WO2019071980A1 - 控制方法及装置 - Google Patents

控制方法及装置 Download PDF

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Publication number
WO2019071980A1
WO2019071980A1 PCT/CN2018/092581 CN2018092581W WO2019071980A1 WO 2019071980 A1 WO2019071980 A1 WO 2019071980A1 CN 2018092581 W CN2018092581 W CN 2018092581W WO 2019071980 A1 WO2019071980 A1 WO 2019071980A1
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WO
WIPO (PCT)
Prior art keywords
touch
fingerprint
touch information
area
screen
Prior art date
Application number
PCT/CN2018/092581
Other languages
English (en)
French (fr)
Inventor
李希鹏
罗雨来
张晓亮
马海蓉
刘秋英
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US16/754,573 priority Critical patent/US20230188638A1/en
Publication of WO2019071980A1 publication Critical patent/WO2019071980A1/zh

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Classifications

    • 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
    • G06F3/1423Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display
    • 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
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • 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
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • 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
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0414Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means using force sensing means to determine a position
    • 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
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • 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]
    • 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]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • 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
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/041Indexing scheme relating to G06F3/041 - G06F3/045
    • G06F2203/04105Pressure sensors for measuring the pressure or force exerted on the touch surface without providing the touch position
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/041Indexing scheme relating to G06F3/041 - G06F3/045
    • G06F2203/04106Multi-sensing digitiser, i.e. digitiser using at least two different sensing technologies simultaneously or alternatively, e.g. for detecting pen and finger, for saving power or for improving position detection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/16Details of telephonic subscriber devices including more than one display unit

Definitions

  • the present disclosure relates to the field of communication technologies, for example, to a control method and apparatus.
  • the dual-screen terminal enables the terminal to adapt to more usage scenarios and is more portable, which brings a better user experience than a single-screen terminal.
  • the embodiment of the present application provides a control method and apparatus to solve at least the problem that the terminal control methods in the related art are based on a single screen terminal, and a control method for multiple screens has not been proposed.
  • the present application provides a control method for a terminal including at least two touch screens, the method comprising: acquiring at least one of the following touch information: first fingerprint touch information on the first touch screen of the terminal, and the a second fingerprint touch information on the second touch screen of the terminal; and controlling the terminal according to the acquired touch information.
  • the present application provides a control device for a terminal that includes at least two touch screens.
  • the device includes: an acquisition module configured to acquire at least one of the following touch information: a first fingerprint touch on the first touch screen of the terminal Control information; and second fingerprint touch information on the second touch screen of the terminal; and the control module is configured to control the terminal according to the acquired touch information.
  • the present application also provides a storage medium including a stored program, wherein the program executes any one of the above methods when executed.
  • the application also provides a processor configured to execute a program, wherein the program executes any one of the methods described above.
  • the present application provides a corresponding control method for the characteristics of the touch operation of the multi-screen terminal, and further solves the problem that the terminal control methods in the related art are based on a single-screen terminal, and the problem of the control method for the multi-screen has not been proposed, thereby effectively improving the multi-screen.
  • the user experience of the terminal is a corresponding control method for the characteristics of the touch operation of the multi-screen terminal, and further solves the problem that the terminal control methods in the related art are based on a single-screen terminal, and the problem of the control method for the multi-screen has not been proposed, thereby effectively improving the multi-screen.
  • FIG. 1 is a block diagram showing the hardware structure of a mobile terminal according to a control method according to an embodiment of the present application
  • FIG. 3 is a flowchart of a control method provided by an embodiment of the present application.
  • FIG. 5 is a flowchart of a control method provided by another embodiment of the present application.
  • FIG. 6 is a schematic diagram of operations provided by another embodiment of the present application.
  • FIG. 8 is a schematic diagram of operations provided by another embodiment of the present application.
  • FIG. 10 is a schematic diagram of operations provided by another embodiment of the present application.
  • FIG. 11 is a flowchart of a control method provided by another embodiment of the present application.
  • Figure 12 is a schematic diagram of the operation provided by another embodiment of the application.
  • FIG. 13 is a flowchart of a control method provided by another embodiment of the present application.
  • FIG. 14 is a structural block diagram of a control apparatus according to an embodiment of the present application.
  • FIG. 15 is a structural block diagram of a control apparatus according to another embodiment of the present application.
  • 16 is a structural block diagram of a control apparatus according to another embodiment of the present application.
  • 17 is a structural block diagram of a control apparatus according to another embodiment of the present application.
  • FIG. 18 is a structural block diagram of a control apparatus according to another embodiment of the present application.
  • the screen touch technology based on the single-screen terminal is used for the dual-screen terminal.
  • the dual-screen terminal For example, for the user to perform complex touch operation behavior on the dual-screen terminal at the same time, there is a lack of a processing solution for the touch event occurring simultaneously for the dual-screen terminal. .
  • the pressure screen technology lacks a corresponding touch operation technical solution for the dual-screen terminal.
  • FIG. 1 is a hardware structural block diagram of a mobile terminal according to a control method provided by an embodiment of the present application.
  • mobile terminal 110 may include one or more (only one shown in FIG. 1) processor 111 (processor 111 may include, but is not limited to, a Microcontroller Unit (MCU) or a programmable logic device.
  • MCU Microcontroller Unit
  • a processing device such as a Field-Programmable Gate Array (FPGA), a memory 112 provided to store data, and a transfer device 113 provided as a communication function.
  • FPGA Field-Programmable Gate Array
  • FIG. 1 does not limit the structure of the above electronic device.
  • the mobile terminal 110 may also include more or fewer components than those shown in FIG. 1, or have a different configuration than that shown in FIG.
  • the memory 112 can be configured as a software program and a module for storing application software, such as a program instruction/module corresponding to the control method in the embodiment of the present application, and the processor 111 executes a plurality of software programs and modules stored in the memory 112, thereby executing a plurality of Functional application and data processing, that is, the above method is implemented.
  • Memory 112 may include high speed random access memory and may also include non-volatile memory such as one or more magnetic storage devices, flash memory, or other non-volatile solid state memory.
  • memory 112 can include memory remotely located relative to processor 111, which can be connected to mobile terminal 110 over a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof.
  • the transmission device 113 is arranged to receive or transmit data via a network.
  • the network instance described above may include a wireless network provided by a communication provider of the mobile terminal 110.
  • the transmission device 113 includes a Network Interface Controller (NIC) that can be connected to other network devices through a base station to communicate with the Internet.
  • the transmission device 113 can be a Radio Frequency (RF) module configured to communicate with the Internet wirelessly.
  • NIC Network Interface Controller
  • RF Radio Frequency
  • FIG. 2 is a flowchart of a control method provided by this embodiment. As shown in Figure 2, the process includes the following steps:
  • Step 210 Obtain at least one of the following touch information: first fingerprint touch information on the first touch screen of the terminal and second fingerprint touch information on the second touch screen of the terminal.
  • Step 220 Control the terminal according to the acquired touch information.
  • FIG. 3 is a flowchart of a control method provided by this embodiment. As shown in FIG. 3, the method includes the following steps:
  • Step 202 Acquire first fingerprint touch information on the first touch screen of the terminal.
  • the first fingerprint touch information includes at least one of the following: a pressure value, a touch area, an ultrasonic wave, and a light wave.
  • Step 204 Acquire second fingerprint touch information on the second touch screen of the terminal.
  • the second fingerprint touch information includes at least one of the following: a pressure value, a touch area, an ultrasonic wave, and a light wave.
  • Step 206 Control the terminal according to the first fingerprint touch information and the second fingerprint touch information.
  • the first fingerprint touch information on the first touch screen of the terminal acquiring the second fingerprint touch information on the second touch screen of the terminal; and according to the first fingerprint touch information and the The second fingerprint touch information controls the terminal. That is to say, the corresponding control method is proposed for the characteristics of the touch operation of the multi-screen terminal, and the terminal control method in the related art is solved based on the single-screen terminal, and the problem of the control method for the multi-screen has not been proposed, and the problem is effectively improved. User experience of multi-screen terminals.
  • This example provides a smart terminal that supports multiple screens, and provides a control method designed for multi-screen terminals.
  • the technical solution of the embodiment includes: supporting a dual-screen terminal, and the two screens can simultaneously or independently detect a pressing or sliding operation applied by the user's multiple fingers to the two screens, and the terminal can be distributed on two screens by pairing
  • the real-time detection and judgment processing of the coordinates of one or more finger pressing points or the sliding point change trend, the pressure magnitude or the pressure change trend, and the face area size or the area change trend realize the functions and applications envisioned by the user.
  • the scenes for real-time detection and determination processing include, but are not limited to, multi-screen multi-touch recognition; multi-point multi-point pressing (contact) area range sampling point data values; multi-finger multi-point pressing ( Touch finger position coordinate point information; pressing (contact) time of multi-point pressing area; multi-point pressing (contact) time period calculation value; pressing area sampling point pressure value set; marking pressure point pressure value; pressure point pressure change Trend value; touch area; touch time period; touch area change trend; finger sliding operation detection; coordinate system correspondence and conversion; acoustic touch screen finger touch operation recognition; and light wave touch screen finger touch operation recognition.
  • Acoustic touch screen finger touch operation recognition For a terminal supporting the acoustic touch screen, when a multi-finger multi-point presses (contacts) the screen, the sound waves on the contacts are blocked, thereby determining the contour shape information of the plurality of fingers, and The position coordinate point information of the finger.
  • Light touch screen finger touch operation recognition For a terminal supporting a light wave touch screen, when a multi-finger multi-point presses (contacts) the screen, the light wave on the contact is blocked, thereby determining the contour shape information of the plurality of fingers, and The position coordinate point information of the finger.
  • the dual-screen terminal supports multi-touch press recognition from the user's finger, and supports the touch panel that recognizes the user's fingertips at the same time and touches the mobile phone at the same time. And is effectively recognized by the touch screen.
  • the dual screen terminal can distinguish which touches correspond to which screens.
  • Multi-finger multi-point pressing area range sampling point data value that is, the finger point of each finger of the user effectively contacts the coordinate point set of the touch screen, and the coordinate point set can reflect that the finger area of the user's finger effectively contacts the touch screen, And the area recognized by the touch screen, the size of the area is determined by the size of the area in which the finger touches the touch screen and is effectively recognized by the touch screen.
  • the coordinate set is converted into a set of sampling point coordinates by the terminal processing unit, and the density of the sampling point can be set according to conditions such as hardware processing capability and the user's touch operation experience.
  • Multi-finger multi-point finger pointing position coordinate point information that is, according to the coordinate point set of each finger of the user effectively contacting the touch screen, a coordinate value of the flag pressed by the user is generated, and the coordinate value corresponds to the user's finger.
  • the touch point information can be used to determine that the user has several touch screens touching the terminal in the same time period, and the physical location or area information corresponding to each finger surface.
  • the finger mark position coordinate point information value may be calculated by a set of coordinate points of the finger surface effective contact with the touch screen, and the calculation method includes, but is not limited to, calculating an approximate center of the rule or the irregular area. Point coordinate value or center point coordinate area average value; determine whether there is a clear boundary between adjacent multi-point pressed areas; determine the multi-finger approximate circular pattern finger shape shape fuzzy recognition technology, etc., thereby distinguishing the user's Status information of a plurality of different fingers simultaneously touching the touch screen.
  • Pressing time of the multi-point pressing area the terminal detects and records the time information of the plurality of finger touching the touch screen in the same time period of the user, and the time information includes but is not limited to: the starting time of each finger touching the touch screen of the user and Separation time, etc.
  • the multi-point pressing period calculation value that is, the terminal detects and records the time taken by the plurality of finger-contacting touch screens from the start time to the separation time in the same time period of the user.
  • the pressure point set of the sampling point of the pressing area when the finger surface of the user's finger effectively contacts the touch screen, the plurality of coordinate points in the coordinate point set of the finger surface of the user's finger correspond to the set of the magnitude of the pressing pressure.
  • the pressure point pressure value is identified: that is, the identification pressure value of each finger surface calculated by the preset condition according to the pressure point set information of the pressing area sampling point.
  • the calculation range of the identification pressure value can be separately calculated for each finger surface according to the state in which a plurality of different finger faces of the user are simultaneously touched.
  • the calculation method includes, but is not limited to, averaging pressure values of all coordinate points in the pressure point set of the sampling point of the pressing area; taking the pressure value of the coordinate position of the finger mark coordinate point; and taking the maximum pressure point in the pressure value set of the sampling point of the pressing area Pressure value, etc.
