WO2013131327A1 - 计算机终端的控制方法、装置及系统 - Google Patents

计算机终端的控制方法、装置及系统 Download PDF

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Publication number
WO2013131327A1
WO2013131327A1 PCT/CN2012/076105 CN2012076105W WO2013131327A1 WO 2013131327 A1 WO2013131327 A1 WO 2013131327A1 CN 2012076105 W CN2012076105 W CN 2012076105W WO 2013131327 A1 WO2013131327 A1 WO 2013131327A1
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WO
WIPO (PCT)
Prior art keywords
control command
moving
computer terminal
contact
mouse
Prior art date
Application number
PCT/CN2012/076105
Other languages
English (en)
French (fr)
Inventor
赵凯
侯方西
马磊
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 EP12870476.4A priority Critical patent/EP2824551A4/en
Priority to KR1020147026293A priority patent/KR20140138189A/ko
Priority to US14/383,427 priority patent/US20150026649A1/en
Publication of WO2013131327A1 publication Critical patent/WO2013131327A1/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
    • G06F3/01Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3206Monitoring of events, devices or parameters that trigger a change in power modality
    • G06F1/3215Monitoring of peripheral devices
    • G06F1/3218Monitoring of peripheral devices of display devices
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • G06F1/325Power saving in peripheral device
    • G06F1/3265Power saving in display device
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • G06F1/3287Power saving characterised by the action undertaken by switching off individual functional units in the computer system
    • 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
    • G06F3/04883Interaction 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 for inputting data by handwriting, e.g. gesture or text
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present invention relates to the field of communications, and in particular to a method, device, and system for controlling a computer terminal.
  • Background Art As a mobile communication terminal product, it plays an increasingly important role in people's daily lives, and more and more users have mobile phones. With the continuous development of mobile phone products, in addition to basic communication functions, more and more other functions are also applied to mobile phones, such as network functions, camera functions, music playback functions, compass functions, etc. The increase enables the mobile phone to be multi-purpose and effectively improve resource utilization. On the other hand, there are more and more computer users. Adding the function of the mouse to the mobile phone can save resources and reduce the trouble of carrying a mobile phone or carrying a mouse at any time during the business trip.
  • a method for implementing a mouse function in a mobile phone of the related art connects a mouse module disposed on a touch screen mobile phone to a personal computer (Personal Computer, referred to as a PC), and loads a mouse function of the touch screen mobile phone; displaying the touch screen mobile phone;
  • the mouse input interface is displayed on the screen; the operation touch screen is combined with the action of the touch screen mobile phone to generate an operation instruction, converted into a key value of the corresponding button and the mouse cursor action, and transmitted to the PC to complete the mouse input.
  • the scheme uses an acceleration sensor to calculate the movement vector of the mouse cursor, and realizes the function of the mouse through the operation of the tilt angle of the mobile phone.
  • This method increases the cost of the acceleration sensor, and the user is inconvenient to operate due to the need of the tilt angle during operation.
  • the method adopted includes an optical finger navigation module in the baseband portion of the mobile phone, and the optical finger navigation module generates the operation of the corresponding mouse by checking the movement of the operator's finger, and the mobile phone establishes a connection with the computer to realize the function of the mouse. Under the premise of the existing structure of the mobile phone, the method adds an optical finger navigation module to judge the movement of the finger, increases the cost, and has certain limitations in technical implementation.
  • the present invention provides a method, apparatus, and system for controlling a computer terminal to solve the above problems, in view of the problem that the hand-held electronic terminal realizes a high cost of the mouse function and is inconvenient to operate as a mouse.
  • a method for controlling a computer terminal includes: detecting contact with a touch-sensitive display of a handheld electronic terminal; determining whether a contact posture of the contact matches a preset contact posture; and if so, generating and The control command corresponding to the contact gesture sends a control command to the computer terminal, and the control command is used to control the computer terminal to perform a mouse click operation and/or a mouse cursor movement operation.
  • the contact posture is a movement in an arbitrary direction while maintaining continuous contact with the touch-sensitive display; generating a control command corresponding to the contact posture includes: acquiring parameter information of the movement, wherein The parameter information includes: a moving distance and a moving direction, or a moving distance, a moving direction, and a moving speed; linearly enlarging or reducing the moving speed of the moving, or moving speed and moving distance; according to the moving direction, and linearity The moving speed or moving speed and moving distance after zooming in or out are generated to generate the control command.
  • generating a control command corresponding to the contact gesture comprising: acquiring a location area of the contact gesture on the touch-sensitive display; generating and the location area and the The control command corresponding to the contact posture.
  • generating a control command corresponding to the location area and the contact gesture comprises: if the location area is a preset first location area, generating a control command corresponding to clicking or double clicking a right mouse button; The location area is a preset second location area, and a control command corresponding to clicking or double clicking the left mouse button is generated.
  • the method further comprises: the computer terminal receiving the control command, and performing an operation corresponding to the control command.
  • the contact posture is a movement in an arbitrary direction while maintaining continuous contact with the touch screen; after transmitting the control command to the computer terminal, the method further includes: the computer terminal receiving the control command
  • the parameter information includes: a moving distance and a moving direction, or a moving distance, a moving direction, and a moving speed; linearly enlarging or reducing the moving speed of the moving, or the moving speed and the moving distance of the moving;
  • the mouse cursor is moved in accordance with the moving direction, and the linearly enlarged or reduced moving distance or moving speed and moving distance.
  • the method prior to detecting contact with the touch sensitive display of the handheld electronic terminal, the method further comprises: establishing a connection with the computer terminal.
  • a control device for a computer terminal comprising: a detecting module configured to detect contact with a touch-sensitive display of a handheld electronic terminal; and a determining module configured to determine whether a contact posture of the contact is pre- Setting the contact posture to match; generating a module, configured to generate a control command corresponding to the contact posture of the contact when the judgment result of the determination module is YES, and the generated control command is used to control the computer terminal to perform a mouse click operation and/or Mouse cursor movement operation; a sending module, configured to send the generated control command to the computer terminal.
  • the contact posture is a movement in an arbitrary direction while maintaining continuous contact with the touch-sensitive display;
  • the generating module includes: a first acquiring unit configured to acquire parameter information of the movement, wherein The parameter information includes: a moving distance and a moving direction, or a moving distance, a moving direction, and a moving speed; and a zooming unit configured to linearly enlarge or reduce the moving speed of the moving, or the moving speed and the moving distance; a generating unit configured to generate the control command according to the moving direction, and the moving speed or moving speed and moving distance after linearly zooming in or out.
  • the contact gesture is a click or a double click
  • the generating module includes: a second acquiring unit configured to acquire a location area of the contact gesture on the touch-sensitive display; and a second generating unit configured to generate The positional area and the control command corresponding to the contact posture.
  • the second generating unit generates a control command corresponding to the location area and the contact posture according to the following manner: if the location area is a preset first location area, generate and click or double-click a right mouse button Corresponding control command; if the location area is a preset second location area, generate a control command corresponding to clicking or double clicking the left mouse button.
  • the apparatus further comprises: an establishing module configured to establish a connection with the computer terminal.
  • a control system for a computer terminal including: a handheld electronic terminal, including the above apparatus provided by the present invention; a computer terminal, comprising: a receiving module, configured to receive the control command; Set to perform an operation corresponding to the control command.
  • the contact posture is a movement in an arbitrary direction while maintaining continuous contact with the touch screen;
  • the parameter information carried by the control command includes: a moving distance and a moving direction of the moving, or a moving distance, a moving direction and a moving speed;
  • the computer terminal further comprising: a zooming module, configured to linearly enlarge or reduce the moving speed of the moving, or the moving speed and the moving distance of the moving;
  • the mouse cursor is moved in accordance with the moving direction, and the linearly enlarged or reduced moving distance or moving speed and moving distance.
  • the handheld electronic terminal detects contact with the touch-sensitive display, determines that the contact contact posture matches the preset contact posture, generates a control command corresponding to the contact posture, and transmits the generated control command to the computer terminal to complete Input for mouse operation commands.
  • the control of the computer terminal by the handheld electronic terminal is realized, and the mouse function is realized by using the handheld electronic terminal without increasing the hardware cost.
  • FIG. 1 is a schematic diagram of a control system of a computer terminal according to a first embodiment of the present invention
  • FIG. 2 is a schematic diagram of a preferred control system of a computer terminal according to an embodiment of the present invention
  • FIG. 3 is a diagram of a control system according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a preferred generation module according to an embodiment of the present invention
  • FIG. 5 is a schematic diagram of another preferred generation module according to an embodiment of the present invention
  • FIG. 6 is a schematic diagram of a generation module according to the present invention
  • FIG. 7 is a flowchart of a control method of a computer terminal according to a first embodiment of the present invention
  • FIG. 8 is a schematic diagram of a principle of a circuit of a mobile phone circuit according to a second embodiment of the present invention
  • 9 is a schematic diagram of a mobile phone with a mouse function according to a second embodiment of the present invention
  • FIG. 10 is a schematic diagram of a wired connection between a mobile phone and a computer terminal according to a second embodiment of the present invention
  • FIG. 10 is a schematic diagram of a wired connection between a mobile phone and a computer terminal according to a second embodiment of the present invention
  • FIG. 10 is a schematic diagram of a wired connection between a mobile phone and a
  • FIG. 11 is a mobile phone according to a second embodiment of the present invention.
  • FIG. 12 is a mobile phone as a mouse according to a second embodiment of the present invention.
  • BEST MODE FOR CARRYING OUT THE INVENTION the present invention will be described in detail with reference to the accompanying drawings. It should be noted that the embodiments in the present application and the features in the embodiments may be combined with each other without conflict.
  • the hardware structure of the handheld electronic terminal needs to be changed, the hardware cost of the handheld electronic terminal is increased, and the implementation method in the related art is inconvenient and the user experience is low.
  • the present invention provides a method, device, and system for controlling a computer terminal.
  • the utility model does not need to increase the existing hardware cost of the handheld electronic terminal, and realizes a simple and convenient and flexible mouse operation on the handheld electronic terminal by using the touch sensitive display of the handheld electronic terminal and the universal interface.
  • Embodiment 1 According to an embodiment of the present invention, a control system for a computer terminal is provided, by which a computer terminal is controlled by a handheld electronic terminal.
  • 1 is a schematic diagram of a control system of a computer terminal according to a first embodiment of the present invention. As shown in FIG. 1, the system mainly includes: a handheld electronic terminal 10 and a computer terminal 20.
  • the handheld electronic terminal 10 is configured to detect contact with the touch sensitive display of the handheld electronic terminal; determine whether the contact contact posture matches the preset contact posture; if yes, generate a control command corresponding to the contact posture, and The terminal 20 transmits the generated control command, wherein the control command is used to control the computer terminal 20 to perform a mouse click operation and/or a mouse cursor movement operation.
  • the computer terminal 20 is arranged to receive a control command transmitted by the handheld electronic terminal 10 and to perform an operation corresponding to the control command.
  • the handheld electronic terminal detects contact with the touch-sensitive display, determines that the contact contact posture matches the preset contact posture, generates a control command corresponding to the contact posture, and transmits the generated control to the computer terminal. command.
  • the computer terminal receives the control command and performs an operation corresponding to the received control command.
  • the control of the computer terminal is realized by the handheld electronic terminal, and the mouse function is realized by using the handheld electronic terminal without increasing the hardware cost.
