WO2018098918A1 - 控制终端设备的方法和终端设备 - Google Patents

控制终端设备的方法和终端设备 Download PDF

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Publication number
WO2018098918A1
WO2018098918A1 PCT/CN2017/075546 CN2017075546W WO2018098918A1 WO 2018098918 A1 WO2018098918 A1 WO 2018098918A1 CN 2017075546 W CN2017075546 W CN 2017075546W WO 2018098918 A1 WO2018098918 A1 WO 2018098918A1
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Prior art keywords
bending
parameter
flexible screen
application
terminal device
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PCT/CN2017/075546
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English (en)
French (fr)
Inventor
陈晓晓
陈浩
Original Assignee
华为技术有限公司
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP17877277.8A priority Critical patent/EP3537261A4/en
Priority to US16/465,176 priority patent/US11429198B2/en
Priority to CN201780005549.1A priority patent/CN108475122B/zh
Publication of WO2018098918A1 publication Critical patent/WO2018098918A1/zh
Priority to US17/557,407 priority patent/US11656691B2/en

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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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • H04M1/0268Details of the structure or mounting of specific components for a display module assembly including a flexible display panel
    • 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
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1652Details related to the display arrangement, including those related to the mounting of the display in the housing the display being flexible, e.g. mimicking a sheet of paper, or rollable
    • 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
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • 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
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0354Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 2D relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
    • G06F3/03547Touch pads, in which fingers can move on a surface
    • 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
    • G06F3/04817Interaction 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 using icons
    • 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
    • G06F3/04842Selection of displayed objects or displayed text elements
    • 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
    • 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
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0206Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
    • H04M1/0241Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings using relative motion of the body parts to change the operational status of the telephone set, e.g. switching on/off, answering incoming call

Definitions

  • Embodiments of the present invention relate to the field of communications, and, more particularly, to a method and a terminal device for controlling a terminal device.
  • the flexible screen brings a new experience to the display. At present, it is more and more widely concerned and used, and some flexible handheld devices are slowly entering the industry.
  • the prior art is a good example of how to construct a flexible screen display device, even a combination of a flexible screen and a rigid screen.
  • the prior art focuses on how to perform some new display according to the flexible screen, but there is no better improvement in controlling the terminal device configured with the flexible screen. For example, human-computer interaction.
  • the embodiment of the invention provides a method and a terminal device for controlling a terminal device, which can effectively improve the user experience.
  • a method of controlling a terminal device comprising:
  • the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter, wherein the bending time parameter is used
  • the bending position parameter is used to indicate a position at which the flexible screen is subjected to a bending behavior
  • the bending direction parameter being used to indicate a direction in which the flexible screen is subjected to a bending behavior
  • the degree of curvature parameter is used to indicate the strength of the bending behavior of the flexible screen
  • the method provided by the embodiment of the invention abstracts the curved line of the flexible screen into a bending parameter, and uses the bending parameter as an input mode of the application, thereby effectively improving the user experience.
  • the adjusting the user interface UI of the flexible screen according to the bending parameter comprises: determining, according to the bending parameter, that the UI of the first position of the flexible screen is in a squeezed state or is In the stretched state, the UI configuration information of the first position is adjusted according to the distance parameter, and the distance parameter represents a distance between the first position and a curved position of the flexible screen.
  • the terminal device when the terminal device adjusts the UI configuration information, when the flexible screen is bent, the content can be prevented from being deformed and squeezed in the vicinity of the flexible screen bending position, thereby ensuring the visual effect.
  • the embodiment of the present invention can adjust the UI configuration information, so that the user can view the screen position regardless of the screen position. Naturally, effectively enhance the user experience.
  • the adjusting the user interface UI of the flexible screen according to the bending parameter comprises:
  • the UI is presented according to the bending parameter and the first mapping relationship information, where the first mapping relationship information includes a plurality of bending parameters and a correspondence relationship between the plurality of UIs.
  • the first mapping relationship information includes a plurality of bending direction parameters and a correspondence relationship between the plurality of UIs, wherein the presenting the UI according to the bending parameters and the first mapping relationship information, including :
  • the method before the generating the command corresponding to the first application according to the bending parameter, the method further includes:
  • the second mapping relationship includes a plurality of bending parameters and a correspondence between the plurality of applications, and the generating, by the bending parameter, a command corresponding to the first application, including:
  • the second mapping relationship includes a correspondence between a plurality of bending parameters and a plurality of commands of the first application; wherein the generating, according to the bending parameters, a command corresponding to the first application ,include:
  • the method before the determining the bending parameter of the flexible screen, the method further includes:
  • the bending parameter is determined according to the force distribution information and/or the capacitance distribution information.
  • the determining a bending parameter of the flexible screen includes:
  • the first sensor Measuring, by the first sensor, a relative position between the first rigid screen and the second rigid screen, the flexible screen being between the first rigid screen and the second rigid screen, each hard screen having a hardness greater than The hardness of the flexible screen; the bending parameter is determined based on the relative position.
  • the obtaining the force distribution information of the flexible screen and/or the capacitance distribution information of the flexible screen comprises: determining the force distribution information by measuring a physical circuit of the flexible screen; Alternatively, the force distribution information is determined by a force sensor.
  • the obtaining the force distribution information of the flexible screen and/or the capacitance distribution information of the flexible screen comprises: determining the capacitance value distribution information by a capacitor.
  • a terminal device where the terminal device includes:
  • a determining unit configured to determine a bending parameter of the flexible screen when the flexible screen is subjected to a bending behavior, the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter,
  • the bending time parameter is used to indicate a time when the flexible screen is subjected to a bending behavior
  • the bending position parameter is used to indicate a position at which the flexible screen is subjected to a bending behavior
  • the bending direction parameter is used to indicate that the flexible screen is bent.
  • Direction of the bending degree parameter used to indicate the strength of the bending behavior of the flexible screen;
  • a processing unit configured to adjust a user interface UI of the flexible screen according to the bending parameter, or generate a command corresponding to the first application according to the bending parameter.
  • a terminal device where the terminal device includes a processor, and the processor is specifically configured to:
  • the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter, wherein the bending time parameter is used
  • the bending position parameter is used to indicate a position at which the flexible screen is subjected to a bending behavior
  • the bending direction parameter being used to indicate a direction in which the flexible screen is subjected to a bending behavior
  • the degree of curvature parameter is used to indicate the strength of the bending behavior of the flexible screen
  • terminal devices of the second and third aspects are capable of implementing/executing the method embodiments of the first aspect.
  • a processor configured to:
  • the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter, wherein the bending time parameter is used
  • the bending position parameter is used to indicate a position at which the flexible screen is subjected to a bending behavior
  • the bending direction parameter being used to indicate a direction in which the flexible screen is subjected to a bending behavior
  • the degree of curvature parameter is used to indicate the strength of the bending behavior of the flexible screen
  • processor of the fourth aspect is capable of implementing/executing the method embodiments of the first aspect.
  • a storage medium for storing a bending parameter of a flexible screen, the bending parameter comprising at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter.
  • the storage medium is further configured to store a command corresponding to the first application.
  • the first application is a gaming application.
  • the first sensor is a light sensor, or the first sensor is a distance sensor.
  • FIG. 1 is a schematic flowchart of a method for controlling a terminal device according to an embodiment of the present invention.
  • FIG. 2 is a schematic block diagram of a bending parameter of an embodiment of the present invention.
  • FIG. 3 is another schematic flowchart of a method for controlling a terminal device according to an embodiment of the present invention.
  • FIG. 4 is a schematic block diagram of a terminal device according to an embodiment of the present invention.
  • FIG. 5 is another schematic block diagram of a terminal device according to an embodiment of the present invention.
  • the method of controlling a terminal device in the embodiment of the present invention can be applied to any terminal device configured with a flexible screen.
  • the flexible screen can achieve a certain degree of flexible folding.
  • it may be a display device composed entirely of flexible screens, or a combination of a flexible screen and a rigid screen to form a completed display device.
  • the hardness of the hard screen is greater than the hardness of the flexible screen.