  • Pressure point pressure change trend value that is, according to the change of the pressure value of the sampling point of the pressing area in a time interval, the trend value of the pressure change in the time interval is determined, and the trend value of the pressure change includes but is not limited to: the pressure point pressing pressure is Small to large; and pressure point pressing pressure from large to small.
  • Touch area the area of the finger's finger that effectively touches the touch screen. This value can be obtained by calculation of the multi-finger multi-touch area range sampling point data value.
  • the calculation method includes, but is not limited to, extracting the boundary point coordinate value in the sampling range of the region range touched by the finger surface, generating the geometric figure by a linear approximation algorithm, and calculating the area of the geometric figure and the like.
  • Touch time period that is, the terminal detects and records a time period value of the finger touching the touch screen from the start time to the separation time.
  • the parameter value of the touch time period needs to be preset.
  • the rules for parameter setting include, but are not limited to, a period of time from the effective contact of the finger to the effective separation; and when the area of the touch area changes from small to large or from large to small and reaches a preset threshold when the finger touches the touch screen Time period and so on.
  • the change trend of the touch area is determined according to the change of the size of the touch area in the touch time interval, and the change trend value of the touch area in the touch time interval is determined.
  • the trend value of the area change includes but is not limited to: from small to large; from large to small; from small to large and then smaller; and from large to small and then larger.
  • the terminal can detect the sliding operation of the finger surface of one or more fingers on the screen, and can distinguish the double screen information corresponding to each finger surface.
  • the detection method includes, but is not limited to, the terminal is on the screen according to the coordinates of the coordinate position of the finger mark position, and the coordinate movement change of the connection occurs according to a certain geometric figure line, and when the geometric direction or distance of the coordinate movement changes reaches a preset threshold value The terminal can perform corresponding processing operations.
  • Coordinate system correspondence and transformation the processing method of the corresponding and conversion of the dual-screen coordinate system.
  • the two screens are planarly expanded and folded back, the correspondence between the coordinate systems of the two screens needs to be switched.
  • the screen of the terminal can be illustrated in two states of folding and unfolding.
  • Screen expansion state Two screens correspond to one coordinate system, and the coordinate values of the same position of the two coordinate systems are the same, the difference is on the left (left screen) or right (right screen) screen. Assuming that the coordinates of the point A of the left screen are A (x, y), the coordinates of the coordinate point B having the same position on the right screen are B (x, y).
  • the folding state of the screen the coordinate system of the front screen and the back screen are 180 degrees out of the horizontal direction. That is, the coordinate system of the front screen has a one-to-one correspondence with the back of the back screen. Set our coordinate system based on the positive screen as the reference coordinate system. If the coordinates of the touch screen A on the back screen are A(x, y), the coordinates of the back screen point A will be converted and corresponding to the front screen. The value is A'(-x,y).
  • the screen unfolding state and the folding state are relative.
  • the coordinate system is calculated differently, and a critical angle value can be defined. For example, when the angle between the two screens is greater than 120 degrees, the coordinate system automatically switches to the expanded state.
  • the coordinate system, and vice versa corresponds to the coordinate system of the folded state.
  • controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information includes the following steps:
  • the mark position coordinate point of the force point of the first fingerprint touch information or the second fingerprint touch information is received
  • the mark point coordinate point of the force point is switched to the second touch screen or the first touch screen according to a predetermined manner
  • the coordinate position of the force point of the first fingerprint touch information or the first The terminal position control is controlled by the marker point coordinate point of the force point of the fingerprint touch information.
  • the converting to the second touch screen or the first touch screen according to the predetermined manner includes: determining the first touch screen and the second touch screen according to an angle between the first touch screen and the second touch screen a state between the first touch screen and the second touch screen, the mark bit coordinate point on the first touch screen is converted to the second touch screen, or the mark bit coordinate on the second touch screen is The point is converted to the first touch screen.
  • controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information further includes the following steps:
  • the first fingerprint touch information or the second fingerprint touch information includes a pressure value
  • the coordinates of one or more of the first fingerprint touch information or the second fingerprint touch information Point conversion to the second touch screen or the first touch screen
  • the terminal is controlled according to a coordinate system position at which the coordinate point of the one or more stress points on the first touch screen or the second touch screen is located.
  • controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information further includes the following steps:
  • the terminal is controlled according to a change trend of the pressure value indicated by the first fingerprint touch information and a change trend of the pressure value indicated by the second touch information.
  • controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information further includes the following steps:
  • the first fingerprint touch information and the second fingerprint touch information include the area of the touch area
  • the average center point of the touch area area of the first fingerprint touch information and the touch of the second fingerprint touch information The distance between the average center points of the area of the area controls the terminal.
  • the terminal before the terminal is controlled according to the distance between the average center point of the touch area area of the first fingerprint touch information and the average center point of the touch area area of the second fingerprint touch information It also includes the following steps:
  • controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information further includes the following steps:
  • the change trend of the area of the touch area indicated by the first fingerprint touch information and the second fingerprint touch information is changed to control the terminal.
  • the method before the controlling the terminal according to the first fingerprint touch information and the second fingerprint touch information, the method further includes the following steps:
  • the preset condition includes at least one of the following: the first fingerprint touch information and the second fingerprint touch information have a value other than 0, and the first fingerprint touch information and the fingerprint The contact time corresponding to the second touch information is within a preset range.
  • the controlling the terminal according to the acquired touch information including :
  • the coordinate position points of the force points on the first touch screen are converted to the predetermined manner according to a predetermined manner.
  • the second touch screen is configured to obtain a coordinate position of the marker position coordinate point of the force point on the first touch screen on the second touch screen;
  • the terminal Determining a distance between a coordinate position of the marker point on the first touch screen and a coordinate position of the corresponding position on the second touch screen and a marker point on the second touch screen In the case of the preset range, the terminal is controlled centering on the marker point coordinate point of the force point on the second touch screen.
  • the controlling the terminal according to the acquired touch information includes:
  • the first fingerprint touch information includes the pressure value
  • the at least two coordinate positions of the at least two force points on the first touch screen are at least two coordinate positions corresponding to each other on the second touch screen;
  • any one of the target point points of the at least two force points on the first touch screen is controlled by the marker position coordinate point.
  • the controlling the terminal according to the acquired touch information including :
  • first fingerprint touch information and the second fingerprint touch information both include the pressure value
  • converting a flag bit coordinate point of one or more force points on the second touch screen to The first touch screen obtains one or more coordinate positions of the one or more force points of the second touch screen on the first touch screen
  • the controlling the terminal according to the acquired touch information includes:
  • the first fingerprint touch information includes the pressure value
  • the terminal is controlled according to a coordinate system position at which one or more coordinate positions of the one touch corresponding to the second touch screen are located.
  • the acquired touch information includes the first fingerprint touch information and the second fingerprint touch information, and the first fingerprint touch information and the second fingerprint touch information are both included.
  • the controlling the terminal according to the acquired touch information includes:
  • the terminal is controlled according to a change trend of the pressure value indicated by the first fingerprint touch information and a change trend of the pressure value indicated by the second fingerprint touch information.
  • the controlling the terminal according to the acquired touch information including :
  • the average center point of the touch area according to the first fingerprint touch information and the first fingerprint touch information controls the terminal.
  • the distance between the average center point of the touch area area of the first fingerprint touch information and the average center point of the touch area area of the second fingerprint touch information is Before taking control, it also includes:
  • the controlling the terminal according to the acquired touch information including
  • the first fingerprint touch information and the second fingerprint touch information both include the area of the touch area the change trend and the area of the touch area indicated by the first fingerprint touch information
  • the change trend of the area of the touch area indicated by the second fingerprint touch information is performed, and the terminal is controlled.
  • the method before the controlling the terminal according to the acquired touch information, the method further includes: determining that at least one of the acquired touch information meets a preset condition;
  • the preset condition includes at least one of the following: the acquired touch information includes a parameter corresponding to the value that is not 0, and the acquired touch information includes a contact time within a preset range.
  • control of the terminal includes, but is not limited to, moving an application icon, controlling an application interface size, waking up and unlocking the terminal, and dual-screen photography.
  • FIG. 4 is a schematic diagram of the operation of the first embodiment.
  • the two screens of the terminal are folded in half, the front screen is facing the user and is in the lighting state, and the back screen is in the extinguishing state.
  • the current terminal has two standby desktops, the front screen displays the desktop one, and the back screen is in the lighting state. Show desktop two.
  • the user uses the finger of two fingers to simultaneously press the icon of the application 1 on the desktop one.
  • the pressing time or the pressing pressure value reaches the preset condition, the application 1 icon becomes active, and the desktop switches to the desktop two display.
  • the user can move the icon of the application 1 through the two-finger pinch and move operation of the front screen, move the icon to the upper right of the screen and release the finger, and then apply the icon from the icon
  • the desktop 2 displayed on the front screen switches back to the desktop one, and the icon has been moved to the corresponding position on the back screen.
  • the position displayed by the icon of the application 1 on the back screen can be calculated and displayed according to the conversion of the front-back screen coordinate system.
  • FIG. 5 is a flowchart of a control method provided by an alternative embodiment 1.
  • the front back touch screen of the terminal simultaneously detects an effective contact or pressing operation of the finger surface of the user's finger with the screen; and determines whether the preset condition 101 is satisfied.
  • Preset condition 101 The processing unit detects that the finger surface of the front screen has two fingers simultaneously touching the front and back screen of the terminal on the dual screen. If the preset condition 101 is satisfied, the judgment processing flow of the preset condition 102 is entered.
  • the terminal detects a touch time period or a pressure point pressure value of each finger finger pressing the touch screen, and determines whether the preset condition 102 is satisfied; the preset condition 102: condition one, two fingers are pressed simultaneously on the front screen And the distance between the mark position coordinates of the two fingers after being converted by the positive back screen coordinate system is within a preset range; condition two, based on the preset of the finger mark position coordinate point on the front screen There is a movable application icon on the desktop one in the radius range; condition three, the touch detection unit judges that there is one or more finger touch time periods on the front screen or the back screen or identifies the pressure point pressure value in one press During the time period, the threshold of the touch time period threshold or the change trend of the pressure of the pressing point is reached.
  • the processing unit determines that the preset condition 102 is satisfied, the processing unit switches the desktop icon state of the application 1 to the mobile state, and displays the desktop 2 displayed on the back screen to the front screen. Subsequently, the icon performs a moving display operation process in accordance with a moving direction based on the finger mark bit coordinate point on the front screen. And enter the judgment processing flow of the preset condition 103.
  • Preset condition 103 Condition one, the pressing operation of at least one of the two fingers on the front screen is terminated, and the finger leaves the corresponding screen.
  • the coordinate system conversion processing operation of the 1 icon is applied. Assuming that the position coordinate of the application icon 1 finally moving to the front screen is A(x, y), the coordinates of the positive screen point A are converted and corresponding to the back screen, which is based on the new coordinate value on the back screen as A' ( -x, y) (see steps 401 to 406 shown in Figure 9)
  • the alternative embodiment relates to a technique and method for a screen virtual button touch operation, which can be applied to a user's use scene of a game application with multiple buttons.
  • the dual-screen terminal is folded back, and the front screen faces the user.
  • the user holds the dual-screen terminal from both sides with both hands, the thumb A and D of the left and right hands of the user touch the front screen, the index fingers B and E of the left and right hands, and the middle finger C and F contact the back screen of the dual screen terminal.
  • the dual screen terminal directly detects the contact of the plurality of finger fingers with the screen, wherein the B, C, E, and F contact points of the back screen can be virtualized as four buttons. Thereby achieving a user operating experience similar to the PSP handheld game console.
  • FIG. 7 is a flow chart of a control method provided by an alternative embodiment 2.
  • the two screens of the dual-screen terminal are folded back, the front screen is facing the user, the back facing the screen is facing the user, the user is holding the dual screen terminal horizontally, and a button game application is activated on the front screen of the dual screen terminal.
  • the front-back touch screen of the dual-screen terminal simultaneously detects the finger-to-screen effective contact areas A, B, C, D, E, and F of the user's six fingers.
  • the dual-screen terminal can be divided into four quadrants of 1, 2, 3, and 4 according to the normal screen coordinate system. If it is assumed that the game application supports six virtual buttons, the effective pressing positions of the six virtual buttons can correspond to four.
  • button A corresponds to the 1 and 3 quadrants
  • button D corresponds to the 2 and 4 quadrants
  • buttons B, C, E, and F correspond to the 1, 3, 2, and 4 quadrants, respectively.