  • the functions of the computer terminal 20 can be implemented by the receiving module 22 and the executing module 24.
  • the receiving module 22 is configured to receive a control command sent by the handheld electronic terminal 10; the executing module 24 is coupled to the receiving module 22 and configured to perform an operation corresponding to the control command.
  • the operations performed by the execution module 24 are mainly mouse operations corresponding to the control commands, including but not limited to mouse click operations and mouse cursor movement operations.
  • the contact with the touch-sensitive display may be in any direction while maintaining continuous contact with the touch-sensitive display, thereby effecting a mouse cursor movement operation.
  • the hand-held electronic terminal 10 detects movement of the contact posture in any direction while continuing contact with the touch-sensitive display, acquires moving parameter information, and generates a control command according to the parameter information, and controls the computer terminal 20 to perform a mouse cursor movement operation.
  • the acquired parameter information may include a moving distance and a moving direction, and further, may further include a moving speed.
  • the handheld electronic terminal 10 is based on the moving distance and the moving direction (preferably, it can also be packaged) The movement speed is generated, and the generated control command is sent to the computer terminal 20.
  • the receiving module 22 of the computer terminal 20 receives the generated control command, and the trigger execution module 24 executes the mouse according to the moving direction, the moving distance and the moving speed indicated by the control command. Cursor movement operation.
  • a handheld electronic terminal as a portable electronic device (for example, a mobile phone) has a smaller display than a display of the computer terminal, has a limited moving distance on the handheld electronic terminal, and moves a certain distance on the display of the handheld electronic terminal, and the computer terminal The mouse cursor moves a small distance and requires multiple movements.
  • the handheld electronic terminal when generating a control command corresponding to the contact posture, the handheld electronic terminal first acquires the moving parameter information, and linearly processes the moving distance (may be a method or a reduction), and the handheld electronic terminal A control command is generated based on the linearly processed parameter information. Further, it is also possible to linearly process the moving speed of the movement. In another preferred embodiment of the embodiment of the invention, the parameters of the movement can be linearly processed by the computer terminal. At this time, the handheld electronic terminal detects movement in an arbitrary direction while the contact posture is in continuous contact with the touch-sensitive display, acquires moving parameter information, generates a control command according to the acquired parameter information, and transmits the generated command to the computer device. control commands.
  • the receiving module 22 of the computer terminal 20 receives the control command sent by the handheld electronic terminal, linearly processes the movement parameter in the control command, and executes the mouse cursor movement operation according to the linearly processed parameter. Therefore, in a preferred embodiment of the embodiment of the present invention, the parameter information carried by the control command received by the receiving module 22 of the computer terminal 20 includes: a moving distance and a moving direction, or a moving distance, a moving direction, and a moving speed. In order to perform linear processing on the moving parameters, as shown in FIG. 2, the computer terminal 20 may further include: a scaling module 26 coupled to the receiving module 22, configured to perform a moving speed of the moving, or a moving speed and a moving distance of the moving Zoom in or out linearly.
  • the execution module 24, coupled with the zoom module 26, is further configured to move the mouse cursor in accordance with the moving direction of the movement, and the linearly enlarged or reduced moving distance or moving speed and moving distance.
  • the handheld electronic terminal or computer terminal can linearly amplify the moving parameters according to the proportional relationship of the display.
  • the size of the display of the handheld electronic terminal is 1/5 of the size of the display of the computer terminal, and the handheld electronic terminal 10 or the computer terminal 20 can magnify the moving distance by 5 times, that is, if the movement is 1 cm on the touch-sensitive display, then the computer The mouse cursor of terminal 20 will move 5 cm on the computer terminal.
  • the contact gesture in order to implement a key operation of the mouse, the contact gesture may be a click or a double click, and when the control command corresponding to the contact gesture is generated, the handheld electronic terminal acquires the contact. The position of the contact gesture on the touch-sensitive display is generated and a control command corresponding to the location area and the contact gesture is generated.
  • the control command corresponding to the contact posture and the location area may be generated in the following manner: if the location area is the preset first location area, generating a control command corresponding to clicking or double clicking the right mouse button; if the location area is a preset The second location area generates a control command corresponding to clicking or double clicking the left mouse button.
  • the execution module 24 of the computer terminal 20 can perform a corresponding mouse click operation according to the control command.
  • the connection may be established with the computer terminal 20 through the Bluetooth module of the handheld electronic terminal 10 or a Universal Serial Bus (USB) interface.
  • USB Universal Serial Bus
  • the driver of the handheld electronic terminal 10 is initialized in the computer terminal 20, and the touch-sensitive display of the handheld electronic terminal 10 is set as a touch control panel, and the user can be on the touch control panel.
  • Complete control of the computer terminal Preferably, during the operation of the handheld electronic terminal as a mouse, the display of the display screen is not required, and therefore, the touch sensitive display can be in a black screen state to reduce the power consumption of the handheld electronic terminal, and the standby use of the handheld electronic terminal can be better improved. time.
  • a control device for a computer terminal is provided, which can be located in the handheld electronic terminal 10 provided by the above embodiment of the present invention to implement control of the computer terminal.
  • the apparatus mainly includes: a detection module 12, a determination module 14, a generation module 16, and a transmission module 18.
  • the detecting module 12 is configured to detect contact with the touch sensitive display of the handheld electronic terminal;
  • the determining module 14 is coupled to the detecting module 12, and is configured to determine whether the contact posture of the contact matches the preset contact posture;
  • the generating module 16 And being coupled to the judging module 14, configured to generate a control command corresponding to the contact posture of the contact when the judgment result of the judging module 14 is YES, and the generated control command is used to control the computer terminal to perform a mouse click operation and/or The mouse cursor movement operation;
  • the transmitting module 18, coupled to the generation module 16, is configured to send the generated control command to the computer terminal.
  • the detecting module 12 in the handheld electronic terminal detects contact with the touch-sensitive display, and the determining module 14 determines that the contact posture of the contact matches the preset contact posture, and the generating module 16 generates a control corresponding to the contact posture.
  • the command is sent by the sending module 18 to the computer terminal to complete the input of the mouse operation command.
  • the control of the computer terminal by the handheld electronic terminal is realized, and the mouse function is realized by using the handheld electronic terminal without increasing the hardware cost.
  • the parameters of the movement can be linearly processed by the computer terminal. In the apparatus shown in FIG.
  • the detecting module 12 detects movement in an arbitrary direction while the contact posture is in continuous contact with the touch-sensitive display, and the generating module 16 acquires the moved parameter information according to the acquired
  • the parameter information generates a control command and sends the generated control command to the computer device.
  • the receiving module 22 of the computer terminal 20 receives the control command sent by the handheld electronic terminal, the scaling module 26 linearly processes the movement parameters in the control command, and the execution module 24 performs the mouse cursor movement operation in accordance with the linearly processed parameters.
  • the parameter information of the mobile device may be linearly processed by the handheld electronic terminal and then sent to the computer terminal. For example, it can be executed by the generating module 16, as shown in FIG.
  • the generating module 16 mainly includes: a first obtaining unit 162, configured to acquire parameter information of the moving, the parameter information mainly includes: a distance and a moving direction, or a moving distance, a moving direction, and a moving speed; the scaling unit 164 is coupled to the first acquiring unit 162, and is configured to linearly enlarge or reduce the moving speed of the moving, or the moving speed and the moving distance; A generating unit 166, coupled to the scaling unit 164, is configured to generate the control command according to the moving direction, and the linearly enlarged or reduced moving speed or moving speed and moving distance.
  • the handheld electronic terminal is prevented from being small as a portable electronic device, the moving distance on the handheld electronic terminal is limited, and a certain distance is moved on the display of the handheld electronic terminal, and the mouse cursor movement distance of the computer terminal is small. , causing problems that require multiple mobile operations, improving the user experience.
  • the contact posture of the contact with the touch-sensitive display may also be a click or a double click. Therefore, in another preferred embodiment of the embodiment of the present invention, the generating module 16 may also adopt the structure as shown in FIG. As shown in FIG.
  • the generating module 16 mainly includes: a second acquiring unit 168, configured to acquire a positional area of the contact contact posture on the touch-sensitive display; the second generating unit 1610, and the The second acquisition unit 168 is coupled to be configured to generate a control command corresponding to the contact gesture and the acquired location region.
  • the second generating unit 1610 generates a control command corresponding to the contact posture and the location area according to the following manner: if the location area is the preset first location area, generating a control command corresponding to clicking or double clicking the right mouse button; The location area is a preset second location area, and generates a control command corresponding to clicking or double clicking the left mouse button.
  • the entire operation area of the touch-sensitive display can be divided into two left and right symmetrical areas, and the right half area (first position area) is set as the right mouse button area and the left half area (the first half area) The two-position area is set to the left mouse button area.
  • the second generating unit 1610 can determine whether the left/right click or the double click input operation is performed according to the click area. Specifically, if the location area is the right half area, a control command corresponding to clicking or double clicking the right mouse button is generated; if the location area is the left half area, a control command corresponding to clicking or double clicking the left mouse button is generated.
  • FIG. 6 is a schematic diagram of a preferred control device for a computer terminal according to an embodiment of the present invention.
  • the device may further include: an establishing module 110 configured to establish a connection with the computer terminal.
  • the connection between the handheld electronic terminal and the computer terminal can be established by wire or wirelessly.
  • a wireless connection is established between the Bluetooth module of the handheld electronic terminal and the computer terminal, and the handheld electronic terminal interacts with the computer terminal in a wireless manner via Bluetooth to complete the input of the mouse operation command.
  • FIG. 7 is a flowchart of a method for controlling a computer terminal according to the first embodiment of the present invention. As shown in FIG. 7, the method may include the following steps (step S702-step S706): Step S702, detecting a handheld electronic terminal Touch of the touch sensitive display.
  • Step S704 determining whether the contact posture of the contact matches the preset contact posture.
  • Step S706 if yes, generating a control command corresponding to the contact gesture, and transmitting a control command to the computer terminal, the control command for controlling the computer terminal to perform a mouse click operation and/or a mouse cursor movement operation.
  • the handheld electronic terminal detects the contact with the touch-sensitive display, determines that the contact contact posture matches the preset contact posture, generates a control command corresponding to the contact posture, and sends the generated control command to the computer terminal. , complete the input of the mouse operation command.
  • the control of the computer terminal by the handheld electronic terminal is realized, and the mouse function is realized by using the handheld electronic terminal without increasing the hardware cost.
  • the connection may be established with the computer terminal through the Bluetooth module or the USB interface of the handheld electronic terminal.
  • the driver of the handheld electronic terminal is initialized in the computer terminal, and the touch sensitive display of the handheld electronic terminal is set as a touch control panel, and the user can complete the computer terminal on the touch control panel. control.
  • the display of the display screen is not required, so the touch sensitive display can be in a black screen state to reduce the power consumption of the handheld electronic terminal, and the standby use time of the handheld electronic terminal can be better improved. .
  • the control of the computer terminal by the handheld electronic terminal mainly includes controlling the mouse operation of the computer terminal, and the mouse operation may be a click operation (click, double click) of the mouse, and a movement operation of the mouse cursor.
  • the contact with the touch-sensitive display can be in any direction while maintaining continuous contact with the touch-sensitive display, thereby effecting a mouse cursor movement operation.