  • FIG. 1 is a schematic flowchart of a method 100 for controlling a terminal device according to an embodiment of the present invention.
  • the method 100 can be performed by the terminal device or by a processor of the terminal device.
  • the terminal device is exemplified as an execution subject below.
  • the user may physically cause one or more bending behaviors to occur on the flexible screen.
  • the terminal device determines the bending parameters of the flexible screen.
  • the bending parameter may include a bending time parameter, a bending position parameter, and a bending direction parameter. At least one of the number and bending degree parameters.
  • the bending time parameter is used to indicate a time when the flexible screen is subjected to a bending behavior
  • the bending position parameter is used to indicate a position where the flexible screen is subjected to a bending behavior
  • the bending direction parameter is used to indicate a direction in which the flexible screen is bent.
  • the degree of curvature parameter is used to indicate the strength of the bending behavior of the flexible screen.
  • the bending parameters can be in various forms or various parameters used to represent the bending behavior.
  • the bending time parameter can be the point in time at which the recorded flexible screen bends. For example, January 01, 2017 at 00:00:00.
  • the bending position parameter is described by a plane rectangular coordinate system.
  • the bending position parameter can be represented by a bending center and/or a bending axis.
  • the bending center refers to the most convex position or the most concave position on the flexible screen when the flexible screen is bent.
  • the bending axis refers to the bending behavior of the flexible screen
  • the flexible screen generates a series of waveform curves.
  • a line composed of points having a curvature of zero on the waveform curve is defined as a bending axis
  • the bending axis may also be referred to as a concave and convex line. axis.
  • the coordinates (x, y) are used to indicate the respective positions of the flexible screen, and when the flexible screen transmits the bending behavior, the coordinates corresponding to the most concave position or the most convex position or The coordinates corresponding to the most convex position are taken as the bending position parameters, for example, (2, 3).
  • the bending position parameter of the flexible screen can also be described in combination with the coordinates of the most concave or convexest portion and the bending axis.
  • the bending to the display surface may also be referred to as inward bending, and the display surface of the flexible screen may be in a concave shape, and the bending to the non-display surface may also be referred to as outward bending, and the display surface of the flexible screen may be in a convex shape.
  • the bending direction parameter may be identified by a numerical value. For example, it is specifically indicated by 0 that it is curved toward the display surface, and 1 is that it is curved toward the non-display surface.
  • the degree of bending parameter in the embodiment of the present invention is used to indicate the bending strength of the flexible screen when the flexible screen transmits the bending behavior, and is used to indicate the strength of the flexible screen currently being pressed by the user or other equipment.
  • the intensity value can be represented by a floating point type, or an integer value. The larger the absolute value of the value, the higher the degree of curvature. For example, 80, 28, 93, 200, and so on.
  • the bending degree parameter and the bending direction parameter can be combined and described.
  • the bending direction and the curvature may be expressed in positive and negative numbers.
  • -200 indicates that the degree of curvature to the non-display surface is 200
  • 101 indicates that the degree of curvature to the display surface is 101.
  • the parameter when the bending behavior is sent by the flexible screen is exemplarily described by the bending position parameter, the bending direction parameter and the bending degree parameter, which is not specifically limited in the embodiment of the present invention.
  • the terminal device is only configured with a flexible screen.
  • determining the force distribution information of the flexible screen determining the bending parameter according to the force distribution information.
  • the force distribution information is determined by measuring a physical circuit of the flexible screen; or the force distribution information is determined by a force sensor. For example, when the force sensor measures that the position corresponding to the (2, 3) of the flexible screen is the most force, which is 20 Newtons (N), it is determined that the bending position parameter of the flexible screen is: (2, 3), the flexible screen The degree of bending parameter is 20 (N)
  • determining capacitance distribution information of the flexible screen determining the bending parameter according to the capacitance distribution information.
  • capacitance distribution information determines the bending parameter when the bending behavior is performed.
  • the capacitance value distribution information is determined by a capacitor. Specifically, the information measured by the capacitor determines the position coordinate or axis where the capacitance value distribution is the most dense as the bending position parameter.
  • the terminal device is configured with both a flexible screen and a hard screen.
  • the relative position between the first rigid screen and the second rigid screen is measured by the first sensor, the flexible screen is between the first rigid screen and the second rigid screen, and the hardness of each rigid screen is greater than The hardness of the flexible screen; the bending parameter is determined based on the relative position.
  • the first sensor may be a light sensor or a distance sensor. It can also be other sensors that can detect the distance. It should also be understood that the terminal device in the embodiment of the present invention may be configured with multiple hard screens.
  • the terminal device can also be flexibly obtained according to the physical implementation of the flexible screen.
  • UI user interface
  • the terminal device adjusts the UI of the flexible screen by bending parameters that abstract the bending behavior, or generates a command corresponding to the first application according to the bending parameter.
  • the intelligent operating system will render and generate a page according to the system resolution, the size of the UI layer, the location, the resources inside, and the like.
  • the Android smart operating system For example, the Android smart operating system.
  • the bending parameters can also be included as one of the basis for the page content generation.
  • the terminal device can perform user interface adjustment according to the obtained bending parameters.
  • the user bends the screen toward the display surface, and can appropriately adjust the display elements near the position of the curved axis, so that it has a visual effect similar to the wide angle of the curved screen, instead of maintaining the original layout of the straight screen, resulting in deformation and extrusion of the content near the curved axis.
  • the UI configuration information of the first location is adjusted according to the distance parameter.
  • the distance parameter is the distance between the first position and the curved position of the flexible screen.
  • the adjustment strength of the display element in the UI configuration information is inversely proportional to d, and the adjustment direction is appropriately discretized to cancel the visual squeezing effect, thereby achieving a better ring-screen visual effect.
  • the adjustment strength of the rendered element in the UI configuration information is proportional to d, and the angle of the rendering element is adjusted and the tilt is adjusted to achieve a better effect.
  • the terminal device may specifically adjust the tilt by using a perspective view on the rendered element.
  • the symbol "-" represents the direction of adjustment as appropriate discretization.
  • the user performs a physical operation of bending the flexible screen toward the display surface, that is, the display surface of the flexible screen is relatively curved, and the flexible screen exhibits that the display content is in a squeezed state and is closer to the bending axis.
  • the physical operation of the user is quantized by the bending parameter, and the bending parameter is used as a reference amount for adjusting the UI configuration information.
  • the bending position of the flexible screen is determined as the origin coordinate (0, 0)
  • the adjustment intensity of the display element in the coordinate point (x, y) UI configuration information is x, y) is inversely proportional to the distance of (0, 0).
  • the bending position display content is determined to be discrete according to the bending parameter, and the closer to the bending axis, the more serious the dispersion; the farther away from the bending axis, the larger the visual deviation.
  • the adjustment strength of the display element in the UI configuration information is inversely proportional to d, and the adjustment direction is appropriate extrusion, which cancels the visual discrete effect, thereby achieving a better ring-screen visual effect.
  • the adjustment strength of the rendered elements in the UI configuration information is proportional to d, achieving better results.
  • the symbol "+" represents the adjustment direction for proper extrusion.
  • a plurality of bending parameters and a plurality of UI first mapping relationships may also be established, and the UI is presented according to the bending parameters and the first mapping relationship information.
  • the first mapping relationship information includes a plurality of bending direction parameters and a correspondence relationship between the plurality of UIs, and the UI is presented according to the bending direction parameter and the first mapping relationship.
  • the first UI is presented; in the second bending direction, the second UI is presented.
  • the display elements in the first UI are appropriately dispersed. If the user performs a physical operation of bending the flexible screen toward the non-display surface, that is, the flexible screen presents the second UI, the display elements in the second UI converge appropriately. However, from the user's point of view, even if the user performs a physical operation of bending the flexible screen, the user will be very natural regardless of which screen position is viewed.
  • the method for controlling a terminal device in the embodiment of the present invention may further adjust other information in the UI configuration information according to the bending parameter.
  • the embodiment of the invention is not specifically limited.
  • the terminal device can associate the bending parameter with an application command. That is, the terminal device may generate a command corresponding to the first application according to the bending parameter.
