用户通过在两条表盘触控单元60上的双指反向滑动操作来控制所述图片在相应位置发生扭曲变化。具体地,所述两条表盘触控单元60分别感应用户双指在其上的双指反向滑动而产生触控信号。所述处理器30响应所述触控信号确定触控操作为双指分别在两条表盘触控单元60上同时反向滑动的触控操作时,确定对应的控制指令为扭曲图片指令。所述处理器30响应所述扭曲图片指令将选定的图片在相应位置执行扭曲变化处理。
具体地,请一并参考图2,在一实施例中,将时针从十二点钟顺时针走到六点钟的区 域,定义为表盘10的右侧R,将时针从六点钟顺时针走到十二点钟的区域,定义为表盘10的左侧L。当所述图形用户界面上显示一页面时,用户通过施加于表盘10的左侧L的表盘触控单元60上的单指滑动操作来控制所述页面进行翻页操作。具体地,位于表盘10的左侧L的表盘触控单元60感应用户手指在其上的单指滑动操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为在位于表盘10的左侧L的表盘触控单元60上沿所述第一方向200滑动的单指滑动操作时,确定对应的控制指令为上翻页指令。所述处理器30响应所述上翻页指令控制页面上翻一页,并控制在图形用户界面上显示当前所显示的页面的上一页面。所述处理器30在确定所述触控操作为在位于表盘10的左侧L的表盘触控单元60上沿第二方向300滑动的单指滑动操作时,确定对应的控制指令为下翻页指令。所述处理器30响应所述下翻页指令控制页面下翻一页,并控制在图形用户界面上显示当前所显示的页面的下一页面。
在一实施例中,当所述图形用户界面上显示一菜单页面时,用户可在位于表盘10的左侧L上的表盘触控单元60上的单指滑动操作来控制所述菜单内的多个图标在所述图形用户界面上按照对应的方向移动。具体地,位于表盘10的左侧L的表盘触控单元60感应用户手指在其上的单指滑动操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为在位于表盘10的左侧L的表盘触控单元60上沿所述第一方向200滑动的单指滑动操作时,确定对应的控制指令为沿与第一方向200相对应的方向移动图标的图标移动指令。所述处理器30响应所述图标移动指令控制所述菜单内的多个图标按照对应的方向移动。所述处理器30在确定所述触控操作为在位于表盘10的左侧的表盘触控单元60上沿所述第二方向300滑动的单指滑动操作时,确定对应的控制指令为沿与第二方向300相对应的方向移动的图标移动指令。所述处理器30响应所述图标移动指令控制所述菜单内的多个图标按照第二方向300移动。
在一实施例中,请一并参考图5,当进入所述图形用户界面上的任一子页面时,用户通过双指各在一条表盘触控单元60上同时执行长按操作的双指长按操作来控制回到主页面。具体地,所述两条表盘触控单元60分别感应用户双指在其上的同时长按操作而产生触控信号。所述处理器30响应所述触控信号确定触控操作为用户双指各自长按一条表盘触控单元60的双指长按操作时,确定对应的控制指令为返回主页面指令。所述处理器30响应所述返回主页面指令控制所述图形用户界面从子页面回到主页面。
在一实施例中,请一并参考图8,当所述图形用户界面上的多个图标呈旋转菜单的方式排列时,用户通过手指在位于表盘10左侧L的表盘触控单元60上的单指滑动操作来控制旋转菜单旋转。具体地,位于表盘10左侧L的表盘触控单元60感应用户手指在其上的单指滑动操作而产生触控信号。所述处理器30响应所述触控信号确定触控操作为在位于表盘10左侧L的表盘触控单元60上的单指滑动操作时,确定对应的控制指令为旋转菜单指令。所述处理器30响应所述旋转菜单指令控制所述图形用户界面上的所述多个图标按照相应的方向转动。
进一步地,在一实施例中,所述处理器30在所述图形用户界面上的所述多个图标按照相应的方向转动时,当选定一图标时,响应所述触控信号确定触控操作为单指在位于所 述表盘10的左侧L的所述表盘触控单元60上单击时,确定对应的控制指令为进入该图标对应应用程序的进入应用程序指令,且响应所述进入应用程序指令控制进入选定图标对应的应用程序。
进一步地,在一实施例中,所述处理器30在进入所述选定图标对应的应用程序时,响应所述触控信号确定触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60双击时,确定对应的控制指令为退出应用程序指令,且响应所述退出应用程序指令控制退出当前选定图标的应用程序。