  • the handheld electronic terminal detects the contact posture as a continuous contact with the touch-sensitive display while moving in any direction, acquiring the moving parameter information, and rooting According to the parameter information generation control command, the control computer terminal performs a mouse cursor movement operation.
  • the obtained parameter information may include a moving distance and a moving direction, and further, may further include a moving speed.
  • the handheld electronic terminal generates a control command according to the moving distance and the moving direction (preferably, also includes the moving speed), and transmits the generated control command to the computer terminal, and the computer terminal receives the generated control command, and according to the moving direction indicated by the control command,
  • the moving distance and the moving speed perform a mouse cursor movement operation.
  • a handheld electronic terminal as a portable electronic device (for example, a mobile phone) has a smaller display than a display of the computer terminal, has a limited moving distance on the handheld electronic terminal, and moves a certain distance on the display of the handheld electronic terminal, and the computer terminal
  • the mouse cursor moves a small distance and requires multiple movements.
  • the handheld electronic terminal when generating a control command corresponding to the contact posture, the handheld electronic terminal first acquires the moving parameter information, and linearly processes the moving distance (may be a method or a reduction), and the handheld electronic terminal A control command is generated based on the linearly processed parameter information. Further, it is also possible to linearly process the moving speed of the movement.
  • the touch screen of the mobile phone can be set in two directions of X-axis and Y-axis, and the movement of the finger in the X-axis direction on the touch screen is mapped to the display of the computer terminal, that is, the mouse is on the computer terminal.
  • the movement of the finger on the touch screen in the Y-axis direction is mapped to the computer terminal display screen, which is the vertical movement of the mouse on the computer terminal; and so on, the movement of the different angles of the mobile phone touch screen is realized to achieve the display of the computer terminal.
  • the parameters of the movement can be linearly processed by the computer terminal.
  • the handheld electronic terminal detects movement in an arbitrary direction while the contact posture is in continuous contact with the touch-sensitive display, acquires moving parameter information, generates a control command according to the acquired parameter information, and transmits the generated command to the computer device. control commands.
  • the computer terminal receives the control command sent by the handheld electronic terminal, linearly processes the movement parameter in the control command, and performs a mouse cursor movement operation according to the linearly processed parameter.
  • the handheld electronic terminal or computer terminal can linearly amplify the moving parameters according to the proportional relationship of the display.
  • the size of the display of the handheld electronic terminal is 1/4 of the size of the display of the computer terminal, and the handheld electronic terminal or the computer terminal can enlarge the moving distance of the mobile device by 4 times, that is, if the movement is 1 cm on the touch-sensitive display, then the computer terminal The mouse cursor will move 4 cm on the computer terminal.
  • the contact gesture may be a click or a double click.
  • the handheld electronic terminal acquires the contact posture of the contact. Sensing the location area on the display and generating control commands corresponding to the location area and the contact gesture.
  • the control command corresponding to the contact posture and the location area may be generated in the following manner: if the location area is the preset first location area, generating a control command corresponding to clicking or double clicking the right mouse button; if the location area is a preset
  • the second location area generates a control command corresponding to clicking or double clicking the left mouse button.
  • the computer terminal can perform a corresponding mouse click operation according to the control command.
  • the entire operation area of the touch-sensitive display can be divided into two left and right symmetrical areas, and the right half area (first position area) is set as the right mouse button area and the left half area.
  • the handheld electronic terminal can judge whether the mouse left button or the right button click/double click input operation is performed according to the click region. Specifically, if the location area is the right half area, a control command corresponding to clicking or double clicking the right mouse button is generated; if the location area is the left half area, a control command corresponding to clicking or double clicking the left mouse button is generated.
  • Embodiment 2 In the embodiment of the present invention, a mobile phone as an example is used to describe a control scheme of the computer terminal of the present invention.
  • a method for controlling a computer terminal which does not need to increase the existing hardware cost of the mobile phone, and only utilizes several basic common modules in the current smart phone, and uses the USB interface or the Bluetooth function to A wired or wireless connection is established between the computer terminals to realize the function of the mobile phone as a computer terminal wired mouse or a wireless mouse.
  • the solution of the embodiment of the invention is simple and convenient to operate, flexible in control, and greatly improves the user experience of the mobile phone.
  • the mobile phone implementing the mouse function has a touch display screen (i.e., a touch sensitive display), a USB interface, or a Bluetooth function in the current universal mobile phone.
  • the driver of the mobile phone is initialized in the computer terminal, and the touch display screen of the mobile phone is set as a touch control panel.
  • a corresponding mouse cursor movement correspondence is formed between the length and width directions of the touch control panel and the display screen of the computer.
  • the computer terminal transfersred to the computer terminal, the computer terminal converts the received related data and control commands accordingly, converts the mobile control command into a cursor movement instruction, and moves the corresponding moving distance, moving direction,
  • the movement speed is converted into the movement of the mouse cursor in the display of the computer terminal, thereby realizing the movement of the touch medium on the touch screen of the mobile phone to the movement of the cursor in the display of the computer terminal.
  • the linear correspondence is that the mouse cursor in the display screen of the computer terminal also moves laterally when the touch medium is moved laterally on the touch screen of the mobile phone, and the vertical movement of the touch medium on the touch screen of the mobile phone is performed.
  • the mouse cursor in the display of the computer terminal also performs the corresponding vertical movement, and so on to achieve the movement of the touch medium at any angle, any length and different speed on the touch screen can be linearly converted on the display of the computer terminal, realizing
  • the touch medium operates the mobile phone to realize the function of moving the mouse cursor in the display of the computer terminal.
  • the entire operation area of the touch screen of the mobile phone can be divided into two left and right symmetrical areas by software to realize the division of the left and right key click areas.
  • the left half area is set as the left mouse button area, and the finger click/double click on the area mobile phone can determine that the click occurs in the left half of the entire touch screen according to the coordinate position of the click area, and the mouse is left.
  • Click/double-click input operation of the key the mobile phone will transfer the corresponding left-click/double-click operation control command to the computer terminal through wired or wireless mode, and the computer terminal receives the corresponding command and then controls the mouse on the display screen to do the left.
  • Key click/double-click operation to achieve a click or double-click operation on the computer terminal mouse.
  • the right half of the touch screen of the mobile phone is set as the right button area, that is, clicking on the area according to the relative position of the input point determines that the click operation occurs in the right half of the entire touch screen, and the click is determined to be a right click operation of the mouse. Then, the mobile phone transmits the corresponding right-click operation control command to the computer terminal, and the computer terminal converts the command to control the right mouse button operation on the display screen thereof, thereby realizing the operation of the right button of the computer terminal.
  • the mobile phone and the computer terminal establish a wired or wireless mouse connection, and the finger movement operation of the touch screen of the mobile phone and the click control of the left and right area are converted into input of the left and right key commands of the mouse pointer on the display screen of the computer terminal.
  • the function of the mobile phone as a computer terminal mouse is realized. Since the operation of the mouse for implementing the mouse function in the embodiment of the present invention does not depend on the requirement of placing the plane with the universal mouse, the space has a large degree of freedom, and the human-computer interaction is more friendly. It meets certain ergonomics and operating habits. It is highly sensitive and easy to operate as a mouse. It increases the user experience of the mobile phone and enriches the application field of the mobile phone.
  • FIG. 8 is a schematic diagram of a composition principle of a mobile phone circuit according to Embodiment 2 of the present invention.
  • the mobile phone shown in FIG. 8 has a general mobile phone structure.
  • the CPU main control unit realizes the operation control of the main control part of the mobile phone; the radio frequency (Radio Frequency, referred to as RF) part and the RF antenna part realize the function of transmitting and receiving radio frequency signals, and realize the functions of the radio frequency circuit such as the voice communication and the data communication of the mobile phone;
  • the main control program or each record file is placed in the memory unit;
  • the lithium battery module is a power supply source when the mobile phone is working, and is set to supply power to the entire mobile phone;
  • the USB interface is set to charge the mobile phone, download the program or provide a physical interface of the USB, in the present
  • a wired connection may be set up to establish a mouse function with the computer terminal.
  • the Bluetooth module is configured to establish a Bluetooth connection with other Bluetooth devices.
  • a wireless Bluetooth connection may be established with the computer terminal to implement the mobile phone.
  • the wireless control link physical layer of the mouse.
  • the touch screen Liquid Crystal Display, abbreviated as LCD
  • the universal touch screen of the mobile phone is the main interface of the information input of the mobile phone.
  • the touch medium is touched and moved on the touch screen to implement the mouse cursor on the display screen of the corresponding computer terminal.
  • the mobile input operation at the same time, set the touch screen of the mobile phone to the left and right control areas to realize the division of the left key area and the right key area, and click or double-click the corresponding area to achieve the operation of clicking the left and right keys of the mouse.
  • 9 is a schematic diagram of a mobile phone with a mouse function according to a second embodiment of the present invention.
  • the touch screen 303 is located on the mobile phone 30, and 301 is a receiver opening of the mobile phone, and is used for voice communication of the mobile phone. The listener accepts the voice.
  • the mobile phone switch machine and other function buttons 304 are located under the touch screen or other parts; the USB port 302 on the casing is connected with the USB signal of the internal motherboard of the mobile phone, and realizes the USB connection function, the program download function and the charging interface function of the mobile phone.
  • 10 is a schematic diagram of a wired connection between a mobile phone and a computer terminal according to a second embodiment of the present invention. As shown in FIG. 10, when the mobile phone 30 is used as a mouse application, the USB interface 402 of the computer terminal 40 and the USB interface 302 of the mobile phone can be passed through the USB. Line 401 establishes a wired connection that provides a wired physical link when the handset is used as a mouse control computer terminal.
  • FIG. 11 is a schematic diagram of a wireless connection between a mobile phone and a computer terminal according to Embodiment 2 of the present invention.
  • a Bluetooth connection is established through a Bluetooth module of the mobile phone and a Bluetooth unit of the computer terminal, and a Bluetooth wireless link between the computer terminal and the mobile phone is established.
  • a wireless control link is provided for the operation of the handset as a computer terminal mouse.
  • the Bluetooth unit of the computer terminal may be a Bluetooth function module inside the computer terminal or an external Bluetooth adapter.
  • FIG. 12 is a flow chart of the mobile phone as a mouse according to the second embodiment of the present invention. As shown in FIG. 12, the mobile phone is normally used as its basic function, and is in a standby mode or a communication mode.
  • the mobile phone When applying its mouse function, first determine whether it is wired or wireless. If it is a wired connection, connect the mobile phone to the computer terminal through the USB cable. The mobile phone enters the wired mouse mode through the menu, and the CPU inside the mobile phone. The main control unit performs the corresponding driving operation, controls the mobile phone to enter the mouse operation mode and performs wired USB signal transmission, and the mouse operation After the completion, the USB cable can be pulled out to exit the mouse operation; if it is a wireless connection, the Bluetooth function of the mobile phone and the Bluetooth function of the computer terminal are turned on, the Bluetooth connection of the mobile phone and the computer terminal is established, and the mobile phone enters the wireless mouse mode through the menu.
  • the CPU main control unit inside the mobile phone performs the corresponding driving operation, controls the mobile phone to enter the mouse operation mode and performs wireless mouse signal transmission, and turns off the Bluetooth to exit the mouse mode when the mouse operation is completed.
