WO2016090773A1 - 单手操作移动终端的信息采集方法、操作方法及移动终端 - Google Patents

单手操作移动终端的信息采集方法、操作方法及移动终端 Download PDF

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Publication number
WO2016090773A1
WO2016090773A1 PCT/CN2015/075889 CN2015075889W WO2016090773A1 WO 2016090773 A1 WO2016090773 A1 WO 2016090773A1 CN 2015075889 W CN2015075889 W CN 2015075889W WO 2016090773 A1 WO2016090773 A1 WO 2016090773A1
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WIPO (PCT)
Prior art keywords
area
touch
mobile terminal
user
hand
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PCT/CN2015/075889
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English (en)
French (fr)
Inventor
杨燕
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捷开通讯(深圳)有限公司
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Publication of WO2016090773A1 publication Critical patent/WO2016090773A1/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]
    • G06F3/0487Interaction 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
    • G06F3/04886Interaction 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 by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas

Definitions

  • the present invention relates to the field of mobile terminal technologies, and in particular, to an information collection method, an operation method, and a mobile terminal for implementing a one-hand operation mobile terminal.
  • Touch screen touch The panel, also known as the touch panel, is an inductive liquid crystal display device that receives input signals such as contacts. The user can operate the terminal by gently touching the icon or text on the touch screen with a finger. Machine interaction is more convenient and direct.
  • touch-based mobile devices play an extremely important role.
  • Today's touch-enabled mobile devices with touch screens become an integral part of users' daily lives, and people often carry them with them when they go out.
  • Mobile devices make it easy to exchange information, view media files or play games anytime, anywhere, so people are increasingly enjoying large screens.
  • people usually need one-handed operation when using such a mobile terminal and as the screen becomes larger and larger, the difficulty of one-handed operation increases, and even some application icons in the corner area are operated in one hand. Unable to touch, if you want to touch these icons, you need the user's hands to operate, which brings great inconvenience to the user.
  • the invention provides an information collection method, an operation method and a mobile terminal for realizing a one-hand operation of a mobile terminal, which can realize an application program for operating the entire operation interface of the mobile terminal with one hand, and improve the user experience.
  • the present invention provides an information collecting method for implementing a one-handed operation of a mobile terminal.
  • the mobile terminal includes a touch screen, and the collecting method includes: receiving an instruction for collecting information, and acquiring at least one user on the touch screen in response to the instruction.
  • a first coordinate value of the touch point wherein the first touch point corresponds to a maximum range that the one-handed finger can touch when the user holds the touch screen with one hand, and the first coordinate value corresponding to the first touch point is acquired according to the first coordinate value of the first touch point
  • the reference point acquires a first straight line distance between the first touch point and the reference point, forms a first area according to the reference point and the first straight line distance, and stores the user information and the first area in the database.
  • the touch screen includes at least four reference points and the touch screen is correspondingly divided into at least four preset areas according to the reference point, and the preset area corresponding to the first touch point is obtained according to the first coordinate value of the first touch point, and the preset is obtained.
  • the reference point within the area.
  • the acquiring method further includes: acquiring a second coordinate value of the second touch point of the user on the preset area, and acquiring a second straight line distance between the second touch point and the reference point, according to the reference point and the second straight line distance.
  • a second area is formed, and the user's information and the second area are correspondingly stored in the database.
  • the present invention also provides a method for operating a mobile terminal with one hand, including the above collection method, wherein the operation method of the one-hand operation of the mobile terminal includes: a one-hand operation instruction of the mobile terminal user, corresponding to the one-hand operation instruction
  • the touch position determines an operation area for performing a touch operation on the mobile terminal from all of the first area or the second area, and reduces the operation interface of the mobile terminal and displays it within the determined operation area.
  • the step of determining, within the operation area of performing touch operation on the mobile terminal from all the first areas or the second areas according to the touch position corresponding to the one-hand operation instruction includes: determining a matching order from all the first areas or the second area An operation area on which the touch operation is performed on the mobile terminal of the hand operation command, and all the first area or the second area corresponds to a plurality of users of different finger operation ranges.
  • the operation method further includes: determining, within a preset time threshold, a touch frequency of the user touching the first area and a touch frequency of the user touching the second area, and selecting an area with a larger touch frequency as the one-handed grip of the user. a default operation area; determining, according to the touch position corresponding to the one-hand operation instruction, the operation area for performing a touch operation on the mobile terminal from all the first areas or the second area includes: selecting a default operation area as the user at the mobile terminal according to the one-hand operation instruction The operation area on which the touch operation is performed.
  • the present invention further provides a mobile terminal, including a touch screen
  • the mobile terminal includes: a receiving module, configured to receive an instruction for collecting information; and a processing module, connected to the receiving module, configured to acquire at least one user on the touch screen a first coordinate value of the first touch point, wherein the coordinate of the first touch point corresponds to a maximum range that the one-hand finger can touch when the user holds the touch screen with one hand, and the processing module acquires according to the first coordinate value of the first touch point a reference point corresponding to the first touch point, and acquiring a first straight line distance between the first touch point and the reference point, forming a first area according to the reference point and the first straight line distance; and the storage module is connected to the processing module, The user information and the first area are stored in the database accordingly.
  • the touch screen includes at least four reference points, and the processing module divides the touch screen into at least four preset areas according to the reference point, and the processing module acquires the preset area corresponding to the first touch point according to the first coordinate value of the first touch point. And get the reference point of the preset area.
  • the processing module is further configured to acquire a second coordinate value of the second touch point of the user on the preset area, and obtain a second linear distance between the second touch point and the reference point, and the processing module is configured according to the reference point and the second The linear distance forms a second area; the storage module stores the user information and the second area in the database accordingly.
  • the processing module is further configured to determine, within a preset time threshold, a touch frequency of the user touching the first area and a touch frequency of the second area touched by the user, and selecting an area with a larger touch frequency as the one-handed grip of the user.
  • the default operating area is further configured to determine, within a preset time threshold, a touch frequency of the user touching the first area and a touch frequency of the second area touched by the user, and selecting an area with a larger touch frequency as the one-handed grip of the user.
  • the default operating area is further configured to determine, within a preset time threshold, a touch frequency of the user touching the first area and a touch frequency of the second area touched by the user.