在一实施例中,在所述显示屏50被点亮时,用户在位于表盘10的右侧R的表盘触控单元60上的单指滑动操作用于调节所述显示屏50的亮度。具体地,在所述显示屏50被点亮时,位于表盘10的右侧R的表盘触控单元60感应用户的手指在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为在位于表盘10的右侧R的表盘触控单元60上沿第一方向200滑动的单指滑动操作时,确定对应的控制指令为调高亮度指令,且响应所述调高亮度指令调高所述显示屏的亮度。所述处理器30响应所述触控信号确定所述触控操作为在位于表盘10的右侧R的表盘触控单元60上沿第二方向300滑动的单指滑动操作时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏的亮度。
进一步地,请一并参考图9,在一实施例中,当在所述图形用户界面上打开一音乐播放界面V时,两条所述表盘触控单元60分别感应用户手指在其上的触控操作而产生触控信号,所述处理器30响应所述触控信号确定触控操作为双指分别在两条所述表盘触控单元60上的反向同时滑动,确定对应的控制指令为形成打碟效果指令,并响应所述形成打碟效果指令控制当前播放的音乐文件实现打碟效果。
第二应用场景,请一并参考图10,所述表带触控单元70为两条,且两条表带触控单元70分别设置在两条表带20上。用户在两条表带触控单元70上执行触控操作以实现对所述图形用户界面的页面控制。
在一实施例中,当所述图形用户界面上显示一图片时,用户通过双指分别在两条表带触控单元70上的双指反向滑动操作来控制所述图片的缩放。具体地,两条表带触控单元70分别感应用户的手指在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为用户双指分别在两条表带触控单元70上相背滑动的双指反向滑动操作时,确定对应的控制指令为放大图片指令。所述处理器30响应所述放大图片指令放大选定的图片。所述处理器30在确定所述触控操作为用户双指分别在两条表带触控单元70上相向滑动的双指反向滑动操作时,确定对应的控制指令为缩小图片指令。所述处理器30响应所述缩小图片指令缩小选定的图片。
在一实施例中,将靠近时针的十二点钟的表带定义为前侧表带20,将靠近时针的六点钟的表带定义为后侧表带20。当所述图形用户界面上显示一页面时,位于前侧表带20上的表带触控单元70感应用户的手指在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为单指在位于前侧表带20上的表带触控单元70上沿所述第一方向200滑动的单指滑动操作时,确定对应的控制指令为上翻页指令。所述处理 器30响应所述上翻页指令控制页面上翻一页,并控制在图形用户界面上显示当前所显示的页面的上一页面。所述处理器30在确定所述触控操作单指在位于前侧表带20上的表带触控单元70上沿所述第二方向300滑动的单指滑动操作时,确定对应的控制指令为下翻页指令。所述处理器30响应所述下翻页指令控制页面下翻一页,并控制在图形用户界面上显示当前所显示的页面的下一页面。
在一实施例中,请一并参考图11,当在所述图形用户界面上打开一菜单页面时,用户在位于前侧表带20上的表带触控单元70上的单指滑动操作来控制所述菜单页面内的多个图标在所述图形用户界面上按照对应的方向移动。具体地,在一实施例中,当在所述图形用户界面上打开一菜单页面时,位于前侧表带20上的表带触控单元70感应用户的手指在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为单指在位于前侧表带20上的表带触控单元70上沿所述第一方向200滑动的单指滑动操作时,确定对应的控制指令为沿着与第一方向200相应的方向移动的图标移动指令。所述处理器30响应所述图标移动指令控制所述菜单内的多个图标按照与第一方向200相应的方向移动。所述处理器30响应所述触控信号确定所述触控操作为单指在位于前侧表带20上的表带触控单元70上沿所述第二方向300滑动的单指滑动操作时,确定对应的控制指令为沿着与第二方向300相应的方向移动的图标移动指令。所述处理器30响应所述图标移动指令控制所述菜单内的多个图标按照与第二方向300相应的方向移动。
在一实施例中,在所述显示屏50被点亮时,用户在位于后侧表带20上的表带触控单元70上的单指滑动操作用于调节所述显示屏50的亮度。具体地,在所述显示屏50被点亮时,位于后侧表带20上的表带触控单元70感应用户的手指在其上的触控操作而产生触控信号。所述处理器30响应所述触控信号确定所述触控操作为单指在位于后侧表带20上的表带触控单元70上沿所述第一方向200滑动的单指滑动操作时,确定对应的控制指令为调高亮度指令,且响应所述调高亮度指令调高所述显示屏50的亮度。所述处理器30在确定所述触控操作为单指在位于后侧表带20上的表带触控单元70上沿所述第二方向300滑动的单指滑动操作时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏50的亮度。