  • the at least one application before the generating the command corresponding to the first application, sending the bending parameter to the at least one application, the at least one application including the first application; generating the first according to the bending parameter and the second mapping relationship A corresponding command is applied.
  • the terminal device sends the bending parameter to the at least one application, and when the first application of the application receives the bending parameter, the specific operation command can be generated according to the second mapping relationship.
  • embodiments of the present invention associate the bending behavior of the user with the operational commands of the application.
  • the second mapping relationship includes a plurality of bending parameters and a correspondence between the plurality of applications, and the triggering command of the first application is generated according to the bending parameter and the second mapping relationship information.
  • the first application is triggered; in the second bending position, the second application is triggered.
  • the terminal device can generate a corresponding specific command according to the bending position parameter of the flexible screen. For example, assume that the user performs a physical operation of bending the flexible screen toward the display surface, or performing a physical operation of bending to the non-display surface. If the terminal device detects that the location indicated by the bending position parameter is the location where the WeChat icon is located, the WeChat application is opened, and if the terminal device detects that the location indicated by the bending position parameter is the location where the QQ icon is located, the QQ application is opened.
  • the second mapping relationship includes a correspondence between the plurality of bending parameters and the plurality of commands of the first application, and the first command corresponding to the first application is generated according to the bending parameter and the second mapping relationship information.
  • different bending parameters can correspond to different operational commands for the same application.
  • the bending parameter is sent to the at least one application, and the at least one application includes the first application, so that the first application generates a command corresponding to the first application according to the bending parameter.
  • the terminal device can generate a corresponding specific command according to the bending parameters of the flexible screen. For example, assume that the user performs a physical operation of bending the flexible screen toward the display surface, or performing a physical operation of bending to the non-display surface.
  • the first application is activated. If the user exerts a force greater than the first threshold and is less than the second threshold, and the detected bending degree parameter is greater than 20 and less than 30, the application introduction interface of the first application is started, wherein the second threshold is greater than the first threshold. If the user exerts a force greater than the second threshold and the detected bending degree parameter is greater than 30, the exit command of the first application is initiated.
  • the first application is a game application. That is, the terminal device can define an elastic input event for the game according to the bending parameter, which can increase game and application interest.
  • the elastic behavior of a flexible screen can be used to perform the slingshot behavior of angry birds.
  • the bending degree parameter can be directly used as the sling bending degree parameter.
  • the first application in the embodiment of the present invention may be a game, or any other application configured with a human-computer interaction function related to a flexible screen.
  • the first application can be any application of a human-computer interaction event with a flexible screen.
  • This embodiment of the present invention does not specifically limit this.
  • the human-computer interaction event of the flexible screen is hereinafter referred to as a human-computer interaction event.
  • the embodiment of the invention provides a new human-computer interaction event method according to the bending behavior of the flexible screen, which brings a new operation mode to the application and the game, and can utilize the behavior to make the display layout more intelligent. Adjust to achieve better visual effects.
  • FIG. 3 is a schematic flowchart of a method 200 for controlling a terminal device according to an embodiment of the present invention.
  • the application in the terminal device is registered through a registered human-computer interaction event interface or method provided by the system, so that the human-computer interaction event sent by the system can be monitored later.
  • the bending parameters when the flexible screen sends the bending behavior.
  • the user bends the terminal device of the flexible display. To avoid repetition, we will not repeat them here.
  • the format conversion is further performed.
  • the data format for transforming the bending parameters into adult machine interaction events is as follows:
  • the event flag type F indicates a difference flag between the event and other events of the system (touch event, incoming call event, etc.), the flag is system level, and any application acquisition system sends an event, and the flag type F can be used to determine whether it is flexible.
  • the parameter P represents the parameter carried by the human-computer interaction event and is a data structure.
  • the parameter P may specifically include the following information:
  • the bending behavior ID1 the occurrence time of the bending behavior 1, the bending axis position of the bending behavior 1, the bending degree of the bending behavior 1, and the other extended standby field information of the bending behavior 1;
  • the bending behavior ID2 the occurrence time of the bending behavior 2, the bending axis position of the bending behavior 2, the bending degree of the bending behavior 2, and the other extended standby field information of the bending behavior 2;
  • the number N of bending behaviors indicates the number of bending behaviors on the flexible screen in the current state.
  • Each bending behavior includes the ID of the bending behavior, the time of occurrence, the position, and the scale.
  • the field "other extended alternate field information of the bending behavior i" is an extension field, which allows the system to retain the expansion capability and can Set up multiple extension fields for technology evolution.
  • the terminal device adds the human-computer interaction event to the queue of the system message queue participation message transmission.
  • the queue is compliant with the system's original priority or queuing rules.
  • the human-computer interaction event can be sent by the system event sending mechanism.
  • the sending is performed in the form of a broadcast.
  • the terminal device searches for all applications that register to listen for human-computer interaction events, and broadcasts the human-computer interaction event (with parameters) to these applications.
  • the application processes it according to its own needs. To avoid repetition, we will not repeat them here.
  • the terminal device of the embodiment of the present invention is described below with reference to FIG. 4 and FIG. 5.
  • FIG. 4 is a schematic block diagram of a terminal device 300 according to an embodiment of the present invention.
  • the terminal device 300 includes:
  • a determining unit 310 configured to determine a bending parameter of the flexible screen when the flexible screen is subjected to a bending behavior, the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter, the bending a time parameter for indicating a time at which the flexible screen is subjected to a bending behavior, the bending position parameter being used to indicate a position at which the flexible screen is subjected to a bending behavior, the bending direction parameter being used to indicate a direction in which the flexible screen is bent
  • the bending degree parameter is used to indicate the strength of the bending behavior of the flexible screen;
  • the processing unit 320 is configured to adjust a user interface UI of the flexible screen according to the bending parameter, or generate a command corresponding to the first application according to the bending parameter.
  • processing unit 320 is specifically configured to:
  • the UI of the first position of the flexible screen is in a pressed state or a stretched state according to the bending parameter, adjusting UI configuration information of the first position according to the distance parameter, the distance parameter indicating the first position and the The distance between the curved positions of the flexible screen.
  • processing unit 320 is specifically configured to:
  • the UI displaying the UI according to the bending parameter and the first mapping relationship information, where the first mapping relationship information includes a correspondence relationship between the plurality of bending parameters and the plurality of UIs.
  • the first mapping relationship information includes a plurality of bending direction parameters and a plurality of UI correspondences; wherein the processing unit 320 is specifically configured to:
  • the UI is presented according to the bending direction parameter and the first mapping relationship.
  • the terminal device further includes:
  • the transceiver unit is configured to send the bending parameter to the at least one application before the processing unit 320 generates the command corresponding to the first application according to the bending parameter, where the at least one application includes the first application; wherein the processing unit 320 is specifically used to:
  • the second mapping relationship includes a plurality of bending parameters and a correspondence between the plurality of applications; wherein the processing unit 320 is specifically configured to:
  • the second mapping relationship includes a correspondence between the plurality of bending parameters and the plurality of commands of the first application; wherein the processing unit 320 is specifically configured to:
  • the transceiver unit is further configured to:
  • the determining unit 310 Before the determining unit 310 determines the bending parameter of the flexible screen, acquiring the force distribution information of the flexible screen and/or the capacitance distribution information of the flexible screen; wherein the determining unit 310 is specifically configured to:
  • the bending parameter is determined based on the force distribution information and/or the capacitance distribution information.
  • the determining unit 310 is specifically configured to:
  • the determining unit 310 is specifically configured to: determine a force distribution information of the flexible screen; according to the force The distribution information determines the bending parameter.
  • the determining unit 310 is specifically configured to: determine the force distribution information by measuring a physical circuit of the flexible screen; or determine the force distribution information by using a force sensor.
  • the determining unit 310 is specifically configured to: determine capacitance distribution information of the flexible screen; and determine the bending parameter according to the capacitance distribution information.
  • the determining unit 310 is specifically configured to: determine the capacitance value distribution information by using a capacitor.
