WO2014154032A1 - 一种控制终端翻页的方法及终端 - Google Patents

一种控制终端翻页的方法及终端 Download PDF

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Publication number
WO2014154032A1
WO2014154032A1 PCT/CN2014/070431 CN2014070431W WO2014154032A1 WO 2014154032 A1 WO2014154032 A1 WO 2014154032A1 CN 2014070431 W CN2014070431 W CN 2014070431W WO 2014154032 A1 WO2014154032 A1 WO 2014154032A1
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WO
WIPO (PCT)
Prior art keywords
distance
page turning
terminal
value
page
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PCT/CN2014/070431
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English (en)
French (fr)
Inventor
周贞卿
Original Assignee
东莞金卓通信科技有限公司
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Publication date
Application filed by 东莞金卓通信科技有限公司 filed Critical 东莞金卓通信科技有限公司
Publication of WO2014154032A1 publication Critical patent/WO2014154032A1/zh
Priority to US14/833,328 priority Critical patent/US9720573B2/en

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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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0483Interaction with page-structured environments, e.g. book metaphor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1684Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675
    • G06F1/1694Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675 the I/O peripheral being a single or a set of motion sensors for pointer control or gesture input obtained by sensing movements of the portable computer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0346Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of the device orientation or free movement in a 3D space, e.g. 3D mice, 6-DOF [six degrees of freedom] pointers using gyroscopes, accelerometers or tilt-sensors
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04817Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/0485Scrolling or panning
    • 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

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to a method and a terminal for controlling page turning of a terminal. Background technique
  • mobile phones have become an indispensable part of people's lives.
  • the functions of mobile phones have become more and more powerful. From the previous, they can only make calls, send text messages to play music now, play videos, Bluetooth, take photos, go online, Reading, etc.
  • mobile phone features are becoming more and more powerful, and the variety of mobile phone applications on mobile phones is increasing.
  • there are many types of mobile applications and there are more and more application icons on mobile phones, so that most applications have multiple pages, and multiple pages are required for browsing. For example, when we want to browse pictures, there may be thousands of photos. When browsing, we need to browse through pages.
  • e-books we may read e-books.
  • the finger screen can be used to touch the screen of the mobile phone, and the finger is drawn on the screen of the mobile phone.
  • Move the page to browse, or shake the phone use the built-in sensor of the phone to sense the shaking of the phone and flip through the page according to the shaking data of the phone, or flip through the page by manually entering the page number or using the page switching progress bar.
  • the browsing method of the browsing page of the prior art may need to continuously touch the screen of the mobile phone to browse the page when the number of browsing pages is large, and the user wants to switch the page faster at a faster speed.
  • the speed of the touch switch is easy to make the touch screen of the touch phone sour, and it is easy to wear the touch screen of the mobile phone, and the accuracy is low.
  • the touch difficulty of the mobile phone is increased. It is easier to wear the touch screen of the phone.
  • the number of browsing pages is large, it is necessary to shake the mobile phone multiple times to flip the browsing page or use a large acceleration to shake the mobile phone to increase the page turning speed of the browsing page, or manually drag the page switching progress bar to browse the page.
  • Turning the page it is easy to increase the pressure of the hand, and the accuracy of turning pages is low.
  • the page turning speed control is difficult, the flipping efficiency is low, and the user's hand fatigue is easily caused, and the user experience is low. Summary of the invention
  • Embodiments of the present invention provide a method for controlling page turning of a terminal and a terminal.
  • the page turning operation instruction can be generated according to the distance between the object and the terminal, and the corresponding page turning operation instruction is executed, which improves the diversity of the page turning mode, improves the page turning efficiency, and enhances the user experience of the terminal.
  • An embodiment of the present invention provides a method for controlling page turning of a terminal, including:
  • the page turning operation instruction is executed.
  • the embodiment of the invention further provides a terminal, including:
  • An acquiring unit configured to acquire a distance value or a distance change value of an object and a terminal in a specified direction of the terminal;
  • a processing unit configured to generate a page turning operation instruction corresponding to a distance value or a distance change value of the object and the terminal according to a preset distance value between the object and the terminal or a corresponding relationship between the distance change value and the page turning operation command;
  • An execution unit configured to execute the page turning operation instruction.
  • the embodiment of the present invention According to the distance value or the distance change value of the object and the terminal, the embodiment of the present invention generates a corresponding page turning operation instruction according to the distance relationship between the preset object and the terminal or the corresponding relationship between the distance change value and the page turning operation instruction, and executes corresponding
  • the page turning operation instruction improves the diversity of the page turning mode, improves the page turning efficiency, and enhances the user experience of the terminal.
  • FIG. 1 is a schematic flow chart of an embodiment of a method for controlling page turning of a terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of an embodiment of a terminal according to an embodiment of the present invention.
  • the terminal described in the embodiment of the present invention may include: a mobile phone, a tablet computer, a notebook computer, a digital camera, and the like, which often need to switch pages.
  • the above terminals are merely examples, not exhaustive, and include but are not limited to the above terminals.
  • the method and terminal for controlling the page turning of the terminal provided by the embodiment of the present invention are specifically described and illustrated by taking a terminal such as a mobile phone as an example.
  • FIG. 1 is a schematic flow chart of an embodiment of a method for controlling page turning of a terminal according to an embodiment of the present invention.
  • the method for controlling page turning of a terminal described in this embodiment includes the following steps:
  • a distance sensor or a gravity acceleration sensor of the mobile phone may be used to obtain a distance value or a distance change value of an object in a specified direction (for example, an object for a touch mobile phone such as a user's finger) and the mobile phone, wherein
  • the above specified directions may include: the moving direction of the mobile phone or the measuring direction of the mobile phone.
  • the distance sensor of the mobile phone can be used to obtain the distance value or the distance change value of the object and the mobile phone in the measurement direction of the distance sensor, or when the mobile phone is in the motion state, the gravity sensor of the mobile phone can be used to acquire the object and the mobile phone on the mobile phone.
  • the distance value or distance change value in the direction of motion may be used to obtain a distance value or a distance change value of an object in a specified direction (for example, an object for a touch mobile phone such as a user's finger) and the mobile phone, wherein
  • the above specified directions may include: the moving direction of the mobile phone or the measuring direction of the mobile phone.
  • a page triggering distance for triggering the automatic page turning function of the mobile phone may be preset, that is, only when the distance value or the distance change value of the mobile phone and the object acquired by the distance sensor or the gravity sensor of the mobile phone meet the preset value When the distance is triggered, the phone will initiate automatic page turning. After the mobile phone obtains the distance value or the distance change value between the object and the mobile phone in the specified direction, it can be determined whether the distance value or the distance change value between the mobile phone and the object is less than or equal to the preset page turning trigger distance.
  • a page turning trigger distance may be preset according to the range of use of the distance sensor, or a page turning trigger distance may be set according to the specific conditions of other paths, that is, when the distance value or the distance change value between the mobile phone and the object falls on
  • Page function For example, if the range of the distance sensor is 10 cm, you can set a page flipping distance of 8 cm, that is, when the distance of the mobile phone user's hand or other object (ie, object) used to control the mobile phone is less than or from the mobile phone. When it is equal to 8 cm, it can be judged that the distance value between the current object and the mobile phone satisfies the preset page turning trigger distance, and the page turning function of the mobile phone can be started.
  • the distance value or the distance change value and the page turning operation instruction according to the preset object and the mobile phone may be The corresponding relationship is used to determine the switching mode of the page, and a corresponding page turning operation instruction is generated, and a corresponding page turning operation instruction is executed, and the page can be switched to the target page.
  • the page turning operation instruction may include: a page turning direction, a page turning speed, a page turning page number, a proportional page turning, and the like.
  • the page turning operation instruction corresponding to the distance value or the distance change value of the object and the terminal may include multiple types. Generate mode.
  • the correspondence between the distance value of the object and the terminal or the distance change value and the page turning operation command may be preset.
  • the page turning speed corresponding to the distance value or the distance change value of each of the objects and the terminal may be preset.
  • the correspondence between the distance value or the distance change value of the object and the terminal and the page turning speed may include: a correspondence relationship between a linear correspondence relationship and an index correspondence relationship.
  • the object can be obtained according to the obtained user's finger or the like.
  • the real-time distance value or the distance change value of the mobile phone combined with the corresponding relationship, determines the page turning speed corresponding to the distance value or the distance change value, generates a corresponding page turning operation instruction, and switches the current page to the corresponding page turning speed to Target page.