  • the processing unit can identify the operation as the key value of the corresponding virtual button. It is judged whether or not the preset condition 101 is satisfied.
  • Preset condition 101 The processing unit detects the coordinate point coordinate value of an independent finger on the dual screen terminal. If the preset condition 101 is satisfied, the judgment processing flow of the preset condition 102 is entered.
  • the terminal detects that the pressure finger pressure value of the touch screen is pressed by each finger finger of the user, and determines whether the preset condition 102 is satisfied.
  • the precondition of the preset condition 102 the processing unit detects the pressure value set of each finger pressing the screen in real time; the processing unit detects and calculates the set of pressing time values of the finger pressing area in real time.
  • the set of pressing time values includes, but is not limited to, a pressing start time, a pressing end time, and a pressing area identification pressure point pressure value reaching a maximum or minimum time value, etc.; the processing unit detects each pressing point pressing time period calculation value set in real time.
  • the set of pressing point pressing period calculation values includes, but is not limited to, a finger pressing start to end time period value, a finger pressing pressure from a minimum to a maximum (or a maximum to a minimum), and a finger pressing a specified time period value. And a time period value when the pressing point pressure change trend threshold is reached from a certain time point; the processing unit detects the pressure point pressure value of each finger in real time; preset condition 102: condition one, touch detection unit Judging that the pressure point value of the coordinate point coordinate value of the finger coordinate point on the front screen or the back screen reaches a small to large threshold value of the pressure change trend of the pressing point in a pressing time period; the processing unit determines that the preset condition 102 is satisfied The quadrant in which the coordinate point is located is calculated, and the key value is reported to the game application for processing according to the key value relationship corresponding to the quadrant (see steps 601 to 604 shown in FIG. 7).
  • FIG. 8 is a schematic diagram of the operation provided by the third embodiment.
  • This alternative embodiment takes the terminal of the foldable dual touch screen as an example for explaining the technical solution.
  • the terminal structure consists of two screens. After folding, the two touch screens face the front and rear directions respectively, assuming that the front screen is facing the user at this time.
  • the user uses the left hand grip terminal, the user's thumb finger touches the front screen, and the contact point with the screen is the circular area A in FIG.
  • the user can use the index finger and the ring finger to face the back screen, and the contacts are the circular areas B and C in Fig. 8, respectively.
  • the user opens a map application (app) through the front screen.
  • the processing unit performs the user's finger pressing operation according to the preset rules. operating.
  • FIG. 9 is a flow chart of a control method provided by an alternative embodiment 3.
  • the two screens of the dual-screen terminal are folded back, with the front screen facing the user and the back facing the screen facing the user.
  • the user opens a map application and displays the map interface of the location on the front screen.
  • the front and back touch screen of the terminal simultaneously detects the effective contact area between the finger surface of the user's finger and the screen, and determines whether the preset condition 101 is satisfied.
  • the pre-condition of the preset condition 101 the touch detection unit detects the area range sample point data value of the multi-point press of the plurality of fingers of the user in real time, and calculates the finger mark position coordinate point information according to the data value, and the calculation method of the present application may include
  • the processing unit is not limited to: the coordinate unit coordinate set information of the effective contact generated by the processing unit according to the touch screen touched by each finger surface, and then the finger contour map is generated by the edge linear smoothing processing algorithm according to the information, and then calculated according to the linear contour contour line.
  • the geometric mean center point which is the coordinate value of the marker position coordinate point corresponding to the geometric area of the finger finger.
  • Preset condition 101 Condition 1, the touch detection unit detects a coordinate point coordinate value A of an independent finger on the front screen; condition 2, the touch detection unit detects a coordinate point coordinate value B or C of an independent finger on the back screen. In the third condition, the touch detection unit detects coordinate point values B and C of two independent fingers on the back screen. If the preset condition 101 satisfies the condition one and the second condition, the determination processing flow of the preset condition 102 is entered; if the preset condition 101 satisfies the condition one and the condition three, the determination processing flow of the preset condition 103 is entered.
  • the preconditions of the preset condition 102 and the preset condition 103 the processing unit detects the pressure value set of each finger pressing the screen in real time; the processing unit detects and calculates the set of pressing time values of the finger pressing area in real time.
  • the set of pressing time values includes, but is not limited to, a pressing start time, a pressing end time, and a pressing area identification pressure point pressure value reaching a maximum or minimum time value, etc.; the processing unit detects each pressing point pressing time period calculation value set in real time.
  • the set of pressing point pressing period calculation values includes, but is not limited to, a finger pressing start to end time period value, a finger pressing pressure from a minimum to a maximum (maximum to minimum) time period value, a finger pressing a specified time period value, and The time period value when the pressing point pressure change trend threshold is reached from a certain point in time, and the processing unit detects the pressure value of each of the identified pressure points in real time.
  • Preset condition 102 condition one, the touch detection unit determines that the pressure point value of the thumb coordinate point coordinate value A of the positive screen is within a pressing time period, and reaches a threshold value of a small to large pressure change trend of the pressing point; Condition 2, when the start and end time difference of the pressing period described in Condition 1 is within a preset threshold range, the touch detecting unit detects the detected pressure point pressure value of the coordinate point of the back screen within one pressing time period , the threshold value from the small to large pressure change trend of the pressing point is reached; condition three, at this time, the coordinate value of the pressure point of the back screen coordinate point of the positive screen and the coordinate value converted by the coordinate system to the positive screen The distance is within the preset distance determination threshold.
  • the processing unit When the three conditions of the preset condition 102 are simultaneously satisfied, the processing unit performs an enlarged display processing operation on the interface of the map with the point A as the center point coordinate. Thereafter, when it is judged that the user presses the trend to stop, the enlarged display processing operation is stopped.
  • Preset condition 103 the touch detection unit determines that the pressure point value of the coordinate point of the thumb coordinate point of the positive screen is within a pressing time period, and reaches a threshold value of a small to large pressure change trend of the pressing point;
  • Condition 2 when the start and end time difference of the pressing period described in Condition 1 is within a preset threshold range, the touch detecting unit detects one coordinate point of the back screen (one of B or C points, B and C) At this time, the pressure point of the marked pressure point is within a pressing time period, and the threshold value of the pressure change trend of the pressing point is reached; condition 3, at this time, the A point of the positive screen and the passing coordinate system are converted into positive The distance of the screen that satisfies the coordinate point coordinate value of the condition two is within the preset distance determination threshold.
  • the processing unit When the three conditions of the preset condition 103 are simultaneously satisfied, the processing unit performs a reduction display processing operation on the interface of the map with the point A as the center point coordinate. Thereafter, when it is determined that the user presses the trend to stop, the reduced display processing operation is stopped.
  • the preset condition 103 when the user presses the front screen simultaneously with the one-handed finger, under the premise that the terminal screen needs to be kept upright, we assume that the time is satisfied. If the point of the condition two in the preset condition 103 is B, then the B point and C point coordinates of the back screen coordinate system are converted to B' and C of the normal screen coordinate system by the coordinate system corresponding conversion processing of the front screen. 'Coordinates, then calculate the distance between the coordinates of point A and the coordinates of B' and C', then the distance between A and B' should be less than the distance between A and C'.
  • the method may further include: determining a change direction of the finger surface area of the user or a finger sliding operation (see FIG. 9). Step 801 to step 806).
  • the embodiment relates to a touch operation method for waking up and unlocking a black screen of a mobile phone.
  • the terminal supporting the dual screen when the two screens are folded back, the forward screen faces the user, and the back screen faces the user.
  • the front screen simultaneously detects the contact, pressing or sliding of the user's finger.
  • the user's thumb touches the front touch screen area while the fingertips of the user's multiple fingers touch the back touch screen area.
  • the front and back dual screens are not lit.
  • the terminal performs wake-up of the mobile phone and illuminates the front screen; or directly unlocks the operation into the standby interface.
  • FIG. 11 is a flow chart of a control method provided by an alternative embodiment 4.
  • the terminal is in a dormant and locked state, and the front touch screen simultaneously detects that the finger of the user's finger is in effective contact or pressing operation with the screen. It is judged whether or not the preset condition 101 is satisfied.
  • Preset condition 101 The processing unit detects that the finger surface of the front screen has two fingers at the same time contacts the front and back screen of the mobile phone; if the preset condition 101 is satisfied, the process of the determination process of the preset condition 102 is entered.
  • the terminal detects the identification coordinate point of each finger finger on the front back screen, and determines whether the preset condition 102 is satisfied.
  • Preset condition 102 condition one, four fingers are fixed on the back screen, and one finger is detected on the front screen for sliding operation; condition two, the thumb is on the back screen, four fingers pass the positive back screen coordinate system After the conversion, the sliding operation is performed corresponding to the coordinate points on the front screen, and the sliding path and the order are B->C->E->D->C.
  • the processing unit determines that the preset condition 102 is satisfied, the terminal performs wake-up of the mobile phone and illuminates the front screen; or enters the unlocking interface to perform an unlocking operation; or directly unlocks the operation into the standby interface (see steps 1001 to 1004 shown in FIG. 11).
  • the embodiment relates to an operation method based on a dual-screen mobile phone photographing technology.
  • a dual-screen terminal is supported. When two screens are folded back, the front screen faces the user and the back screen faces the user. Assume that the user is currently using the camera application to take a photo operation, and the photo preview interface of the photo application is displayed on the front screen of the mobile phone. At this time, the user holds the handshake.
  • Scene 1 User-operated.
  • the processing unit converts the coordinate of the point to the coordinates of the corresponding point of the positive screen, and the photographing application performs the autofocus operation with the coordinate point as the focus point; the scene 2 of the user operation: fast Take a photo.
  • the user uses two fingers to perform touch operation on the back screen, one finger is fixedly connected to the back screen, and the other finger is clicked on the back screen, and the photographing application performs a shutter-pressing operation.
  • FIG. 13 is a flow chart of a control method provided in an alternative embodiment 5.
  • the terminal is in a folded state, and the photo preview interface of the photo application is displayed on the front screen.
  • the back screen detects that the finger surface of the user's finger is in effective contact with the screen or click operation. It is judged whether or not the preset condition 101 is satisfied.
  • Preset condition 101 The touch detection unit detects a touch operation with a finger on the back screen. If the preset condition 101 is satisfied, the determination processing flow of the preset condition 102 is entered, and it is determined whether the preset condition 102 is satisfied.
  • Preset condition 102 Condition one, one finger single point operation is detected on the back screen.
  • the processing unit converts the coordinates of the point to the coordinates of the corresponding point of the positive screen, and the photographing application performs the autofocus operation with the coordinate point as the focus point; condition 2, the user detects that one finger of the user is fixedly contacting the back screen, and the other finger A click operation is performed on the back screen, at which time the photographing application performs a shutter-pressing photographing operation (see steps 1201 to 1205 shown in FIG. 13).
  • This embodiment proposes a control method designed for a dual screen terminal.
  • the two touch screens of the dual-screen terminal can independently detect the user's touch operation, and at the same time, the pressure magnitude and the change trend of the user's finger pressing the touch screen; the size and variation trend of the finger surface; the distance and direction change of the multi-finger finger sliding operation.
  • the judgment and processing operations of the conditions thereby realizing the functions and operations expected by the user.
  • the user experience of the touch-enabled operation of the terminal supporting the multi-touch screen can be improved, and thus more application operation methods different from the single-screen terminal can be realized.
  • the optimization of the solution provided by this embodiment is related to the background technology, including but not limited to: the embodiment provides a control method designed for the touch operation characteristics of the dual-screen mobile phone, and the application of the method can effectively improve the user of the dual-screen intelligent terminal. Experience the effect.
  • the technical solution of the present application may be embodied in the form of a software product in essence or in a form of a software product stored in a storage medium (such as a read-only memory (Read-Only Memory). , ROM), random access memory (RAM), disk, optical disk, including a number of instructions to enable a terminal device (which may be a mobile phone, a computer, a server, or a network device, etc.) to execute the application The method of any of the embodiments.
  • a storage medium such as a read-only memory (Read-Only Memory).
  • ROM read-only memory
  • RAM random access memory
  • disk optical disk
  • a control device which is used to implement the above embodiments, and will not be described again.
  • the term “module” may implement a combination of software and/or hardware of a predetermined function.
  • the apparatus described in the following embodiments is implemented in software in one embodiment, hardware, or a combination of software and hardware, is also possible and contemplated.
  • FIG. 14 is a structural block diagram of a control apparatus according to this embodiment.