  • the receiving module receives a one-hand operation instruction of the user, and the processing module determines an operation area for performing a touch operation on the mobile terminal from all the first areas or the second area according to the touch position corresponding to the one-hand operation instruction, and the mobile terminal The operator interface is zoomed out and displayed in the determined operating area.
  • the processing module determines an operation area for performing a touch operation on the mobile terminal that matches the one-hand operation instruction from all the first areas or the second area, and all the first area or the second area corresponds to a plurality of users of different finger operation ranges.
  • the processing module selects a default operation area according to the one-hand operation instruction as an operation area for the user to perform a touch operation on the mobile terminal.
  • the user of the present invention obtains the coordinate value of the touch point of at least one user on the touch screen by receiving an instruction for collecting information on the mobile terminal with the touch screen.
  • the touch point refers to a maximum range that can be touched by a single-handed finger when the user holds the touch screen with one hand; then, a reference point corresponding to the touched point is obtained according to the coordinate value of the touched point, and a linear distance between the touched point and the reference point is calculated, Forming a first area according to the reference point and the linear distance, and storing the user information and the first area in the database; and collecting the coordinate values of the other touch points of the user in the same preset area in the same manner, and The area formed between the touch point and the reference point and the user information are stored in the data, and then compared with the preset time threshold, the touch frequency of the first area and the second area is touched by the user, and the area with a large touch frequency is selected as the user.
  • the default operation area when the user issues a one-hand operation instruction, the mobile terminal matches the one-hand operation instruction Row region touch operation, and reduce the overall operation of the mobile terminal and a display interface in the region, so that the entire operation of the intelligent interface to reduce the display area touched by the user with one hand.
  • FIG. 1 is a schematic diagram of division of an operation interface of a mobile terminal according to the present invention.
  • FIG. 2 is a schematic flowchart of a first embodiment of an information collecting method for implementing a one-hand operation mobile terminal according to the present invention
  • FIG. 3 is a schematic diagram of a touch point and a formed area of a user touching a touch screen with one hand;
  • FIG. 4 is a schematic flow chart of a second embodiment of an information collection method for implementing a one-hand operation mobile terminal according to the present invention.
  • FIG. 5 is a schematic flowchart of a first embodiment of an operation method of a one-hand operation mobile terminal according to the present invention
  • FIG. 6 is a schematic flow chart of a second embodiment of a method for operating a single-handed mobile terminal according to the present invention.
  • FIG. 7 is a schematic structural diagram of an embodiment of a mobile terminal of the present invention.
  • the size of the touch screen of the mobile terminal is getting larger and larger, and the size of the touch screen is increased from the original 3.5 inches to 5.5 inches, 7 inches or even larger, and the user usually sits at work.
  • the mobile terminal or the subway operates the mobile terminal for leisure and entertainment, it is often necessary to operate the mobile terminal with one hand, and for an increasingly large touch screen, there is often a range that cannot be touched by a single-handed finger, and an embodiment of the present invention proposes an implementation.
  • the information collection method, the operation method and the mobile terminal of the mobile terminal are operated by one hand, and the entire touch screen of the mobile terminal is operated by one hand.
  • FIG. 1 is a schematic diagram of the operation interface division of the mobile terminal of the present invention.
  • the mobile terminal 1 includes a touch screen 2 .
  • the touch screen 2 generally includes four apex angles. The four apex angles are used as reference points 3 , and the touch screen 2 is divided into a lower left 21 , a lower right 22 , and a upper left 23 . Four preset areas on the right 24th.
  • the mobile terminal can be a mobile phone, IPad or other mobile device with a touch screen.
  • the selection of the reference point 3 is based on the range of the screen that the finger (generally the thumb) can touch when the user holds the mobile terminal 1 with one hand, and the reference point 3 is the center of the circle, and the length of the finger is covered by the radius. Therefore, the selection of the reference point 3 is mainly determined according to the one-handed holding position and the finger for touch.
  • FIG. 2 is a schematic flowchart of a first embodiment of an information collecting method for implementing a one-handed mobile terminal according to the present invention.
  • the information collection method for implementing the one-hand operation of the mobile terminal disclosed in this embodiment is based on the mobile terminal 1 of FIG. 1 , and the collection method includes:
  • S11 The mobile terminal 1 receives an instruction to collect information.
  • the user opens an instruction to collect information by touching the touch screen 2 of the mobile terminal 1, for example, double-clicking a blank space of the operation interface; in addition, the user can also open an instruction to collect information by pressing a side key of the mobile terminal 1.
  • the mobile terminal 1 presents a setting interface to the user through the touch screen 2, and the user clicks the setting interface to enter the selection one-hand operation area setting, and then selects the personal handheld area information input to enter the preparation for collecting personal information.
  • the mobile terminal 1 acquires a first coordinate value of the first touch point A of the at least one user on the touch screen 2 in response to the instruction to collect the information.
  • At least one user refers to the mobile terminal 1 collecting the coordinate values of the touch points of multiple users by using the same acquisition method, but the collecting process is to collect and set the information of one user before collecting the second one.
  • User information here is an example of collecting information of a user.
  • FIG. 3 is a schematic diagram of a touch point and a formed area of a user touching the touch screen with one hand.
  • the data touched each time is converted into coordinates on the touch screen 2 by the calibration data.
  • the reference point 3 of the left 21 area below is the coordinate origin.
  • the user holds the mobile terminal 1 with one hand, and the mobile terminal 1 acquires the first touch point A of the user's one-handed finger on the touch screen 2, and reads the first coordinate value of the first touch point A.
  • the first touch point A is preferably the maximum range of the touch screen 2 when the user touches the touch screen 2 with one hand, and generally refers to the farthest distance point of the touch screen 2 when the user touches the touch screen 2 with one hand. .
  • the mobile terminal 1 acquires the reference point 3 corresponding to the first touch point according to the first coordinate value of the first touch point A.
  • the mobile terminal 1 acquires a preset area corresponding to the first touch point according to the coordinate value of the first touch point A, and the mobile terminal 1 further acquires the reference point 3 in the preset area, for example, if the first touch point A falls to the left In the 21 area, the reference point 3 in the lower left 21 area, that is, the lower left reference point 3 is directly acquired, and the lower left reference point 3 is also among all the reference points in the entire touch screen 2 and the first touch point. The closest distance.
  • S14 The mobile terminal 1 acquires a first straight line distance r1 between the first touch point A and the reference point 3.
  • the straight line distance is the shortest between the two points
  • the first straight line distance r1 between the first touch point A and the reference point 3 is obtained.