  • the mobile phone RF unit part and the internal control link are not affected, so the mobile phone can receive the phone, short message, etc. in real time, without affecting its normal operation.
  • the display of the mobile phone display screen is not required, so the LCD can be completely turned off the black screen state, effectively reducing the power consumption, and better improving the standby operation time of the entire mobile phone.
  • the mobile phone and the computer terminal establish a wired or wireless connection, and the mobile phone user's menu confirmation completes the loading of the mobile phone driver and the initialization of the computer terminal, so that the mobile phone enters the mouse function mode and can perform the corresponding computer terminal.
  • the software for mouse cursor operation is loaded. After the mobile phone enters the mouse function mode, after the software of the mouse function is loaded, the human finger moves on the touch screen 303, and the moving speed, moving direction and moving distance of the finger are recorded and processed by the CPU main control unit inside the mobile phone through the touch screen.
  • the mobile phone sends the corresponding mobile data and the information with the mobile control command to the computer terminal by means of wired or Bluetooth wireless, and the computer terminal receives all the data after moving the data of the moving speed, the moving direction and the moving distance.
  • the information is linearly transformed and the mouse cursor on the display screen is operated according to the received movement control command to perform corresponding movement, thereby realizing the movement operation of the mouse of the computer terminal.
  • the touch screen of the mobile phone can be set in two directions of X-axis and Y-axis, and the movement of the finger in the X-axis direction on the touch screen is mapped to the display of the computer terminal, that is, the mouse is on the computer terminal.
  • the lateral movement, the movement of the finger in the Y-axis direction on the touch screen is mapped to the display of the computer terminal, that is, the vertical movement of the mouse on the computer terminal; and so on, the movement of different angles on the touch screen of the mobile phone is realized to achieve display on the computer terminal.
  • the touch screen 303 of the mobile phone is divided into two left and right areas, and the two areas are symmetrically arranged, and the left half of the screen area is set to be a left key area, that is, a finger click or double click
  • the internal CPU control unit of the mobile phone determines that the coordinates of the click/double-click operation occur in the left half of the entire touch screen, and then the mobile phone sends a click/double-click corresponding control command to the left button.
  • the computer terminal After receiving the corresponding control command, the computer terminal performs a corresponding left-click/double-click operation on the mouse, so that the mouse in the computer terminal is realized by clicking/double-clicking on the left half of the touch screen.
  • Left click/double click operation The right half screen is used to set the right button area. Clicking on the area, the internal CPU control unit of the mobile phone determines that the coordinates of the click operation occur in the right half of the entire touch screen, and then the mobile phone sends the right control command to the computer terminal.
  • the computer terminal receives the command, To control the operation command of the right mouse by executing the mouse, the right click operation of the mouse in the computer terminal is realized by clicking operation on the right half of the touch screen of the mobile phone.
  • a wireless or USB wired connection between the mobile phone and the computer terminal is realized, and the mobile phone enters the mouse mode, and the corresponding mouse control command can be sent to the computer terminal to implement the operation of the mouse cursor in the computer terminal.
  • the moving distance and moving speed of the finger on the X-axis and Y-axis directions on the touch screen are mapped to the horizontal or vertical movement in the display screen of the computer terminal through the corresponding linear transformation, and the transformation movement of other directions or angles can also be Map to the computer terminal display to realize the movement of the mouse cursor; set the left and right screen areas of the mobile phone to the left button area and the right button area respectively, click the left half screen mobile phone to issue a left button operation to the computer terminal, and click the right click area mobile phone to the computer
  • the terminal issues a right-click operation command, so that the mobile phone can control the movement and click operation of the mouse pointer on the screen of the computer terminal as a mouse operation, and achieve the function of the mouse.
  • the mobile phone with the mouse function is simple and practical when used as a mouse function, and does not increase the hardware cost of the existing mobile phone.
  • the mobile phone does not depend on the placement position of the operation plane, and has great spatial freedom. It effectively improves the user's experience. As another user experience in the process of using the mobile phone, it is of great market application value to enrich the user's usage scenario.
  • the handheld electronic terminal detects contact with the touch-sensitive display, determines that the contact contact posture matches the preset contact posture, and generates a correspondence corresponding to the contact posture.