  • the first sensor is a light sensor, or the first sensor is a distance sensor.
  • both the determining unit 310 and the processing unit 320 may be implemented by a processor.
  • apparatus 400 can include a processor 410, a transceiver 420, and a memory 430.
  • the memory 430 can be used to store indication information, and can also be used to store code, instructions, and the like executed by the processor 410.
  • the various components in device 400 are connected by a bus system, wherein the bus system includes, in addition to the data bus, a power bus, a control bus, and a status signal bus.
  • the processor 410 is configured to:
  • the bending parameter including at least one of a bending time parameter, a bending position parameter, a bending direction parameter, and a bending degree parameter
  • the bending time parameter being used to indicate the flexibility a time at which the bending behavior of the screen is used to indicate a position at which the flexible screen is subjected to a bending behavior
  • the bending direction parameter being used to indicate a direction in which the flexible screen is subjected to a bending behavior
  • the bending degree parameter being used to indicate that the flexible screen occurs
  • the strength of the bending behavior adjusting the user interface UI of the flexible screen according to the bending parameter, or generating a command corresponding to the first application according to the bending parameter.
  • the processor 410 is specifically configured to:
  • the UI of the first position of the flexible screen is in a pressed state or a stretched state according to the bending parameter, adjusting UI configuration information of the first position according to the distance parameter, the distance parameter indicating the first position and the The distance between the curved positions of the flexible screen.
  • the processor 410 is specifically configured to:
  • the UI displaying the UI according to the bending parameter and the first mapping relationship information, where the first mapping relationship information includes a correspondence relationship between the plurality of bending parameters and the plurality of UIs.
  • the first mapping relationship information includes a plurality of bending direction parameters and a plurality of UI correspondences; wherein the processor 410 is specifically configured to:
  • the UI is presented according to the bending direction parameter and the first mapping relationship.
  • the terminal device further includes:
  • the transceiver 420 is configured to send the bending parameter to the at least one application before the processor 410 generates the command corresponding to the first application according to the bending parameter, where the at least one application includes the first application; wherein the processor 410 is specific Used for:
  • the second mapping relationship includes a plurality of bending parameters and a correspondence between the plurality of applications; wherein the processor 410 is specifically configured to:
  • the second mapping relationship includes a correspondence between a plurality of bending parameters and a plurality of commands of the first application; wherein the processor 410 is specifically configured to:
  • the transceiver 420 is further configured to:
  • the processor 410 Before the processor 410 determines the bending parameter of the flexible screen, acquiring the force distribution information of the flexible screen and/or the capacitance distribution information of the flexible screen; wherein the processor 410 is specifically configured to:
  • the bending parameter is determined based on the force distribution information and/or the capacitance distribution information.
  • the processor 410 is specifically configured to:
  • the apparatus 400 shown in FIG. 5 can implement the various processes in the foregoing method embodiments of FIG. 1 and FIG. 3. To avoid repetition, details are not described herein again.
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • the device embodiments described above are only illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the embodiments of the present invention.