  • the mobile terminal 1 forms the first area a according to the reference point 3 and the first straight line distance r1.
  • the reference point 3 is taken as the coordinate origin, and one fan-shaped region is formed as the first region a with the first straight line distance r1 as a radius.
  • the reference point 3 is used as a reference angle, and a rectangular area is formed as the first area a with the absolute value of the coordinates of the first touch point A as the length and the width; or the reference point 3 and the first line are used.
  • the distance r1 forms another pattern as the first area a.
  • the above steps are used to collect other areas formed by the user in other preset areas of the touch screen 2, that is, corresponding areas of the user in the preset areas of the lower right 22, the upper left 23, and the upper right 24 are collected.
  • the corresponding area corresponding to the other reference points can be generated according to the first straight line distance r1, and the process of the information collection by the user re-touching the other preset areas is omitted.
  • the mobile terminal 1 stores the information of the user and the first area a in the database correspondingly.
  • the user's information may refer to the user's name, nickname or fingerprint, etc., which can distinguish the identity of different users.
  • FIG. 4 is a schematic flowchart diagram of a second embodiment of a method for collecting a single-handed mobile terminal according to the present invention. As shown in FIG. 4, the information collection method for implementing the one-hand operation mobile terminal disclosed in this embodiment is further described on the basis of the first embodiment, and the collection method includes:
  • the mobile terminal 1 acquires a second coordinate value of the second touch point B of the user on the preset area.
  • the second coordinate value of the second touch point B is also acquired in the preset lower left 21 area, and the second touch point B and the first touch point A correspond to different positions of the lower left 21 area.
  • the mobile terminal 1 acquires a second straight line distance r2 between the second touch point B and the reference point 3.
  • the linear distance r2 between the second touch point B and the reference point 3 and the linear distance r1 between the first touch point A and the reference point 3 are not equal.
  • the mobile terminal 1 forms the second region b according to the reference point 3 and the second straight line distance r2.
  • the formation of the second region b is similar to the formation of the first region a in step S15, and details are not described herein again. It should be noted that the second region b corresponds to the shape of the first region a.
  • the first region a is a fan shape
  • the second region b is also a fan shape.
  • the mobile terminal 1 stores the information of the user and the second area b in the database.
  • Step S24 is similar to step S16, and details are not described herein again.
  • the mobile terminal 1 determines, within a preset time threshold, the touch frequency of the user touching the first area a and the touch frequency of the user touching the second area b, and selecting an area with a larger touch frequency as the one-handed grip of the user.
  • the default operating area The default operating area.
  • the mobile terminal 1 taking the daily threshold as a time, the number of times f1 of the touch point falling into the first area a and the number f2 of the second area b within 24 hours are collected, and the sizes of f1 and f2 are compared. If the number of times f2 is greater than f1 within 24 hours, the mobile terminal 1 will default the second area b to the default operation area of the user for the user to call. Also, this update time is updated every 24 hours. In addition, users can set weekly, monthly or other custom update cycles, which are updated once per cycle.
  • FIG. 5 is a schematic flowchart of the first embodiment of the operation method of the one-handed mobile terminal according to the present invention. As shown in FIG. 5, the operation method includes:
  • the mobile terminal 1 acquires a one-hand operation instruction of the user.
  • This operation instruction can be customized through the menu. For example, the user double-clicks the blank space of the operation interface to input the one-hand operation instruction. In addition, you can press and hold the touch screen 2 to enter the one-hand operation command.
  • the mobile terminal 1 determines an operation area for performing a touch operation on the mobile terminal 1 from all the first areas or the second areas according to the touch position corresponding to the one-hand operation instruction.
  • S33 The mobile terminal 1 reduces the operation interface and displays it in the determined operation area.
  • the mobile terminal 1 determines, according to the touch position corresponding to the one-hand operation instruction, all the first areas or the second operation area of the mobile terminal that performs the touch operation on the mobile terminal that matches the one-hand operation instruction, all the first areas or the first
  • the two areas refer to a plurality of different areas
  • the first area or the second area corresponds to a plurality of users of different finger operation ranges. For example, if the user A inputs a one-hand operation instruction in the preset area of the lower left 21, the default user holds the lower left 21 area of the touch screen 2 with one hand.
  • the touch screen 2 will display a list of user information for the user to select, and the user selects his own user information, such as a user name, the mobile terminal 1 will acquire an area matching the user information, and reduce and display the entire operation interface.
  • the entire operation interface here refers to all contents on the entire touch screen 2.
  • the user does not need to select the area of the touch operation, but determines the area where the touch operation is performed on the mobile terminal from all the first areas or the second area according to the touch position corresponding to the one-hand operation instruction, such as the user holding the mobile terminal with one hand. Afterwards, the screen is touched with the maximum range that the finger can reach. At this time, a one-hand operation instruction is generated on the touch screen, and then the touch position on the mobile terminal is determined from all the first areas or the second area according to the touch position corresponding to the one-hand operation instruction. The area of operation.
  • FIG. 6 is a schematic flowchart diagram of a second embodiment of a method for operating a mobile terminal with one hand according to the present invention.
  • S41 The mobile terminal 1 determines whether the one-hand adaptation command is turned on.
  • the mobile terminal 1 turns on the one-hand adaptation procedure according to the one-hand adaptation command, and proceeds to step S42; if not, it ends.
  • the mobile terminal 1 acquires the direction in which the user currently holds the mobile terminal 1 with one hand, and prepares a corresponding area.
  • the mobile terminal 1 is provided with a gravity sensor and a temperature sensor.
  • the gravity sensor acquires the direction in which the user currently holds the mobile terminal 1 with one hand, and determines whether the user holds the mobile terminal 1 by the left hand or the right hand according to the temperature sensor. For example, the mobile terminal 1 is determined.
  • the preset area of the lower right 22 is prepared.
  • the mobile terminal 1 determines whether the one-hand operation command triggered by the user is an erroneous operation.
  • step S44 If yes, the process ends, and the current operation mode is retained; if not, the process proceeds to step S44.
  • the mobile terminal 1 saves a one-hand operation instruction by operating the menu customization setting, such as double-clicking the touch screen 2, or long pressing the screen for 6 seconds. Therefore, if the user does not need to turn on the one-hand operation mode when operating the mobile terminal 1, the erroneous operation is avoided; if the one-hand operation needs to be started, the correct one-hand operation instruction must be input before proceeding to the next adaptation. program.