可理解,上述只是在一些示例应用场景下示例性的说明本申请的技术方案。然而,这些示例是不能穷举的。
可理解,当所述滑动操作的实际滑动轨迹与所述第一方向200的实际夹角在90度以内,均可确定所述滑动操作的滑动方向为所述第一方向200。当滑动操作的实际滑动轨迹与所述第二方向300的实际夹角在90度以内,均可确定所述滑动操作的滑动方向为所述第二方向300。
请参阅图12,为本申请一实施例中的智能手表100的界面控制方法的流程图。所述界面控制方法应用于前述的智能手表100中,界面控制方法的执行顺序并不限于图12所示的顺序。所述方法包括步骤:
步骤1201,响应触控信号获取用户针对所述智能手表的表盘触控单元60或表带触控单元70的触控操作。
步骤1202,确定与所述触控操作相对应的控制指令。
所述触控操作包括单击、双击、单指滑动、双指点击、双指长按、双指同向滑动、双指反向滑动中的至少一种;所述控制指令包括缩放图片指令、球面化图片指令、扭曲图片指令、图标移动指令、页面翻页指令、亮度调节指令、进出应用程序指令、返回主页面指令中的至少一种。
所述步骤“确定与所述触控操作相对应的控制指令”具体为:
预先设定预设触控操作和控制指令之间的对应关系表;
确定与所述触控操作相对应的预设触控操作;
根据所述对应关系表确定与所述预设触控操作相对应的控制指令。
步骤1203,根据所述控制指令对所述图形用户界面执行控制。
具体地,在一实施例中,当在所述图形用户界面上显示一图片时,两条所述表盘触控单元60分别感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号并确定触控操作为双指分别在两条所述表盘触控单元60上沿第一方向200滑动时,确定对应的控制指令为放大图片指令,且响应所述放大图片指令放大选定的图片;
在确定触控操作为双指分别在两条所述表盘触控单元60上沿第二方向300滑动时,确定对应的控制指令为缩小图片指令,并响应所述缩小图片指令缩小选定的图片,其中,所述第二方向300与所述第一方向200相反。
具体地,在一实施例中,当在所述图形用户界面上显示一图片时,两条所述表盘触控单元60分别感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为双指各在一条所述表盘触控单元60上同时执行点击操作时,确定对应的控制指令为球面化图片指令;
响应所述球面化图片指令将选定的图片进行球面化处理。
具体地,当在所述图形用户界面上显示一图片时,两条所述表盘触控单元60分别感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为双指分别在所述两条表盘触控单元60上反向滑动,确定对应的控制指令为扭曲图片指令;
响应所述扭曲图片指令将选定的图片的相应位置执行扭曲变化处理。
具体地,在一实施例中,当在所述图形用户界面上显示一页面时,位于所述表盘10的左侧L的所述表盘触控单元60感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60上沿第一方向200滑动时,确定对应的控制指令为上翻页指令,且响应所述上翻页指令控制页面上翻一页,并控制在图形用户界面上显示当前所显示的页面的上一页面;
在确定所述触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60上沿第二方向300滑动时,确定对应的控制指令为下翻页指令,且响应所述下翻页指令控制页面下翻一页,并控制在图形用户界面上显示当前所显示的页面的下一页面。
具体地,在一实施例中,位于所述表盘10的左侧L的所述表盘触控单元60感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定所述触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60上沿第一方向200滑动时,确定对应的控制指令为图标移动指令,且响应所述图标移动指令控制选定菜单内的多个图标按照所述第一方向200移动;
在确定所述触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60上沿第二方向300滑动时,响应所述图标移动指令控制选定菜单内的多个图标按照所述第二方向300移动。
具体地,在一实施例中,当进入任一子页面时,两条所述表盘触控单元60分别感应用户双指在其上的同时按压操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为双指各在一条表盘触控单元60上执行同时长按操作时,确定对应的控制指令为返回主页面指令;
响应所述返回主页面指令控制所述图形用户界面从所述子页面回到主页面。