  • the command is controlled, and the generated control command is sent to the computer terminal to complete the input of the mouse operation command.
  • the control of the computer terminal by the handheld electronic terminal is realized, and the mouse function is realized by using the handheld electronic terminal without increasing the hardware cost.
  • the operation of the mouse function is implemented in the embodiment of the present invention.
  • the placement of the handheld electronic terminal does not depend on the requirement of placing the plane with the universal mouse, and has great spatial freedom, human-computer interaction is more friendly, and meets certain ergonomics and Operating habits, high sensitivity and simple operation when used as a mouse, adding another user experience of the handheld electronic terminal, enriching the application scenario of the handheld electronic terminal.
  • a general-purpose computing device which can be concentrated on a single computing device or distributed over a network composed of multiple computing devices.
  • they may be implemented by program code executable by the computing device, such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.

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Abstract

本发明公开了一种计算机终端的控制方法、装置及系统。其中,该方法包括:检测与手持电子终端的触敏显示器的接触;判断接触的接触姿态是否与预设接触姿态相匹配;如果是,生成与接触姿态对应的控制命令,向计算机终端发送控制命令,该控制命令用于控制计算机终端执行鼠标点击操作和/或鼠标光标移动操作。通过本发明,在不增加硬件成本的条件下,利用手持电子终端实现了鼠标功能,提高了手持电子终端的用户体验。

Description

计算机终端的控制方法、 装置及系统 技术领域 本发明涉及通信领域, 具体而言, 涉及一种计算机终端的控制方法、装置及系统。 背景技术 作为一种移动通讯终端产品, 在人们的日常生活中发挥着越来越大的作用, 拥有 手机的用户也越来越多。 随着手机产品的不断推陈出新, 手机除了具有基本的通讯功 能外, 越来越多的其他功能也应用在了手机上, 如上网功能、 摄像功能、 音乐播放功 能、 指南针功能等, 这些附加功能的增加使得手机能够一机多用, 有效的提高资源利 用。 另一方面, 电脑用户也越来越多, 那么将手机增加鼠标的功能, 可以节省资源, 减少出差携带或者移动办公随时携带鼠标的麻烦, 方便电脑用户的日常办公特别是移 动办公需要, 并且增加手机用户的用户体验。 目前, 相关技术中已有将鼠标与手机二者功能结合一体的解决方案。 例如, 相关 技术中的一种手机实现鼠标功能的方法, 将设置在触摸屏手机上的鼠标模块连接到个 人电脑 (Personal Computer, 简称为 PC) 上, 加载触摸屏手机的鼠标功能; 在触摸屏 手机的显示屏上显示出鼠标输入界面; 操作触摸屏结合触摸屏手机的动作生成操作指 令, 转换成相应按键以及鼠标光标动作的键值, 传输至所述 PC机完成鼠标输入。 该 方案采用了加速度传感器来计算鼠标光标的移动矢量, 并通过手机的倾斜角度的操作 以综合实现鼠标的功能, 该方法增加了加速度传感器的成本, 并且由于操作中需要倾 斜角度, 用户实际操作不便。 在另一种方案中, 所采用的方法是在手机基带部分包括一个光学手指导航模块, 光学手指导航模块通过检查操作者手指移动而产生相应鼠标的操作, 手机与电脑建立 连接从而实现鼠标的功能, 该方法在手机现有构造的前提下, 加入了光学手指导航模 块来对手指的移动做判断, 增加了成本, 并在技术实现有一定局限性。 针对相关技术中手持电子终端实现鼠标功能成本高且作为鼠标时操作不便的问 题, 目前尚未提出有效的解决方案。 发明内容 针对手持电子终端实现鼠标功能成本高且作为鼠标时操作不便的问题, 本发明提 供了一种计算机终端的控制方法、 装置及系统, 以至少解决上述问题。 根据本发明的一个方面, 提供了一种计算机终端的控制方法, 包括: 检测与手持 电子终端的触敏显示器的接触; 判断接触的接触姿态是否与预设接触姿态相匹配; 如 果是, 生成与接触姿态对应的控制命令, 向计算机终端发送控制命令, 该控制命令用 于控制计算机终端执行鼠标点击操作和 /或鼠标光标移动操作。 优选地, 所述接触姿态为在保持与所述触敏显示器的持续接触的同时沿任意方向 的移动; 生成与所述接触姿态对应的控制命令包括: 获取所述移动的参数信息, 其中, 所述参数信息包括: 移动距离和移动方向, 或者, 移动距离、 移动方向和移动速度; 对所述移动的移动速度, 或者移动速度和移动距离进行线性放大或缩小; 根据所述移 动方向, 以及线性放大或缩小后的所述移动速度或者移动速度和移动距离, 生成所述 控制命令。 优选地, 所述接触姿态为单击或双击时, 生成与接触姿态对应的控制命令, 包括: 获取所述接触姿态在所述触敏显示器上的位置区域; 生成与所述位置区域和所述接触 姿态对应的控制命令。 优选地, 生成与所述位置区域和所述接触姿态对应的控制命令, 包括: 如果所述 位置区域为预设的第一位置区域, 生成与单击或双击鼠标右键对应的控制命令; 如果 所述位置区域为预设的第二位置区域, 生成与单击或双击鼠标左键对应的控制命令。 优选地, 向计算机终端发送所述控制命令之后, 所述方法还包括: 所述计算机终 端接收所述控制命令, 执行与所述控制命令对应的操作。 优选地, 所述接触姿态为在保持与所述触摸屏的持续接触的同时沿任意方向的移 动; 向计算机终端发送所述控制命令之后, 所述方法还包括: 所述计算机终端接收所 述控制命令, 其中, 所述参数信息包括: 移动距离和移动方向, 或者, 移动距离、 移 动方向和移动速度; 对所述移动的移动速度, 或者所述移动的移动速度和移动距离进 行线性放大或缩小; 按照所述移动方向, 以及线性放大或缩小后的移动距离或者移动 速度和移动距离移动所述鼠标光标。 优选地, 检测与手持电子终端的触敏显示器的接触之前, 所述方法还包括: 建立 与所述计算机终端的连接。 根据本发明的另一方面, 提供了一种计算机终端的控制装置, 包括: 检测模块, 设置为检测与手持电子终端的触敏显示器的接触; 判断模块, 设置为判断接触的接触 姿态是否与预设接触姿态相匹配; 生成模块, 设置为在判断模块的判断结果为是的情 况下, 生成与接触的接触姿态对应的控制命令, 生成的控制命令用于控制计算机终端 执行鼠标点击操作和 /或鼠标光标移动操作; 发送模块, 设置为向计算机终端发送生成 的控制命令。 优选地, 所述接触姿态为在保持与所述触敏显示器的持续接触的同时沿任意方向 的移动; 所述生成模块, 包括: 第一获取单元, 设置为获取所述移动的参数信息, 其 中, 所述参数信息包括: 移动距离和移动方向, 或者, 移动距离、 移动方向和移动速 度; 缩放单元, 设置为对所述移动的移动速度, 或者移动速度和移动距离进行线性放 大或缩小; 第一生成单元, 设置为根据所述移动方向, 以及线性放大或缩小后的所述 移动速度或者移动速度和移动距离, 生成所述控制命令。 优选地, 所述接触姿态为单击或双击, 所述生成模块包括: 第二获取单元, 设置 为获取所述接触姿态在所述触敏显示器上的位置区域; 第二生成单元, 设置为生成所 述位置区域和所述接触姿态对应的控制命令。 优选地, 所述第二生成单元, 按照以下方式生成所述位置区域和所述接触姿态对 应的控制命令: 如果所述位置区域为预设的第一位置区域, 生成与单击或双击鼠标右 键对应的控制命令; 如果所述位置区域为预设的第二位置区域, 生成与单击或双击鼠 标左键对应的控制命令。 优选地, 所述装置还包括: 建立模块, 设置为建立与所述计算机终端的连接。 根据本发明的又一个方面, 提供了一种计算机终端的控制系统, 包括: 手持电子 终端, 包括本发明提供的上述装置; 计算机终端, 包括: 接收模块, 设置为接收所述 控制命令; 执行模块, 设置为执行与所述控制命令对应的操作。 优选地, 所述接触姿态为在保持与所述触摸屏的持续接触的同时沿任意方向的移 动; 所述控制命令携带的参数信息包括: 所述移动的移动距离和移动方向, 或者, 移 动距离、 移动方向和移动速度; 所述计算机终端, 还包括: 缩放模块, 设置为对所述 移动的移动速度, 或者所述移动的移动速度和移动距离进行线性放大或缩小; 所述执 行模块, 还设置为按照所述移动方向, 以及线性放大或缩小后的移动距离或者移动速 度和移动距离移动所述鼠标光标。 通过本发明, 手持电子终端检测与触敏显示器的接触, 判断接触的接触姿态与预 设接触姿态相匹配, 则生成与该接触姿态对应的控制命令, 并向计算机终端发送生成 的控制命令, 完成鼠标操作命令的输入。 从而实现了通过手持电子终端对计算机终端 的控制, 在不增加硬件成本的条件下, 利用手持电子终端实现了鼠标功能。 附图说明 此处所说明的附图用来提供对本发明的进一步理解, 构成本申请的一部分, 本发 明的示意性实施例及其说明用于解释本发明, 并不构成对本发明的不当限定。 在附图 中: 图 1是根据本发明实施例一的计算机终端的控制系统的示意图; 图 2是根据本发明实施例一优选的计算机终端的控制系统的示意图; 图 3是根据本发明实施例一的计算机终端的控制装置的示意图; 图 4是根据本发明实施例一优选的生成模块的示意图; 图 5是根据本发明实施例一另一优选的生成模块的示意图; 图 6是根据本发明实施例一又一优选的计算机终端的控制装置的示意图; 图 7是根据本发明实施例一的计算机终端的控制方法的流程图; 图 8是根据本发明实施例二的手机电路组成原理的示意图; 图 9是根据本发明实施例二的具有鼠标功能的手机的示意图; 图 10是根据本发明实施例二的手机与计算机终端有线连接的示意图; 图 11是根据本发明实施例二的手机与计算机终端无线连接的示意图; 以及 图 12是根据本发明实施例二的手机作为鼠标时的流程图。 具体实施方式 下文中将参考附图并结合实施例来详细说明本发明。 需要说明的是, 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。 针对相关技术中, 在手持电子终端上实现鼠标功能控制计算机终端时, 需要改变 手持电子终端的硬件结构, 增加手持电子终端的硬件成本, 且相关技术中的实现方法 操作不便、 用户体验较低的问题, 本发明实施例提供了一种计算机终端的控制方法、 装置及系统。 无需增加手持电子终端现有的硬件成本, 利用手持电子终端的触敏显示 器及通用接口, 在手持电子终端上实现了简单方便、 控制灵活的鼠标操作。 实施例一 根据本发明实施例, 提供了一种计算机终端的控制系统, 通过该系统实现了利用 手持电子终端控制计算机终端。 图 1是根据本发明实施例一的计算机终端的控制系统的示意图, 如图 1所示, 该 系统主要包括: 手持电子终端 10和计算机终端 20。 其中, 手持电子终端 10, 设置为 检测与手持电子终端的触敏显示器的接触; 判断接触的接触姿态是否与预设接触姿态 相匹配; 如果是, 生成与接触姿态对应的控制命令, 并向计算机终端 20发送生成的控 制命令, 其中, 该控制命令用于控制计算机终端 20执行鼠标点击操作和 /或鼠标光标 移动操作。 计算机终端 20, 设置为接收手持电子终端 10发送的控制命令, 并执行与 该控制命令对应的操作。 通过本发明是实施例, 手持电子终端检测与触敏显示器的接触, 判断接触的接触 姿态与预设接触姿态相匹配, 则生成与该接触姿态对应的控制命令, 并向计算机终端 发送生成的控制命令。 计算机终端接收控制命令, 并执行与接收到得控制命令对应的 操作。 通过手持电子终端实现了对计算机终端的控制, 在不增加硬件成本的条件下, 利用手持电子终端实现了鼠标功能。 