  • the mobile terminal 1 reduces and displays the content of the entire operation interface to the corresponding area.
  • the mobile terminal 1 invokes the user information list in the database for the user to select, and the user selects the corresponding identity information, and the mobile terminal 1 reduces and displays the content of the entire operation interface into the area corresponding to the identity information. That is, the content on the entire screen of the touch screen 2 of the mobile terminal 1 is reduced and displayed in an operation area that matches the user.
  • the mobile terminal 1 can also set a database of area information of different finger lengths at the factory, for example, setting a default adult area and a default youth area, wherein the adult area is respectively set to have a radius according to the length of the fingers of the adult male and female. Different areas of 3cm-5cm, and the adolescent areas are respectively provided with different areas ranging from 1cm to 3cm.
  • the database further includes a custom area, and the user can customize and set his own suitable operation area according to his own usage habits and store it in the database, wherein the customized method is similar to that of the first embodiment, and is no longer Narration.
  • the mobile terminal 1 After the matching one-hand operation instruction is correct, the mobile terminal 1 prompts the user to input a touch point, and the user inputs a touch point in the area that he is used to operate, and the mobile terminal acquires an area corresponding to the touch point according to the touch point, and The entire operation interface is reduced and displayed in this area.
  • S45 The mobile terminal 1 determines whether a selection to close the one-hand operation command is received.
  • step S46 If so, the adaptation process is ended, and the entire operation interface is restored to the entire screen; if not, the process proceeds to step S46.
  • the adaptation process is ended, and the entire operation interface is restored to the entire screen; if the preset time threshold of the automatic one-hand operation command is not exceeded, the current one-hand operation is retained.
  • the interface determines whether the user issues a shutdown command. If the user issues an instruction to close the one-hand operation within the time threshold, the adaptation process is also terminated.
  • FIG. 7 is a schematic structural diagram of an embodiment of a mobile terminal according to the present invention. As shown in FIG. 7, the mobile terminal is further illustrated based on the mobile terminal 1 of FIG. 1.
  • the mobile terminal 1 includes a touch screen 2, and the touch screen 2 is located on the surface of the mobile terminal.
  • the user implements the operation of the host by clicking the touch screen 2, and through the touch screen.
  • the LCD display on 2 can display the audio and video effects.
  • the mobile terminal 1 includes a receiving module 11, a processing module 12, and a storage module 13 in sequence.
  • the receiving module 11 is configured to receive an instruction for the user to collect information;
  • the processing module 12 acquires the coordinate value of the touch point A of the user on the touch screen 2, and acquires the reference point 3 corresponding to the touch point A according to the coordinate value of the touch point A.
  • the storage module 13 corresponding the information of the user with the first area a Stored in the database.
  • the four vertices of the touch screen 2 are four reference points
  • the processing module 12 divides the touch screen 2 into at least four preset areas according to the four reference points of the touch screen 2, and acquires and touches according to the coordinate values of the touch point A.
  • the preset area corresponding to point A acquires the reference point 3 in the preset area.
  • the processing module 12 further acquires a second coordinate value of the second touch point B of the user in the preset area, and acquires a second straight line distance r2 between the second touch point B and the reference point 3, according to the reference point 3 and the
  • the two linear distances r2 form a second region b
  • the storage module 13 further stores the user information in the database corresponding to the second region b.
  • the processing module 12 is further configured to determine, within a preset time threshold, a touch frequency of the user touching the first area a and a touch frequency of the user touching the second area b, and selecting an area with a large touch frequency as the user's one-handed grip. Operating area held.
  • the processing module 12 displays a user information list to the user through the touch screen 2, and after the user selects the corresponding identity information, the processing module 2 reduces the entire operation interface and displays it in the touch screen 2 Within the area that matches the user information.
  • the present invention is different from the prior art.
  • the present invention first receives an instruction to collect information, and acquires coordinate values of at least one touch point of the user on the touch screen, wherein the touch point corresponds to a one-hand finger when the user holds the touch screen with one hand.
  • the maximum range of the touch; the reference point corresponding to the touched point is obtained according to the coordinate value of the touched point; and the linear distance between the touched point and the reference point is obtained, and an area is formed according to the reference point and the straight line distance, and the information and the area of the user are obtained.
  • the common touch point and the area formed by the base point are stored in the database, and after the user opens the one-hand operation adaptation instruction, the intelligently acquires the area matching the user as The area operated by the user with one hand realizes intelligent display of the operation interface of the entire touch screen of the mobile terminal in the corresponding operation area, which is convenient for the user to operate with one hand and improve the user experience.