  • the distance value between the object and the mobile phone or the distance change value and the page turning operation command is the correspondence between the distance value of the object and the terminal or the distance change value and the page turning speed
  • the corresponding relationship is a linear correspondence relationship
  • L is the real-time distance value of the object and the terminal or the real-time distance change value, M is the initial page turning speed (the initial page turning speed M can be zero, or other constants, which can be set according to the specific situation.
  • the constant coefficient of the correspondence relationship L is the real-time distance value or real-time distance change value of the object and the terminal, and M is the initial page turning speed (the initial page turning speed M can be zero or other constants, which can be set according to specific conditions)
  • the page turning speed corresponding to the distance value or the distance change value of the current object and the terminal may be determined according to the above-mentioned exponential correspondence equation.
  • the corresponding page turning speed is slower.
  • the user can put the finger above the distance sensor of the mobile phone, and the distance between the finger and the mobile phone falls within the preset page turning trigger distance. If you need to quickly switch pages, just close your finger to the distance sensor of your phone and shorten the distance between your hand and the phone to increase the page turning speed.
  • the page is close to the target page, move the phone away from the distance sensor of the phone. The distance between the hand and the phone to reduce the page turning speed.
  • the distance value or the distance change value of the object and the terminal may be divided into multiple distance intervals in advance, and Set the page turning speed or page turning direction corresponding to each distance interval.
  • the correspondence between the distance interval and the page turning speed may include: a linear correspondence, an index correspondence, and the like.
  • the constant coefficient of the correspondence relationship of the page turning speed N is the distance interval between the distance value of the object and the terminal or the distance change value
  • M is the initial page turning speed (the initial page turning speed M can be zero or other constants, According to the specific situation, after obtaining the real-time distance value or the real-time distance change value of the object and the terminal, it can determine which distance range the distance value or the distance change value falls in, and then determine according to the above linear correspondence equation The page turning speed corresponding to the distance value or distance change value of the current object and the terminal.
  • N is the distance interval between the distance value of the object and the terminal or the distance change value.
  • M is the initial page turning speed (the initial page turning speed M can be zero or other constants, which can be set according to the specific situation), then it is obtained.
  • the real-time distance value of the object and the terminal or the real-time distance change value After the real-time distance value of the object and the terminal or the real-time distance change value, it can be determined which distance range the distance value or the distance change value falls in, and then the distance value or distance change between the current object and the terminal is determined according to the above-mentioned exponential correspondence equation.
  • the page turning speed corresponding to the value After the real-time distance value of the object and the terminal or the real-time distance change value, it can be determined which distance range the distance value or the distance change value falls in, and then the distance value or distance change between the current object and the terminal is determined according to the above-mentioned exponential correspondence equation.
  • the page turning speed corresponding to the value After the real-time distance value of the object and the terminal or the real-time distance change value, it can be determined which distance range the distance value or the distance change value falls in, and then the distance value or distance change between the current object and the terminal is determined according to the above-mentioned exponential correspondence equation.
  • the distance value of the object and the terminal or the distance change value divided by the distance change value and the page turning speed are When the relationship is corresponding, the corresponding relationship may also be set to other correspondences, and the page turning trigger distance may be divided into a plurality of distance intervals in advance, and the page turning speed corresponding to each distance interval is set, and the object and the mobile phone are obtained. After the distance value or the distance change value, it can be determined which distance distance the distance value or the distance change value falls on, and according to the page turning speed corresponding to the distance interval.
  • the above-mentioned correspondence relationship can be used to determine the page turning speed corresponding to the distance value or the distance change value of the object at this time, and generate a corresponding page turning operation instruction.
  • the page turning trigger distance for example, 8 cm
  • the page turning trigger distance can be divided into a first distance interval (0-4 cm), a second distance interval (4-6 cm), and a third distance interval (6-8 cm). , and set the distance interval of 0-4 cm (ie, the first distance interval).
  • the corresponding page turning speed is 10 pictures in 1 second, and the distance range in 4-6 cm (second distance interval) corresponds to the page turning speed. 5 pictures in 1 second, 6-8 cm distance interval (ie, the third distance interval)
  • the corresponding page turning speed is 1 picture per second.
  • the page can be switched according to the page turning of 10 icons in 1 second.
  • the distance interval is the third distance interval, and the corresponding page turning speed is 1 picture per second, then the page can be switched according to the page turning speed, and the page turning speed is reduced from the original 1 second to 10 pictures to 1 second. Pictures.
  • the correspondence between the distance value or the distance change value of the set object and the mobile phone and the page turning operation command is the distance between the object and the terminal distance value or the distance change value and the page turning direction.
  • the setting triggering distance can be divided into two distance sections in advance, and the page turning direction corresponding to the two distance sections is set, and after obtaining the distance between the object and the mobile phone, the judgment can be obtained.
  • the distance value falls on which distance interval, and according to the page turning direction corresponding to the distance interval, the page turning direction corresponding to the distance between the object and the mobile phone is determined, and a corresponding page turning operation command is generated.
  • the page turning trigger distance (for example, 8 cm) can be equally divided into two distance intervals, for example, divided into a fourth distance interval (0-4 cm) and a fifth distance interval (4-8 cm), and set.
  • the page turning direction corresponding to 0-4 cm ie, the fourth distance interval
  • the page turning direction corresponding to 4-8 cm is another direction (for example: turn).
  • the page can be switched up to switch the page to the target page.
  • the page can be switched downward. To switch the page to the target page.
  • the distance value or the distance change value of the object and the terminal may be pre-determined according to the reference distance (for example, the foregoing pre-
  • the ratio relationship of the set page triggering distance is assigned to the total number of pages of the file, and the page number or page turning target page number corresponding to the corresponding ratio is set.
  • the page number corresponding to the ratio of the distance value or the distance change value of the object to the mobile phone and the preset page turning trigger distance may be preset (the page number may be determined according to the corresponding page page number), that is, the page number may be predefined
  • the page number corresponding to each ratio after obtaining the distance value or the distance change value of the object and the mobile phone, can determine the ratio of the obtained distance value or the distance change value to the preset page turning trigger distance, according to the relationship between the two The proportional relationship determines the page number of the corresponding page.
  • the current page After determining the page value corresponding to the distance value or the distance change value of the current object and the mobile phone, the current page can be switched to the page corresponding to the corresponding page code, that is, the target page.
  • the corresponding page page number is the last page of the e-book, that is, the number of pages turned is the total number of pages of the e-book, when The distance between the object and the mobile phone is 8 cm, that is, when the ratio of the two is 1, the page number of the corresponding page is the first page of the e-book, that is, the number of pages turned is 1 page, when the distance between the object and the mobile phone is 4 cm, That is, when the ratio of the two is 1:2, the page number of the corresponding page is the page number corresponding to half of the total number of pages of the e-book, that is, the number of pages turned is half of the total number of pages of the e-book, when the distance between the object and the mobile phone
  • the page number corresponding to the ratio of the page turning distance is not When an integer is used, the corresponding page number of the page can be determined as the page number of the page after the rounding, and the page
  • the current page can be switched to The page corresponding to the page number corresponding to 1/4 of the total number of pages of the e-book.
  • the ratio of the current distance (6 cm) to the preset page turning trigger distance (8 cm) is 3:4, then the current page can be switched to the electronic The page corresponding to the page number corresponding to 3/4 of the total number of pages of the book.
  • the method for setting the correspondence between the distance value or the distance change value of the object and the terminal and the page turning operation command may be used alone or in combination with each other, so that the page turning method is more flexible and diverse.
  • the corresponding page turning manner can be determined according to the corresponding relationship, and the distance value or the distance change value of the object and the mobile phone can be determined.
  • Corresponding page turning operation instructions, and executing corresponding page turning operation instructions switch the current page to the target page.
  • the embodiment of the present invention pre-sets the correspondence between the distance value or the distance change value of the object and the terminal and the page turning operation instruction, and changes the distance value or the distance according to the acquired object (for example, the finger of the mobile phone user) and the mobile phone.
  • the value is used to judge the corresponding switching mode, the corresponding page turning operation instruction is generated, and the corresponding page turning operation instruction is executed to switch the current page to the target page, thereby improving the diversity of the page turning mode, improving the page turning efficiency, and enhancing the The user experience of the phone.
  • FIG. 2 is a schematic structural diagram of an embodiment of a terminal according to an embodiment of the present invention.