  • the apparatus is applied to a terminal including at least two touch screens. As shown in FIG. 14, the apparatus includes:
  • the obtaining module 132 is configured to: acquire at least one of the following touch information: the first fingerprint touch information on the first touch screen of the terminal and the second fingerprint touch information on the second touch screen of the terminal;
  • the first fingerprint touch information includes at least one of: a pressure value, a touch area area, an acoustic wave, and a light wave;
  • the second fingerprint touch information includes at least one of the following: a pressure value, a touch area area, an acoustic wave, and a light wave.
  • the control module 136 is configured to: control the terminal according to the acquired touch information.
  • the touch information controls the terminal. That is to say, the corresponding control method is proposed for the characteristics of the touch operation of the multi-screen terminal, and the terminal control method in the related art is solved based on the single-screen terminal, and the problem of the control method for the multi-screen has not been proposed, and the problem is effectively improved. User experience of multi-screen terminals.
  • FIG. 15 is a structural block diagram of a control apparatus according to another embodiment of the present application.
  • the control module 136 includes:
  • the first conversion unit 142 is configured to: the acquired touch information includes the first fingerprint touch information and the second fingerprint touch information, and the first fingerprint touch information or the second fingerprint touch When the information includes the pressure value, the coordinate position of the target point of the force point of the first fingerprint touch information is converted to the second touch screen according to a predetermined manner, and the sign of the force point on the first touch screen is obtained. a coordinate coordinate point corresponding to a coordinate position on the second touch screen;
  • determining unit 144 configured to: determine whether a distance between a coordinate position of the marker position point on the second touch screen and a coordinate position of the marker position on the second touch screen is Within the preset range;
  • the first control unit 146 is configured to: determine a coordinate position of the marker position point of the force point on the first touch screen on a corresponding coordinate position on the second touch screen and a force point on the second touch screen In the case where the distance between the coordinate position points of the marker position is within the preset range, the terminal is controlled centering on the marker position coordinate point of the force point of the second fingerprint touch information.
  • the first conversion unit 142 is further configured to: when the acquired touch information includes the first fingerprint touch information, and the first fingerprint touch information includes the pressure value, Converting a marker bit coordinate point of the at least two force points on the first touch screen to the second touch screen in a predetermined manner, and obtaining a marker position coordinate point of at least two force points on the first touch screen At least two coordinate positions corresponding to each other on the second touch screen;
  • the determining unit 144 is further configured to: determine whether a distance between each of the two coordinate positions of the one-to-one correspondence corresponding to the second touch screen is within a preset range;
  • the first control unit 146 is further configured to: when it is determined that the distance between the two coordinate positions is within a preset range, the flag bits of the at least two force points on the first touch screen The terminal is controlled by the marker coordinate point of any of the force points in the coordinate point.
  • the predetermined manner includes: determining a state between the first touch screen and the second touch screen according to an angle between the first touch screen and the second touch screen; according to the state, the first The mark point coordinate point on the touch screen is switched to the second touch screen, or the mark bit coordinate point on the second touch screen is converted to the first touch screen.
  • FIG. 16 is a structural block diagram of a control apparatus according to another embodiment of the present application. As shown in FIG. 16, the control module 136 includes:
  • the second conversion unit 152 is configured to: the acquired touch information includes the first fingerprint touch information and the second fingerprint touch information, and the first fingerprint touch information or the second fingerprint touch If the information includes the pressure value, the coordinate points of the one or more stress points on the second touch screen are converted to the first touch screen, and the one or more stress points on the second touch screen are obtained. One or more coordinate positions of the bit coordinate points on the first touch screen;
  • the second control unit 154 is configured to: according to the coordinate system position of the one or more coordinate positions corresponding to the one-to-one correspondence on the first touch screen or the coordinate points of one or more stress points on the second touch screen The location of the coordinate system at which the terminal is controlled.
  • the second conversion unit 152 is further configured to: the acquired touch information includes the first fingerprint touch information, and the first fingerprint touch information or the second fingerprint touch information includes In the case of the pressure value, the coordinate points of the one or more stress points on the first touch screen are converted to the second touch screen, and the flag points of one or more stress points on the first touch screen are obtained. One or more coordinate positions of the coordinate points on the second touch screen;
  • the second control unit 154 is further configured to: control the terminal according to a coordinate system position at which one or more coordinate positions corresponding to the one-to-one correspondence on the second touch screen are located.
  • control module 136 is configured to control the terminal by: the acquired touch information includes the first fingerprint touch information and the second fingerprint touch information, and the When the first fingerprint touch information and the second fingerprint touch information both include the pressure value, the change trend of the pressure value indicated by the first fingerprint touch information and the second fingerprint touch information The trend of the indicated pressure value changes the terminal.
  • FIG. 17 is a structural block diagram of a control device according to another embodiment of the present application.
  • the control module 136 includes a third control unit 160 configured to: acquire touch information.
  • the first fingerprint touch information and the second fingerprint touch information are included, and in the case that the first fingerprint touch information and the second fingerprint touch information both include a touch area, according to the first fingerprint touch
  • the terminal controls the terminal by controlling the distance between the average center point of the touch area of the information and the average center point of the touch area of the second fingerprint touch information.
  • control module 136 further includes:
  • the first obtaining unit 162 is configured to: a distance between an average center point of the touch area area according to the touch information of the first fingerprint and an average center point of the touch area area of the second fingerprint touch information, Obtaining, according to the area of the touch area received by the first touch screen, the first coordinate point set corresponding to the touch area area of the first fingerprint touch information and the touch area area received according to the second touch screen. Obtaining a second coordinate point set corresponding to the area of the touch area of the second fingerprint touch information;
  • the second obtaining unit 164 is configured to: process the first coordinate point set and the second coordinate point set by using a specified algorithm to obtain a touch area contour map;
  • the third obtaining unit 166 is configured to: obtain an average center point of the touch area area of the first fingerprint touch information and an average center point of the touch area area of the second fingerprint touch information according to the touch area contour map .
  • control module 136 is configured to control the terminal by: the acquired touch information includes the first fingerprint touch information and the second fingerprint touch information, and the first When the fingerprint touch information and the second fingerprint touch information include the touch area, the change trend of the touch area according to the first fingerprint touch information and the touch indicated by the second fingerprint touch information The change in the area of the area controls the terminal.
  • FIG. 18 is a structural block diagram of a control apparatus according to another embodiment of the present application. As shown in FIG. 18, the apparatus includes:
  • the determining module 172 is configured to: before the controlling the terminal according to the acquired touch information, determine that the acquired touch information meets a preset condition.
  • the preset condition includes at least one of the following: the obtained touch information includes a parameter whose value is not 0, and the acquired touch information includes a contact time within a preset range.
  • the operations corresponding to the foregoing control include, but are not limited to, a mobile application icon, a control application interface size, a wake-up and unlock terminal, and a dual-screen photo.
  • a device for supporting a dual-screen smart terminal touch operation includes: a processing unit; a touch screen unit; a touch detection unit; and a pressure detecting unit and the like.
  • the processing unit may be abstracted as an operation processing unit of the terminal, and may include a central processing unit (CPU) or an auxiliary central processing unit (A-CPU) of the terminal, which is equivalent to the human body.
  • the brain is responsible for the overall operation and processing of the terminal.
  • the touch screen unit that is, the touch screen supporting pressure sensing or multi-touch, the touch screen can be divided into multiple screens.
  • the present application describes the technical solution with two touch screens as a typical scene. When the number of screens is multiple, the application is related to this application.
  • the touch detection unit can identify and determine the area range sampling point data value of the multi-point multi-point pressing of the multi-finger by the multi-touch detection unit within a period of time.
  • the processing unit may calculate finger marker position coordinate point information of the fingers of the plurality of fingers.
  • the pressure detecting unit during a period of time, the processing unit can identify and determine, by the multi-point pressure detecting unit, the pressure point set of the pressing area sampling point of the user having several fingers.
  • the processing unit can calculate each finger face pressure point pressure value.
  • the processing unit can calculate a pressure point pressure change trend value for each finger face.
  • the apparatus described in this example is equally applicable to terminals that support multiple screens.
  • each of the above modules may be implemented by software or hardware.
  • the foregoing may be implemented by, but not limited to, the foregoing modules are all located in the same processor; or, the above modules are arbitrary.
  • the combined forms are located in different processors.
  • An embodiment of the present application further provides a storage medium including a stored program, wherein the program runs to perform any of the above methods.
  • the storage medium may be configured to store program code for performing the following steps:
  • the terminal is controlled according to the acquired touch information.
  • the foregoing storage medium may include, but not limited to, a USB flash drive, a Read-Only Memory (ROM), a Random Access Memory (RAM), a mobile hard disk, a magnetic disk, or an optical disk.
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • mobile hard disk a magnetic disk
  • magnetic disk a magnetic disk
  • optical disk a variety of media that can store program code.
  • Embodiments of the present application also provide a processor for running a program, wherein the program is executed to perform any of the above methods.
  • the above program is used to perform the following steps:
  • the terminal is controlled according to the acquired touch information.
  • modules or steps of the present application can be implemented by a general computing device, which can be concentrated on a single computing device or distributed in a network composed of multiple computing devices.
  • they may be implemented by program code executable by a computing device such that they may be stored in a storage device by a computing device and, in some cases, may be different from
  • the steps shown or described are performed sequentially, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated as a single integrated circuit module.
  • the application is not limited to any particular combination of hardware and software.