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  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

本发明公开了一种实现单手操作移动终端的信息采集方法、单手操作移动终端的操作方法及移动终端,其中采集方法包括:接收采集信息的指令,响应该指令获取至少一个用户在触摸屏上的触摸点的坐标值,其中,触摸点对应用户单手握持触摸屏时单手手指触摸的最大范围;根据触摸点的坐标值获取与触摸点对应的基准点;并获取触摸点与基准点之间的直线距离,根据基准点及直线距离形成一区域,并将用户的信息及区域相应存储于数据库中。通过上述方式,本发明能够在用户单手操作移动终端时智能匹配用户单手到达的区域,并将操作界面缩小显示在用户单手到达的区域,方便用户操作,提高用户体验。

Description

单手操作移动终端的信息采集方法、操作方法及移动终端
【技术领域】
本发明涉及移动终端技术领域,特别是涉及一种实现单手操作移动终端的信息采集方法、操作方法及移动终端。
【背景技术】
触摸屏(Touch panel)又称为触控面板,是一种接收触头等输入讯号的感应式液晶显示装置,用户只要用手指轻轻地触控触摸屏上的图标或文字就能实现对终端的操作,使人机交互更加方便直接。
无论是生活、办工还是娱乐,触摸式的移动设备都发挥着极为重要的作用,现今带有触摸屏的触摸式移动设备变成了用户日常生活中不可或缺的一部分,人们外出时往往随身携带移动设备,方便随时随地的进行信息的交流、观看媒体文件或游戏娱乐,因此,人们也越来越喜欢大尺寸的屏幕。可是,通常人们在使用这种移动终端时需要单手操作,而对于屏幕变得越来越大,单手操作的难度也在增加,甚至存在一些边角区域的应用程序图标在单手操作时无法触及,若要触摸这些图标,则需要用户的双手进行操作,给用户操作时带来了极大的不便。
【发明内容】
本发明提供一种实现单手操作移动终端的信息采集方法、操作方法及移动终端,能够实现单手操作移动终端的整个操作界面的应用程序,提高用户体验。
为解决上述问题,本发明提供一种实现单手操作移动终端的信息采集方法,该移动终端包括触摸屏,其采集方法包括:接收采集信息的指令,响应该指令获取至少一个用户在触摸屏上第一触摸点的第一坐标值,其中,第一触摸点对应用户单手握持触摸屏时单手手指所能触摸的最大范围,根据第一触摸点的第一坐标值获取与第一触摸点对应的基准点,获取第一触摸点与基准点之间的第一直线距离,根据基准点及第一直线距离形成第一区域,将用户的信息及第一区域相应存储于数据库中。
其中,触摸屏包括至少四个基准点且根据基准点将触摸屏对应划分为至少四个预设区域,根据第一触摸点的第一坐标值获取第一触摸点对应的预设区域,并获取预设区域内的基准点。
其中,该采集方法还包括:获取用户在预设区域上的第二触摸点的第二坐标值,获取第二触摸点与基准点之间的第二直线距离,根据基准点及第二直线距离形成第二区域,将用户的信息及第二区域相应存储于所述数据库中。
其中,判断在预设的时间阈值内,用户触摸第一区域的触摸频率与用户触摸第二区域的触摸频率大小,并选择触摸频率较大的区域作为用户单手握持的默认操作区域。
本发明还提供一种单手操作移动终端的操作方法,包括上述采集方法,其中,该单手操作移动终端的操作方法包括:移动终端用户的单手操作指令,根据该单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的操作区域,将移动终端的操作界面缩小并显示在确定的操作区域内。
其中,根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的操作区域内的步骤包括:从所有第一区域或第二区域中确定匹配单手操作指令的移动终端上进行触摸操作的操作区域,所有第一区域或第二区域对应多个不同手指操作范围的用户。
其中,操作方法还包括:判断在预设的时间阈值内,用户触摸第一区域的触摸频率与用户触摸第二区域的触摸频率大小,并选择触摸频率较大的区域作为用户单手握持的默认操作区域;根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的操作区域包括:根据单手操作指令选择默认操作区域作为用户在移动终端上进行触摸操作的操作区域。
为解决上述问题,本发明还提供一种移动终端,包括触摸屏,该移动终端包括:接收模块,用于接收采集信息的指令;处理模块,与接收模块连接,用于获取至少一个用户在触摸屏上第一触摸点的第一坐标值,其中,第一触摸点的坐标对应用户单手握持触摸屏时单手手指所能触摸的最大范围,处理模块根据第一触摸点的第一坐标值获取与第一触摸点对应的基准点,并获取第一触摸点与基准点之间的第一直线距离,根据基准点及第一直线距离形成第一区域;存储模块,与处理模块连接,用于将用户的信息及第一区域相应存储于数据库中。
其中,触摸屏包括至少四个基准点,处理模块根据基准点将触摸屏对应划分为至少四个预设区域,处理模块根据第一触摸点的第一坐标值获取第一触摸点对应的预设区域,并获取预设区域的基准点。
其中,处理模块还用于获取用户在预设区域上的第二触摸点的第二坐标值,并获取第二触摸点与基准点之间的第二直线距离,处理模块根据基准点及第二直线距离形成第二区域;存储模块将用户信息及第二区域相应存储于数据库中。
其中,处理模块还用于判断在预设的时间阈值内,用户触摸第一区域的触摸频率与用户触摸第二区域的触摸频率大小,并选择触摸频率较大的区域作为用户单手握持的默认操作区域。
其中,接收模块接收用户的单手操作指令,处理模块根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的操作区域,并将移动终端的操作界面缩小并显示在确定的操作区域内。
其中,处理模块从所有第一区域或第二区域中确定匹配单手操作指令的移动终端上进行触摸操作的操作区域,所有第一区域或第二区域对应多个不同手指操作范围的用户。
其中,处理模块根据单手操作指令选择默认操作区域作为用户在移动终端上进行触摸操作的操作区域。
通过上述方案,本发明的有益效果是:区别于现有技术,本发明用户通过在带有触摸屏的移动终端上接收采集信息的指令,进而获取至少一个用户在触摸屏上的触摸点的坐标值,该触摸点指对应用户单手握持触摸屏时单手手指所能触摸的最大范围;然后根据触摸点的坐标值获取与触摸点对应的基准点,计算触摸点与基准点之间的直线距离,根据基准点及直线距离形成第一区域,将用户信息和第一区域相应存储于数据库中;并且,还以同样的方法采集用户在同一个预设区域中的其他触摸点的坐标值,将其他触摸点与基准点之间形成区域和用户信息相应存储于数据中,进而比较同预设的时间阈值内,用户触摸第一区域与第二区域的触摸频率大小,选择触摸频率大的区域作为用户默认的操作区域;当用户发出单手操作指令时,移动终端匹配单手操作指令进行触摸操作的区域,并将移动终端的整个操作个界面缩小并显示在该区域内,从而实现智能的将整个操作界面缩小显示至用户单手触摸的区域。