  • each functional unit in the embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product. Based on such understanding, the technical solution of the embodiments of the present invention, or the part contributing to the prior art or the part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • the instructions include a plurality of instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) to perform all or part of the steps of the method of the embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (Read ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

本发明实施例提供了一种控制终端设备的方法和终端设备。该方法包括:在该柔性屏幕发生弯曲行为时,确定该柔性屏幕的弯曲参数,该弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个;根据该弯曲参数调整该柔性屏幕的用户界面UI,或者,根据该弯曲参数生成第一应用对应的命令。本发明实施例提供的方法,将柔性屏幕的弯曲行抽象成弯曲参数,并将弯曲参数作为应用的输入方式,能够有效提升用户体验。

Description

控制终端设备的方法和终端设备 技术领域
本发明实施例涉及通信领域,并且更具体地,涉及控制终端设备的方法和终端设备。
背景技术
柔性屏由于具备柔性、弹性等特殊的属性,给显示带来新的体验,目前越来越广泛的被关注和使用,一些柔性手持设备正在慢慢进入行业。
现有技术很好的展示了如何构建一个柔性屏显示设备,甚至柔性屏和刚性屏相结合的显示装置和方案。
但是,现有技术重点在于如何根据柔性屏进行一些新的显示,但是在控制配置有柔性屏幕的终端设备方面没有更好的提升。例如,人机交互。
发明内容
本发明实施例提供了一种控制终端设备的方法和终端设备,能够有效提升用户体验。
第一方面,提供了一种控制终端设备的方法,所述方法包括:
在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
本发明实施例提供的方法,将柔性屏幕的弯曲行抽象成弯曲参数,并将弯曲参数作为应用的输入方式,能够有效提升用户体验。
在一些可能的设计中,所述根据所述弯曲参数调整所述柔性屏幕的用户界面UI,包括:若根据所述弯曲参数确定所述柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整所述第一位置的UI配置信息,所述距离参数表示所述第一位置与所述柔性屏幕的弯曲位置之间的距离。
本发明实施例中,终端设备通过调整UI配置信息,在柔性屏幕发生弯曲行为时,能够避免柔性屏幕弯曲位置附近的内容发送变形挤压,进而保证视觉效果。
另外,由于弯曲行为发生后,人眼对部分屏幕的视觉不在垂直,而且不同屏幕的视觉角度都不一样,本发明实施例通过调整UI配置信息,能够让用户不管看向哪个屏幕位置,视觉都自然,有效提升用户体验。
在一些可能的设计中,所述根据所述弯曲参数调整所述柔性屏幕的用户界面UI,包括:
根据所述弯曲参数和第一映射关系信息,呈现所述UI,所述第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
在一些可能的设计中,所述第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;其中,所述根据所述弯曲参数和第一映射关系信息,呈现所述UI,包括:
根据所述弯曲方向参数和所述第一映射关系,呈现所述UI。
在一些可能的设计中,所述根据所述弯曲参数生成第一应用对应的命令之前,所述方法还包括:
向至少一个应用发送所述弯曲参数,所述至少一个应用包括所述第一应用;其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
根据所述弯曲参数和第二映射关系,生成所述第一应用对应的命令。
在一些可能的设计中,所述第二映射关系包括多个弯曲参数和多个应用之间的对应关系;其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
根据所述弯曲参数和第二映射关系信息,生成所述第一应用的触发命令。
在一些可能的设计中,所述第二映射关系包括多个弯曲参数和所述第一应用的多个命令之间的对应关系;其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
根据所述弯曲参数和第二映射关系信息,生成所述第一应用对应的第一命令。
在一些可能的设计中,所述确定所述柔性屏幕的弯曲参数之前,所述方法还包括:
获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息;其中,所述确定所述柔性屏幕的弯曲参数,包括:
根据所述受力分布信息和/或所述电容分布信息,确定所述弯曲参数。
在一些可能的设计中,所述确定所述柔性屏幕的弯曲参数,包括:
通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,所述柔性屏幕在所述第一硬性屏幕和所述第二硬性屏幕之间,每个硬性屏幕的硬度都大于所述柔性屏幕的硬度;根据所述相对位置确定所述弯曲参数。
在一些可能的设计中,所述获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息,包括:通过测量所述柔性屏幕的物理电路确定所述受力分布信息;或者,通过力传感器确定所述受力分布信息。
一些可能的设计中,所述获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息,包括:通过电容器确定所述电容值分布信息。
第二方面,提供了一种终端设备,所述终端设备包括:
确定单元,用于在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
处理单元,用于根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
第三方面,提供了一种终端设备,所述终端设备包括处理器,所述处理器具体用于:
在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
应注意,第二方面和第三方面的终端设备能够实现/执行第一方面的方法实施例。
第四方面,提供了一种处理器,所述处理器用于:
在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
应注意,第四方面的处理器能够实现/执行第一方面的方法实施例。
第五方面,提供了一种存储介质,所述存储介质用于存储柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个。
在一些可能的设计中,所述存储介质还用于存储第一应用对应的命令。
结合上述各个方面,在一些可能的设计中,所述第一应用为游戏应用。
结合上述各个方面,在一些可能的设计中,一些可能的设计中,所述第一传感器为光传感器,或者,所述第一传感器为距离传感器。
附图说明
图1是本发明实施例的控制终端设备的方法的示意性流程图。
图2是本发明实施例的弯曲参数的示意性框图。
图3是本发明实施例的控制终端设备的方法的另一示意性流程图。
图4是本发明实施例的终端设备的示意性框图。
图5是本发明实施例的终端设备的另一示意性框图。
具体实施方式
本发明实施例中的控制终端设备的方法能够适用于任何配置有柔性屏幕的终端设备。其中,柔性屏幕可实现某种程度的柔性折叠。例如,可以为全部由柔性屏幕组成的显示装置,也可以是柔性屏幕和硬性屏幕结合组成一个完成的显示装置。其中,硬性屏幕的硬度大于柔性屏幕的硬度。
下面将结合各个附图对本发明实施例的控制终端设备的方法和终端设备进行说明。
图1是本发明实施例的控制终端设备的方法100的示意性流程图。该方法100可以由该终端设备执行,也可以由该终端设备的处理器执行。为便于描述,下面以终端设备为执行主体进行示例性说明。
110、在柔性屏幕发生弯曲行为时,确定该柔性屏幕的弯曲参数。
具体而言,用户可能通过物理操作,使得柔性屏发生一个或多个弯曲行为。在柔性屏幕发送弯曲行为时,终端设备确定该柔性屏幕的弯曲参数。
本发明实施例中,该弯曲参数可以包括弯曲时间参数、弯曲位置参数、弯曲方向参 数和弯曲程度参数中的至少一个。其中,该弯曲时间参数用于表示该柔性屏幕发生弯曲行为的时间,该弯曲位置参数用于表示该柔性屏幕发生弯曲行为的位置,该弯曲方向参数用于表示该柔性屏幕发生弯曲行为的方向,该弯曲程度参数用于表示该柔性屏幕发生弯曲行为的力度。该弯曲参数可以是各种形式或者各种用于表示该弯曲行为的参数。
例如,弯曲时间参数可以是记录的柔性屏幕发生弯曲行为的时间点。例如,2017年01月01日00时00分00秒。
又例如,如图2所示,通过平面直角坐标系的方式描述弯曲位置参数。可选地,该弯曲位置参数可以通过弯曲中心和/或弯曲轴表示。其中,弯曲中心指柔性屏幕发生弯曲行为时,该柔性屏幕上最凸处位置或者最凹处位置。弯曲轴指该柔性屏幕发生弯曲行为时,该柔性屏幕产生一系列的波形曲线,本发明实施例将波形曲线上曲率为零的点组成的线定义为弯曲轴,该弯曲轴也可以称为凹凸轴。
具体地,将柔性屏幕未发送弯曲行为时,采用坐标(x,y)表示该柔性屏幕的各个位置,在该柔性屏幕发送弯曲行为时,将最凹处位置或者最凸处位置对应的坐标或者最凸处位置对应的坐标作为弯曲位置参数,例如,(2,3)。或者将由曲率等于零的点组成的直线或者曲线作为弯曲位置参数,例如,x=1、y=4x等等。
又例如,还可以结合最凹处或者最凸处的坐标和弯曲轴,描述该柔性屏幕的弯曲位置参数。
应注意,柔性屏幕的每一个弯曲行为,必定有一个方向,一种方向是向显示面弯曲,另一个可能方向是向非显示面弯曲。其中,向显示面弯曲也可以称为向内弯曲,指柔性屏幕的显示面呈现为凹字形,向非显示面弯曲也可以称为向外弯曲,柔性屏幕的显示面呈现为凸字形。