在本发明实施例中, 如图 1所示, 可以通过接收模块 22和执行模块 24实现计算 机终端 20的功能。其中,接收模块 22,设置为接收手持电子终端 10发送的控制命令; 执行模块 24, 与接收模块 22相耦合, 设置为执行与该控制命令对应的操作。 执行模 块 24所执行的操作主要是控制命令所对应的鼠标操作,该鼠标操作包括但不限于鼠标 点击操作以及鼠标光标移动操作。 在本发明实施例的一个优选实施方式中, 与触敏显示器的接触可以是在保持与触 敏显示器的持续接触的同时沿任意方向的移动, 从而实现鼠标光标移动操作。 手持电 子终端 10检测到接触姿态为与触敏显示器的持续接触的同时沿任意方向的移动,获取 移动的参数信息, 并根据该参数信息生成控制命令,控制计算机终端 20执行鼠标光标 移动操作。 优选地, 获取到的参数信息可以包括移动距离和移动方向, 进一步的, 还 可以包括移动速度。手持电子终端 10根据移动距离和移动方向(优选地, 还可以包栝 移动速度) 生成控制命令, 并向计算机终端 20发送生成的控制命令, 计算机终端 20 的接收模块 22接收生成的控制命令,触发执行模块 24按照控制命令指示的移动方向、 移动距离及移动速度执行鼠标光标移动操作。 手持电子终端作为便携式电子设备(例如, 手机), 与计算机终端的显示器相比其 显示器较小, 在手持电子终端上的移动距离有限, 在手持电子终端的显示器上移动一 定距离, 而计算机终端的鼠标光标移动距离较小, 需要多次进行移动操作。 在本发明 实施例的一个优选实施方式中, 生成与接触姿态对应的控制命令时, 手持电子终端先 获取移动的参数信息, 并对移动距离进行线性处理(可以是方法或缩小), 手持电子终 端根据线性处理后的参数信息生成控制命令。 进一步的, 还可以对移动的移动速度进 行线性处理。 在本发明实施例的另一个优选实施方式中, 可以由计算机终端对移动的参数进行 线性处理。 此时, 手持电子终端检测到与接触姿态为与触敏显示器的持续接触的同时 沿任意方向的移动, 获取移动的参数信息, 根据获取到的参数信息生成控制命令, 并 向计算机设备发送生成的控制命令。 计算机终端 20的接收模块 22接收手持电子终端 发送的控制命令,对控制命令中的移动参数进行线性处理,执行模块 24按照线性处理 后的参数执行鼠标光标移动操作。 因此, 在本发明实施例的一个优选实施方式中, 计算机终端 20的接收模块 22接 收的控制命令携带的参数信息包括: 移动的移动距离和移动方向, 或者, 移动距离、 移动方向和移动速度。 为了对移动的参数进行线性处理, 如图 2所示, 计算机终端 20 还可以包括: 缩放模块 26, 与接收模块 22相耦合, 设置为对移动的移动速度, 或者 移动的移动速度和移动距离进行线性放大或缩小。 执行模块 24, 与缩放模块 26相耦 合, 还设置为按照移动的移动方向, 以及线性放大或缩小后的移动距离或者移动速度 和移动距离移动鼠标光标。 在实际应用中, 手持电子终端或计算机终端可以根据显示器的比例关系, 对移动 的参数进行线性放大。 例如, 手持电子终端的显示器大小为计算机终端显示器大小的 1/5, 手持电子终端 10或计算机终端 20可以将移动的移动距离放大 5倍, 即如果在触 敏显示器上移动了 1 厘米, 那么计算机终端 20 的鼠标光标将在计算机终端上移动 5 厘米。 此外, 还可以根据需求设置线性放大的倍数, 或者也可以统计用户的使用习惯 将线性放大倍数调整至最佳值。 在本发明实施例的另一个优选实施方式中, 为了实现鼠标的按键操作, 接触姿态 可以是单击或双击, 在生成与接触姿态对应的控制命令时, 手持电子终端获取接触的 接触姿态在触敏显示器上的位置区域,并生成与位置区域和接触姿态对应的控制命令。 优选地, 可以按照以下方式生成与接触姿态和位置区域对应的控制命令: 如果位置区 域为预设的第一位置区域, 生成与单击或双击鼠标右键对应的控制命令; 如果位置区 域为预设的第二位置区域, 生成与单击或双击鼠标左键对应的控制命令。 计算机终端 20的执行模块 24, 可以根据控制命令执行相应的鼠标点击操作。 在本发明实施例中, 为了实现手持电子终端与计算机终端的交互, 可以通过手持 电子终端 10的蓝牙模块或通用串行总线 (Universal Serial Bus, 简称为 USB) 接口与 计算机终端 20建立连接。手持电子终端 10与计算机终端 20建立连接后,手持电子终 端 10的驱动程序在计算机终端 20中被初始化,手持电子终端 10的触敏显示器被设置 成为一个触摸控制面板, 用户可以在触摸控制面板上完成对计算机终端的控制。 优选 地, 在手持电子终端作为鼠标的操作过程中, 无需显示屏的显示, 因此, 触敏显示器 可以处于关闭黑屏状态, 以降低手持电子终端功耗, 能够更好的提高手持电子终端的 待机使用时间。 根据本发明实施例, 还提供了一种计算机终端的控制装置, 可以位于本发明上述 实施例提供的手持电子终端 10中, 实现对计算机终端的控制。 图 3是根据本发明实施例一的计算机终端的控制装置的示意图, 如图 3所示, 该 装置主要包括: 检测模块 12、 判断模块 14、 生成模块 16和发送模块 18。 其中, 检测 模块 12, 设置为检测与手持电子终端的触敏显示器的接触; 判断模块 14, 与检测模块 12相耦合, 设置为判断接触的接触姿态是否与预设接触姿态相匹配; 生成模块 16, 与 判断模块 14相耦合, 设置为在判断模块 14的判断结果为是的情况下, 生成与接触的 接触姿态对应的控制命令, 生成的控制命令用于控制计算机终端执行鼠标点击操作和 / 或鼠标光标移动操作; 发送模块 18, 与生成模块 16相耦合, 设置为向计算机终端发 送生成的控制命令。 通过本发明实施例,手持电子终端中的检测模块 12检测与触敏显示器的接触,判 断模块 14判断接触的接触姿态与预设接触姿态相匹配, 则生成模块 16生成与该接触 姿态对应的控制命令, 并由发送模块 18向计算机终端发送生成的控制命令, 完成鼠标 操作命令的输入。 从而实现了通过手持电子终端对计算机终端的控制, 在不增加硬件 成本的条件下, 利用手持电子终端实现了鼠标功能。 在本发明实施例的另一个优选实施方式中, 可以由计算机终端对移动的参数进行 线性处理。在如图 3所示的装置中,检测模块 12检测到与接触姿态为与触敏显示器的 持续接触的同时沿任意方向的移动, 生成模块 16获取移动的参数信息,根据获取到的 参数信息生成控制命令, 并向计算机设备发送生成的控制命令。计算机终端 20的接收 模块 22接收手持电子终端发送的控制命令, 缩放模块 26对控制命令中的移动参数进 行线性处理, 执行模块 24按照线性处理后的参数执行鼠标光标移动操作。 或者, 在本发明实施例的另一个优选实施方式中, 也可以由手持电子终端对移动 的参数信息进行线性处理后发送给计算机终端。例如, 可以由生成模块 16来执行, 如 图 4所示, 在该优选实施方式中, 生成模块 16主要包括: 第一获取单元 162, 设置为 获取移动的参数信息, 该参数信息主要包括: 移动距离和移动方向, 或者, 移动距离、 移动方向和移动速度; 缩放单元 164, 与第一获取单元 162相耦合, 设置为对移动的 移动速度, 或者移动速度和移动距离进行线性放大或缩小; 第一生成单元 166, 与缩 放单元 164相耦合, 设置为根据移动方向, 以及线性放大或缩小后的移动速度或者移 动速度和移动距离, 生成所述控制命令。 通过本优选实施方式, 避免了手持电子终端 作为便携式电子设备显示器较小, 在手持电子终端上的移动距离有限, 在手持电子终 端的显示器上移动一定距离, 而计算机终端的鼠标光标移动距离较小, 导致需要多次 进行移动操作的问题, 提高了用户体验。 在实际应用中, 与触敏显示器的接触的接触姿态还可以是单击或双击, 因此, 在 本发明实施例的另一优选实施方式中, 生成模块 16还可以采用如图 5所示的结构, 如 图 5所示, 在该优选实施方式中, 生成模块 16主要包括: 第二获取单元 168, 设置为 获取接触的接触姿态在触敏显示器上的位置区域; 第二生成单元 1610, 与第二获取单 元 168相耦合, 设置为生成与接触姿态和获取的位置区域对应的控制命令。 优选地, 第二生成单元 1610, 按照以下方式生成与接触姿态和位置区域对应的控制命令: 如果 位置区域为预设的第一位置区域, 生成与单击或双击鼠标右键对应的控制命令; 如果 位置区域为预设的第二位置区域, 生成与单击或双击鼠标左键对应的控制命令。 在实际应用中, 为了实现鼠标的按键操作, 可以将触敏显示器的整个操作区域划 分成左右两个对称区域, 右半边区域 (第一位置区域) 设定为鼠标右键区域, 左半边 区域(第二位置区域)设定为鼠标左键区域。第二生成单元 1610可以根据点击区域来 判断进行的是鼠标左键还是右键的点击 /双击输入操作。 具体的, 如果位置区域为右半 边区域, 生成与单击或双击鼠标右键对应的控制命令; 如果位置区域为左半边区域, 生成与单击或双击鼠标左键对应的控制命令。 也可以将触敏显示器的整个操作区域划 分成上下两个区域, 上半边区域 (第一位置区域) 设定为鼠标右键区域, 下半边区域 (第二位置区域) 设定为鼠标左键区域。 图 6是根据本发明实施例一又一优选的计算机终端的控制装置的示意图, 如图 6 所示, 该装置还可以包括: 建立模块 110, 设置为建立与计算机终端的连接。 在实际 应用中, 可以通过有线或无线方式建立手持电子终端与计算机终端的连接。 例如, 通 过手持电子终端的蓝牙模块与计算机终端建立无线连接, 手持电子终端通过蓝牙以无 线方式与计算机终端进行交互, 完成鼠标操作命令的输入。 此外, 还可以通过手持电 子终端的 USB接口与计算机终端建立有线连接, 手持电子终端通过 USB接口以有线 方式与计算机终端进行交互, 完成鼠标操作命令的输入。 根据本发明实施例, 还提供了一种计算机终端的控制方法, 可以通过本发明上述 实施例提供的系统及装置, 实现利用手持电子终端对计算机终端的控制。 图 7是根据本发明实施例一的计算机终端的控制方法的流程图, 如图 7所示, 该 方法可以包括以下几个步骤 (步骤 S702-步骤 S706): 步骤 S702, 检测与手持电子终端的触敏显示器的接触。 步骤 S704, 判断接触的接触姿态是否与预设接触姿态相匹配。 步骤 S706, 如果是, 生成与接触姿态对应的控制命令, 向计算机终端发送控制命 令, 该控制命令用于控制计算机终端执行鼠标点击操作和 /或鼠标光标移动操作。 通过本发明实施例, 手持电子终端检测与触敏显示器的接触, 判断接触的接触姿 态与预设接触姿态相匹配, 则生成与该接触姿态对应的控制命令, 并向计算机终端发 送生成的控制命令, 完成鼠标操作命令的输入。 从而实现了通过手持电子终端对计算 机终端的控制, 在不增加硬件成本的条件下, 利用手持电子终端实现了鼠标功能。 在本发明实施例中, 为了实现手持电子终端与计算机终端的交互, 可以通过手持 电子终端的蓝牙模块或 USB接口与计算机终端建立连接。手持电子终端与计算机终端 建立连接后, 手持电子终端的驱动程序在计算机终端中被初始化, 手持电子终端的触 敏显示器被设置成为一个触摸控制面板, 用户可以在触摸控制面板上完成对计算机终 端的控制。 优选地, 在手持电子终端作为鼠标的操作过程中, 无需显示屏的显示, 因 此触敏显示器可以处于关闭黑屏状态, 以降低手持电子终端功耗, 能够更好的提高手 持电子终端的待机使用时间。 手持电子终端对计算机终端的控制主要包括控制计算机终端的鼠标操作, 鼠标操 作可以是鼠标的点击操作(单击、 双击), 及鼠标光标的移动操作等。 在本发明实施例 的一个优选实施方式中, 与触敏显示器的接触可以是在保持与触敏显示器的持续接触 的同时沿任意方向的移动, 从而实现鼠标光标移动操作。 手持电子终端检测到接触姿 态为与触敏显示器的持续接触的同时沿任意方向的移动, 获取移动的参数信息, 并根 据该参数信息生成控制命令, 控制计算机终端执行鼠标光标移动操作。 优选地, 获取 到的参数信息可以包括移动距离和移动方向, 进一步的, 还可以包括移动速度。 手持 电子终端根据移动距离和移动方向 (优选地, 还可以包括移动速度) 生成控制命令, 并向计算机终端发送生成的控制命令, 计算机终端接收生成的控制命令, 并按照控制 命令指示的移动方向、 移动距离及移动速度执行鼠标光标移动操作。 手持电子终端作为便携式电子设备(例如, 手机), 与计算机终端的显示器相比其 显示器较小, 在手持电子终端上的移动距离有限, 在手持电子终端的显示器上移动一 定距离, 而计算机终端的鼠标光标移动距离较小, 需要多次进行移动操作。 在本发明 实施例的一个优选实施方式中, 生成与接触姿态对应的控制命令时, 手持电子终端先 获取移动的参数信息, 并对移动距离进行线性处理(可以是方法或缩小), 手持电子终 端根据线性处理后的参数信息生成控制命令。 进一步的, 还可以对移动的移动速度进 行线性处理。 优选地, 为了符合用户的使用习惯, 可以将手机的触摸屏规划设置 X轴、 Y轴两 个方向, 手指在触摸屏上 X轴方向的移动映射到计算机终端显示屏上即为鼠标在计算 机终端上的横向移动, 手指在触摸屏上 Y轴方向的移动映射到计算机终端显示屏上即 为鼠标在计算机终端上的纵向移动; 以此类推实现手机触摸屏上不同角度不同方向的 移动从而达到对计算机终端显示屏上鼠标光标的相应方向的移动距离、 移动速度的对 应关系。 