【附图说明】
图1是本发明移动终端操作界面划分示意图;
图2是本发明实现单手操作移动终端的信息采集方法第一实施方式的流程示意图;
图3是用户单手触摸触摸屏的触摸点及形成的区域的示意图;
图4是本发明实现单手操作移动终端的信息采集方法第二实施方式的流程示意图;
图5是本发明单手操作移动终端的操作方法第一实施方式的流程示意图;
图6是本发明单手操作移动终端的操作方法第二实施方式的流程示意图;
图7是本发明移动终端实施方式的结构示意图。
【具体实施方式】
下面将结合本发明实施方式中的附图,对本发明实施方式中的技术方案进行清楚、完整地描述,显然,所描述的实施方式仅仅是本发明一部分实施方式,而不是全部的实施方式。基于本发明中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施方式,均属于本发明保护的范围。
为了提高用户体验,方便用户观看影视或游戏操作,移动终端的触摸屏的尺寸越来越大,触摸屏的尺寸由原来的3.5英寸发展到5.5英寸、7英寸甚至更大,而用户通常在上下班坐公交或地铁时操作移动终端进行休闲娱乐,这时往往需要单手操作移动终端,而对于越来越大的触摸屏,经常会存在单手手指不能触及的范围,本发明的实施方式提出一种实现单手操作移动终端的信息采集方法、操作方法及移动终端,实现单手操作移动终端的整个触摸屏。
请一起参看图1、图2及图3,其中,图1是本发明移动终端操作界面划分示意图。如图1所示,移动终端1包括触摸屏2,触摸屏2上通常包括四个顶角,以这四个顶角为基准点3,将触摸屏2划分为下左21、下右22、上左23、上右24的四个预设区域。该移动终端可以为手机、IPad或其他带有触摸屏的移动设备。这里的基准点3的选取是根据用户单手握持移动终端1时,手指(一般是拇指)能够触摸到的屏幕范围,是以此基准点3为圆心,手指长度为半径所覆盖的范围,因此基准点3的选取主要依据单手握持位置和触摸用的手指而确定。
请结合图1进一步参看图2,图2是本发明实现单手操作移动终端的信息采集方法第一实施方式的流程示意图。如图1所示,本实施方式所揭示的实现单手操作移动终端的信息采集方法基于图1的移动终端1进行阐述,该采集方法包括:
S11:移动终端1接收采集信息的指令。
其中,用户通过触摸移动终端1的触摸屏2开启采集信息的指令,例如双击操作界面空白处;此外,用户还可以通过按压移动终端1的侧键开启采集信息的指令。移动终端1通过触摸屏2向用户展示一个设置接口,用户点击该设置接口进入选择单手操作区域设置,然后选择个人手持区域信息录入进入到采集个人信息的准备。
S12:移动终端1响应采集信息的指令获取至少一个用户在触摸屏2上第一触摸点A的第一坐标值。
在本实施方式中,至少一个用户是指移动终端1采用同样的采集方法采集多个用户的触摸点的坐标值,但是采集过程是先采集并设置完一个用户的信息后再进行采集第二个用户的信息,这里以采集一个用户的信息为例说明。
请参看图3,图3是用户单手触摸触摸屏的触摸点及形成的区域的示意图。如图3所示,由于触摸屏2在物理上是一个绝对坐标系统,每次触摸的数据通过校准数据转为触摸屏2上的坐标。这里以下左21区域的基准点3为坐标原点进行说明。用户单手握持移动终端1,移动终端1获取用户单手手指在触摸屏2上的第一触摸点A,并读取第一触摸点A的第一坐标值。并且,该第一触摸点A优选为用户单手握持触摸屏2时单手手指触摸触摸屏2的最大范围,通常是指用户单手握持触摸屏2时,常用手指触摸触摸屏2的最远距离点。
S13:移动终端1根据第一触摸点A的第一坐标值获取与该第一触摸点对应的基准点3。
移动终端1根据第一触摸点A的坐标值获取与第一触摸点对应的预设区域,移动终端1进而获取预设区域内的基准点3,例如,如果第一触摸点A落入下左21区域内,则直接获取下左21区域内的基准点3,即下左方的基准点3,同时,下左方的基准点3也是整个触摸屏2中所有基准点中与该第一触摸点距离最接近的。
S14:移动终端1获取第一触摸点A与基准点3之间的第一直线距离r1。
其中,根据两点之间,直线距离最短的原理,获取第一触摸点A与基准点3之间的第一直线距离r1。
S15:移动终端1根据基准点3与第一直线距离r1形成第一区域a。
在本实施方式中,以基准点3为坐标原点,以第一直线距离r1为半径形成一个扇状区域作为第一区域a。在其他实施方式中,还可以以基准点3为一个基准角,以第一触摸点A的坐标绝对值为长宽形成一个矩形区域作为第一区域a;或者以基准点3及第一直线距离r1形成其他图形作为第一区域a。
采用上述步骤采集用户在触摸屏2其他预设区域内形成的其他区域,即相应采集用户在下右22、上左23和上右24的预设区域内的相应区域。在其他实施方式中,也可以直接根据第一直线距离r1智能的在其他基准点相应的生成对应的区域,省略用户重新触摸其他预设区域再进行信息采集的过程。
S16:移动终端1将用户的信息及第一区域a相应存储于数据库中。
其中,用户的信息,可以指用户的名字、昵称或指纹等可以区别不同用户身份的信息。
由于用户单手操作移动终端1时,单手手指并没有触摸可以伸到的最大范围处,而是将手指习惯性的放在一个较为舒适的区域内进行操作。请参看图4,图4是本发明实现单手操作移动终端的采集方法第二实施方式的流程示意图。如图4所示,本实施方式所揭示的实现单手操作移动终端的信息采集方法是在第一实施方式的基础上进一步阐述,该采集方法包括:
S21:移动终端1获取用户在预设区域上的第二触摸点B的第二坐标值。
例如,同样在预设的下左21区域内获取第二触摸点B的第二坐标值,该第二触摸点B与第一触摸点A的对应下左21区域的不同位置。
S22:移动终端1获取第二触摸点B与基准点3之间的第二直线距离r2。
在本实施方式中,第二触摸点B与基准点3之间的直线距离r2和第一触摸点A与基准点3之间的直线距离r1并不相等。
S23:移动终端1根据基准点3及第二直线距离r2形成第二区域b。
其中,第二区域b的形成与步骤S15中第一区域a的形成类似,在此不再赘述。需要注意的是,第二区域b与第一区域a的形状是相对应的,例如,第一区域a为扇形,则第二区域b也为扇形。