Abstract

一种控制方法及装置。其中,该方法包括:获取以下触控信息至少之一:终端的第一触摸屏上的第一指纹触控信息以及终端的第二触摸屏上的第二指纹触控信息;根据获取的触控信息对该终端进行控制。

Description

控制方法及装置 技术领域
本公开涉及通信技术领域,例如涉及一种控制方法及装置。
背景技术
随着智能终端技术的快速发展与部件成本的下降,双屏终端技术发展将成为一个流行的趋势。双屏终端可以使终端能够适应更多的使用场景,并更加便于携带,相对于单屏终端会带来更好的用户体验效果。
而且经过多年的快速发展,终端的触控技术已相当成熟了。从电阻屏发展到电容屏再到压力屏等,有关智能终端的屏幕触控的新技术不断的涌现出来,为用户带来了越来越好的操作体验。
但是,若将单屏终端的屏幕触控技术用于双屏终端,在触控操作的使用上仍存在不足。
发明内容
本申请实施例提供了一种控制方法及装置,以至少解决相关技术中终端控制方法都是基于单屏终端,尚未提出针对多屏的控制方法的问题。
本申请提供了一种控制方法,应用于包括至少两个触摸屏的终端,该方法包括:获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息以及所述终端的第二触摸屏上的第二指纹触控信息;根据获取的触控信息对所述终端进行控制。
本申请提供了一种控制装置,应用于包括至少两个触摸屏的终端,该装置包括:获取模块,设置为获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息;以及所述终端的第二触摸屏上的第二指纹触控信息;控制模块,设置为根据获取的触控信息对所述终端进行控制。
本申请还提供了一种存储介质,所述存储介质包括存储的程序,其中,所述程序运行时执行上述任意一种方法。
本申请还提供了一种处理器,所述处理器设置为运行程序,其中,所述程序运行时执行上述任意一种方法。
本申请针对多屏终端触控操作的特点而提出对应的控制方法,进而解决了相关技术中终端控制方法都是基于单屏终端,尚未提出针对多屏的控制方法的问题,有效提升了多屏终端的用户体验度。
附图说明
图1是本申请一实施例提供的一种控制方法的移动终端的硬件结构框图;
图2是本申请一实施例提供的控制方法的流程图;
图3是本申请一实施例提供的控制方法的流程图;
图4是本申请一实施例提供的操作示意图;
图5是本申请另一实施例提供的控制方法的流程图;
图6是本申请另一实施例提供的操作示意图;
图7是本申请另一实施例提供的控制方法的流程图;
图8是本申请另一实施例提供的操作示意图;
图9是本申请另一实施例提供的控制方法的流程图;
图10是本申请另一实施例提供的操作示意图;
图11是本申请另一实施例提供的控制方法的流程图;
图12是申请另一实施例提供的操作示意图;
图13是本申请另一实施例提供的控制方法的流程图;
图14是本申请一实施例提供的控制装置的结构框图;
图15是本申请另一实施例提供的控制装置的结构框图;
图16是本申请另一实施例提供的控制装置的结构框图;
图17是本申请另一实施例提供的控制装置的结构框图;
图18是本申请另一实施例提供的控制装置的结构框图。
具体实施方式
下文中将参考附图并结合实施例来说明本申请。在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
基于单屏终端的屏幕触控技术用于双屏终端,例如对于用户同时在双屏终端上进行复杂的触控操作行为的处理上,缺少可针对双屏终端同时发生的触控事件的处理方案。而且对于双屏终端,尤其是支持压力屏的双屏终端来说,压力屏技术对于双屏终端来说,也缺少相应的触控操作技术方案。
实施例1
本申请实施例一所提供的方法实施例可以在移动终端、计算机终端或者类似的运算装置中执行。以运行在移动终端上为例,图1是本申请实施例提供的一种控制方法的移动终端的硬件结构框图。如图1所示,移动终端110可以包括一个或多个(图1中仅示出一个)处理器111(处理器111可以包括但不限于微处理器(Microcontroller Unit,MCU)或可编程逻辑器件(Field-Programmable Gate Array,FPGA)等的处理装置)、设置为存储数据的存储器112、以及设置为通信功能的传输装置113。本领域普通技术人员可以理解,图1所示的结构仅为示意,图1并不对上述电子装置的结构造成限定。例如,移动终端110还可包括比图1中所示更多或者更少的组件,或者具有与图1所示不同的配置。
存储器112可设置为存储应用软件的软件程序以及模块,如本申请实施例中的控制方法对应的程序指令/模块,处理器111通过运行存储在存储器112内的软件程序以及模块,从而执行多种功能应用以及数据处理,即实现上述的方法。存储器112可包括高速随机存储器,还可包括非易失性存储器,如一个或者多个磁性存储装置、闪存、或者其他非易失性固态存储器。在一些实例中,存储器112可包括相对于处理器111远程设置的存储器,这些远程存储器可以通过网络连接至移动终端110。上述网络的实例包括但不限于互联网、企业内部网、局域网、移动通信网及其组合。
传输装置113设置为经由一个网络接收或者发送数据。上述的网络实例可包括移动终端110的通信供应商提供的无线网络。在一个实例中,传输装置113包括一个网络适配器(Network Interface Controller,NIC),其可通过基站与其他网络设备相连从而可与互联网进行通讯。在一个实例中,传输装置113可以为射频(Radio Frequency,RF)模块,其设置为通过无线方式与互联网进行通讯。
在本实施例中提供了一种控制方法,应用于终端,该终端包括至少两个触摸屏。图2是本实施例提供的控制方法的流程图。如图2所示,该流程包括如下步骤:
步骤210、获取以下触控信息至少之一:该终端的第一触摸屏上的第一指纹触控信息以及该终端的第二触摸屏上的第二指纹触控信息。
步骤220、根据获取的触控信息对该终端进行控制。
图3是本实施例提供的一种控制方法的流程图。如图3所示,该方法包括如下步骤:
步骤202,获取该终端的第一触摸屏上的第一指纹触控信息。
在一实施例中,上述第一指纹触控信息包括以下至少之一:压力值、触摸区域面积、超声波以及光波。
步骤204,获取该终端的第二触摸屏上的第二指纹触控信息。
在一实施例中,上述第二指纹触控信息包括以下至少之一:压力值、触摸区域面积、超声波以及光波。
步骤206,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制。
通过上述步骤202至步骤206,获取该终端的第一触摸屏上的第一指纹触控信息;获取该终端的第二触摸屏上的第二指纹触控信息;根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制。也就是说,针对多屏终端触控操作的特点而提出对应的控制方法,进而解决了相关技术中终端控制方法都是基于单屏终端,尚未提出针对多屏的控制方法的问题,有效提升了多屏终端的用户体验度。
下面结合示例,对本实施例进行举例说明。
本示例提供了一种支持多屏幕的智能终端,以及提供了一种针对多屏终端而设计的控制方法。本实施例的技术方案原理包括:支持双屏幕的终端,两块屏幕可同时或独立地检测用户多根手指针对两块屏幕所施加的按压或滑动操作,终端可以通过对分布在两块屏幕上的一个或多个手指按压点的坐标或坐标点滑动变化趋势、压力大小或压力变化趋势、以及指面面积大小或面积变化趋势等条件的实时检测和判断处理实现用户预想的功能与应用。
在一实施例中,实时检测和判断处理的场景包括但不限于:多屏多点触控识别;多手指的多点按压(接触)的区域范围采样点数据值;多手指的多点按压(接触)的手指标志位坐标点信息;多点按压区域的按压(接触)时刻;多点按压(接触)时间段计算值;按压区域采样点压力值集合;标识压力点压力 值;压力点压力变化趋势值;触摸区域面积;触摸时间段;触摸区域面积变化趋势等;指面滑动操作检测;坐标体系对应与转换;声波触摸屏手指触控操作识别;以及光波触摸屏手指触控操作识别。
声波触摸屏手指触控操作识别:对于支持声波触摸屏的终端,多手指的多点按压(接触)屏幕时,触点上的声波即被阻止,由此可确定多个手指的轮廓形状信息,以及多个手指的标志位坐标点信息。
光波触摸屏手指触控操作识别:对于支持光波触摸屏的终端,多手指的多点按压(接触)屏幕时,触点上的光波即被阻止,由此可确定多个手指的轮廓形状信息,以及多个手指的标志位坐标点信息。
多屏多点触控识别:双屏终端支持来自用户手指的多点触控按压识别,支持识别用户在同一时间段内同时有几个手指的指面触摸到手机的触屏(Touch Panel),并被触屏有效识别到。在一实施例中,双屏终端可以区分哪些触点对应哪些屏幕的触摸。
多手指的多点按压的区域范围采样点数据值:即用户的每根手指的指面有效接触触屏的坐标点集合,该坐标点集合可反应出用户手指的指面区域有效接触触屏,且被触屏识别的区域,该区域面积的大小由指面与触屏接触,并被触屏有效识别的区域大小决定。该坐标集合由终端处理单元转化为采样点坐标集合,采样点的密度可根据硬件处理能力和用户的触控操作体验高低等条件进行设定。
多手指的多点按压的手指标志位坐标点信息:即根据用户每个指面有效接触触屏的坐标点集合生成一个用户按压的标志位坐标值,该坐标值来对应到用户该根手指的触控点信息,可用于判断用户在同一时间段内有几个指面接触终端的触屏,以及每个指面对应的物理位置或区域信息。
在一实施例中,手指标志位坐标点信息值可由指面有效接触触屏的坐标点集合通过预设的条件计算而来,计算方法包括但不限于:计算规则或非规则区域的近似平均中心点坐标值或中心点坐标区域平均值;判断相邻的多点按压的区域之间是否有明显的分界;判断多指面近似圆形图案的指面形状模糊识别技术等,从而区分出用户的多个不同指面同时接触触屏的状态信息。
多点按压区域的按压时刻:即终端检测并记录用户同一时间段内,多个指面接触触屏的时刻信息,时刻信息包括但不限于:用户每个指面接触触屏的起 始时刻和分离时刻等。
多点按压时间段计算值:即终端检测并记录用户同一时间段内,多个指面接触触屏从起始时刻到分离时刻所用的时间。
按压区域采样点压力值集合:即用户手指的指面有效接触触屏时,用户手指的指面的坐标点集合中多个坐标点对应按压压力的大小值集合。
标识压力点压力值:即根据按压区域采样点压力值集合信息通过预设的条件计算出的每个指面的标识压力值。标识压力值的计算范围可根据区分出用户的多个不同指面同时接触触屏的状态,从而针对每个指面进行单独计算。计算方法包括但不限于:根据按压区域采样点压力值集合中所有坐标点压力值取平均值;取手指标志位坐标点坐标位置的压力值;以及取按压区域采样点压力值集合中最大压力点压力值等。
压力点压力变化趋势值:即根据按压区域采样点压力值在一个时间区间的大小变化,判断出该时间区间内压力变化的趋势值,压力变化的趋势值包括但不限于:压力点按压压力由小变大;以及压力点按压压力由大变小等。
触摸区域面积:即手指的指面有效接触触摸屏幕的面积值。该值可由多手指的多点触摸的区域范围采样点数据值通过计算获取。计算方法包括但不限于:提取指面触摸的区域范围采样点中的边界点坐标值,通过线性近似算法生成几何图形,并计算出该几何图形的面积等。
触摸时间段:即终端检测并记录手指的指面接触触屏从起始时刻到分离时刻中的一个时间段值。触摸时间段的参数值需预先设定。参数设定的规则包括但不限于:指面由有效接触触屏到有效分离的时间段;以及指面接触触屏时触摸区域面积从小到大或从大到小变化并达到预设的阈值时的时间段等。
触摸区域面积变化趋势:根据触摸区域面积在触摸时间段区间的大小变化,判断出该触摸时间段区间内触摸区域面积变化趋势值。面积变化的趋势值包括但不限于:由小变大;由大变小;由小变大后又变小;以及由大变小后又变大等。
指面滑动操作检测:终端可针对一个或多个手指的指面在屏幕上的滑动操作进行检测,并可区分出每个指面对应的双屏信息。检测方法包括但不限于:终端根据手指标志位坐标点的坐标在屏幕上,基于某种几何图线,出现连接的坐标移动变化,且当坐标移动变化的几何方向或距离达到预设的阈值时,终端 可以进行对应的处理操作。
坐标体系对应与转换:双屏坐标体系对应与转换的处理方法。双屏终端在当两个屏幕作平面展开与作背向折叠时,两个屏幕的坐标体系的对应关系需要进行切换。为了实现本示例提供的控制方法,可将终端的屏幕以折叠和展开两种状态进行说明。
屏幕展开状态:两块屏幕分别对应一个坐标体系,两个坐标体系同一位置的坐标值相同,区别是在屏幕左(左屏)或屏幕右(右屏)上。假设左屏的点A的坐标为A(x,y),则在右屏上对应位置相同的坐标点B的坐标为B(x,y)。
屏幕折叠状态:正屏的坐标体系与背屏在水平方向相差180度。即,正屏的坐标体系与背屏的背面是一一对应的关系。设定我们以正屏的坐标体系为基准坐标体系,假设背屏触摸点A的坐标为A(x,y),则将背屏点A的坐标转换并对应到正屏后,转换后的坐标值为A’(-x,y)。
屏幕展开状态和折叠状态是相对的,两种状态下坐标体系的计算方法不同,可定义一个临界的角度值,比如当两块屏幕的夹角大于120度时,坐标体系自动切换到展开状态对应的坐标体系,反之则对应折叠状态的坐标体系。
在一实施例中,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制,包括以下步骤:
在该第一指纹触控信息或该第二指纹触控信息包括压力值的情况下,将该第一指纹触控信息的受力点的标志位坐标点或该第二指纹触控信息的受力点的标志位坐标点,按照预定方式转换到该第二触摸屏或该第一触摸屏上;
确定该第一触摸屏或该第二触摸屏上标志位坐标点之间的距离是否在预设范围内;
在确定该第一触摸屏或该第二触摸屏上标志位坐标点之间的距离是在预设范围内的情况下,以该第一指纹触控信息的受力点的标志位坐标点或该第二指纹触控信息的受力点的标志位坐标点为中心对该终端进行控制。
在一实施例中,上述按照预定方式转换到该第二触摸屏或该第一触摸屏上包括:根据该第一触摸屏和该第二触摸屏之间的夹角,确定该第一触摸屏和该第二触摸屏之间的状态;根据该第一触摸屏和该第二触摸屏之间的状态,将该第一触摸屏上的标志位坐标点转换到该第二触摸屏上,或者,将第二触摸屏上的标志位坐标点转换到第一触摸屏上。
在一实施例中,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制还包括以下步骤:
在该第一指纹触控信息或该第二指纹触控信息包括压力值的情况下,将该第一指纹触控信息或该第二指纹触控信息中的一个或多个受力点的坐标点转换到该第二触摸屏或该第一触摸屏上;
根据该第一触摸屏或该第二触摸屏上一个或多个受力点的坐标点所处的坐标系位置,对该终端进行控制。
在一实施例中,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制还包括以下步骤:
根据该第一指纹触控信息所指示的压力值的变化趋势和该第二触控信息所指示的压力值的变化趋势,对该终端进行控制。
在一实施例中,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制还包括以下步骤:
在该第一指纹触控信息和该第二指纹触控信息包括触摸区域面积的情况下,根据该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对该终端进行控制。
在一实施例中,在根据该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对该终端进行控制之前,还包括以下步骤:
根据该第一触摸屏和该第二触摸屏接收到的触摸区域面积,分别获取该触摸区域面积对应的第一坐标点集合和第二坐标点集合;
通过指定算法处理该第一坐标点集合和该第二坐标点集合,得到触摸区域轮廓图;
根据该触摸区域轮廓图,获取该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点。
在一实施例中,根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制还包括以下步骤:
在该第一指纹触控信息和该第二指纹触控信息包括触摸区域面积的情况下,根据该第一指纹触控信息所指示的触摸区域面积的变化趋势和该第二指纹触控信息所指示的触摸区域面积的变化趋势,对该终端进行控制。
在一实施例中,在根据该第一指纹触控信息和该第二指纹触控信息对该终端进行控制之前,还包括以下步骤:
确定该第一指纹触控信息和该第二指纹触控信息满足预设条件。
在一实施例中,上述预设条件包括以下至少之一:该第一指纹触控信息和该第二指纹触控信息对应的取值不为0,以及该第一指纹触控信息和该指纹第二触控信息对应的接触时间在预设范围内。在一实施例中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
在所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第一触摸屏上的受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置;
确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是否在预设范围内;
在确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是在预设范围内的情况下,以所述第二触摸屏上的受力点的标志位坐标点为中心对所述终端进行控制。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
在所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的至少两个受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的至少两个受力点的标志位坐标点在所述第二触摸屏上一一对应的至少两个坐标位置;
确定所述第二触摸屏上一一对应的至少两个坐标位置中每两个坐标位置之间的距离是否在预设范围内;
在确定所述每两个坐标位置之间的距离是在预设范围内的情况下,以所述第一触摸屏上的至少两个受力点的标志位坐标点中的任一受力点的标志位坐标点为中心对所述终端进行控制。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息和所述第二 指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
在所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第二触摸屏上的一个或多个受力点的标志位坐标点转换到所述第一触摸屏,得到所述第二触摸屏上的一个或多个受力点的标志位坐标点在所述第一触摸屏上一一对应的一个或多个坐标位置;
根据所述第一触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置以及所述第一触摸屏上的一个或多个受力点的标志位坐标点所处的坐标系位置,对所述终端进行控制。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
在所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的一个或多个受力点的标志位坐标点转换到所述第二触摸屏,得到所述第一触摸屏上的一个或多个受力点的标志位坐标点在所述第二触摸屏上一一对应的一个或多个坐标位置;
根据所述第二触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置,对所述终端进行控制。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
根据所述第一指纹触控信息所指示的压力值的变化趋势和所述第二指纹触控信息所指示的压力值的变化趋势,对所述终端进行控制。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
在所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制。
在一实施例中,在根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制之前,还包括:
根据所述第一触摸屏接收到的触摸区域面积,获取所述第一指纹触控信息 的触摸区域面积对应的第一坐标点集合以及根据所述第二触摸屏接收到的触摸区域面积获取所述第二指纹触控信息的触摸区域面积对应的第二坐标点集合;
通过指定算法处理所述第一坐标点集合和所述第二坐标点集合,得到触摸区域轮廓图;
根据所述触摸区域轮廓图,获取所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点。
在一实施例中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:在所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息所指示的触摸区域面积的变化趋势和所述第二指纹触控信息所指示的触摸区域面积的变化趋势,对所述终端进行控制。
在一实施例中,在所述根据获取的触控信息对所述终端进行控制之前,还包括:确定获取的所述触控信息至少之一满足预设条件;
其中,所述预设条件包括以下至少之一:获取的所述触控信息包括的参数对应的取值不为0,以及获取的所述触控信息包括的接触时间在预设范围内。
在一实施例中上述对该终端控制包括但并不限于:移动应用图标、控制应用界面大小、唤醒与解锁该终端以及双屏拍照。
下面结合可选实施例对本实施例进行举例说明。
可选实施例一
在本可选实施例中,主要应用于应用图标移动。图4是可选实施例一的操作示意图。如图4所示,终端两块屏幕对折,正屏面向用户且为点亮状态,背屏为熄灭状态,假设当前终端有两个待机桌面,正屏显示桌面一,背屏在点亮状态下显示桌面二。用户此时使用两根手指的指面同时按压桌面一上的应用1的图标,当按压时间或按压压力值达到预设条件时,应用1图标变为活动状态,同时桌面一切换为桌面二显示在正屏上,此时用户可将所述应用1的图标,通过正背屏的双指夹捏和移动操作,将所述图标移动到屏幕右上方并松开手指,此时应用1图标从桌面一消失,正屏上显示的桌面二切换回桌面一,而该图标已经被移动到背屏上对应的位置。其中,应用1的图标在背屏上显示的位置可根据正背屏坐标体系转换进行计算与显示等操作处理。
图5是可选实施例一提供的控制方法的流程图。其中,终端的正背触摸屏 同时检测用户手指的指面与屏幕有效接触或按压操作;判断是否满足预置条件101。预置条件101:处理单元在双屏上检测到正背屏上同时有两个手指的指面接触到终端正背屏幕。如果预置条件101满足则进入预置条件102的判断处理流程。终端检测用户每个手指指面按压触摸屏的触摸时间段或标识压力点压力值,并判断是否满足预置条件102;预置条件102:条件一,正背屏上有两个手指同时进行按压操作,且所述两个手指的标志位坐标点在经过正背屏坐标体系转换后的距离在预设的范围内;条件二,基于正屏上的所述手指标志位坐标点为中心的预设的半径范围内的桌面一上有一个可以移动的应用图标;条件三,触摸检测单元判断在正屏或背屏上存在一根或多根手指的触摸时间段或标识压力点压力值在一个按压时间段内,达到了触摸时间段阈值或按压点压力变化趋势之由小到大的阈值。处理单元判断预置条件102满足时,处理单元将应用1的桌面图标状态切换为移动状态,同时将背屏上显示的桌面二显示到正屏上。随后,所述图标根据基于正屏上的所述手指标志位坐标点的移动方向同步进行移动显示操作处理。并进入预置条件103的判断处理流程。预置条件103:条件一,正背屏上的两个手指中至少一个手指的按压操作终止,且该手指离开所述对应的屏幕。处理单元判断预置条件103满足时,处理单元将应用1图标进行坐标体系转换处理操作,并从正屏上取消该图标显示。应用1图标的坐标体系转换处理操作。假设应用图标1最终移动到正屏上的位置坐标为A(x,y),则将正屏点A的坐标转换并对应到背屏后,其基于背屏上的新坐标值为A’(-x,y)(参见图9所示步骤401~步骤406)
可选实施例二
在本可选实施例中,主要应用于掌机(Play Station Portable,PSP)。该可选实施例涉及一种屏幕虚拟按键触控操作的技术和方法,该实施例可以应用于用户运行带多按键的游戏类应用的使用场景。如图6所示,双屏终端背向折叠,正面屏幕面对用户,用户使用双手从两侧持握双屏终端,用户左右手的拇指A和D接触正屏,左右手的食指B和E以及中指C和F接触双屏终端的背屏。当用户运行游戏的过程中,双屏终端正背屏同时检测多根手指指面与屏幕的接触,其中背屏的B、C、E、以及F接触点可虚拟为四个按键。从而实现类似于PSP掌上游戏机的用户操作体验。
图7是可选实施例二提供的控制方法的流程图。双屏终端的两块屏幕背向 折叠,正向屏幕面向用户,背向屏幕背对用户,用户横握双屏终端,在双屏终端的正屏上激活一个按键类游戏应用。此时,双屏终端的正背触摸屏同时检测用户的六根手指的指面与屏幕有效接触区域A、B、C、D、E、以及F。可将双屏终端按正屏坐标体系分成1、2、3、以及4这四个象限,如果假设所述游戏应用支持六个虚拟按键,其中六个虚拟按键的有效按压位置可对应到四个象限所在的屏幕区域范围内,比如:按键A对应1和3象限;按键D对应2和4象限;按键B、C、E、以及F分别对应到1、3、2、以及4象限内。于是,当用户手指有效按键点落在对应的象限内,处理单元即可将该操作识别为对应的虚拟按键的键值。判断是否满足预置条件101。预置条件101:处理单元在双屏终端上检测到一个独立手指的坐标点坐标值。如果预置条件101满足则进入预置条件102的判断处理流程。终端检测用户每个手指指面按压触摸屏的标识压力点压力值,并判断是否满足预置条件102。预置条件102的前置条件:处理单元实时检测每根手指按压屏幕的压力值集合;处理单元实时检测并计算指面按压区域的按压时刻值集合。按压时刻值集合包括但不限于:按压起始时刻、按压终止时刻、以及按压区域标识压力点压力值达到最大或最小的时刻值等;处理单元实时检测每个按压点按压时间段计算值集合。按压点按压时间段计算值集合包括但不限于:指面按压开始到终止时间段值、指面按压压力从最小到最大(或从最大到最小)的时间段值、指面按压指定时间段值、以及从某个时刻为起始点时刻,达到按压点压力变化趋势阈值时的时间段值等;处理单元实时检测每根手指的标识压力点压力值;预置条件102:条件一,触摸检测单元判断到正屏或背屏上的手指坐标点坐标值的标识压力点压力值在一个按压时间段内,达到了按压点压力变化趋势之由小到大的阈值;处理单元判断预置条件102满足时,计算该坐标点所在的象限,并根据象限对应的按键键值关系,上报该键值到游戏应用进行处理(参见图7所示步骤601~步骤604)。
可选实施例三
在本可选实施例中,主要应用于地图精确缩放。图8是可选实施例三提供的操作示意图。本可选实施例以可折叠的双触摸屏的终端为例进行技术方案的说明。如图8所示,终端结构由两块屏幕组成。对折后,两块触摸屏分别面向前后两个方向,假设正面屏幕此时面向用户。此时用户使用左手持握终端,用户的拇指指面接触正屏,与屏幕的接触点为图8中圆形区域A。用户可使用食 指和无名指指面接触背屏,触点分别为图8中圆形区域B和C。用户通过正屏打开一个地图类应用(application software,APP),用户正面的手指和背屏手指同时按压正背双屏时,处理单元根据用户的手指按压操作,根据预设的规则执行用户预想的操作。
图9是可选实施例三提供的控制方法的流程图。双屏终端的两块屏幕背向折叠,正向屏幕面向用户,背向屏幕背对用户。用户打开一个地图应用,正屏上显示所在地的地图界面。此时,终端的正背触摸屏同时检测用户手指的指面与屏幕有效接触区域,并判断是否满足预置条件101。预置条件101的前置条件:触摸检测单元实时检测用户多个手指的多点按压的区域范围采样点数据值,根据该数据值计算出手指标志位坐标点信息,本申请计算方法可包括但不限于:处理单元根据每个指面接触的触摸屏所生成的有效接触的坐标点坐标集合信息,然后根据该信息通过边缘线性平滑处理算法生成指面轮廓图,然后根据该线性轮廓周线计算出几何平均中心点,该中心点即为该手指指面几何区域对应的标志位坐标点坐标值。预置条件101:条件一,触摸检测单元在正屏上检测到一个独立手指的坐标点坐标值A;条件二,触摸检测单元在背屏上检测到一个独立手指的坐标点坐标值B或C;条件三,触摸检测单元在背屏上检测到两个独立手指的坐标点坐标值B和C。如果预置条件101满足条件一和条件二,则进入预置条件102的判断处理流程;如果预置条件101满足条件一和条件三,则进入预置条件103的判断处理流程。预置条件102和预置条件103的前置条件:处理单元实时检测每根手指按压屏幕的压力值集合;处理单元实时检测并计算指面按压区域的按压时刻值集合。按压时刻值集合包括但不限于:按压起始时刻、按压终止时刻、以及按压区域标识压力点压力值达到最大或最小的时刻值等;处理单元实时检测每个按压点按压时间段计算值集合。按压点按压时间段计算值集合包括但不限于:指面按压开始到终止时间段值、指面按压压力从最小到最大(最大到最小)的时间段值、指面按压指定时间段值、以及从某个时刻为起始点时刻,达到按压点压力变化趋势阈值时的时间段值等;处理单元实时检测每个标识压力点压力值。预置条件102:条件一,触摸检测单元判断到正屏的拇指坐标点坐标值A的标识压力点压力值在一个按压时间段内,达到了按压点压力变化趋势之由小到大的阈值;条件二,在与条件一中所述的按压时间段的起止时间差值在预设的阈值范围内时,触摸检测单元检测到背屏的坐标点 的标识压力点压力值在一个按压时间段内,达到了按压点压力变化趋势之由小到大的阈值;条件三,此时正屏的A点与经过坐标体系转换为正屏的坐标值的背屏坐标点的标识压力点的坐标值的距离在预设的距离判断阈值之内。当预置条件102的三个条件同时满足时,处理单元以A点为中心点坐标对地图的界面进行放大显示处理操作。此后,当判断到用户按压趋势停止时,停止所述放大显示处理操作。预置条件103:条件一,触摸检测单元判断到正屏的拇指坐标点坐标值A的标识压力点压力值在一个按压时间段内,达到了按压点压力变化趋势之由小到大的阈值;条件二,在与条件一中所述的按压时间段的起止时间差值在预设的阈值范围内时,触摸检测单元检测到背屏的一个坐标点(B或C点之一,B和C此时同时存在)的标识压力点压力值在一个按压时间段内,达到了按压点压力变化趋势之由小到大的阈值;条件三,此时正屏的A点与经过坐标体系转换为正屏的满足条件二的坐标点坐标值的距离在预设的距离判断阈值之内。当预置条件103的三个条件同时满足时,处理单元以A点为中心点坐标对地图的界面进行缩小显示处理操作。此后,当判断到用户按压趋势停止时,停止所述缩小显示处理操作。在一实施例中,根据力学理论,在预置条件103中,当用户使用单手的手指对正背屏同时按压时,在需要保证终端屏幕保持竖直向上的前提下,我们假设此时满足预置条件103中的条件二的点是B,那么通过正背屏的坐标体系对应转换处理,将背屏坐标体系的B点、以及C点坐标转换到正屏坐标体系的B’、以及C’坐标,然后计算A点坐标与B’、C’坐标的距离值,则此时A与B’的距离值应该小于A与C’的距离。