在本发明实施例的另一个优选实施方式中, 可以由计算机终端对移动的参数进行 线性处理。 此时, 手持电子终端检测到与接触姿态为与触敏显示器的持续接触的同时 沿任意方向的移动, 获取移动的参数信息, 根据获取到的参数信息生成控制命令, 并 向计算机设备发送生成的控制命令。 计算机终端接收手持电子终端发送的控制命令, 对控制命令中的移动参数进行线性处理, 并按照线性处理后的参数执行鼠标光标移动 操作。 在实际应用中, 手持电子终端或计算机终端可以根据显示器的比例关系, 对移动 的参数进行线性放大。 例如, 手持电子终端的显示器大小为计算机终端显示器大小的 1/4, 手持电子终端或计算机终端可以将移动的移动距离放大 4倍, 即如果在触敏显示 器上移动了 1厘米,那么计算机终端的鼠标光标将在计算机终端上移动 4厘米。此外, 还可以根据需求设置线性放大的倍数, 或者也可以统计用户的使用习惯将线性放大倍 数调整至最佳值。 在本发明实施例的另一个优选实施方式中, 为了实现鼠标的点击操作, 接触姿态 可以是单击或双击, 在生成与接触姿态对应的控制命令时, 手持电子终端获取接触的 接触姿态在触敏显示器上的位置区域,并生成与位置区域和接触姿态对应的控制命令。 优选地, 可以按照以下方式生成与接触姿态和位置区域对应的控制命令: 如果位置区 域为预设的第一位置区域, 生成与单击或双击鼠标右键对应的控制命令; 如果位置区 域为预设的第二位置区域, 生成与单击或双击鼠标左键对应的控制命令。计算机终端, 可以根据控制命令执行相应的鼠标点击操作。 在实际应用中, 为了区分鼠标左右键的点击操作, 可以将触敏显示器的整个操作 区域划分成左右两个对称区域, 右半边区域 (第一位置区域) 设定为鼠标右键区域, 左半边区域 (第二位置区域) 设定为鼠标左键区域, 手持电子终端可以根据点击区域 来判断进行的是鼠标左键还是右键的点击 /双击输入操作。 具体的, 如果位置区域为右 半边区域, 生成与单击或双击鼠标右键对应的控制命令; 如果位置区域为左半边区域, 生成与单击或双击鼠标左键对应的控制命令。 实施例二 在本发明实施例中以手机为例, 对本发明的计算机终端的控制方案进行说明。 根 据本发明实施例, 提供了一种计算机终端的控制方法, 其无需增加手机的现有硬件成 本, 仅利用目前智能手机中通用几个基本的通用模块, 通过 USB接口或者蓝牙功能, 将手机与计算机终端之间建立有线或者无线的连接, 实现手机作为计算机终端有线鼠 标或者无线鼠标的功能。 本发明实施例的方案, 操作简单方便、 控制灵活, 极大的提 高了手机的用户体验。 在本发明实施例中, 实现鼠标功能的手机具有现在通用手机中所具有的触摸显示 屏 (即触敏显示器)、 USB接口或者蓝牙功能。 通过用户操作, 如通过蓝牙或者 USB接口与计算机终端建立连接后, 经用户确认 进入鼠标功能后, 手机的驱动程序在计算机终端中被初始化, 手机的触摸显示屏被设 置成为一个触摸控制面板, 该触摸控制面板的长宽方向与计算机的显示屏之间形成对 应的鼠标光标移动对应关系。 当触摸介质 (例如, 手指) 在手机的触摸屏上触摸移动时, 其移动距离、 移动方 向、移动速度的数据被相应的做线性的转化,并将携带有移动控制命令的信息通过 USB 接口或者蓝牙传输到计算机终端中, 计算机终端将接收得到的相关数据及控制命令做 相应的转换, 将移动控制命令转换成光标的移动指令, 将相应的移动距离、移动方向、 移动速度转换为计算机终端显示屏中的鼠标光标的移动, 从而实现了触摸介质在手机 触摸屏上的移动转换为计算机终端显示器中光标的移动。 在本发明实施例中, 上述线性的对应关系即触摸介质在手机触摸屏上做横向移动 时计算机终端显示屏中的鼠标光标也做相应的横向移动, 当触摸介质在手机触摸屏上 做竖向的移动时计算机终端显示屏中的鼠标光标也做相应的竖向移动, 以此类推达到 触摸介质在触摸屏上任意角度、 任意长度及不同速度的移动可以线性的在计算机终端 显示屏上得到转换, 实现了触摸介质操作手机实现计算机终端显示屏中鼠标光标移动 的功能。 同时, 为了实现的鼠标的左键单击、 双击, 及右键点击的鼠标功能, 可以将手机 触摸屏的整个操作区域默认的由软件划分成左右两个对称区域, 以实现左右键点击区 域的划分。 优选的, 左半边区域设定为鼠标左键区域, 手指单击 /双击该区域手机可以根据其 点击区域的坐标位置来判断该点击发生在整个触摸屏的左半区域, 其进行的是一个鼠 标左键的点击 /双击输入操作,手机将相应的左键单击 /双击操作控制命令通过有线或者 无线的方式传递到计算机终端中, 计算机终端接收到相应的命令再去控制显示屏上的 鼠标做左键单击 /双击操作, 从而实现对计算机终端鼠标的单击或者双击操作。 另一方面, 手机触摸屏右半边区域设定为右键区域, 即点击该区域手机根据输入 点的相对位置判断这个点击操作发生在整个触摸屏的右半区域, 会判断该点击是一个 鼠标的右键点击操作, 那么手机将相应的右键操作控制命令传递到计算机终端中, 计 算机终端转换该命令后去控制自身显示屏上的鼠标右键操作, 从而实现对计算机终端 的右键的操作。 通过本发明实施例, 手机与计算机终端建立有线或者无线的鼠标连接, 手指对手 机触摸屏的移动操作、 左右区域位置点击控制转化成为对计算机终端的显示屏上的鼠 标指针的左右键命令的输入, 从而实现了手机作为计算机终端鼠标的功能。 由于本发 明实施例实现鼠标功能的操作手机摆放不依赖与通用鼠标对放置平面的要求, 具有极 大的空间自由度, 人机交互更加友好。 且符合一定的人机工程学和操作习惯, 作为鼠 标使用时灵敏度高、 操作简单, 增加了手机的又一个用户体验, 丰富了手机的应用场
下面结合图例对本发明实施例进行描述。 图 8是根据本发明实施例二的手机电路组成原理的示意图, 如图 8所示的手机具 有通用的手机结构。其中, CPU主控单元实现手机主控部分的操作控制; 射频(Radio Frequency, 简称为 RF)部分及 RF天线部分实现射频信号的收发功能, 实现手机的语 音通信、数据通信等射频电路功能; 手机主控程序或者各记录文件放置在存储器单元; 锂电池模块是手机工作时的电源供给源, 设置为给整个手机供电; USB接口设置为为 手机充电、下载程序或提供 USB的物理接口, 在本发明实施例中可以设置为与计算机 终端建立鼠标功能的有线连接; 蓝牙模块部分设置为与其他蓝牙设备建立蓝牙连接, 在本发明实施例中可以设置为与计算机终端建立无线的蓝牙连接实现手机作为鼠标时 的无线控制链路物理层。 触摸屏 (Liquid Crystal Display, 简称为 LCD)部分, 作为手 机的通用触摸屏, 是手机的信息输入主要界面, 在本发明实施例中触摸介质在触摸屏 上触摸移动用以实现对应计算机终端显示屏上鼠标光标的移动输入操作, 同时将手机 触摸屏幕设置为左右两个控制区域以实现左键区域和右键区域的划分, 单击或双击对 应区域, 以达到对鼠标的左右键点击的操作。 图 9是根据本发明实施例二的具有鼠标功能的手机的示意图, 在如图 9所示的手 机中, 触摸屏 303位于手机 30上, 301为手机的受话器开孔, 用以手机做语音通信时 听者接受声音。 手机开关机及其他功能按键 304位于触摸屏下方或者其他部位; 机壳 上具有 USB接口 302与手机内部主板的 USB信号连接, 实现手机的 USB连接功能、 程序下载功能以及充电接口功能。 图 10是根据本发明实施例二的手机与计算机终端有线连接的示意图, 如图 10所 示, 手机整机 30做鼠标应用时可以将计算机终端 40的 USB接口 402与手机的 USB 接口 302通过 USB线 401建立有线的连接, USB连接线提供在手机作为鼠标控制计 算机终端时作为有线的物理链路。 图 11是根据本发明实施例二的手机与计算机终端无线连接的示意图, 如图 11所 示, 通过手机的蓝牙模块及计算机终端的蓝牙单元建立蓝牙连接, 计算机终端与手机 间的蓝牙无线链路为手机作为计算机终端的鼠标操作时提供了无线的控制链路。 计算 机终端的蓝牙单元可以是计算机终端内部具有的蓝牙功能模块也可以是外置的蓝牙适 配器。 图 12是根据本发明实施例二的手机作为鼠标时的流程图, 如图 12所示, 手机在 通常情况下作为其基本功能使用, 处于待机模式或者通讯模式。当应用其鼠标功能时, 首先判断是进行有线连接还是无线连接, 若为有线连接则需将手机与计算机终端间通 过 USB线连接好, 手机通过菜单进入有线的鼠标模式, 并由手机内部的 CPU主控单 元做相应驱动操作, 控制手机进入鼠标操作模式并进行有线的 USB信号发送, 鼠标操 作完成后即可拔出 USB线退出鼠标操作;若为无线连接则将手机的蓝牙功能及计算机 终端的蓝牙功能打开, 建立手机与计算机终端的蓝牙连接, 手机通过菜单进入到无线 的鼠标模式, 同样手机内部的 CPU主控单元做相应的驱动操作, 控制手机进入鼠标操 作模式并进行无线的鼠标信号发送, 鼠标操作完成时关闭蓝牙退出鼠标模式。 无论是 在有线的鼠标连接方式时还是无线的鼠标连接方式时, 手机射频单元部分及内部控制 环节均不受影响, 因此手机均能够正常的实时接收电话、短信等, 不影响其正常操作。 另外, 在上述操作过程中, 无需要手机显示屏的显示, 因此 LCD可完全处于关闭黑屏 状态, 有效了降低了功耗, 能够更好的提高整个手机的待机使用时间。 手机与计算机终端建立了有线或者无线的连接, 经手机用户的菜单确认, 完成手 机驱动程序的载入和对计算机终端的驱动初始化, 这样使得手机进入到鼠标功能模式 中对相应的计算机终端可进行鼠标光标操作的软件加载。 当手机进入到鼠标功能模式 后, 即完成鼠标功能的软件加载后, 人体手指在触摸屏 303上移动, 手指的移动速度、 移动方向、移动距离通过触摸屏被手机内部的 CPU主控单元进行记录、 处理, 手机将 相应的移动数据并夹带有移动控制命令的信息通过有线的方式或者蓝牙无线的方式发 送到计算机终端中, 计算机终端接收到移动速度、 移动方向、 移动距离的数据信息后 将该所有移动信息做相应的线性变换并根据接收到的移动控制命令去操作自身显示屏 上的鼠标光标去做相应的移动, 这样实现了计算机终端的鼠标的移动操作。 在实际应用中, 如图 9所示,可以将手机的触摸屏规划设置 X轴、 Y轴两个方向, 手指在触摸屏上 X轴方向的移动映射到计算机终端显示屏上即为鼠标在计算机终端上 的横向移动, 手指在触摸屏上 Y轴方向的移动映射到计算机终端显示屏上即为鼠标在 计算机终端上的纵向移动; 以此类推实现手机触摸屏上不同角度不同方向的移动从而 达到对计算机终端显示屏上鼠标光标的相应方向的移动距离、 移动速度的对应关系。 为了实现鼠标的左键、右键的点击操作,将手机触摸屏 303划分成左右两个区域, 该两个区域是对称关系的, 规定左半边屏幕区域设置成为左键区域, 即手指单击或者 双击该区域的点击操作时, 手机内部 CPU主控单元通过侦测判断该单击 /双击操作的 坐标是发生在整个触摸屏的左半边区域,那么手机将左键的单击 /双击相应的控制命令 发送到计算机终端上, 计算机终端接收到相应控制命令后, 对自身的鼠标去执行相应 的左键的单击 /双击操作,这样通过对触摸屏的左半区域的单击 /双击操作实现了计算机 终端中鼠标的左键单击 /双击操作。 右半屏幕用以设置成为右键区域, 点击该区域, 手 机内部 CPU主控单元通过侦测判断该点击操作的坐标是发生在整个触摸屏的右半区 域,那么手机将右键相应控制命令发送到计算机终端中, 计算机终端接收到该命令后, 去控制自身鼠标去执行右键的操作指令, 这样通过对手机触摸屏的右半区域的点击操 作实现了计算机终端中鼠标的右键点击操作。 通过上述方法, 实现了手机与计算机终端之间建立无线或者 USB有线的连接, 并 且使得手机进入鼠标模式, 相应的鼠标控制命令能够发送到计算机终端中实现对计算 机终端中鼠标光标的操作。 手指在触摸屏上的 X轴、 Y轴方向上的移动距离、 移动速 度通过相应的线性变换映射到计算机终端显示屏中的横向或者竖向的移动, 以此类推 其他方向或者角度的变换移动也能映射到计算机终端显示屏中, 实现鼠标光标的移动 操作; 将手机的左右屏幕区域分别设置成左键区域和右键区域, 点击左半屏幕手机向 计算机终端发出左键操作, 点击右键区域手机向计算机终端发出右键操作命令, 这样 手机作为鼠标操作能够控制计算机终端屏幕中鼠标指针的运动及点击操作, 达到了鼠 标的作用。手机触摸屏的整个过程中, 不依赖手机显示屏的显示, 因此无需 LCD的点 亮, 为整个手机的使用节省了电量。 通过本发明实施例, 具有鼠标功能的手机作为鼠标功能使用时操作简单实用, 不 增加现有手机的硬件成本, 用户操作时手机摆放不依赖操作平面的放置位置, 具有极 大的空间自由度,有效的提高了用户的体验,作为手机使用过程中的又一个用户体验, 能够丰富用户的使用场景具有极大的市场应用价值。 从以上的描述中, 可以看出, 本发明实现了如下技术效果: 手持电子终端检测与 触敏显示器的接触, 判断接触的接触姿态与预设接触姿态相匹配, 则生成与该接触姿 态对应的控制命令, 并向计算机终端发送生成的控制命令, 完成鼠标操作命令的输入。 从而实现了通过手持电子终端对计算机终端的控制, 在不增加硬件成本的条件下, 利 用手持电子终端实现了鼠标功能。 同时, 本发明实施例实现鼠标功能的操作手持电子 终端摆放不依赖与通用鼠标对放置平面的要求, 具有极大的空间自由度, 人机交互更 加友好, 且符合一定的人机工程学和操作习惯, 作为鼠标使用时灵敏度高、操作简单, 增加了手持电子终端的又一个用户体验, 丰富了手持电子终端的应用场景。 显然, 本领域的技术人员应该明白, 上述的本发明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, 可选地, 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, 本发明不限制于任 何特定的硬件和软件结合。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域的技 术人员来说, 本发明可以有各种更改和变化。 凡在本发明的精神和原则之内, 所作的 任何修改、 等同替换、 改进等, 均应包含在本发明的保护范围之内。