S24:移动终端1将用户的信息及第二区域b相应存储于数据库中。
其中步骤S24与步骤S16类似,在此不再赘述。
S25:移动终端1判断在预设的时间阈值内,用户触摸第一区域a的触摸频率与用户触摸第二区域b的触摸频率大小,并选择触摸频率较大的区域作为用户单手握持的默认操作区域。
在本实施方式中,例如,以每天作为一个时间阈值,则采集用户在24小时内触摸点落入第一区域a的次数f1和第二区域b的次数f2,并比较f1和f2的大小,如果在24小时内,次数f2大于f1,则移动终端1将默认第二区域b为用户的默认操作区域供用户调用。并且,这个更新时间为每24小时更新一次。此外,用户还可以设置每周、每月或其他自定义的更新周期,每周期更新一次。
完成采集过程中,将进行用户单手操作移动终端1的适配过程,请参看图5,图5是本发明单手操作移动终端的操作方法第一实施方式的流程示意图。如图5所示,该操作方法包括:
S31:移动终端1获取用户的单手操作指令。
此操作指令可以通过菜单自定义设置,如用户单手双击操作界面的空白处,输入单手操作指令。此外,还可以长按触摸屏2输入单手操作的指令。
S32:移动终端1根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端1上进行触摸操作的操作区域。
S33:移动终端1将操作界面缩小并显示在确定的操作区域内。
在步骤S32和S33中,移动终端1根据单手操作指令对应的触摸位置所有第一区域或第二中确定匹配单手操作指令的移动终端上进行触摸操作的操作区域,所有第一区域或第二区域指多个不同的区域,第一区域或第二区域对应多个不同手指操作范围的用户。例如,用户甲在左下21的预设区域内输入单手操作指令,则默认用户单手握持触摸屏2的左下21区域。此时,触摸屏2将向展示一个用户信息列表供用户选择,用户选择自己的用户信息,如用户名,则移动终端1将获取与用户信息匹配的区域,并将整个操作界面缩小并显示在该区域内,这里的整个操作界面指的是整个触摸屏2上的所有内容。
或者,无需用户选择触摸操作的区域,而是根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的区域,比如用户单手握持移动终端后,以手指能伸到的最大范围触摸屏幕,此时在触摸屏上产生单手操作指令,然后根据单手操作指令对应的触摸位置从所有第一区域或第二区域中确定在移动终端上进行触摸操作的区域。
请参看图6,图6是本发明单手操作移动终端的方法第二实施方式的流程示意图。
S41:移动终端1判断是否开启单手适配指令。
若是,则移动终端1根据该单手适配指令开启单手适配程序,并进入步骤S42;若否,则结束。
S42:移动终端1获取用户当前单手握持移动终端1的方向,并准备相应的区域。
移动终端1设有重力传感器和温度传感器,根据重力传感器获取用户当前单手握持移动终端1的方向,根据温度传感器判断用户是左手握持还是右手握持移动终端1,例如判断出移动终端1被用户使用右手正向朝下握持,则准备右下22的预设区域。
S43:移动终端1判断用户触发的单手操作指令是否为误操作。
若是,则结束,保留当前的操作模式;若否,进入步骤S44。
在本实施方式中,移动终端1通过操作菜单自定义设置保存有单手操作指令,如双击触摸屏2,或长按屏幕6秒钟。因此,如果用户在操作该移动终端1时,若不需要开启单手操作模式,则避免了误操作;若需要启动单手操作,则必须输入正确的单手操作指令,才进入下一步适配程序。
S44:移动终端1将整个操作界面的内容缩小并显示至相应的区域。
在本实施方式中,移动终端1调用数据库中的用户信息列表供用户选择,用户选择相应的身份信息,则移动终端1将整个操作界面的内容缩小并显示至与该身份信息相应的区域内,即将移动终端1的触摸屏2整个屏幕上的内容缩小并显示至与用户匹配的操作区域内。
此外,移动终端1还可以在出厂时设置不同手指长度的区域信息数据库,例如,设置默认的成人区域和默认的青少年区域,其中,成人区域又根据成年男女的手指的长度,分别设置有半径为3cm-5cm的不同区域范围,而青少年区域分别设置有半径为1cm-3cm的不同区域范围。并且,该数据库还包括一个自定义区域,用户可根据自己的使用习惯自定义设置自己适合的操作区域并存储于该数据库中,其中自定义的方法和第一实施方式的类似,在此不再赘述。移动终端1在匹配单手操作指令正确后,将提示用户输入一个触摸点,用户在自己习惯操作的区域内输入一个触摸点,移动终端根据该触摸点获取与该触摸点相应的区域,并将整个操作界面的缩小并显示在该区域内。
S45:移动终端1判断是否接收到选择关闭单手操作指令。
若是,则结束这次适配过程,将整个操作界面恢复至整个屏幕;若否,则进入步骤S46。
S46:判断是否超过预设的时间阈值。
若超过预设的自动关闭时间,则结束这次的适配过程,将整个操作界面恢复至整个屏幕;若没有超过预设的自动关闭单手操作指令的时间阈值,则保留当前的单手操作界面,并判断用户是否发出关闭指令,若用户在时间阈值内发出关闭单手操作的指令,则也结束这次适配过程。
在其他实施方式中,也可以设置成用户在选择了单手操作区域内的某个程序后,则自动结束单手适配过程,将启动的程序显示在整个屏幕中。
本发明还提出了一种移动终端,请参看图7,图7是本发明移动终端实施方式的结构示意图。如图7所示,该移动终端是基于图1的移动终端1进一步阐述,该移动终端1包括触摸屏2,触摸屏2位于移动终端的表面,用户通过点击触摸屏2实现对主机的操作,并且通过触摸屏2上的液晶显示画面可显示出影音效果。
并且,该移动终端1包括依次连接接收模块11、处理模块12及存储模块13。其中,接收模块11用于接收用户采集信息的指令;处理模块12获取用户在触摸屏2上的触摸点A的坐标值,并根据该触摸点A的坐标值获取与触摸点A对应的基准点3,并获取触摸点A与基准点3之间的第一直线距离r1,根据基准点3及第一直线距离r1形成第一区域a;存储模块13将用户的信息与第一区域a相应存储于数据库中。
其中,触摸屏2的四个顶角为四个基准点,处理模块12根据触摸屏2的四个基准点将触摸屏2对应划分为至少四个预设区域,并根据触摸点A的坐标值获取与触摸点A对应的预设区域,获取预设区域内的基准点3。此外,处理模块12还获取用户在预设区域内的第二触摸点B的第二坐标值,获取第二触摸点B与基准点3之间的第二直线距离r2,根据基准点3与第二直线距离r2形成第二区域b,存储模块13进一步将用户信息与第二区域b相应存储于数据库中。该处理模块12还用于判断在预设的时间阈值内,用户触摸所述第一区域a的触摸频率与用户触摸第二区域b的触摸频率大小,选择触摸频率大的区域作为用户单手握持的操作区域。