  • the terminal described in this embodiment includes:
  • the obtaining unit 10 is configured to acquire a distance value or a distance change value of the object in the specified direction of the terminal and the terminal.
  • the processing unit 20 is configured to generate a page turning operation instruction corresponding to the distance value or the distance change value of the object and the terminal according to the preset distance value between the object and the terminal or the corresponding relationship between the distance change value and the page turning operation instruction.
  • the executing unit 30 is configured to execute the page turning operation instruction.
  • the terminal described in this embodiment further includes:
  • the preset unit 40 is configured to preset a correspondence between a distance value or a distance change value of the object and the terminal and a page turning operation instruction;
  • the preset unit 40 may include:
  • the first preset unit 41 is configured to set a page turning speed corresponding to a distance value or a distance change value of each of the objects and the terminal.
  • the second preset unit 42 is configured to divide the distance value or the distance change value of the object and the terminal into a plurality of distance sections, and set a page turning speed or a page turning direction corresponding to each distance section.
  • the third preset unit 43 is configured to allocate the total number of pages of the file according to the distance value of the object and the terminal or the ratio of the distance change value to the reference distance, and set the page number or page turning corresponding to the corresponding ratio. Target page number.
  • the preset unit 40 may include any one of the first preset unit 41, the second preset unit 42, and the third preset unit 43 or a plurality of unit combinations, or may include the first preset unit at the same time. 41.
  • the acquiring unit 10 may obtain a distance value or a distance change value between an object in a specified direction (for example, an object used by the user's finger and the like for touching the mobile phone) and the mobile phone by using a distance sensor of the mobile phone or a gravity acceleration sensor, or other means.
  • the specified direction may include: a moving direction of the mobile phone or a measuring direction of the mobile phone.
  • the obtaining unit 10 can obtain the distance value or the distance change value of the object and the mobile phone in the measurement direction of the distance sensor through the distance sensor of the mobile phone, or obtain the object and the mobile phone through the gravity sensor of the mobile phone when the mobile phone is in the motion state.
  • the distance value or distance change value in the direction of movement of the mobile phone may obtain a distance value or a distance change value between an object in a specified direction (for example, an object used by the user's finger and the like for touching the mobile phone) and the mobile phone by using a distance sensor of the mobile phone or a gravity acceleration sensor, or other means.
  • the obtaining unit 10 may further preset a page turning triggering distance for triggering the mobile phone to start the automatic page turning function, that is, only when the distance value or the distance change value of the acquired mobile phone and the object meets the preset triggering distance, The phone will start the automatic page turning function. After the obtaining unit 10 obtains the distance value or the distance change value of the object in the specified direction and the mobile phone, it can determine whether the distance between the mobile phone and the object is less than or equal to the preset page turning trigger distance.
  • the obtaining unit 10 may preset a page turning triggering distance according to the range of use of the distance sensor, or set a page turning triggering distance according to the specific conditions of other paths, that is, when the acquiring unit 10 determines that the mobile phone and the object are known.
  • the mobile phone starts the switching page function.
  • a page flipping distance of 8 cm can be set, that is, when the distance of the mobile phone user's hand or other object for controlling the mobile phone is less than or equal to 8 cm from the mobile phone.
  • the distance between the object and the mobile phone preset by the processing unit 20 according to the preset unit 40 may be Or the correspondence between the distance change value and the page turning operation instruction to determine the switching mode of the page, and generate a corresponding page turning operation instruction.
  • the processing unit 20 After the processing unit 20 generates a corresponding page turning operation instruction, the executing unit 30 can execute a corresponding page turning operation instruction, and can switch the current page to the target page.
  • the page turning operation instruction may include: a page turning direction, a page turning speed, a page turning page, a proportional page turning, and the like.
  • the processing unit 20 generates a distance corresponding to the distance value or the distance change value of the object and the terminal according to the distance value of the object and the terminal or the corresponding relationship between the distance change value and the page turning operation instruction preset by the preset unit 40.
  • the page manipulation instructions can include a variety of generation modes.
  • the preset unit 40 sets the distance between the object and the terminal or the distance change value and the page turning operation command
  • the distance between each of the objects and the terminal may be preset by the first preset unit 41.
  • the page turning speed corresponding to the value or distance change value.
  • the correspondence between the distance value or the distance change value of the object and the terminal and the page turning speed may include: a correspondence relationship between a linear correspondence relationship and an index correspondence relationship.
  • the processing unit 20 may determine the distance value or the distance change value according to the real-time distance value or the distance change value of the object such as the user's finger and the mobile phone acquired by the acquiring unit 10, in combination with the corresponding relationship.
  • the page speed, the corresponding page turning operation instruction is generated, and the corresponding page turning operation instruction is executed by the executing unit 30 to switch the current page to the target page.
  • the distance value or distance change value between the preset object and the mobile phone of the first preset unit 41 and the page turning operation command is the distance relationship between the object and the terminal or the distance change value and the page turning speed
  • the corresponding relationship is set to a linear correspondence relationship
  • the constant coefficient of the distance value or the distance change value of the mobile phone and the page turning speed L is the real-time distance value or real-time distance change value of the object and the mobile phone, and M is the initial page turning speed (the initial page turning speed M can be zero , or other constants, which can be set according to specific conditions), after obtaining the real-time distance value or real-time distance change value between the object and the mobile phone, the distance value between the current object and the mobile phone can be determined according to the above linear correspondence equation or The page turning speed corresponding to the change value.
  • Corresponding relationship between the distance value or the distance change value of the object preset by the first preset unit 41 and the mobile phone and the page turning operation command is the correspondence between the distance value of the object and the mobile phone or the distance change value and the page turning speed
  • the correspondence relationship is set to the exponential correspondence relationship
  • the constant coefficient of the distance value or the distance change value of the mobile phone and the page turning speed L is the real-time distance value or real-time distance change value of the object and the mobile phone, and M is the initial page turning speed (the initial page turning speed M can be zero , or other constants, which can be set according to specific conditions), after obtaining the real-time distance value or real-time distance change value between the object and the mobile phone, the distance value between the current object and the terminal may be determined according to the above-mentioned exponential correspondence equation or The page turning speed corresponding to the change value.
  • the processing unit 20 can determine the corresponding page turning speed according to the distance between the user's finger and the mobile phone. If the user needs to quickly switch the page, just close the finger to the distance sensor of the mobile phone and shorten the distance between the hand and the mobile phone to increase the page turning speed. When the page is close to the target page, the mobile phone is gradually moved away from the distance sensor of the mobile phone. The distance between the hand and the phone to reduce the page turning speed.
  • the distance value or the distance change value of the object and the terminal may be divided into multiples in advance.
  • the corresponding relationship between the distance interval and the page turning speed may include: a linear correspondence, an index correspondence, and the like, and the second preset unit 42 may preset the reference distance (for example, the preset page turning)
  • the triggering distance is divided into a plurality of distance intervals, and the page turning speed corresponding to each distance interval is set.
  • the processing unit 20 After the processing unit 20 acquires the distance value or the distance change value of the object and the mobile phone from the obtaining unit 10, the processing unit 20 can determine that the distance is obtained.
  • the distance value or the distance change value falls on the distance interval, and according to the page turning speed corresponding to the distance interval, combined with the corresponding relationship set by the second preset unit 42, the distance value between the object and the mobile phone is determined. Or the page turning speed corresponding to the change value, and generate a corresponding page turning operation instruction.
  • the constant coefficient of the relationship between the value or the distance change value and the page turning speed, N is the distance interval between the object and the terminal distance value or the distance change value, and M is the initial page turning speed (the initial page turning speed M can be zero, also It can be other constants, which can be set according to the specific conditions.
  • the distance relationship between the distance value or the distance change value of the object and the mobile phone set by the second preset unit 42 and the page turning operation command is the distance interval and the distance interval between the object and the terminal.
  • the correspondence relationship may be set to other correspondences.
  • the second preset unit 42 may divide the page turning trigger distance (for example, 8 cm) into a first distance interval (0-4 cm), a second distance interval (4-6 cm), and a third distance interval (6-). 8 cm) equidistance interval, and set the distance interval of 0-4 cm (ie, the first distance interval).
  • the corresponding page turning speed is 1 picture for 10 seconds, and the distance interval for 4-6 cm (ie, the second distance interval)
  • the corresponding page turning speed is 5 pictures in 1 second, and the distance range of 6-8 cm (ie, the third distance interval) corresponds to a page turning speed of 1 picture per second.