具体地,在一实施例中,当所述图形用户界面上的多个图标呈旋转菜单的方式排列时,位于所述表盘10的左侧L的所述表盘触控单元60感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60滑动时,确定对应的控制指令为旋转菜单指令,且响应所述旋转菜单指令控制所述图形用户界面上的所述多个图标按照相应的方向转动;
在所述图形用户界面上的所述多个图标按照相应的方向转动且选定一图标时,响应所述触控信号确定触控操作为单指在位于所述表盘10的左侧L的所述表盘触控单元60单击时,确定对应的控制指令为进入应用程序指令,且响应所述进入应用程序指令控制进入选定图标对应的应用程序;
在进入所述选定图标对应的应用程序时,响应所述触控信号确定触控操作为单指在位于所述表盘左侧的所述表盘触控单元60双击时,确定对应的控制指令为退出应用程序指令,且响应所述退出应用程序指令控制退出当前选定图标的应用程序。
具体地,在一实施例中,当在所述图形用户界面上打开一音乐播放界面时,两条所述表盘触控单元60分别感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为双指分别在所述两条表盘触控单元60上反向滑动,确定对应的控制指令为形成打碟效果指令;及
响应所述形成打碟效果指令控制当前播放的音乐文件实现打碟效果。
具体地,在一实施例中,在所述显示屏50被点亮时,位于所述表盘10的右侧R的所述表盘触控单元60感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定所述触控操作为单指在位于所述表盘10的右侧R的所述表盘触控单元60上沿第一方向200滑动时,确定对应的控制指令为调高亮度指令,且响应所 述调高亮度指令调高所述显示屏50的亮度;
在确定所述触控操作为单指在位于所述表盘10的右侧R的所述表盘触控单元60上沿第二方向300滑动时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏50的亮度。
具体地,在一实施例中,两条所述表带触控单元70分别感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定触控操作为双指分别在所述两条表带触控单元70上相背滑动时,确定对应的控制指令为放大图片指令,且响应所述放大图片指令放大选定的图片;
在确定触控操作为双指分别在所述两条表带触控单元70上相向运动时,确定对应的控制指令为缩小图片指令,且响应所述缩小图片指令缩小选定的图片。
具体地,在一实施例中,当在所述图形用户界面上显示一页面时,位于前侧表带上的所述表带触控单元70感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定所述触控操作为单指在位于所述前侧表带上的表带触控单元70上沿第一方向200滑动时,确定对应的控制指令为上翻页指令,响应所述上翻页指令执行页面上翻一页,并控制在图形用户界面上显示当前所显示的页面的上一页面;
在确定所述触控操作为单指在位于所述前侧表带上的表带触控单元70上沿第二方向300滑动时,确定对应的控制指令为下翻页指令,且响应所述下翻页指令执行页面下翻一页,并控制在图形用户界面上显示当前所显示的页面的下一页面。
具体地,在一实施例中,当在所述图形用户界面上打开一菜单时,位于前侧表带上的所述表带触控单元70感应用户的手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定所述触控操作为单指在位于所述前侧表带上的所述表带触控单元70上沿第一方向200滑动时,确定对应的控制指令为图标移动指令,且响应所述图标移动指令控制所述菜单内的多个图标按照所述第一方向200移动;
在确定所述触控操作为单指在位于所述前侧表带上的所述表带触控单元70上沿第二方向300滑动时,响应所述图标移动指令控制所述菜单内的多个图标按照所述第二方向300移动。
具体地,在一实施例中,在所述显示屏50被点亮时,位于后侧表带上的所述表带触控单元70感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
响应所述触控信号确定所述触控操作为单指在位于所述后侧表带上的所述表带触控单元70上沿第一方向200滑动时,确定对应的控制指令为调高亮度指令,且响应所述调高亮度指令调高所述显示屏50的亮度;
在确定所述触控操作为单指在位于所述后侧表带上的所述表带触控单元70上沿第二方向300滑动时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏50的亮度。