可选地,本发明实施例中,弯曲方向参数可以通过数值标识。例如,具体可以通过0表示向显示面弯曲,1表示向非显示面弯曲。
还应注意,本发明实施例中的弯曲程度参数是用于表示柔性屏幕发送弯曲行为时,该柔性屏幕的弯曲力度,用来表示柔性屏当前被用户或者其它设备施压的强度。可选地,可以用一个浮点型,或整形值表示该强度值。该值绝对值越大,表示弯曲度越高。例如,80、28、93、200等等。
应理解,本发明实施例中的各个弯曲参数可以是其它的形式,也可以相互结合描述,只要该终端设备能够识别即可,本发明实施例对此不作具体限定。
例如,可以将弯曲程度参数和弯曲方向参数进行结合描述。可选地,可以正负数表示弯曲方向和弯曲度。例如,-200表示向非显示面弯曲度为200,101表示向显示面弯曲度为101。
上面通过弯曲位置参数、弯曲方向参数和弯曲程度参数,对柔性屏幕发送弯曲行为时的参数进行了示例性描述,本发明实施例对此不作具体限定。
下面介绍获取这些弯曲参数的具体实现方式。
在一个实施例中,该终端设备只配置有柔性屏幕。
可选地,确定该柔性屏幕的受力分布信息;根据该受力分布信息确定该弯曲参数。
具体而言,通过测量该柔性屏幕的物理电路确定该受力分布信息;或者,通过力传感器确定该受力分布信息。例如,通过力传感器测量出柔性屏幕的(2,3)对应的位置受力最大,为20牛顿(N),则确定该柔性屏幕的弯曲位置参数为:(2,3),该柔性屏幕 的弯曲程度参数为20(N)
可选地,确定该柔性屏幕的电容分布信息;根据该电容分布信息确定该弯曲参数。具体地,在电子及电器线路中并不是只有电容器才有电容,在任何两个通电导体之间都存在电容。例如,电力输电线之间、输电线与大地之间、晶体管各引脚之间以及元件与元件之间都存在电容。本发明实施例将这些电容分布称为电容分布信息,当柔性屏幕发生弯曲行为时,弯曲部分的电容分布更密集,其电容值对比其它区域也将更有其规律性,终端设备通过柔性屏幕发送弯曲行为时,电容分布信息确定该弯曲参数。
例如,通过电容器确定该电容值分布信息。具体地,通过电容器测量出的信息将电容值分布最密集的位置坐标或者轴确定为弯曲位置参数。
举例来说,以柔性屏幕未发送弯曲行为时,其柔性屏幕的中心点为原点,横向为x轴,纵向为y轴,确定该柔性屏幕的坐标系。在柔性屏幕发送弯曲行为时,终端设备通过电容器确定x=4的位置电容值分布最密集,则确定该弯曲位置参数为x=4。
在另一个实施例中,该终端设备同时配置有柔性屏幕和硬性屏幕。
可选地,通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,该柔性屏幕在该第一硬性屏幕和该第二硬性屏幕之间,每个硬性屏幕的硬度都大于该柔性屏幕的硬度;根据该相对位置确定该弯曲参数。
应理解,该第一传感器可以是光传感器,也可以是距离传感器。还可以是其它能够探测距离的传感器。还应理解,本发明实施例中的终端设备可以配置有多个硬性屏幕。
还应理解,以上确定弯曲参数的实施例仅仅是示例性的列举,本发明实施例不局限于此。例如,终端设备还可以根据柔性屏幕的物理实现灵活获得。
120、根据该弯曲参数调整该柔性屏幕的用户界面(User Interface,UI),或者,根据该弯曲参数生成第一应用对应的命令。
具体来说,终端设备通过将弯曲行为抽象出的弯曲参数,调整该柔性屏幕的UI,或者,根据该弯曲参数生成第一应用对应的命令。
应注意,智能操作系统会根据系统分辨率、UI layer的尺寸,位置,里面的资源等进行一个页面的渲染和生成。例如,安卓智能操作系统。
在一个实施例中,当柔性屏幕发送弯曲行为时,为了能够保证UI质量,提升用户体验,可以将弯曲参数也纳入作为页面内容生成的依据之一。
换句话说,用户对该柔性屏幕进行物理操作后,该终端设备能够根据获取到的弯曲参数进行用户界面调整。
例如,用户将屏幕向显示面弯曲,可以适度调整弯曲轴位置附近的显示元素,让其具备类似曲面屏广角的视觉效果,而不是维持直面屏原有布局,导致弯曲轴附近内容变形挤压。
同样,由于弯曲行为发生后,人眼对部分屏幕的视觉不在垂直,而且不同屏幕的视觉角度都不一样,也可以进行一些智能的渲染调整,让用户不管看向哪个屏幕位置,视觉都自然。
可选地,在本发明实施例中,若根据该弯曲参数确定该柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整该第一位置的UI配置信息,该距离参数为该第一位置与该柔性屏幕的弯曲位置之间的距离。
例如,若根据该弯曲参数确定弯曲位置显示内容被挤压,且越靠近弯曲轴,挤压越 严重;越远离弯曲轴,视觉偏差越大。
假设第一位置和弯曲轴距离为d,则UI配置信息中显示元素的调整力度和d成反比,调整方向为适当离散化,抵消视觉挤压效果,从而实现较好的环幕视觉效果。UI配置信息中渲染元素的调整力度跟d成正比,通过对渲染元素进行视角,倾斜度调整,实现更好效果。其中,终端设备具体可以通过对渲染元素进行视角,倾斜度调整。
举例来说,UI配置信息中显示元素的调整力度可以根据公式y=-(1/d)进行调整,其中y为UI配置信息中显示元素的调整力度,d为第一位置到弯曲轴的距离,符号“-”代表调整方向为适当离散化。
从用户的角度来说,用户对该柔性屏幕进行向显示面弯曲的物理操作,即该柔性屏幕的显示面呈相对弯曲,该柔性屏幕呈现出显示内容处于被挤压状态,且越靠近弯曲轴,挤压越严重;越远离弯曲轴,视觉偏差越大。
本发明实施例,通过弯曲参数对该用户的物理操作进行量化,并将该弯曲参数作为调整UI配置信息的参考量。具体地,如果将该柔性屏幕的弯曲位置确定为原点坐标(0,0),由此,以该原点坐标为中心,坐标点(x,y)UI配置信息中显示元素的调整力度与该(x,y)到(0,0)的距离成反比。由此,即使用户对该柔性屏幕进行了弯曲的物理操作,用户不管看向哪个屏幕位置,视觉都会非常自然。
又例如,若根据该弯曲参数确定弯曲位置显示内容被离散,且越靠近弯曲轴,离散越严重;越远离弯曲轴,视觉偏差越大。
假设第一位置和弯曲轴距离为d,则UI配置信息中显示元素的调整力度和d成反比,调整方向为适当挤压,抵消视觉离散效果,从而实现较好的环幕视觉效果。UI配置信息中渲染元素的调整力度跟d成正比,实现更好效果。
举例来说,UI配置信息中显示元素的调整力度可以根据公式y=+(1/d)进行调整,其中y为UI配置信息中显示元素的调整力度,d为第一位置到弯曲轴的距离,符号“+”代表调整方向为适当挤压。
可选地,在本发明实施例中,还可以建立多个弯曲参数和多个UI第一映射关系,根据该弯曲参数和第一映射关系信息,呈现该UI。
例如,该第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系,根据该弯曲方向参数和该第一映射关系,呈现该UI。
更具体地,例如,在第一弯曲方向,呈现第一UI;在第二弯曲方向,呈现第二UI。
也就是说,如果用户对该柔性屏幕进行向显示面弯曲的物理操作,即该柔性屏幕的呈现出第一UI,该第一UI中的显示元素适当离散。如果用户对该柔性屏幕进行向非显示面弯曲的物理操作,即该柔性屏幕的呈现出第二UI,该第二UI中的显示元素适当收敛。但是,从用户的角度来看,即使用户对该柔性屏幕进行了弯曲的物理操作,用户不管看向哪个屏幕位置,视觉都会非常自然。
应理解,智能调整UI布局和视觉效果的应用仅仅是示例性的说明。本发明实施例的控制终端设备的方法还可以根据弯曲参数调整UI配置信息中的其它信息。本发明实施例不作具体限定。
在另一个实施例中,终端设备可以将该弯曲参数和应用命令进行关联。即,该终端设备可以根据该弯曲参数生成第一应用对应的命令。
可选地,根据该弯曲参数生成第一应用对应的命令之前,向至少一个应用发送该弯曲参数,该至少一个应用包括该第一应用;根据该弯曲参数和第二映射关系,生成该第 一应用对应的命令。
具体而言,终端设备向至少一个应用发送该弯曲参数,这些应用中的第一应用接收到该弯曲参数时,能够根据第二映射关系生成一个具体的操作命令。换句话说,本发明实施例将用户的弯曲行为与应用的操作命令进行了关联。
可选地,该第二映射关系包括多个弯曲参数和多个应用之间的对应关系,根据该弯曲参数和第二映射关系信息,生成该第一应用的触发命令。
例如,在第一弯曲位置,触发第一应用;在第二弯曲位置,触发第二应用。
从用户的角度来说,终端设备可以根据柔性屏幕的弯曲位置参数,生成相应的具体命令。例如,假设用户对该柔性屏幕进行向显示面弯曲的物理操作,或者,进行向非显示面弯曲的物理操作。如果终端设备检测到该弯曲位置参数指示的位置为微信图标所在的位置,则打开微信应用,如果终端设备检测到该弯曲位置参数指示的位置为QQ图标所在的位置,则打开QQ应用。
可选地,该第二映射关系包括多个弯曲参数和该第一应用的多个命令之间的对应关系,根据该弯曲参数和第二映射关系信息,生成该第一应用对应的第一命令。
换句话说,不同的弯曲参数可以对应同一应用不同的操作命令。
可选地,向至少一个应用发送该弯曲参数,该至少一个应用包括该第一应用,以使该第一应用根据该弯曲参数生成该第一应用对应的命令。
从用户的角度来说,终端设备可以根据柔性屏幕的弯曲参数,生成相应的具体命令。例如,假设用户对该柔性屏幕进行向显示面弯曲的物理操作,或者,进行向非显示面弯曲的物理操作。
如果用户用力程度小于第一阈值,检测到的弯曲程度参数小于20时,则启动该第一应用。如果用户用力程度大于第一阈值且小于第二阈值,检测到的弯曲程度参数大于20且小于30时,启动该第一应用的应用介绍界面,其中,第二阈值大于第一阈值。如果用户用力程度大于第二阈值,检测到的弯曲程度参数大于30时,则启动该第一应用的退出命令。
例如,该第一应用为游戏应用。即,终端设备可以根据该弯曲参数为游戏定义弹性输入事件,能够增加游戏和应用趣味性。比如,可以用柔性屏幕的弹性行为来执行愤怒的小鸟的弹弓行为。
具体地,可以直接将弯曲程度参数作为弹弓弯曲程度参数。
应理解,本发明实施例中的第一应用可以是游戏,也可以是其它任何配置有与柔性屏幕相关的人机交互功能的应用。换句话说,该第一应用可以是任何一个具备柔性屏幕的人机交互事件的应用。本发明实施例对此不作具体限定。同时,为便于描述,下文将柔性屏幕的人机交互事件简称为人机交互事件。