  • the processing unit 10 obtains that the distance between the user's finger or other object and the mobile phone is 3 cm, it can be determined that the distance interval corresponding to the distance value between the object and the mobile phone is the first distance interval, and the corresponding distance is
  • the page speed is 10 pictures in 1 second, and the execution unit 30 can switch the page according to the page turning speed of 10 icons in one second.
  • the processing unit 20 can judge It is known that the distance interval corresponding to the distance value between the object and the mobile phone is the third distance interval, and the corresponding page turning speed is 1 picture per second, and the execution unit 30 can switch the page according to the page turning speed, and the page turning speed Reduced from the original 10 pictures in 1 second to 1 picture in 1 second.
  • the user needs to speed up the page turning speed, it is only necessary to shorten the distance between the finger and the mobile phone.
  • the preset unit 40 can also preset the distance between the distance value and the distance change value of the object and the mobile phone and the page turning operation instruction by the second preset unit 42 as the distance between the distance value of the object and the terminal or the distance change value.
  • the second preset unit 42 may divide the page turning trigger distance into two distance sections in advance, and set the page turning direction corresponding to the two distance sections respectively.
  • the second determining unit 42 may determine The obtained distance value falls on which distance interval, and according to the page turning direction corresponding to the distance interval, the page turning direction corresponding to the distance between the object and the mobile phone is determined, and a corresponding page turning operation instruction is generated.
  • the second preset unit 42 may divide the page turning trigger distance (for example, 8 cm) into two distance intervals, for example, may be divided into a fourth distance interval of 0-4 cm and a fifth distance interval of 4-8 cm, and Set the page turning direction corresponding to 0-4 cm (ie, the fourth distance interval) to one direction (for example, upturn), and the page turning direction corresponding to 4-8 cm (ie, the fifth distance interval) is another direction (for example, : Turn down).
  • the processing unit 20 can determine that the page turning direction is upturned when the distance between the object and the mobile phone falls within the fifth distance interval.
  • the processing unit 20 can determine that the page turning direction is down.
  • the processing unit can determine that the page turning direction is up, and the execution unit can switch the page upward to switch the page to the target page.
  • the switching unit can judge that the page turning direction is downward, and the execution unit can switch the page downward to switch the page to the target page.
  • the preset value of the distance between the object and the terminal may be The ratio relationship between the distance change value and the reference distance (for example, the preset page turning trigger distance) allocates the total number of pages of the file, and sets the page turning number or the page turning target page code corresponding to the corresponding ratio.
  • the third preset unit 43 may preset a distance value or a distance change value of the object and the mobile phone and a pre-page number), that is, a page page code corresponding to each ratio may be defined in advance, and the processing unit 20 acquires the learned object and the mobile phone.
  • the processing unit 20 After the distance is determined, the ratio of the obtained distance value or the distance change value to the trigger distance of the preset page switching may be determined, and the corresponding page page code is determined according to the proportional relationship between the two.
  • the processing unit 20 After the processing unit 20 determines that the current page is the page number corresponding to the distance value or the distance change value of the mobile phone, the processing unit 20 can switch the current page to the page corresponding to the corresponding page code, that is, the page. Target page.
  • the third preset unit 43 can set the distance between the object and the mobile phone to be 0, that is, when the ratio of the two is 0, the corresponding page page number is the last page of the electronic book, that is, the number of pages turned is an e-book.