本申请的智能手表的智能手表及其界面控制方法,通过所述表盘触控单元60和所述 表带触控单元70感应用户在其上的触控操作,而确定与所述触控操作相对应的控制指令及根据所述控制指令对所述图形用户界面执行控制。从而,不会受到智能手表本身大小的限制,从而大大提高用户体验。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其他实施例的相关描述。
本申请实施例方法中的步骤可以根据实际需要进行顺序调整、合并和删减。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存取存储器(Random Access Memory,简称RAM)等。
所述处理器30可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等,所述处理器是所述智能手表100的控制中心,利用各种接口和线路连接整个所述智能手表100的各个部分。
所述存储器40可用于存储所述计算机程序和/或模块,所述存储器40通过运行或执行存储在所述存储器40内的计算机程序和/或模块,以及调用存储在存储器40内的数据,实现所述智能手表100的各种功能。所述存储器40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、多个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据智能手表的使用所创建的数据(比如音频数据、电话本等)等。此外,所述存储器40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,例如硬盘、内存、插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)、多个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
以上对本申请实施例进行了详细介绍,本文中应用了具体个例对本申请的原理及实施例进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施例及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (22)

  1. 一种智能手表,其特征在于,包括表盘和表带,所述表盘设置在所述表带上,所述智能手表还包括显示屏、表带触控单元和处理器;所述显示屏设置在所述表盘上,所述表带触控单元设置在所述表带上,所述处理器控制所述显示屏显示一图形用户界面,所述表带触控单元感应用户在其上的触控操作而产生触控信号,所述处理器:
    响应所述触控信号获取用户针对所述智能手表的所述表带触控单元的触控操作;
    确定与所述触控操作相对应的控制指令;及
    根据所述控制指令对所述图形用户界面执行控制。
  2. 如权利要求1所述的智能手表,其特征在于,所述触控操作包括单击、双击、单指滑动、双指点击、双指长按、双指同向滑动、双指反向滑动中的至少一种;所述控制指令包括缩放图片指令、球面化图片指令、扭曲图片指令、图标移动指令、页面翻页指令、亮度调节指令、进出应用程序指令、返回主页面指令中的至少一种。
  3. 如权利要求1所述的智能手表,其特征在于,所述处理器还:
    调取预先设定预设触控操作和控制指令之间的对应关系表;
    确定与所述触控操作相对应的预设触控操作;
    根据所述对应关系表确定与所述预设触控操作相对应的控制指令;及
    根据所述控制指令执行控制。
  4. 如权利要求1所述的智能手表,其特征在于,所述智能手表还包括表盘触控单元,所述表盘触控单元设置在所述表盘的侧壁上,所述表盘触控单元感应用户在其上的触控操作而产生触控信号,所述处理器还:
    响应所述触控信号获取用户针对所述智能手表的所述表盘触控单元的触控操作;
    确定与所述触控操作相对应的控制指令;及
    根据所述控制指令对所述图形用户界面执行控制。
  5. 如权利要求4所述的智能手表,其特征在于,所述智能手表包括分别位于所述表盘正对两侧的两条表带,所述表盘触控单元和所述表带触控单元分别为两条,所述两条表盘触控单元分别设置在表盘相对的两侧壁上,所述两条表带触控单元分别设置在所述两条表带上。
  6. 一种界面控制方法,应用在一智能手表上,所述智能手表显示一图形用户界面,所述智能手表包括表带触控单元,所述表带触控单元感应用户在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号获取用户针对所述智能手表的所述表带触控单元的触控操作;
    确定与所述触控操作相对应的控制指令;及
    根据所述控制指令对所述图形用户界面执行控制。