本发明实施例提出了一种根据柔性屏幕的弯曲行为定义的新的人机交互事件的方法,给应用和游戏带来全新的操作方式,同时可以利用该行为对显示的布局进行更加智能化的调整,从而实现较好的视觉效果。
图3是本发明实施例控制终端设备的方法200的示意性流程图。
210、注册弯曲行为事件。
具体而言,终端设备中的应用通过系统提供的注册人机交互事件接口或方法进行注册,以便后续就可以监听系统发送的人机交互事件。
220、监听人机交互事件。
具体而言,终端设备中具备人机交互功能的应用会配置有弯曲行为监听器,该弯曲行为监听器会一直监听包括人机交互事件的系统事件,当监听到F=FLEXURAL_EVENT的事件后,解析出柔性屏幕发送弯曲行为时的弯曲参数。
230、发生弯折行为时确定弯曲参数。
具体而言,用户对柔性显示屏的终端设备进行弯折。为避免重复,在此不做赘述。
240、根据弯曲参数生成人机交互事件。
具体而言,将柔性屏幕的物理弯折行为转化为数字参数后,进一步进行格式转化。即将弯曲参数转化成人机交互事件的数据格式。可选地,采用的格式如下:
【事件标志类型F:参数P】
其中,事件标志类型F表示该事件和系统其它事件(触摸事件、来电事件等)的区别标志,该标志是系统级别的,任何应用获取系统发送事件,即可通过该标志类型F判断是否为柔性屏幕的人机交互事件。本发明实施例以F=FLEXURAL_EVENT作为示例展开说明,该标志定义不局限于此名称。参数P表示该人机交互事件携带的参数,是一个数据结构体。
例如,参数P可具体包含如下信息:
【弯折行为数量N,
弯折行为ID1,弯折行为1的发生时间,弯折行为1的弯曲轴位置,弯折行为1的弯曲度,弯折行为1的其它扩展备用字段信息;
弯折行为ID2,弯折行为2的发生时间,弯折行为2的弯曲轴位置,弯折行为2的弯曲度,弯折行为2的其它扩展备用字段信息;
弯折行为IDN,弯折行为N的发生时间,弯折行为N的弯曲轴位置,弯折行为N的弯曲度,弯折行为N的其它扩展备用字段信息】
其中,弯折行为数量N表示当前状态下柔性屏幕上弯折行为的数量。每一个弯折行为都包括弯折行为的ID,发生的时间,位置,以及尺度等信息,字段“弯折行为i的其它扩展备用字段信息”是扩展字段,可以准许系统保留扩展能力,且可以设置多个扩展字段供技术演进。
应理解,上述人机交互事件的数据格式和参数P仅仅是示例性的,本发明实施例对此不作具体限定。
250、将该人机交互时间加入系统事件或消息队列。
具体而言,当人机交互事件生成后,终端设备将该人机交互事件加入到系统消息队列参与消息发送的排队。可选地,排队遵从系统原有优先级或排队规则。
260、向至少一个应用发送该系统事件或消息队列。
具体而言,当排队到该人机交互事件时,可以由系统事件发送机制发送该人机交互事件。可选地,采用广播的形式进行发送,具体地,终端设备搜索所有注册监听人机交互事件的应用,并且向这些应用广播该人机交互事件(附带参数)送达。
270、根据该人机交互事件生成第一应用对应的命令。
具体而言,解析出数据后,应用根据自身需要进行处理。为避免重复,在此不做赘述。
下面结合图4和图5介绍本发明实施例的终端设备。
图4是本发明实施例的终端设备300的示意性框图。
如图4所示,该终端设备300包括:
确定单元310,用于在该柔性屏幕发生弯曲行为时,确定该柔性屏幕的弯曲参数,该弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
处理单元320,用于根据该弯曲参数调整该柔性屏幕的用户界面UI,或者,根据该弯曲参数生成第一应用对应的命令。
可选地,该处理单元320具体用于:
若根据该弯曲参数确定该柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整该第一位置的UI配置信息,该距离参数表示该第一位置与该柔性屏幕的弯曲位置之间的距离。
可选地,该处理单元320具体用于:
根据该弯曲参数和第一映射关系信息,呈现该UI,该第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
可选地,该第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;其中,该处理单元320具体用于:
根据该弯曲方向参数和该第一映射关系,呈现该UI。
可选地,该终端设备还包括:
收发单元,用于在该处理单元320根据该弯曲参数生成第一应用对应的命令之前,向至少一个应用发送该弯曲参数,该至少一个应用包括该第一应用;其中,该处理单元320具体用于:
根据该弯曲参数和第二映射关系,生成该第一应用对应的命令。
可选地,该第二映射关系包括多个弯曲参数和多个应用之间的对应关系;其中,该处理单元320具体用于:
根据该弯曲参数和第二映射关系信息,生成该第一应用的触发命令。
可选地,该第二映射关系包括多个弯曲参数和该第一应用的多个命令之间的对应关系;其中,该处理单元320具体用于:
根据该弯曲参数和第二映射关系信息,生成该第一应用对应的第一命令。
可选地,该收发单元还用于:
在该确定单元310确定该柔性屏幕的弯曲参数之前,获取该柔性屏幕的受力分布信息和/或该柔性屏幕的电容分布信息;其中,该确定单元310具体用于:
根据该受力分布信息和/或该电容分布信息,确定该弯曲参数。
可选地,该确定单元310具体用于:
通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,该柔性屏幕在该第一硬性屏幕和该第二硬性屏幕之间,每个硬性屏幕的硬度都大于该柔性屏幕的硬度;根据该相对位置确定该弯曲参数。
可选地,该确定单元310具体用于:确定该柔性屏幕的受力分布信息;根据该受力 分布信息确定该弯曲参数。
可选地,该确定单元310具体用于:通过测量该柔性屏幕的物理电路确定该受力分布信息;或者,通过力传感器确定该受力分布信息。
可选地,该确定单元310具体用于:确定该柔性屏幕的电容分布信息;根据该电容分布信息确定该弯曲参数。
可选地,该确定单元310具体用于:通过电容器确定该电容值分布信息。
可选地,该第一传感器为光传感器,或者,该第一传感器为距离传感器。
应注意,本发明实施例中,确定单元310和处理单元320均可以由处理器实现。
如图5所示,装置400可以包括处理器410、收发器420和存储器430。其中,存储器430可以用于存储指示信息,还可以用于存储处理器410执行的代码、指令等。装置400中的各个组件通过总线系统相连,其中,总线系统除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。
具体地,处理器410,该处理器410用于:
在该柔性屏幕发生弯曲行为时,确定该柔性屏幕的弯曲参数,该弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,该弯曲时间参数用于表示该柔性屏幕发生弯曲行为的时间,该弯曲位置参数用于表示该柔性屏幕发生弯曲行为的位置,该弯曲方向参数用于表示该柔性屏幕发生弯曲行为的方向,该弯曲程度参数用于表示该柔性屏幕发生弯曲行为的力度;根据该弯曲参数调整该柔性屏幕的用户界面UI,或者,根据该弯曲参数生成第一应用对应的命令。
可选地,该处理器410具体用于:
若根据该弯曲参数确定该柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整该第一位置的UI配置信息,该距离参数表示该第一位置与该柔性屏幕的弯曲位置之间的距离。
可选地,该处理器410具体用于:
根据该弯曲参数和第一映射关系信息,呈现该UI,该第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
可选地,该第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;其中,该处理器410具体用于:
根据该弯曲方向参数和该第一映射关系,呈现该UI。
可选地,该终端设备还包括:
收发器420,用于在该处理器410根据该弯曲参数生成第一应用对应的命令之前,向至少一个应用发送该弯曲参数,该至少一个应用包括该第一应用;其中,该处理器410具体用于:
根据该弯曲参数和第二映射关系,生成该第一应用对应的命令。
可选地,该第二映射关系包括多个弯曲参数和多个应用之间的对应关系;其中,该处理器410具体用于:
根据该弯曲参数和第二映射关系信息,生成该第一应用的触发命令。
可选地,该第二映射关系包括多个弯曲参数和该第一应用的多个命令之间的对应关系;其中,该处理器410具体用于:
根据该弯曲参数和第二映射关系信息,生成该第一应用对应的第一命令。
可选地,该收发器420还用于:
在该处理器410确定该柔性屏幕的弯曲参数之前,获取该柔性屏幕的受力分布信息和/或该柔性屏幕的电容分布信息;其中,该处理器410具体用于:
根据该受力分布信息和/或该电容分布信息,确定该弯曲参数。
可选地,该处理器410具体用于:
通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,该柔性屏幕在该第一硬性屏幕和该第二硬性屏幕之间,每个硬性屏幕的硬度都大于该柔性屏幕的硬度;根据该相对位置确定该弯曲参数。
图5所示的装置400能够实现前述图1和图3的方法实施例中的各个过程,为避免重复,这里不再赘述。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业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实施例的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本发明实施例的目的。
另外,在本发明实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read-Only,Memory ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。
以上内容,仅为本发明实施例的具体实施方式,但本发明实施例的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明实施例揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明实施例的保护范围之内。因此,本发明实施例的保护 范围应所述以权利要求的保护范围为准。