  • the distance is 4 cm, that is, when the ratio of the two is 1:2, the page number of the corresponding page is the page number corresponding to half of the total number of pages of the e-book, that is, the number of pages turned is half of the total number of pages of the e-book.
  • the corresponding page page code may be determined as the rounded page page number, and the page number of the page is The number of pages corresponding to the page number of the page.
  • the processing unit 20 can determine that the ratio of the current distance (2 cm) to the preset page turning trigger distance (8 cm) is 1:4, and can be executed.
  • the unit 30 flips the current page to the page corresponding to the page number corresponding to 1/4 of the total number of pages of the e-book.
  • the processing unit 20 can determine that the ratio of the current distance (6 cm) to the preset page turning trigger distance (8 cm) is 3:4, and the execution unit can be executed. 30 Turns the current page to the page corresponding to the page number corresponding to 3/4 of the total number of pages of the e-book.
  • the method for setting the correspondence between the distance between the object and the terminal and the page turning operation command may be separately The use may also be used in combination with each other, that is, the preset unit 40 may include one of the first preset unit 41, the second preset unit 42, and the third preset unit 43, or a combination of multiple units, which may enable switching of the page. The way is more flexible and diverse.
  • the processing unit 20 may generate the distance value or the distance change value of the object and the mobile phone according to the corresponding relationship.
  • the corresponding page turning operation instruction, and executing the corresponding page turning operation instruction by the executing unit 30, switches the current page to the target page.
  • the embodiment of the present invention pre-sets the correspondence between the distance value or the distance change value of the object and the terminal and the page turning operation instruction by the preset unit, and the object acquired by the processing unit according to the acquiring unit (for example, the finger of the mobile phone user, etc.)
  • the distance value or the distance change value of the mobile phone is used to generate a corresponding page turning operation instruction, and the corresponding page turning operation instruction is executed by the execution unit to switch the current page to the target page, thereby improving the diversity of the page turning mode and improving the turning Page efficiency enhances the user experience of the phone.
  • Units or subunits in all embodiments of the present invention may be implemented by a general purpose integrated circuit such as a CPU (Central Processing Unit, Central Processing Unit), or implemented by ASIC (Application Specific Integrated Circuit).
  • a CPU Central Processing Unit, Central Processing Unit
  • ASIC Application Specific Integrated Circuit
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

本发明实施例公开了一种控制终端翻页的方法,包括:获取终端指定方向上的物体与终端的距离值或距离变化值;根据预设的物体与终端的距离值或距离变化值与翻页操作指令的对应关系,生成所述物体与终端的距离值或距离变化值对应的翻页操作指令;执行所述翻页操作指令。本发明实施例还公开了一种终端。采用本发明,具有可根据物体与终端的距离值或距离变化值生成相应的翻页操作指令,并执行相应的操作指令,提高页面切换方式的多样性,增强终端的用户体验效果的优点。

Description

一种控制终端翻页的方法及终端 技术领域
本发明涉及电子技术领域, 尤其涉及一种控制终端翻页的方法及终端。 背景技术
当前, 手机已经成为人们生活中必不可少的一部分, 手机的功能也变得越 来越强大,从以前的只能打电话、发短信到现在的播放音乐、播放视频、蓝牙、 拍照、 上网、 阅读等, 手机功能变得越来越强大也使得手机上的手机应用种类 越来越多。 目前手机应用的种类繁多, 手机上的应用图标也越来越多, 使得大 部分应用都具有多个页面, 浏览时则需要多个页面进行切换。 例如, 当我们想 要浏览图片时, 可能存在的照片有成千上万张, 浏览时则需要在多个页面之间 进行翻页浏览; 当我们在阅读电子书时, 可能阅读的电子书有上万页或者几十 万页, 阅读时则需要在多个页面之间进行翻页浏览; 当我们想要在联系人菜单 寻找某一位好友的联系方式时, 可能联系人菜单里的联系方式有上千个,寻找 好友时则需要在多个页面之间进行翻动查找等等。
现有技术中,当我们需要通过翻页来查找目标页面及目标页面上的某一个 东西, 或者浏览某些信息的时候, 一般可通过手指来触控手机屏幕, 通过手指 在手机屏幕上的划动来翻动浏览页面, 或者通过晃动手机, 利用手机内置传感 器来感应手机的晃动并根据手机的晃动数据来翻动浏览页面,或者通过手动输 入页码或者使用页面切换进度条来翻动浏览页面。现有技术的浏览页面翻页方 法在浏览页面数目较大的情况下可能需要手不停地触屏手机屏幕来进行浏览 页面切换, 想要以更快的速度切换浏览页面时则需以更快的速度进行触控切 换, 容易使得触控手机屏幕的手酸累, 还容易磨损手机的触控屏, 而且准确率 较低, 当手带着手套时,还会增大手机的触控难度,更容易磨损手机的触控屏。 或者在浏览页面数目较大的情况下需要多次晃动手机来翻动浏览页面或者使 用较大的加速度来晃动手机才能提高浏览页面的翻页速度,或者需要手动拖动 页面切换进度条来进行浏览页面翻页,容易增大手部压力,而且翻页准确率低。 上述现有技术中的翻页的控制方法中页面的翻动速度控制难度大, 翻动效率 低, 而且容易造成用户的手部疲劳, 用户体验效果低。 发明内容
本发明实施例提供一种控制终端翻页的方法及一种终端。可根据物体与终 端的距离生成翻页操作指令, 并执行相应的翻页操作指令,提高了翻页方式的 多样性, 提高了翻页效率, 增强了终端的用户体验效果。
本发明实施例提供了一种控制终端翻页的方法, 包括:
获取终端指定方向上的物体与终端的距离值或距离变化值;
根据预设的物体与终端的距离值或距离变化值与翻页操作指令的对应关 系, 生成所述物体与终端的距离值或距离变化值对应的翻页操作指令;
执行所述翻页操作指令。
本发明实施例还提供了一种终端, 包括:
获取单元, 用于获取终端指定方向上的物体与终端的距离值或距离变化 值;
处理单元, 用于根据预设的物体与终端的距离值或距离变化值与翻页操 作指令的对应关系,生成所述物体与终端的距离值或距离变化值对应的翻页操 作指令;
执行单元, 用于执行所述翻页操作指令。
本发明实施例根据物体与终端的距离值或距离变化值,结合预设的物体与 终端的距离值或距离变化值与翻页操作指令的对应关系来生成相应的翻页操 作指令, 并执行相应的翻页操作指令, 提高了翻页方式的多样性, 提高了翻页 效率, 增强了终端的用户体验效果。 附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所 需要使用的附图作简单地介绍,显而易见地, 下面描述中的附图是本发明的一 些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的前提下, 还 可以根据这些附图获得其他的附图。 图 1是本发明实施例提供的控制终端翻页的方法的实施例流程示意图; 图 2是本发明实施例提供的终端的实施例结构示意图。 具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整地描述, 显然, 所描述的实施例是本发明一部分实施例, 而不是全部 的实施例。基于本发明中的实施例, 本领域普通技术人员在没有做出创造性劳 动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
本发明实施例中所描述的终端, 可包括: 手机、 平板电脑、 笔记本电脑、 数码相机等经常需要切换页面的终端。 上述终端仅是举例, 而非穷举, 包含但 不限于上述终端。 下面将以手机这种终端为例, 进行具体地描述、 说明本发明 实施例提供的控制终端翻页的方法及终端。
参加图 1 , 是本发明实施例提供的控制终端翻页的方法的实施例流程示意 图。 本实施例所描述的控制终端翻页的方法, 包括步骤:
S101 , 获取终端指定方向上的物体与终端的距离值或距离变化值。
具体实现中, 可通过手机的距离传感器或者重力加速度传感器, 或者其他 途径来获取指定方向上的物体(例如用户手指等用于触控手机的物体)与手机 的距离值或者距离变化值, 其中, 上述指定方向可包括: 手机的运动方向或者 手机的测量方向。例如, 可通过手机的距离传感器来获取距离传感器的测量方 向上物体与手机的距离值或者距离变化值, 或者当手机处于运动状态时, 则可 通过手机的重力传感器来获取物体与手机在手机的运动方向上的距离值或者 距离变化值。具体实现中,还可预先设定一个触发手机启动自动翻页功能的翻 页触发距离,即只有当手机的距离传感器或者重力传感器获取到的手机与物体 的距离值或者距离变化值满足预设的触发距离时, 手机才会启动自动翻页功 能。手机获取到指定方向上物体与手机的距离值或者距离变化值之后, 则可判 断手机与物体之间的距离值或者距离变化值是否小于或者等于预设的翻页触 发距离。 具体地, 可根据距离传感器的使用范围预先设定一个翻页触发距离, 或者根据其他途径的具体情况设定一个翻页触发距离,即当手机与物体之间的 距离值或者距离变化值落在上述设定的触发距离内时,则可触发手机启动切换 页面功能。 例如, 若距离传感器的使用范围是 10厘米, 则可设定一个翻页触 发距离为 8厘米, 即当手机用户的手或者其他用于控制手机的物体(即物体) 距离手机的距离值小于或等于 8厘米时,则可判断得知当前物体与手机的距离 值满足预设的翻页触发距离, 即可启动手机的翻页功能。
S102,根据预设的物体与终端的距离值或距离变化值与翻页操作指令的对 应关系, 生成所述物体与终端的距离值或距离变化值对应的翻页操作指令。
S103 , 执行所述翻页操作指令。
具体实现中,手机判断得知物体与手机的距离值或者距离变化值满足预设 的翻页触发距离之后,则可根据预设的物体与手机的距离值或距离变化值与翻 页操作指令的对应关系来确定页面的切换方式, 并生成相应的翻页操作指令, 并执行相应的翻页操作指令, 可将页面切换至目标页面。 具体实现中, 上述翻 页操作指令, 可包括: 翻页方向、 翻页速度、 翻页页数、 比例翻页等。
具体实现中,根据预设的物体与终端的距离值或距离变化值与翻页操作指 令的对应关系,生成所述物体与终端的距离值或距离变化值对应的翻页操作指 令可包括多种生成模式。具体实现中, 可预先设定物体与终端的距离值或距离 变化值与翻页操作指令的对应关系。具体地, 可预先设定每一个所述物体与终 端的距离值或距离变化值对应的翻页速度。其中, 上述物体与终端的距离值或 距离变化值与翻页速度的对应关系, 可包括: 线性对应关系、 指数对应关系等 对应关系。当物体与手机的距离值或距离变化值与翻页操作指令的对应关系为 物体与终端的距离值或距离变化值与翻页速度的对应关系时,则可根据获取到 的用户手指等物体与手机的实时距离值或者距离变化值, 结合上述对应关系, 来判断该距离值或者距离变化值对应的翻页速度, 生成相应的翻页操作指令, 并根据相应的翻页速度将当前页面切换至目标页面。例如, 若物体与手机的距 离值或者距离变化值与翻页操作指令的对应关系是物体与终端的距离值或距 离变化值与翻页速度的对应关系, 并且其对应关系是线性对应关系, 则可将物 体与终端的距离值或距离变化值与翻页速度的对应关系设为 X=KL+M, 其中, X为翻页速度, K为物体与终端的距离值或距离变化值与翻页速度的对应关系 的常数系数, L为物体与终端的实时距离值或实时距离变化值, M为初始翻页 速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则 获取到物体与终端的距离值或者距离变化值之后,则可根据上述线性对应关系 等式确定当前物体与终端的距离值或距离变化值对应的翻页速度。若物体与手 机的距离值或者距离变化值与翻页操作指令的对应关系是物体与终端的距离 值或距离变化值与翻页速度的对应关系, 并且其对应关系是指数对应关系, 则 可将物体与终端的距离值或距离变化值与翻页速度的对应关系设为 X=KL+M, 其中, X为翻页速度, K为物体与终端的距离值或距离变化值与翻页速度的对 应关系的常数系数, L为物体与终端的实时距离值或实时距离变化值, M为初 始翻页速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设 定), 则获取到物体与终端的距离值或者距离变化值之后, 则可根据上述指数 对应关系等式确定当前物体与终端的距离值或距离变化值对应的翻页速度。根 据上述对应关系可设定当用户的手指等物体与手机的距离值越接近于零时,其 对应的翻页速度则越快,当用户的手指等物体与手机的距离值越接近翻页触发 距离时, 其对应的翻页速度则越慢, 则手机用户在切换页面时, 可将手指放在 手机的距离传感器上方,并使得手指与手机的距离值落在预设的翻页触发距离 内, 若需要快速切换页面, 则只需将手指靠近手机的距离传感器, 缩短手与手 机的距离, 以增加翻页速度, 当页面接近目标页面时, 则将手机逐渐远离手机 的距离传感器, 拉开手与手机的距离, 以减少翻页速度。
具体实现中,预先设定物体与终端的距离值或距离变化值与翻页操作指 令的对应关系时,还可预先将所述物体与终端的距离值或距离变化值分成多 个距离区间, 并设定每一个距离区间对应的翻页速度或者翻页方向。 其中, 所述距离区间与所述翻页速度的对应关系, 可包括: 线性对应关系、 指数对 应关系等对应关系。 当距离区间与翻页速度的对应关系为线性对应关系时, 可设定其对应关系为 X=KN+M, 其中, X为翻页速度, K为物体与终端的 距离值或距离变化值与翻页速度的对应关系的常数系数, N为物体与终端的 距离值或距离变化值分成的距离区间, M 为初始翻页速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则获取到物体与终端 的实时距离值或者实时距离变化值之后,则可判断该距离值或距离变化值落 在哪一个距离区间,再根据上述线性对应关系等式确定当前物体与终端的距 离值或距离变化值对应的翻页速度。当距离区间与翻页速度的对应关系为指 数对应关系时, 可将其对应关系设为 X=KN+M, 其中, X 为翻页速度, K 为物体与终端的距离值或距离变化值与翻页速度的对应关系的常数系数, N 为物体与终端的距离值或距离变化值分成的距离区间, M 为初始翻页速度 (初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则获 取到物体与终端的实时距离值或者实时距离变化值之后,则可判断该距离值 或距离变化值落在哪一个距离区间,再根据上述指数对应关系等式确定当前 物体与终端的距离值或距离变化值对应的翻页速度。具体实现中, 当设定的 物体与手机的距离值或距离变化值与翻页操作指令的对应关系为所述物体 与终端的距离值或距离变化值分成的距离区间与所述翻页速度的对应关系 时,还可将其对应关系设定为其他对应关系, 可预先将翻页触发距离分割成 多个距离区间, 并设定每一个距离区间对应的翻页速度, 获取得到物体与手 机的距离值或者距离变化值之后,则可判断获取到的距离值或者距离变化值 落在哪一个距离区间上, 并根据该距离区间对应的翻页速度。 结合上述对应 关系可判断得知此时物体与手机的距离值或者距离变化值对应的翻页速度, 并生成相应的翻页操作指令。 例如, 可预先将翻页触发距离 (例如 8厘米) 分成第一距离区间 (0-4厘米)、 第二距离区间 (4-6厘米)、 第三距离区间 ( 6-8厘米)等距离区间, 并设定 0-4厘米的距离区间 (即第一距离区间) 对应的翻页速度为 1秒钟 10个图片, 4-6厘米的距离区间 (第二距离区间) 对应的翻页速度为 1秒钟 5个图片, 6-8厘米的距离区间(即第三距离区间) 对应的翻页速度为 1秒钟 1个图片。当获取得知用户的手指或者其他的物体 与手机的距离为 3厘米时,则可判断得知此时物体与手机的距离对应的距离 区间为第一距离区间, 其对应的翻页速度为 1秒钟 10个图片, 则可根据 1 秒钟 10个图标的翻页切换页面, 当用户的手指与手机的距离拉长成 7厘米 时, 则可判断得知此时物体与手机的距离对应的距离区间为第三距离区间, 其对应的翻页速度是 1秒钟 1个图片, 则可根据该翻页速度切换页面,翻页 速度由原来的 1秒钟 10个图片降低为 1秒钟 1个图片。 当用户需要加快翻 页速度时, 则只需要缩短手指与手机的距离则可。