  7. 如权利要求6所述的界面控制方法,其特征在于,所述智能手表还包括表盘触控单元,所述表盘触控单元感应用户在其上的触控操作而产生触控信号,所述界面控制方法还包括:
    响应所述触控信号获取用户针对所述智能手表的所述表盘触控单元的触控操作。
  8. 如权利要求7所述的界面控制方法,其特征在于,所述触控操作包括单击、双击、单指滑动、双指点击、双指长按、双指同向滑动、双指反向滑动中的至少一种;所述控制指令包括缩放图片指令、球面化图片指令、扭曲图片指令、图标移动指令、页面翻页指令、亮度调节指令、进出应用程序指令、返回主页面指令中的至少一种。
  9. 如权利要求7所述的界面控制方法,其特征在于,所述界面控制方法包括:
    调取预先设定预设触控操作和控制指令之间的对应关系表;
    确定与所述触控操作相对应的预设触控操作;
    根据所述对应关系表确定与所述预设触控操作相对应的控制指令;及
    根据所述控制指令执行控制。
  10. 如权利要求7至9任一项所述的界面控制方法,其特征在于,所述智能手表包括设置在所述表盘正对两侧的两条所述表盘触控单元,当在所述图形用户界面上显示一图片时,两条所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号并确定触控操作为双指分别在两条所述表盘触控单元上沿第一方向滑动时,确定对应的控制指令为放大图片指令,且响应所述放大图片指令放大选定的图片;
    在确定触控操作为双指分别在两条所述表盘触控单元上沿第二方向滑动时,确定对应的控制指令为缩小图片指令,并响应所述缩小图片指令缩小选定的图片,其中,所述第二方向与所述第一方向相反。
  11. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户界面上显示一图片时,两条所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为双指各在一条所述表盘触控单元上同时执行点击操作时,确定对应的控制指令为球面化图片指令;
    响应所述球面化图片指令将选定的图片进行球面化处理。
  12. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户 界面上显示一图片时,两条所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为双指分别在两条所述表盘触控单元上反向滑动,确定对应的控制指令为扭曲图片指令;
    响应所述扭曲图片指令将选定的图片的相应位置执行扭曲变化处理。
  13. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户界面上显示一页面时,位于所述表盘左侧的所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为单指在位于所述表盘左侧的所述表盘触控单元上沿第一方向滑动时,确定对应的控制指令为上翻页指令,且响应所述上翻页指令执行页面上翻一页;
    在确定所述触控操作为单指在位于所述表盘左侧的所述表盘触控单元上沿第二方向滑动时,确定对应的控制指令为下翻页指令,且响应所述下翻页指令执行页面下翻一页,其中,所述第二方向与所述第一方向相反。
  14. 如权利要求7至9任一项所述的界面控制方法,其特征在于,位于所述表盘左侧的所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定所述触控操作为单指在位于所述表盘左侧的所述表盘触控单元上沿第一方向滑动时,确定对应的控制指令为图标移动指令,且响应所述图标移动指令控制选定菜单内的多个图标按照所述第一方向移动;
    在确定所述触控操作为单指在位于所述表盘左侧的所述表盘触控单元上沿第二方向滑动时,响应所述图标移动指令控制选定菜单内的多个图标按照所述第二方向移动,其中,所述第二方向与所述第一方向相反。
  15. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当进入任一子页面时,两条所述表盘触控单元感应用户双指在其上的同时按压操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为双指各在一条所述表盘触控单元上执行长按操作时,确定对应的控制指令为返回主页面指令;
    响应所述返回主页面指令控制所述图形用户界面从所述子页面回到主页面。
  16. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当所述图形用户界面上的多个图标呈旋转菜单的方式排列时,位于所述表盘左侧的所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为单指在位于所述表盘左侧的所述表盘触控单元滑 动时,确定对应的控制指令为旋转菜单指令,且响应所述旋转菜单指令控制所述图形用户界面上的所述多个图标按照相应的方向转动;