Claims (27)

  1. 一种控制终端设备的方法,其特征在于,所述终端设备配置有柔性屏幕,所述方法包括:
    在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
    根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述弯曲参数调整所述柔性屏幕的用户界面UI,包括:
    若根据所述弯曲参数确定所述柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整所述第一位置的UI配置信息,所述距离参数表示所述第一位置与所述柔性屏幕的弯曲位置之间的距离。
  3. 根据权利要求1所述的方法,其特征在于,所述根据所述弯曲参数调整所述柔性屏幕的用户界面UI,包括:
    根据所述弯曲参数和第一映射关系信息,呈现所述UI,所述第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
  4. 根据权利要求3所述的方法,其特征在于,所述第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;
    其中,所述根据所述弯曲参数和第一映射关系信息,呈现所述UI,包括:
    根据所述弯曲方向参数和所述第一映射关系,呈现所述UI。
  5. 根据权利要求1所述的方法,其特征在于,所述根据所述弯曲参数生成第一应用对应的命令之前,所述方法还包括:
    向至少一个应用发送所述弯曲参数,所述至少一个应用包括所述第一应用;
    其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
    根据所述弯曲参数和第二映射关系,生成所述第一应用对应的命令。
  6. 根据权利要求5所述的方法,其特征在于,所述第二映射关系包括多个弯曲参数和多个应用之间的对应关系;
    其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用的触发命令。
  7. 根据权利要求5所述的方法,其特征在于,所述第二映射关系包括多个弯曲参数和所述第一应用的多个命令之间的对应关系;
    其中,所述根据所述弯曲参数生成第一应用对应的命令,包括:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用对应的第一命令。
  8. 根据权利要求1至7中任一项所述的方法,其特征在于,所述确定所述柔性屏幕的弯曲参数之前,所述方法还包括:
    获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息;
    其中,所述确定所述柔性屏幕的弯曲参数,包括:
    根据所述受力分布信息和/或所述电容分布信息,确定所述弯曲参数。
  9. 根据权利要求1至7中任一项所述的方法,其特征在于,所述确定所述柔性屏幕的弯曲参数,包括:
    通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,所述柔性屏幕在所述第一硬性屏幕和所述第二硬性屏幕之间,每个硬性屏幕的硬度都大于所述柔性屏幕的硬度;
    根据所述相对位置确定所述弯曲参数。
  10. 一种终端设备,其特征在于,所述终端设备配置有柔性屏幕,所述终端设备包括:
    确定单元,用于在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
    处理单元,用于根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
  11. 根据权利要求10所述的终端设备,其特征在于,所述处理单元具体用于:
    若根据所述弯曲参数确定所述柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整所述第一位置的UI配置信息,所述距离参数表示所述第一位置与所述柔性屏幕的弯曲位置之间的距离。
  12. 根据权利要求11所述的终端设备,其特征在于,所述处理单元具体用于:
    根据所述弯曲参数和第一映射关系信息,呈现所述UI,所述第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
  13. 根据权利要求12所述的终端设备,其特征在于,所述第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;
    其中,所述处理单元具体用于:
    根据所述弯曲方向参数和所述第一映射关系,呈现所述UI。
  14. 根据权利要求10所述的终端设备,其特征在于,所述终端设备还包括:
    收发单元,用于在所述处理单元根据所述弯曲参数生成第一应用对应的命令之前,向至少一个应用发送所述弯曲参数,所述至少一个应用包括所述第一应用;
    其中,所述处理单元具体用于:
    根据所述弯曲参数和第二映射关系,生成所述第一应用对应的命令。
  15. 根据权利要求14所述的终端设备,其特征在于,所述第二映射关系包括多个弯曲参数和多个应用之间的对应关系;
    其中,所述处理单元具体用于:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用的触发命令。
  16. 根据权利要求14所述的终端设备,其特征在于,所述第二映射关系包括多个弯曲参数和所述第一应用的多个命令之间的对应关系;
    其中,所述处理单元具体用于:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用对应的第一命令。
  17. 根据权利要求14至16中任一项所述的终端设备,其特征在于,所述收发单元还用于:
    在所述确定单元确定所述柔性屏幕的弯曲参数之前,获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息;
    其中,所述确定单元具体用于:
    根据所述受力分布信息和/或所述电容分布信息,确定所述弯曲参数。
  18. 根据权利要求10至16中任一项所述的终端设备,其特征在于,所述确定单元具体用于:
    通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,所述柔性屏幕在所述第一硬性屏幕和所述第二硬性屏幕之间,每个硬性屏幕的硬度都大于所述柔性屏幕的硬度;
    根据所述相对位置确定所述弯曲参数。
  19. 一种终端设备,其特征在于,所述终端设备配置有柔性屏幕,所述终端设备包括:
    处理器,该处理器用于:
    在所述柔性屏幕发生弯曲行为时,确定所述柔性屏幕的弯曲参数,所述弯曲参数包括弯曲时间参数、弯曲位置参数、弯曲方向参数和弯曲程度参数中的至少一个,所述弯曲时间参数用于表示所述柔性屏幕发生弯曲行为的时间,所述弯曲位置参数用于表示所述柔性屏幕发生弯曲行为的位置,所述弯曲方向参数用于表示所述柔性屏幕发生弯曲行为的方向,所述弯曲程度参数用于表示所述柔性屏幕发生弯曲行为的力度;
    根据所述弯曲参数调整所述柔性屏幕的用户界面UI,或者,根据所述弯曲参数生成第一应用对应的命令。
  20. 根据权利要求19所述的终端设备,其特征在于,所述处理器具体用于:
    若根据所述弯曲参数确定所述柔性屏幕的第一位置的UI处于被挤压状态或者被拉伸状态,则根据距离参数调整所述第一位置的UI配置信息,所述距离参数表示所述第一位置与所述柔性屏幕的弯曲位置之间的距离。
  21. 根据权利要求20所述的终端设备,其特征在于,所述处理器具体用于:
    根据所述弯曲参数和第一映射关系信息,呈现所述UI,所述第一映射关系信息包括多个弯曲参数和多个UI的对应关系。
  22. 根据权利要求21所述的终端设备,其特征在于,所述第一映射关系信息包括多个弯曲方向参数和多个UI的对应关系;
    其中,所述处理器具体用于:
    根据所述弯曲方向参数和所述第一映射关系,呈现所述UI。
  23. 根据权利要求19所述的终端设备,其特征在于,所述终端设备还包括:
    收发器,用于在所述处理器根据所述弯曲参数生成第一应用对应的命令之前,向至少一个应用发送所述弯曲参数,所述至少一个应用包括所述第一应用;
    其中,所述处理器具体用于:
    根据所述弯曲参数和第二映射关系,生成所述第一应用对应的命令。
  24. 根据权利要求23所述的终端设备,其特征在于,所述第二映射关系包括多个弯 曲参数和多个应用之间的对应关系;
    其中,所述处理器具体用于:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用的触发命令。
  25. 根据权利要求23所述的终端设备,其特征在于,所述第二映射关系包括多个弯曲参数和所述第一应用的多个命令之间的对应关系;
    其中,所述处理器具体用于:
    根据所述弯曲参数和第二映射关系信息,生成所述第一应用对应的第一命令。
  26. 根据权利要求23至24中任一项所述的终端设备,其特征在于,所述收发器还用于:
    在所述处理器确定所述柔性屏幕的弯曲参数之前,获取所述柔性屏幕的受力分布信息和/或所述柔性屏幕的电容分布信息;
    其中,所述处理器具体用于:
    根据所述受力分布信息和/或所述电容分布信息,确定所述弯曲参数。
  27. 根据权利要求19至24中任一项所述的终端设备,其特征在于,所述处理器具体用于:
    通过第一传感器测量第一硬性屏幕和第二硬性屏幕之间的相对位置,所述柔性屏幕在所述第一硬性屏幕和所述第二硬性屏幕之间,每个硬性屏幕的硬度都大于所述柔性屏幕的硬度;
    根据所述相对位置确定所述弯曲参数。
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