并且,处理模块12在接收到用户的单手操作指令后,通过触摸屏2向用户展示一个用户信息列表,用户选择了相应的身份信息后,处理模块2将整个操作界面缩小并显示在触摸屏2中与用户信息相匹配的区域内。
综上所述,区域别于现有技术,本发明先是接收采集信息的指令,获取至少一个用户在触摸屏上的触摸点的坐标值,其中,触摸点对应用户单手握持触摸屏时单手手指触摸的最大范围;根据触摸点的坐标值获取与触摸点对应的基准点;并获取触摸点与基准点之间的直线距离,根据基准点及直线距离形成一区域,并将用户的信息及区域相应存储于数据库中,并进一步获取用户在预设区域内常用触摸点与基点形成的区域相应存储于数据库中,在用户开启单手操作适配指令后,智能的获取与用户相匹配的区域作为用户单手操作的区域,实现智能的将移动终端整个触摸屏的操作界面缩小显示在相应的操作区域内,方便用户单手操作,提高用户体验。
以上所述仅为本发明的实施方式,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (14)

  1. 一种实现单手操作移动终端的信息采集方法,所述移动终端包括触摸屏,其中,所述采集方法包括:
    接收采集信息的指令;
    响应所述指令获取至少一个用户在所述触摸屏上第一触摸点的第一坐标值,其中,所述第一触摸点对应所述用户单手握持所述触摸屏时所述单手手指所能触摸的最大范围;
    根据所述第一触摸点的第一坐标值获取与所述第一触摸点对应的基准点;
    获取所述第一触摸点与所述基准点之间的第一直线距离;
    根据所述基准点及所述第一直线距离形成第一区域;
    将所述用户的信息及所述第一区域相应存储于数据库中。
  2. 根据权利要求1所述的采集方法,其中,所述触摸屏包括至少四个所述基准点且根据所述基准点将所述触摸屏对应划分为至少四个预设区域,所述根据所述第一触摸点的第一坐标值获取与所述第一坐标值对应的基准点的步骤,包括:
    根据所述第一触摸点的第一坐标值获取所述第一触摸点对应的预设区域,并获取所述预设区域内的所述基准点。
  3. 根据权利要求2所述的采集方法,其中,所述采集方法还包括:
    获取所述用户在所述预设区域上的第二触摸点的第二坐标值;
    获取所述第二触摸点与所述基准点之间的第二直线距离;
    根据所述基准点及所述第二直线距离形成第二区域;
    将所述用户的信息及所述第二区域相应存储于所述数据库中。
  4. 根据权利要求3所述的采集方法,其中,判断在预设的时间阈值内,所述用户触摸所述第一区域的触摸频率与所述用户触摸所述第二区域的触摸频率大小,并选择触摸频率较大的区域作为所述用户单手握持的默认操作区域。
  5. 一种单手操作移动终端的操作方法,所述方法包括权利要求3所述的采集方法,其中,所述操作方法包括:
    所述移动终端获取用户的单手操作指令;
    根据所述单手操作指令对应的触摸位置从所有所述第一区域或第二区域中确定在所述移动终端上进行触摸操作的操作区域;
    将所述移动终端的操作界面缩小并显示在确定的所述操作区域内。
  6. 根据权利要求5所述的操作方法,其中,所述根据所述单手操作指令对应的触摸位置从所有所述第一区域或第二区域中确定在所述移动终端上进行触摸操作的操作区域内的步骤包括:
    从所有所述第一区域或第二区域中确定匹配所述单手操作指令的所述移动终端上进行触摸操作的操作区域,所有所述第一区域或第二区域对应多个不同手指操作范围的用户。
  7. 根据权利要求5所述的操作方法,其中,所述操作方法还包括:
    判断在预设的时间阈值内,所述用户触摸所述第一区域的触摸频率与所述用户触摸所述第二区域的触摸频率大小,并选择触摸频率较大的区域作为所述用户单手握持的默认操作区域;
    所述根据所述单手操作指令对应的触摸位置从所有所述第一区域或第二区域中确定在所述移动终端上进行触摸操作的操作区域包括:
    根据所述单手操作指令选择所述默认操作区域作为所述用户在所述移动终端上进行触摸操作的操作区域。
  8. 一种移动终端,包括触摸屏,其中,所述移动终端还包括:
    接收模块,用于接收采集信息的指令;
    处理模块,与所述接收模块连接,用于获取至少一个用户在所述触摸屏上第一触摸点的第一坐标值,其中,所述第一触摸点的坐标对应所述用户单手握持所述触摸屏时所述单手手指所能触摸的最大范围,所述处理模块根据所述第一触摸点的第一坐标值获取与所述第一触摸点对应的基准点,并获取所述第一触摸点与所述基准点之间的第一直线距离,根据所述基准点及所述第一直线距离形成第一区域;
    存储模块,与所述处理模块连接,用于将所述用户的信息及所述第一区域相应存储于数据库中。
  9. 根据权利要求8所述的移动终端,其中,所述触摸屏包括至少四个所述基准点,所述处理模块根据所述基准点将所述触摸屏对应划分为至少四个预设区域,所述处理模块根据所述第一触摸点的第一坐标值获取所述第一触摸点对应的预设区域,并获取所述预设区域的所述基准点。
  10. 根据权利要求9所述的移动终端,其中,所述处理模块还用于获取所述用户在所述预设区域上的第二触摸点的第二坐标值,并获取所述第二触摸点与所述基准点之间的第二直线距离,所述处理模块根据所述基准点及所述第二直线距离形成第二区域;所述存储模块将所述用户信息及所述第二区域相应存储于所述数据库中。
  11. 根据权利要求10所述的移动终端,其中,所述处理模块还用于判断在预设的时间阈值内,所述用户触摸所述第一区域的触摸频率与所述用户触摸第二区域的触摸频率大小,并选择触摸频率较大的区域作为所述用户单手握持的默认操作区域。
  12. 根据权利要求11所述的移动终端,其中,所述接收模块接收所述用户的单手操作指令,所述处理模块根据所述单手操作指令对应的触摸位置从所有所述第一区域或第二区域中确定在所述移动终端上进行触摸操作的操作区域,并将所述移动终端的操作界面缩小并显示在确定的所述操作区域内。
  13. 根据权利要求12所述的移动终端,其中,所述处理模块从所有所述第一区域或第二区域中确定匹配所述单手操作指令的所述移动终端上进行触摸操作的操作区域,所有所述第一区域或第二区域对应多个不同手指操作范围的用户。
  14. 根据权利要求12所述的移动终端,其中,所述处理模块根据所述单手操作指令选择所述默认操作区域作为所述用户在所述移动终端上进行触摸操作的操作区域。
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