此外,当设定的物体与手机的距离值或距离变化值与翻页操作指令的对应 关系为物体与终端的距离值或距离变化值分成的距离区间与翻页方向的对应 关系时,设定时还可以预先将翻页触发距离分为两个距离区间, 并设定这两个 距离区间分别对应的翻页方向, 获取得到物体与手机的距离之后, 则可判断获 取到的距离值落在哪一个距离区间上,并根据该距离区间对应的翻页方向判断 得知此时物体与手机的距离对应的翻页方向, 并生成相应的翻页操作指令。例 如, 可将翻页触发距离 (例如 8厘米)平均分成两个距离间隔, 例如, 可分为 第四距离区间 (0-4厘米)和第五距离区间 (4-8厘米), 并设定 0-4厘米(即 第四距离区间)对应的翻页方向为一个方向(例如: 上翻), 4-8厘米(即第五 距离区间)对应的翻页方向为另外一个方向 (例如: 下翻)。 当手机用户的手 指等物体与手机的距离落在第四距离区间内时,则可判断此时的翻页方向为上 翻, 当物体与手机的距离落在第五距离区间内时, 则可判断此时翻页方向为下 翻。 例如, 当获取到用户手指与手机的距离为 3厘米时, 则可向上切换页面, 以将页面切换至目标页面, 当获取到用户手指和手机的距离是 5厘米时, 则可 向下切换页面, 以将页面切换至目标页面。
具体实现中,预先设定物体与终端的距离值或距离变化值与翻页操作指令 的对应关系时,还可预先根据所述物体与终端的距离值或距离变化值与基准距 离(例如上述预设的翻页触发距离)的比值关系将文件的总页数进行分配, 设 定相应比值对应的翻页页数或翻页目标页码。具体地, 可预先设定物体与手机 的距离值或距离变化值与预设的翻页触发距离的比值对应的页面页码(根据相 应的页面页码则可判断翻页页数), 即可以预先定义每一个比值对应的页面页 码,获取得知物体与手机的距离值或者距离变化值之后则可判断获取的距离值 或距离变化值与预设的翻页触发距离的比例关系,根据两者之间的比例关系判 断其对应的页面页码。判断得当前的物体与手机的距离值或者距离变化值对应 的页面页码之后则可将当前页面切换至相应页码对应的页面, 即目标页面。例 如, 可设定当物体与手机的距离为 0, 即两者的比值为 0时, 其对应的页面页 码为电子书的最后一页, 即翻页页数为电子书的总页数, 当物体与手机的距离 为 8厘米, 即两者的比值为 1时, 其对应的页面页码为电子书的第一页, 即翻 页页数为 1页, 当物体与手机的距离为 4厘米, 即两者的比值为 1 :2时, 其对 应的页面页码为电子书的总页数的一半对应的页码,即翻页页数为电子书的总 页数的一半,当物体与手机的距离与翻页触发距离的比值对应的页面页码不为 整数时, 则可将其对应的页面页码判定为取整后的页面页码, 其翻页页数为其 页面页码对应的页数。 当用户的手指与手机的距离为 2厘米时, 则可判断得知 当前距离 (2厘米)与预设的翻页触发距离 (8厘米)的比值是 1 :4, 则可将当 前页面切换至电子书的总页数的 1/4对应的页码对应的页面。 用户的手指与手 机的距离为 6厘米时, 则可判断得知当前距离 (6厘米)与预设的翻页触发距 离(8厘米)的比值是 3:4, 则可将当前页面切换至电子书的总页数的 3/4对应 的页码对应的页面。
具体实现中,上述设定物体与终端的距离值或距离变化值与翻页操作指令 的对应关系的方法可以单独使用,也可以相互结合使用, 可使得翻页方式更加 灵活、 多样。设定好物体与终端的距离值或者距离变化值与翻页操作指令的对 应关系之后则可根据该对应关系,结合物体与手机的距离值或者距离变化值来 判断其对应的翻页方式, 生成相应的翻页操作指令, 并执行相应的翻页操作指 令, 将当前页面切换至目标页面。
本发明实施例通过预先设定物体与终端的距离值或距离变化值与翻页操 作指令的对应关系, 并根据获取到的物体(例如, 手机用户的手指等)与手机 的距离值或者距离变化值来判断其对应的切换方式, 生成相应的翻页操作指 令, 并执行相应的翻页操作指令将当前页面切换至目标页面,提高了翻页方式 的多样性, 提高了翻页效率, 增强了手机的用户体验效果。
参见图 2, 是本发明实施例提供的终端的实施例结构示意图。 本实施例所 述描述的终端, 包括:
获取单元 10, 用于获取终端指定方向上的物体与终端的距离值或距离变 化值。
处理单元 20, 用于根据预设的物体与终端的距离值或距离变化值与翻页 操作指令的对应关系,生成所述物体与终端的距离值或距离变化值对应的翻页 操作指令。
执行单元 30, 用于执行所述翻页操作指令。
此外, 本实施例中所描述的终端, 还包括:
预设单元 40, 用于预设所述物体与终端的距离值或距离变化值与翻页操 作指令的对应关系; 其中, 预设单元 40, 可包括:
第一预设单元 41 , 用于设定每一个所述物体与终端的距离值或距离变化 值对应的翻页速度。
第二预设单元 42, 用于将所述物体与终端的距离值或距离变化值分成多 个距离区间, 并设定每一个距离区间对应的翻页速度或者翻页方向。
第三预设单元 43 , 用于根据所述物体与终端的距离值或距离变化值与基 准距离的比值关系将文件的总页数进行分配,设定相应比值对应的翻页页数或 翻页目标页码。
具体实现中, 预设单元 40可包括第一预设单元 41、 第二预设单元 42、 第 三预设单元 43中的任意一个单元或者多个单元组合, 也可以同时包括第一预 设单元 41、 第二预设单元 42和第三预设单元 43。
具体实现中, 获取单元 10可通过手机的距离传感器或者重力加速度传感 器, 或者其他途径来获取指定方向上的物体(例如用户手指等用于触控手机的 物体)与手机的距离值或者距离变化值, 其中, 上述指定方向可包括: 手机的 运动方向或者手机的测量方向。 例如, 获取单元 10可通过手机的距离传感器 来获取距离传感器的测量方向上物体与手机的距离值或者距离变化值,或者当 手机处于运动状态时,则可通过手机的重力传感器来获取物体与手机在手机的 运动方向上的距离值或者距离变化值。 具体实现中, 获取单元 10还可预先设 定一个触发手机启动自动翻页功能的翻页触发距离,即只有当获取到的手机与 物体的距离值或者距离变化值满足预设的触发距离时,手机才会启动自动翻页 功能。 获取单元 10获取到指定方向上物体与手机的距离值或者距离变化值之 后, 则可判断手机与物体之间的距离是否小于或者等于预设的翻页触发距离。 具体地, 获取单元 10可根据距离传感器的使用范围预先设定一个翻页触发距 离, 或者根据其他途径的具体情况设定一个翻页触发距离, 即当获取单元 10 判断得知手机与物体之间的距离值或者距离变化值落在上述设定的触发距离 内时, 则可触发手机启动切换页面功能。 例如, 若距离传感器的使用范围是 10厘米, 则可设定一个翻页触发距离为 8厘米, 即当手机用户的手或者其他 用于控制手机的物体距离手机的距离值小于或等于 8厘米时,则可判断得知当 前物体与手机的距离值满足预设的页面切换的触发距离,即可启动手机的翻页 功能。
具体实现中, 获取单元 10判断得知物体与手机的距离值或距离变化值满 足预设的翻页触发距离之后,则可通过处理单元 20根据预设单元 40预设的物 体与手机的距离值或距离变化值与翻页操作指令的对应关系来确定页面的切 换方式, 并生成相应的翻页操作指令。 处理单元 20生成相应的翻页操作指令 之后, 执行单元 30则可执行相应的翻页操作指令, 可将当前页面切换至目标 页面。 具体实现中, 上述翻页操作指令, 可包括: 翻页方向、 翻页速度、 翻页 页数、 比例翻页等。
具体实现中,处理单元 20根据预设单元 40预设的物体与终端的距离值或 距离变化值与翻页操作指令的对应关系,生成所述物体与终端的距离值或距离 变化值对应的翻页操作指令可包括多种生成模式。 具体实现中, 预设单元 40 设定物体与终端的距离值或距离变化值与翻页操作指令的对应关系时,可通过 第一预设单元 41预先设定每一个所述物体与终端的距离值或距离变化值对应 的翻页速度。其中,上述物体与终端的距离值或距离变化值与所述翻页速度的 对应关系, 可包括: 线性对应关系、 指数对应关系等对应关系。 具体地, 当预 设单元 40通过第一预设单元 41将物体与手机的距离值或距离变化值与翻页操 作指令的对应关系预设为物体与终端的距离值或距离变化值与翻页速度的对 应关系时,处理单元 20则可根据获取单元 10获取到的用户手指等物体与手机 的实时距离值或者距离变化值, 结合上述对应关系, 来判断该距离值或者距离 变化值对应的翻页速度, 生成相应的翻页操作指令, 并通过执行单元 30执行 相应的翻页操作指令, 将当前页面切换至目标页面。 例如, 若第一预设单元 41 预设的物体与手机的距离值或距离变化值与翻页操作指令的对应关系是物 体与终端的距离值或距离变化值与翻页速度的对应关系,并将其对应关系设定 为线性对应关系时,可将物体与手机的距离值或距离变化值与翻页速度的对应 关系设为 X=KL+M, 其中, X为翻页速度, K为物体与手机的距离值或距离 变化值与翻页速度的对应关系的常数系数, L为物体与手机的实时距离值或实 时距离变化值, M为初始翻页速度(初始翻页速度 M可为零, 也可为其他常 数, 可根据具体情况设定), 则获取到物体与手机的实时距离值或者实时距离 变化值之后,则可根据上述线性对应关系等式确定当前物体与手机的距离值或 距离变化值对应的翻页速度。 若第一预设单元 41预设的物体与手机的距离值 或距离变化值与翻页操作指令的对应关系是物体与手机的距离值或距离变化 值与翻页速度的对应关系, 并将其对应关系设定为指数对应关系时, 则可将物 体与手机的距离值或距离变化值与翻页速度的对应关系设为 X=KL+M, 其中, X为翻页速度, K为物体与手机的距离值或距离变化值与翻页速度的对应关系 的常数系数, L为物体与手机的实时距离值或实时距离变化值, M为初始翻页 速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则 获取到物体与手机的实时距离值或者实时距离变化值之后,则可根据上述指数 对应关系等式确定当前物体与终端的距离值或距离变化值对应的翻页速度。根 据上述对应关系可设定当用户的手指等物体与手机的距离值越接近于零时,其 对应的翻页速度则越快,当用户的手指等物体与手机的距离值越接近翻页触发 距离时, 其对应的翻页速度则越慢, 则手机用户在切换页面时, 可将手指放在 手机的距离传感器上方,并使得手指与手机的距离值落在预设的翻页触发距离 内, 处理单元 20则可根据用户手指与手机的距离来确定相应的翻页速度。 用 户若需要快速切换页面, 则只需将手指靠近手机的距离传感器, 缩短手与手机 的距离, 以增加翻页速度, 当页面接近目标页面时, 则将手机逐渐远离手机的 距离传感器, 拉开手与手机的距离, 以减少翻页速度。