    在所述图形用户界面上的所述多个图标按照相应的方向转动且选定图标时,响应所述触控信号确定触控操作为单指在位于所述表盘左侧的所述表盘触控单元单击时,确定对应的控制指令为进入应用程序指令,且响应所述进入应用程序指令控制进入选定图标对应的应用程序;
    在进入所述选定图标对应的应用程序时,响应所述触控信号确定触控操作为单指在位于所述表盘左侧的所述表盘触控单元双击时,确定对应的控制指令为退出应用程序指令,且响应所述退出应用程序指令控制退出当前选定图标的应用程序。
  17. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户界面上打开一音乐播放界面时,两条所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为双指分别在两条所述表盘触控单元上反向滑动,确定对应的控制指令为形成打碟效果指令;及
    响应所述形成打碟效果指令控制当前播放的音乐文件实现打碟效果。
  18. 如权利要求7至9任一项所述的界面控制方法,其特征在于,在所述显示屏被点亮时,位于所述表盘右侧的所述表盘触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定所述触控操作为单指在位于所述表盘右侧的所述表盘触控单元上沿第一方向滑动时,确定对应的控制指令为调高亮度指令,且响应所述调高亮度指令调高所述显示屏的亮度;
    在确定所述触控操作为单指在位于所述表盘右侧的所述表盘触控单元上沿第二方向滑动时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏的亮度。
  19. 如权利要求7至9任一项所述的界面控制方法,其特征在于,两条所述表带触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定触控操作为双指分别在两条所述表带触控单元上相背滑动时,确定对应的控制指令为放大图片指令,且响应所述放大图片指令放大选定的图片;
    在确定触控操作为双指分别在两条所述表带触控单元上相向运动时,确定对应的控制指令为缩小图片指令,且响应所述缩小图片指令缩小选定的图片。
  20. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户界面上显示一页面时,位于前侧表带上的所述表带触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定所述触控操作为单指在位于所述前侧表带上的表带触控单元上沿第一方向滑动时,确定对应的控制指令为上翻页指令,响应所述上翻页指令执行页面上翻一页;
    在确定所述触控操作为单指在位于所述前侧表带上的表带触控单元上沿第二方向滑动时,确定对应的控制指令为下翻页指令,且响应所述下翻页指令执行页面下翻一页,其中,所述第二方向与所述第一方向相反。
  21. 如权利要求7至9任一项所述的界面控制方法,其特征在于,当在所述图形用户界面上打开一菜单时,位于前侧表带上的所述表带触控单元感应用户的手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定所述触控操作为单指在位于所述前侧表带上的所述表带触控单元上沿第一方向滑动时,确定对应的控制指令为图标移动指令,且响应所述图标移动指令控制所述菜单内的多个图标按照所述第一方向移动;
    在确定所述触控操作为单指在位于所述前侧表带上的所述表带触控单元上沿第二方向滑动时,响应所述图标移动指令控制所述菜单内的多个图标按照所述第二方向移动,其中,所述第二方向与所述第一方向相反。
  22. 如权利要求7至9任一项所述的界面控制方法,其特征在于,在所述显示屏被点亮时,位于后侧表带上的所述表带触控单元感应用户手指在其上的触控操作而产生触控信号,所述界面控制方法包括:
    响应所述触控信号确定所述触控操作为单指在位于所述后侧表带上的所述表带触控单元上沿第一方向滑动时,确定对应的控制指令为调高亮度指令,且响应所述调高亮度指令调高所述显示屏的亮度;
    在确定所述触控操作为单指在位于所述后侧表带上的所述表带触控单元上沿第二方向滑动时,确定对应的控制指令为调低亮度指令,且响应所述调低亮度指令调低所述显示屏的亮度,其中,所述第二方向与所述第一方向相反。
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