在一实施例中,包括本实施例中所述的手指按压的压力大小的趋势判断方法外,还可以包括:针对用户手指指面面积变化趋势或手指滑动操作等判断方法(参见图9所示步骤801~步骤806)。
可选实施例四
在本可选实施例中,主要应用于手机唤醒与解锁。该实施例涉及一种手机黑屏唤醒并解锁的触控操作方法。如图10所示,支持双屏幕的终端,当两块屏幕背向折叠时,正向屏幕面向用户,背向屏幕背对用户。正背屏幕同时检测用户手指的接触、按压或滑动等操作。用户的拇指接触正面触摸屏区域,同时用户的多根手指的指面接触背面触摸屏区域。手机处于休眠并且锁定的状态,正背双屏均未点亮,此时当用户在正屏上使用拇指按预设的滑动路径与预设的操 作时间段阈值等条件,依次从手指按压背屏时转换到正屏上的坐标点之间作滑动操作,示例图10中示例的拇指滑动路径为B->C->E->D->C。当预设的条件达到时,终端执行手机唤醒并点亮正屏;或直接解锁进入待机界面等操作。
图11是可选实施例四提供的控制方法的流程图。终端处于休眠和锁定状态,正背触摸屏同时检测用户手指的指面与屏幕有效接触或按压操作。判断是否满足预置条件101。预置条件101:处理单元检测到正背屏上同时有两个手指的指面接触到手机正背屏幕;如果预置条件101满足则进入预置条件102的判断处理流程。终端检测用户每个手指指面在正背屏上的标识坐标点,并判断是否满足预置条件102。预置条件102:条件一,背屏上检测到有四个手指固定不动,同时正屏上检测一根手指进行滑动操作;条件二,拇指在背屏上四个手指通过正背屏坐标体系转换后对应到正屏上的坐标点间进行滑动操作,且滑动路径与顺序为B->C->E->D->C。处理单元判断预置条件102满足时,终端执行手机唤醒并点亮正屏;或进入解锁界面进行解锁操作;或直接解锁进入待机界面等操作(参见图11所示步骤1001~步骤1004)。
可选实施例五
在本可选实施例中,主要应用于双屏拍照。如图12所示,本实施例涉及一种基于双屏手机拍照技术的操作方法。支持双屏幕的终端,当两块屏幕背向折叠时,正屏幕面向用户,背屏背对用户。假设此时用户正在使用拍照应用进行拍照操作,手机正屏上显示拍照应用的拍照预览界面,此时用户单手持握手机。用户操作的场景一:手动对焦。使用一根手指在背屏上点击一个坐标点时,处理单元将该点坐标转换为正屏对应点的坐标,拍照应用以此坐标点为对焦点执行自动对焦操作;用户操作的场景二:快速拍照。用户使用两根手指在背屏进行触控操作,一根手指固定接触背屏,另外一根手指在背屏进行点击操作,此时拍照应用执行按下快门拍照操作。
图13是可选实施例五提供的控制方法的流程图。终端处于折叠状态,正屏显示拍照应用的拍照预览界面,此时,背屏检测用户手指的指面与屏幕有效接触或点击操作。判断是否满足预置条件101。预置条件101:触摸检测单元检测到背屏上有手指的触控操作。如果预置条件101满足则进入预置条件102的判断处理流程,并判断是否满足预置条件102。预置条件102:条件一,背屏上检测到有一次手指单点操作。处理单元将该点坐标转换为正屏对应点的坐标,拍 照应用以此坐标点为对焦点执行自动对焦操作;条件二,背屏上检测到用户一根手指固定接触背屏,另外一根手指在背屏进行了一次点击操作,此时拍照应用执行按下快门拍照操作(参见图13所示步骤1201~步骤1205)。
本实施例提出了一种针对双屏终端而设计的控制方法。双屏终端的两块触摸屏可分别独立检测用户的触摸操作,同时可进行用户指面按压触摸屏的压力大小与变化趋势;指面面积大小与变化趋势;多指指面滑动操作的距离与方向变化等条件的判断与处理操作,从而实现用户预期的功能与操作。进而可提升支持多触摸屏幕的终端对于触控操作的用户体验,进而可实现不同于单屏终端的更多的应用操作方法。
本实施例提供的方案相对背景技术的优化点包括但不限于:本实施例提供一种针对双屏手机触控操作特点而设计的控制方法,该方法的应用可有效提升双屏智能终端的用户体验效果。
本实施例在技术功能的实现上,在硬件基础上不增加额外的成本。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到根据上述实施例的方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对相关技术做出贡献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(如只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,或者网络设备等)执行本申请任意实施例所述的方法。
实施例2
在本实施例中提供了一种控制装置,该装置用于实现上述实施例,已经进行过说明的不再赘述。如以下所使用的,术语“模块”可以实现预定功能的软件和/或硬件的组合。尽管以下实施例所描述的装置在一实施例中以软件来实现,但是硬件,或者软件和硬件的组合的实现也是可能并被构想的。
图14是本实施例提供的控制装置的结构框图,该装置应用于包括至少两个触摸屏的终端,如图14所示,该装置包括:
1)获取模块132,设置为:获取以下触控信息至少之一:该终端的第一触摸屏上的第一指纹触控信息以及该终端的第二触摸屏上的第二指纹触控信息;
在一实施例中,在获取的触控信息包括所述第一指纹触控信息的情况下,第一指纹触控信息包括以下至少之一:压力值、触摸区域面积、声波、以及光波;在获取的触控信息包括所述第二指纹触控信息的情况下,该第二指纹触控信息包括以下至少之一:压力值、触摸区域面积、声波、以及光波。
2)控制模块136,设置为:根据获取的触控信息对该终端进行控制。
通过图14所示的装置,获取以下触控信息至少之一:该终端的第一触摸屏上的第一指纹触控信息以及该终端的第二触摸屏上的第二指纹触控信息;根据获取的触控信息对该终端进行控制。也就是说,针对多屏终端触控操作的特点而提出对应的控制方法,进而解决了相关技术中终端控制方法都是基于单屏终端,尚未提出针对多屏的控制方法的问题,有效提升了多屏终端的用户体验度。
图15是根据本申请另一实施例提供的控制装置的结构框图,如图15所示,控制模块136包括:
1)第一转换单元142,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且该第一指纹触控信息或该第二指纹触控信息均包括压力值的情况下,将该第一指纹触控信息的受力点的标志位坐标点按照预定方式转换到该第二触摸屏上,得到所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置;
2)确定单元144,设置为:确定该第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与该第二触摸屏上标志位坐标点之间的距离是否在预设范围内;
3)第一控制单元146,设置为:在确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是在预设范围内的情况下,以该第二指纹触控信息的受力点的标志位坐标点为中心对该终端进行控制。
在一实施例中,第一转换单元142,还设置为:在获取的触控信息包括所述第一指纹触控信息,且所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的至少两个受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的至少两个受力点的标志位坐标点在所述第二触摸屏上一一对应的至少两个坐标位置;
确定单元144,还设置为:确定所述第二触摸屏上一一对应的至少两个坐标 位置中每两个坐标位置之间的距离是否在预设范围内;
第一控制单元146,还设置为:在确定所述每两个坐标位置之间的距离是在预设范围内的情况下,以所述第一触摸屏上的至少两个受力点的标志位坐标点中的任一受力点的标志位坐标点为中心对所述终端进行控制。
在一实施例中,上述预定方式包括:根据该第一触摸屏和该第二触摸屏之间的夹角,确定该第一触摸屏和该第二触摸屏之间的状态;根据该状态,将该第一触摸屏上的标志位坐标点转换到该第二触摸屏上,或者,将该第二触摸屏上的标志位坐标点转换到该第一触摸屏上。
图16是根据本申请另一实施例提供的控制装置的结构框图,如图16所示,控制模块136包括:
1)第二转换单元152,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且该第一指纹触控信息或该第二指纹触控信息均包括压力值的情况下,将该第二触摸屏上的一个或多个受力点的坐标点转换到该第一触摸屏上,得到该第二触摸屏上的一个或多个受力点的标志位坐标点在该第一触摸屏上一一对应的一个或多个坐标位置;
2)第二控制单元154,设置为:根据该第一触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置或该第二触摸屏上一个或多个受力点的坐标点所处的坐标系位置,对该终端进行控制。
在一实施例中,第二转换单元152,还设置为:在获取的触控信息包括所述第一指纹触控信息且所述第一指纹触控信息或所述第二指纹触控信息包括压力值的情况下,将所述第一触摸屏上的一个或多个受力点的坐标点转换到所述第二触摸屏,得到所述第一触摸屏上的一个或多个受力点的标志位坐标点在所述第二触摸屏上一一对应的一个或多个坐标位置;
第二控制单元154,还设置为:根据所述第二触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置,对所述终端进行控制。
在一实施例中,上述控制模块136是设置为通过如下方式对所述终端进行控制:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,根据该第一指纹触控信息所指示的压力值的变化趋势和该第二指纹触控信息所指示的压力值的变化趋势,对该终端进行控制。
在一实施例中,图17是根据本申请另一实施例提供的控制装置的结构框图,如图17所示,上述控制模块136包括第三控制单元160,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且在该第一指纹触控信息和该第二指纹触控信息均包括触摸区域面积的情况下,根据该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对该终端进行控制。
在一实施例中,如图17所示,控制模块136还包括:
1)第一获取单元162,设置为:在根据该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对该终端进行控制之前,根据该第一触摸屏接收到的触摸区域面积,获取所述第一指纹触控信息的触摸区域面积对应的第一坐标点集合以及根据该第二触摸屏接收到的触摸区域面积,获取该第二指纹触控信息的触摸区域面积对应的第二坐标点集合;
2)第二获取单元164,设置为:通过指定算法处理该第一坐标点集合和该第二坐标点集合,得到触摸区域轮廓图;
3)第三获取单元166,设置为:根据该触摸区域轮廓图,获取该第一指纹触控信息的触摸区域面积的平均中心点和该第二指纹触控信息的触摸区域面积的平均中心点。
在一实施例中,上述控制模块136是设置为通过如下方式对所述终端进行控制:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且该第一指纹触控信息和该第二指纹触控信息包括触摸区域面积的情况下,根据该第一指纹触控信息所指示的触摸区域面积的变化趋势和该第二指纹触控信息所指示的触摸区域面积的变化趋势,对该终端进行控制。
图18是根据本申请另一实施例提供的控制装置的结构框图,如图18所示,该装置除了包括图14所示的模块外,还包括:
1)确定模块172,设置为:在根据获取的触控信息对该终端进行控制之前,确定获取的触控信息满足预设条件。
在一实施例中,该预设条件包括以下至少之一:获取的触控信息包括的参数的取值不为0,以及获取的触控信息包括的接触时间在预设范围内。
在一实施例中,上述控制对应的操作包括但并不限于:移动应用图标、控 制应用界面大小、唤醒与解锁终端、以及双屏拍照。
下面结合示例,对本实施例进行举例说明。
在本示例中提出了一种支持双屏的智能终端触控操作的装置。包括:处理单元;触摸屏单元;触摸检测单元;以及压力检测单元等组成部分。处理单元,可抽象为该终端的运算处理单元,可包括终端的中央处理器(Central Processing Unit,CPU)或辅助中央处理器单元(Assistant-Central Processing Unit,A-CPU)等,其相当于人体的大脑,负责终端整体的运算和处理工作。触摸屏单元,即支持压力感应或多点触控的触摸屏,触摸屏幕可分为多块屏幕,本申请以两块触摸屏为典型场景说明技术方案,当屏幕数量为多个时,凡涉及到本申请技术方案的技术方案都在本申请所保护的范围内。触摸检测单元,用户在一个时间段内,处理单元可通过多点触摸检测单元识别并判断出多手指的多点按压的区域范围采样点数据值。在一实施例中,处理单元可计算出多个手指的指面的手指标志位坐标点信息。压力检测单元,用户在一个时间段内,处理单元可通过多点压力检测单元识别并判断出用户有几根手指的按压区域采样点压力值集合。在一实施例中,处理单元可计算出每个指面标识压力点压力值。在一实施例中,处理单元可计算出每个指面的压力点压力变化趋势值。
在一实施例中,本示例所述的装置同样适用于支持多屏幕的终端。
在一实施例中,上述各个模块是可以通过软件或硬件来实现的,对于后者,可以通过以下方式实现,但不限于此:上述模块均位于同一处理器中;或者,上述各个模块以任意组合的形式分别位于不同的处理器中。
实施例3
本申请的实施例还提供了一种存储介质,该存储介质包括存储的程序,其中,上述程序运行时执行上述任意一种方法。
在一实施例中,上述存储介质可以被设置为存储用于执行以下步骤的程序代码:
获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息以及所述终端的第二触摸屏上的第二指纹触控信息;
根据获取的触控信息对所述终端进行控制。
在一实施例中,上述存储介质可以包括但不限于:U盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、 移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
本申请的实施例还提供了一种处理器,该处理器用于运行程序,其中,该程序运行时执行上述任意一种方法。
在一实施例中,上述程序用于执行以下步骤:
获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息以及所述终端的第二触摸屏上的第二指纹触控信息;
根据获取的触控信息对所述终端进行控制。
本实施例中的示例可以参考上述实施例所描述的示例,本实施例在此不再赘述。
显然,本领域的技术人员应该明白,上述的本申请的各模块或各步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,在一实施例中,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储装置中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成各个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。这样,本申请不限制于任何特定的硬件和软件结合。
以上所述仅为本申请的实施例而已,并不用于限制本申请。

Claims (28)

  1. 一种控制方法,应用于包括至少两个触摸屏的终端,所述方法包括:
    获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息以及所述终端的第二触摸屏上的第二指纹触控信息;
    根据获取的触控信息对所述终端进行控制。
  2. 根据权利要求1所述的方法,其中,
    在获取的触控信息包括所述第一指纹触控信息的情况下,所述第一指纹触控信息包括以下参数至少之一:压力值、触摸区域面积、声波以及光波;
    在获取的触控信息包括所述第二指纹触控信息的情况下,所述第二指纹触控信息包括以下参数至少之一:压力值、触摸区域面积、声波以及光波。
  3. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    在所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第一触摸屏上的受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置;
    确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是否在预设范围内;
    在确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是在预设范围内的情况下,以所述第二触摸屏上的受力点的标志位坐标点为中心对所述终端进行控制。
  4. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    在所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的至少两个受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的至少两个受力点的标志位坐标点在所述第二触摸屏上一一对应的至少两个坐标位置;
    确定所述第二触摸屏上一一对应的至少两个坐标位置中每两个坐标位置之间的距离是否在预设范围内;
    在确定所述每两个坐标位置之间的距离是在预设范围内的情况下,以所述第一触摸屏上的至少两个受力点的标志位坐标点中的任一受力点的标志位坐标点为中心对所述终端进行控制。
  5. 根据权利要求3或4所述的方法,其中,所述预定方式包括:
    根据所述第一触摸屏和所述第二触摸屏之间的夹角,确定所述第一触摸屏和所述第二触摸屏之间的状态;
    根据所述状态,将所述第一触摸屏上的标志位坐标点转换到所述第二触摸屏上,或者,将所述第二触摸屏上的标志位坐标点转换到所述第一触摸屏上。
  6. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    在所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第二触摸屏上的一个或多个受力点的标志位坐标点转换到所述第一触摸屏,得到所述第二触摸屏上的一个或多个受力点的标志位坐标点在所述第一触摸屏上一一对应的一个或多个坐标位置;
    根据所述第一触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置以及所述第一触摸屏上的一个或多个受力点的标志位坐标点所处的坐标系位置,对所述终端进行控制。
  7. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    在所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的一个或多个受力点的标志位坐标点转换到所述第二触摸屏,得到所述第一触摸屏上的一个或多个受力点的标志位坐标点在所述第二触摸屏上一一对应的一个或多个坐标位置;
    根据所述第二触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置,对所述终端进行控制。
  8. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    根据所述第一指纹触控信息所指示的压力值的变化趋势和所述第二指纹触 控信息所指示的压力值的变化趋势,对所述终端进行控制。
  9. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:
    在所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制。
  10. 根据权利要求9所述的方法,其中,在根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制之前,还包括:
    根据所述第一触摸屏接收到的触摸区域面积,获取所述第一指纹触控信息的触摸区域面积对应的第一坐标点集合以及根据所述第二触摸屏接收到的触摸区域面积获取所述第二指纹触控信息的触摸区域面积对应的第二坐标点集合;
    通过指定算法处理所述第一坐标点集合和所述第二坐标点集合,得到触摸区域轮廓图;
    根据所述触摸区域轮廓图,获取所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点。
  11. 根据权利要求2所述的方法,其中,在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息的情况下,所述根据获取的触控信息对所述终端进行控制,包括:在所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息所指示的触摸区域面积的变化趋势和所述第二指纹触控信息所指示的触摸区域面积的变化趋势,对所述终端进行控制。
  12. 根据权利要求1所述的方法,其中,在所述根据获取的触控信息对所述终端进行控制之前,还包括:确定获取的所述触控信息至少之一满足预设条件;
    其中,所述预设条件包括以下至少之一:获取的所述触控信息包括的参数对应的取值不为0,以及获取的所述触控信息包括的接触时间在预设范围内。
  13. 根据权利要求1至12任一项所述的方法,其中,
    所述对所述终端进行控制包括以下至少之一:移动应用图标、控制应用界 面的大小、唤醒与解锁所述终端以及双屏拍照。
  14. 一种控制装置,应用于包括至少两个触摸屏的终端,所述终端至少包括两个触摸屏,所述控制装置包括:
    获取模块,设置为:获取以下触控信息至少之一:所述终端的第一触摸屏上的第一指纹触控信息以及所述终端的第二触摸屏上的第二指纹触控信息;
    控制模块,设置为:根据获取的触控信息对所述终端进行控制。
  15. 根据权利要求14所述的装置,其中,在获取的触控信息包括所述第一指纹触控信息的情况下,所述第一指纹触控信息包括以下至少之一:压力值、触摸区域面积、声波、以及光波;
    在获取的触控信息包括所述第二指纹触控信息的情况下,所述第二指纹触控信息包括以下参数至少之一:压力值、触摸区域面积、声波以及光波。
  16. 根据权利要求15所述的装置,其中,所述控制模块包括:
    第一转换单元,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第一触摸屏上的受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置;
    确定单元,设置为:确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上标志位坐标点之间的距离是否在预设范围内;
    第一控制单元,设置为:在确定所述第一触摸屏上的受力点的标志位坐标点在所述第二触摸屏上对应的坐标位置与所述第二触摸屏上的受力点的标志位坐标点之间的距离是在预设范围内的情况下,以所述第二触摸屏上的受力点的标志位坐标点为中心对所述终端进行控制。
  17. 根据权利要求16所述的装置,其中,
    第一转换单元,还设置为:在获取的触控信息包括所述第一指纹触控信息,且所述第一指纹触控信息包括所述压力值的情况下,将所述第一触摸屏上的至少两个受力点的标志位坐标点按照预定方式转换到所述第二触摸屏,得到所述第一触摸屏上的至少两个受力点的标志位坐标点在所述第二触摸屏上一一对应的至少两个坐标位置;
    确定单元,还设置为:确定所述第二触摸屏上一一对应的至少两个坐标位 置中每两个坐标位置之间的距离是否在预设范围内;
    第一控制单元,还设置为:在确定所述每两个坐标位置之间的距离是在预设范围内的情况下,以所述第一触摸屏上的至少两个受力点的标志位坐标点中的任一受力点的标志位坐标点为中心对所述终端进行控制。
  18. 根据权利要求16或17所述的装置,其中,所述预定方式包括:
    根据所述第一触摸屏和所述第二触摸屏之间的夹角,确定所述第一触摸屏和所述第二触摸屏之间的状态;
    根据所述状态,将所述第一触摸屏上的标志位坐标点转换到所述第二触摸屏上,或者,将所述第二触摸屏上的标志位坐标点转换到所述第一触摸屏上。
  19. 根据权利要求15所述的装置,其中,所述控制模块包括:
    第二转换单元,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,将所述第二触摸屏上的一个或多个受力点的标志位坐标点转换到所述第一触摸屏,得到所述第二触摸屏上的一个或多个受力点的标志位坐标点在所述第一触摸屏上一一对应的一个或多个坐标位置;
    第二控制单元,设置为:根据所述第一触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置以及所述第一触摸屏上的一个或多个受力点的标志位坐标点所处的坐标系位置,对所述终端进行控制。
  20. 根据权利要求19所述的装置,其中,
    第二转换单元,还设置为:在获取的触控信息包括所述第一指纹触控信息且所述第一指纹触控信息或所述第二指纹触控信息包括压力值的情况下,将所述第一触摸屏上的一个或多个受力点的坐标点转换到所述第二触摸屏,得到所述第一触摸屏上的一个或多个受力点的标志位坐标点在所述第二触摸屏上一一对应的一个或多个坐标位置;
    第二控制单元,还设置为:根据所述第二触摸屏上一一对应的一个或多个坐标位置所处的坐标系位置,对所述终端进行控制。
  21. 根据权利要求15所述的装置,其中,所述控制模块是设置为通过如下方式对所述终端进行控制:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述压力值的情况下,根据所述第一指纹触控信息所指示的压力值的变化趋势和所述第二指纹触控信息所指示的压力值的变化趋势,对所述终端进行控制。
  22. 根据权利要求15所述的装置,其中,所述控制模块包括第三控制单元,设置为:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制。
  23. 根据权利要求22所述的装置,其中,所述控制模块还包括:
    第一获取单元,设置为在根据所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点之间的距离,对所述终端进行控制之前,根据所述第一触摸屏接收到的触摸区域面积,获取所述第一指纹触控信息的触摸区域面积对应的第一坐标点集合以及根据所述第二触摸屏接收到的触摸区域面积获取所述第二指纹触控信息的触摸区域面积对应的第二坐标点集合;
    第二获取单元,设置为:通过指定算法处理所述第一坐标点集合和所述第二坐标点集合,得到触摸区域轮廓图;
    第三获取单元,设置为:根据所述触摸区域轮廓图,获取所述第一指纹触控信息的触摸区域面积的平均中心点和所述第二指纹触控信息的触摸区域面积的平均中心点。
  24. 根据权利要求15所述的装置,其中,所述控制模块是设置为通过如下方式对所述终端进行控制:在获取的触控信息包括所述第一指纹触控信息和所述第二指纹触控信息且所述第一指纹触控信息和所述第二指纹触控信息均包括所述触摸区域面积的情况下,根据所述第一指纹触控信息所指示的触摸区域面积的变化趋势和所述第二指纹触控信息所指示的触摸区域面积的变化趋势,对所述终端进行控制。
  25. 根据权利要求14所述的装置,所述装置还包括:
    确定模块,设置为:在根据获取的触控信息对所述终端进行控制之前,确定获取的所述触控信息满足预设条件;
    其中,所述预设条件包括以下至少之一:或去的所述触控信息包括的参数对应的取值不为0,以及获取的所述触控信息包括的接触时间在预设范围内。
  26. 根据权利要求14至25任一项所述的装置,其中,
    所述控制对应的操作包括以下至少之一:移动应用图标、控制应用界面大 小、唤醒与解锁所述终端、以及双屏拍照。
  27. 一种存储介质,所述存储介质包括存储的程序,其中,所述程序运行时执行权利要求1至13中任一项所述的方法。
  28. 一种处理器,所述处理器设置为运行程序,其中,所述程序运行时执行权利要求1至13中任一项所述的方法。
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