Claims

权 利 要 求 书
1. 一种计算机终端的控制方法, 包括:
检测与手持电子终端的触敏显示器的接触;
判断所述接触的接触姿态是否与预设接触姿态相匹配;
如果是, 生成与所述接触姿态对应的控制命令, 向计算机终端发送所述控 制命令, 其中, 所述控制命令用于控制所述计算机终端执行鼠标点击操作和 / 或鼠标光标移动操作。
2. 根据权利要求 1所述的方法, 其中, 所述接触姿态为在保持与所述触敏显示器 的持续接触的同时沿任意方向的移动; 生成与所述接触姿态对应的控制命令包 括:
获取所述移动的参数信息, 其中, 所述参数信息包括: 移动距离和移动方 向, 或者, 移动距离、 移动方向和移动速度;
对所述移动的移动速度, 或者移动速度和移动距离进行线性放大或缩小; 根据所述移动方向, 以及线性放大或缩小后的所述移动速度或者移动速度 和移动距离, 生成所述控制命令。
3. 根据权利要求 1所述的方法, 其中, 所述接触姿态为单击或双击时, 生成与接 触姿态对应的控制命令, 包括:
获取所述接触姿态在所述触敏显示器上的位置区域;
生成与所述位置区域和所述接触姿态对应的控制命令。
4. 根据权利要求 3所述的方法, 其中, 生成与所述位置区域和所述接触姿态对应 的控制命令, 包括:
如果所述位置区域为预设的第一位置区域, 生成与单击或双击鼠标右键对 应的控制命令;
如果所述位置区域为预设的第二位置区域, 生成与单击或双击鼠标左键对 应的控制命令。
5. 根据权利要求 1至 4中任一项所述的方法, 其中, 向计算机终端发送所述控制 命令之后, 所述方法还包括: 所述计算机终端接收所述控制命令, 执行与所述 控制命令对应的操作。
6. 根据权利要求 1所述的方法, 其中, 所述接触姿态为在保持与所述触摸屏的持 续接触的同时沿任意方向的移动; 向计算机终端发送所述控制命令之后, 所述 方法还包括:
所述计算机终端接收所述控制命令, 其中, 所述参数信息包括: 移动距离 和移动方向, 或者, 移动距离、 移动方向和移动速度;
对所述移动的移动速度, 或者所述移动的移动速度和移动距离进行线性放 大或缩小;
按照所述移动方向, 以及线性放大或缩小后的移动距离或者移动速度和移 动距离移动所述鼠标光标。
7. 根据权利要求 5所述的方法, 其中, 检测与手持电子终端的触敏显示器的接触 之前, 所述方法还包括: 建立与所述计算机终端的连接。
8. 一种计算机终端的控制装置, 包括:
检测模块, 设置为检测与手持电子终端的触敏显示器的接触; 判断模块, 设置为判断所述接触的接触姿态是否与预设接触姿态相匹配; 生成模块, 设置为在所述判断模块的判断结果为是的情况下, 生成与所述 接触姿态对应的控制命令, 其中, 所述控制命令用于控制所述计算机终端执行 鼠标点击操作和 /或鼠标光标移动操作;
发送模块, 设置为向所述计算机终端发送所述控制命令。
9. 根据权利要求 8所述的装置, 其中, 所述接触姿态为在保持与所述触敏显示器 的持续接触的同时沿任意方向的移动; 所述生成模块, 包括:
第一获取单元, 设置为获取所述移动的参数信息, 其中, 所述参数信息包 括: 移动距离和移动方向, 或者, 移动距离、 移动方向和移动速度;
缩放单元, 设置为对所述移动的移动速度, 或者移动速度和移动距离进行 线性放大或缩小;
第一生成单元, 设置为根据所述移动方向, 以及线性放大或缩小后的所述 移动速度或者移动速度和移动距离, 生成所述控制命令。
10. 根据权利要求 8所述的装置, 其中, 所述接触姿态为单击或双击, 所述生成模 块包括:
第二获取单元,设置为获取所述接触姿态在所述触敏显示器上的位置区域; 第二生成单元,设置为生成所述位置区域和所述接触姿态对应的控制命令。
11. 根据权利要求 10所述的装置, 其中, 所述第二生成单元, 按照以下方式生成所 述位置区域和所述接触姿态对应的控制命令:
如果所述位置区域为预设的第一位置区域, 生成与单击或双击鼠标右键对 应的控制命令;
如果所述位置区域为预设的第二位置区域, 生成与单击或双击鼠标左键对 应的控制命令。
12. 根据权利要求 8至 11中任一项所述的装置,其中,所述装置还包括:建立模块, 设置为建立与所述计算机终端的连接。
13. 一种计算机终端的控制系统, 包括:
手持电子终端, 包括权利要求 8至 12中任一项所述的装置;
计算机终端, 包括: 接收模块, 设置为接收所述控制命令; 执行模块, 设 置为执行与所述控制命令对应的操作。
14. 根据权利要求 13所述的系统,其中,所述接触姿态为在保持与所述触摸屏的持 续接触的同时沿任意方向的移动; 所述控制命令携带的参数信息包括: 所述移 动的移动距离和移动方向, 或者, 移动距离、 移动方向和移动速度;
所述计算机终端, 还包括: 缩放模块, 设置为对所述移动的移动速度, 或 者所述移动的移动速度和移动距离进行线性放大或缩小;
所述执行模块, 还设置为按照所述移动方向, 以及线性放大或缩小后的移 动距离或者移动速度和移动距离移动所述鼠标光标。
PCT/CN2012/076105 2012-03-07 2012-05-25 计算机终端的控制方法、装置及系统 WO2013131327A1 (zh)

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Families Citing this family (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102015347B1 (ko) * 2013-01-07 2019-08-28 삼성전자 주식회사 터치 디바이스를 이용한 마우스 기능 제공 방법 및 장치
CN103218162B (zh) * 2013-03-26 2016-09-28 广东欧珀移动通信有限公司 一种终端操作方法及装置
CN103942002A (zh) * 2014-05-13 2014-07-23 上海天奕达电子科技有限公司 一种基于移动终端实现虚拟鼠标的控制方法及装置
CN104679524A (zh) * 2015-03-17 2015-06-03 郑波 一种通过手机控制电脑的方法
CN104850332B (zh) * 2015-03-19 2018-10-09 惠州Tcl移动通信有限公司 智能终端控制方法以及智能终端
CN104991645A (zh) * 2015-06-24 2015-10-21 宇龙计算机通信科技(深圳)有限公司 光标控制方法及装置
CN105069217A (zh) * 2015-07-31 2015-11-18 南京邮电大学 一种基于道路动态分区模型的城市救援仿真方法
CN105260112A (zh) * 2015-09-14 2016-01-20 百度在线网络技术(北京)有限公司 终端间屏幕控制的方法和装置
CN105373242A (zh) * 2015-12-10 2016-03-02 南京信息工程大学 一种体感手机鼠标控制系统及其控制方法
CN106873881B (zh) * 2015-12-11 2021-06-18 富泰华工业(深圳)有限公司 电子设备及玩具控制方法
CN105653068A (zh) * 2015-12-28 2016-06-08 联想(北京)有限公司 一种移动通讯终端
CN106020666A (zh) * 2016-05-17 2016-10-12 青岛海信移动通信技术股份有限公司 一种鼠标功能实现方法及装置
CN106055237B (zh) 2016-05-31 2017-11-17 广东欧珀移动通信有限公司 一种滑动加速响应方法、及设备
US10411799B1 (en) * 2017-01-11 2019-09-10 VLNCOMM, Inc. Optical wireless communication systems with hadamard coded modulation
JP6852543B2 (ja) * 2017-04-24 2021-03-31 ティアック株式会社 オーディオ装置
US10262471B2 (en) * 2017-05-23 2019-04-16 Uber Technologies, Inc. Autonomous vehicle degradation level monitoring
CN109885234A (zh) * 2019-02-25 2019-06-14 宁波江丰生物信息技术有限公司 一种基于手机的切片阅读方法
CN110456927B (zh) * 2019-08-13 2021-07-16 腾讯科技(深圳)有限公司 设备间的操作映射方法、装置及计算机设备
CN112764623B (zh) * 2021-01-26 2022-09-09 维沃移动通信有限公司 内容编辑方法及装置

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1655094A (zh) * 2004-02-13 2005-08-17 联想(北京)有限公司 一种对计算机进行遥控操作的方法
CN101667079A (zh) * 2009-09-16 2010-03-10 中兴通讯股份有限公司南京分公司 通过移动终端触摸屏控制计算机的方法、系统及移动终端
CN101943957A (zh) * 2010-07-23 2011-01-12 康佳集团股份有限公司 一种带加速度传感器的触摸屏手机和鼠标输入的方法

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20070176900A1 (en) * 2006-02-02 2007-08-02 Samsung Electronics Co., Ltd. Controlling cursor speed from a pointing device
TWI351224B (en) * 2006-12-28 2011-10-21 Pixart Imaging Inc Cursor controlling method and apparatus using the same
US8375336B2 (en) * 2008-05-23 2013-02-12 Microsoft Corporation Panning content utilizing a drag operation
US8754855B2 (en) * 2008-06-27 2014-06-17 Microsoft Corporation Virtual touchpad
JP2011170538A (ja) * 2010-02-17 2011-09-01 Sony Corp 情報処理装置、情報処理方法およびプログラム
TWI544375B (zh) * 2010-03-17 2016-08-01 陞達科技股份有限公司 觸控功能辨識方法及電子裝置
US9465457B2 (en) * 2010-08-30 2016-10-11 Vmware, Inc. Multi-touch interface gestures for keyboard and/or mouse inputs
US9727227B2 (en) * 2011-07-28 2017-08-08 Microsoft Technology Licensing, Llc Multi-touch remoting
US8698746B1 (en) * 2012-04-24 2014-04-15 Google Inc. Automatic calibration curves for a pointing device

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1655094A (zh) * 2004-02-13 2005-08-17 联想(北京)有限公司 一种对计算机进行遥控操作的方法
CN101667079A (zh) * 2009-09-16 2010-03-10 中兴通讯股份有限公司南京分公司 通过移动终端触摸屏控制计算机的方法、系统及移动终端
CN101943957A (zh) * 2010-07-23 2011-01-12 康佳集团股份有限公司 一种带加速度传感器的触摸屏手机和鼠标输入的方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP2824551A4 *

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