当预设单元 40通过第二预设单元 42设定物体与手机的距离值或距离变化 值与翻页操作指令的对应关系时可预先将所述物体与终端的距离值或距离变 化值分成多个距离区间, 并设定每一个距离区间对应的翻页速度或者翻页方 向。其中,所述距离区间与所述翻页速度的对应关系,可包括: 线性对应关系、 指数对应关系等对应关系, 则第二预设单元 42可预先将基准距离 (例如上述 预设的翻页触发距离)分割成多个距离区间, 并设定每一个距离区间对应的翻 页速度,处理单元 20从获取单元 10获取得知物体与手机的距离值或者距离变 化值之后, 则可判断获取到的距离值或者距离变化值落在哪一个距离区间上, 并根据该距离区间对应的翻页速度, 结合第二预设单元 42设定的对应关系, 判断得知此时物体与手机的距离值或者距离变化值对应的翻页速度,并生成相 应的翻页操作指令。 当距离区间与翻页速度的对应关系为线性对应关系时, 可 设定其对应关系为 X=KN+M, 其中, X为翻页速度, K为物体与终端的距离 值或距离变化值与翻页速度的对应关系的常数系数, N为物体与终端的距离值 或距离变化值分成的距离区间, M为初始翻页速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则获取到物体与终端的实时距离值 或实时距离变化值之后, 则可判断该距离值或距离变化值落在哪一个距离区 间,再根据上述线性对应关系等式确定当前物体与终端的距离值或距离变化值 对应的翻页速度。 当距离区间与翻页速度的对应关系为指数对应关系时, 可将 其对应关系设为 X=KN+M, 其中, X为翻页速度, K为物体与终端的距离值 或距离变化值与翻页速度的对应关系的常数系数, N为物体与终端的距离值或 距离变化值分成的距离区间, M为初始翻页速度(初始翻页速度 M可为零, 也可为其他常数, 可根据具体情况设定), 则获取到物体与终端的实时距离值 或者实时距离变化值之后,则可判断该距离值或距离变化值落在哪一个距离区 间,再根据上述指数对应关系等式确定当前物体与终端的距离值或距离变化值 对应的翻页速度。 具体实现中, 第二预设单元 42设定的物体与手机的距离值 或距离变化值与翻页操作指令的对应关系为所述物体与终端的距离值或距离 变化值分成的距离区间与所述翻页速度的对应关系时,还可将其对应关系设定 为其他对应关系。 例如, 第二预设单元 42可预先将翻页触发距离 (例如 8厘 米)分成第一距离区间 (0-4厘米)、 第二距离区间 (4-6厘米)、 第三距离区 间 (6-8厘米)等距离区间, 并设定 0-4厘米的距离区间 (即第一距离区间) 对应的翻页速度为 1秒钟 10个图片, 4-6厘米的距离区间 (即第二距离区间) 对应的翻页速度为 1秒钟 5个图片, 6-8厘米的距离区间 (即第三距离区间) 对应的翻页速度为 1秒钟 1个图片。 当处理单元 10获取得知用户的手指或者 其他的物体与手机的距离为 3厘米时,则可判断得知此时物体与手机的距离值 对应的距离区间为第一距离区间, 其对应的翻页速度为 1秒钟 10个图片, 执 行单元 30则可根据 1秒钟 10个图标的翻页速度切换页面,当用户的手指与手 机的距离拉长成 7厘米时, 处理单元 20则可判断得知此时物体与手机的距离 值对应的距离区间为第三距离区间, 其对应的翻页速度是 1秒钟 1个图片,执 行单元 30则可根据该翻页速度切换页面,翻页速度由原来的 1秒钟 10个图片 降低为 1秒钟 1个图片。 当用户需要加快翻页速度时, 则只需要缩短手指与手 机的距离则可。 此外,预设单元 40还可以通过第二预设单元 42将物体与手机的距离值或 距离变化值与翻页操作指令的对应关系预设为物体与终端的距离值或距离变 化值分成的距离区间与翻页方向的对应关系。 第二预设单元 42可以预先将翻 页触发距离分为两个距离区间, 并设定这两个距离区间分别对应的翻页方向, 处理单元 20获取得到物体与手机的距离之后, 则可判断获取到的距离值落在 哪一个距离区间上,并根据该距离区间对应的翻页方向判断得知此时物体与手 机的距离对应的翻页向, 并生成相应的翻页操作指令。 例如, 第二预设单元 42可将翻页触发距离 (例如 8厘米)平均分成两个距离间隔, 例如, 可分为 第四距离区间 0-4厘米和第五距离区间 4-8厘米, 并设定 0-4厘米(即第四距 离区间)对应的翻页方向为一个方向(例如: 上翻), 4-8厘米(即第五距离区 间)对应的翻页方向为另外一个方向 (例如: 下翻)。 当手机用户的手指等物 体与手机的距离落在第四距离区间内时, 处理单元 20则可判断此时的翻页方 向为上翻, 当物体与手机的距离落在第五距离区间内时, 处理单元 20则可判 断此时翻页方向为下翻。 例如, 当获取到用户手指与手机的距离为 3厘米时, 处理单元则可判断得知翻页方向为上翻,执行单元则可向上切换页面, 以将页 面切换至目标页面, 当获取到用户手指和手机的距离是 5厘米时,切换单元则 可判断得知翻页方向为下翻,执行单元则可向下切换页面, 以将页面切换至目 标页面。
具体实现中, 预设单元 40设定物体与终端的距离值或距离变化值与翻页 操作指令的对应关系时, 还可通过第三预设单元 43预先根据所述物体与终端 的距离值或距离变化值与基准距离(例如上述预设的翻页触发距离)的比值关 系将文件的总页数进行分配, 设定相应比值对应的翻页页数或翻页目标页码。 具体地, 第三预设单元 43可预先设定物体与手机的距离值或距离变化值与预 页数), 即可以预先定义每一个比值对应的页面页码, 处理单元 20获取得知物 体与手机的距离之后则可判断获取的距离值或者距离变化值与预设的页面切 换的触发距离的比例关系, 根据两者之间的比例关系判断其对应的页面页码。 处理单元 20判断得知当前的物体与手机的距离值或者距离变化值对应的页面 页码之后则可通过执行单元 30将当前页面切换至相应页码对应的页面, 即目 标页面。 例如, 第三预设单元 43可设定当物体与手机的距离为 0, 即两者的 比值为 0时, 其对应的页面页码为电子书的最后一页, 即翻页页数为电子书的 总页数, 当物体与手机的距离为 8厘米, 即两者的比值为 1时, 其对应的页面 页码为电子书的第一页, 即翻页页数为 1页, 当物体与手机的距离为 4厘米, 即两者的比值为 1 :2时, 其对应的页面页码为电子书的总页数的一半对应的页 码, 即翻页页数为电子书的总页数的一半, 当物体与手机的距离值或者距离变 化值与翻页触发距离的比值对应的页面页码不为整数时,则可将其对应的页面 页码判定为取整后的页面页码, 其翻页页数为其页面页码对应的页数。 当用户 的手指与手机的距离为 2厘米时, 处理单元 20则可判断得知当前距离 (2厘 米)与预设的翻页触发距离 (8厘米)的比值是 1 :4, 则可通过执行单元 30将 当前页面翻至电子书的总页数的 1/4对应的页码对应的页面。 用户的手指与手 机的距离为 6厘米时, 处理单元 20则可判断得知当前距离 (6厘米) 与预设 的翻页触发距离 (8厘米)的比值是 3:4, 则可通过执行单元 30将当前页面翻 至电子书的总页数的 3/4对应的页码对应的页面。
具体实现中, 预设单元 40设定物体与终端的距离值或距离变化值与翻页 操作指令的对应关系时,上述设定物体与终端的距离与翻页操作指令的对应关 系的方法可以单独使用, 也可以相互结合使用, 即预设单元 40可包含第一预 设单元 41、第二预设单元 42、第三预设单元 43中的一个单元或者多个单元组 合, 可使得页面的切换方式更加灵活、 多样。 预设单元 40设定好物体与终端 的距离值或距离变化值与翻页操作指令的对应关系之后, 处理单元 20则可根 据该对应关系,结合物体与手机的距离值或者距离变化值来生成相应的翻页操 作指令, 并通过执行单元 30执行相应的翻页操作指令, 将当前页面切换至目 标页面。
本发明实施例通过预设单元预先设定物体与终端的距离值或距离变化值 与翻页操作指令的对应关系, 并通过处理单元根据获取单元获取到的物体(例 如, 手机用户的手指等)与手机的距离值或者距离变化值来生成相应的翻页操 作指令, 并通过执行单元执行相应的翻页操作指令,将当前页面切换至目标页 面,提高了翻页方式的多样性,提高了翻页效率,增强了手机的用户体验效果。
本发明所有实施例中的单元或子单元,可以通过通用集成电路,例如 CPU ( Central Processing Unit, 中央处理器), 或通过 ASIC (Application Specific Integrated Circuit, 专用集成电路)来实现。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于计算机 可读取存储介质中, 该程序在执行时, 可包括如上述各方法的实施例的流程。 其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory, ROM )或随机存储记忆体(Random Access Memory, RAM )等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之 权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims

权 利 要 求
1、 一种控制终端翻页的方法, 其特征在于, 包括:
获取终端指定方向上的物体与终端的距离值或距离变化值;
根据预设的物体与终端的距离值或距离变化值与翻页操作指令的对应关 系, 生成所述物体与终端的距离值或距离变化值对应的翻页操作指令;
执行所述翻页操作指令。
2、 如权利要求 1所述的方法, 其特征在于, 所述终端指定的方向, 包括: 所述终端的运动方向或者所述终端的测量方向。
3、 如权利要求 2所述的方法, 其特征在于, 所述翻页操作指令, 包括: 翻页方向、 翻页速度、 翻页页数、 比例翻页中至少一种。
4、 如权利要求 3所述的方法, 其特征在于, 所述根据预设的物体与终端 的距离值或距离变化值与翻页操作指令的对应关系,生成所述物体与终端的距 离值或距离变化值对应的翻页操作指令之前, 还包括:
设定所述物体与终端的距离值或距离变化值与翻页操作指令的对应关系。
5、 如权利要求 4所述的方法, 其特征在于, 所述设定所述物体与终端的 距离值或距离变化值与翻页操作指令的对应关系, 包括:
设定每一个所述物体与终端的距离值或距离变化值对应的翻页速度; 其中, 所述物体与终端的距离值或距离变化值与所述翻页速度的对应关 系, 包括: 线性对应关系、 指数对应关系中至少一种。
6、 如权利要求 4所述的方法, 其特征在于, 所述设定所述物体与终端的 距离值或距离变化值与翻页操作指令的对应关系, 包括:
将所述物体与终端的距离值或距离变化值分成多个距离区间,并设定每一 个距离区间对应的翻页速度或者翻页方向; 其中, 所述距离区间与所述翻页速度的对应关系, 包括: 线性对应关系、 指数对应关系中至少一种。
7、 如权利要求 4所述的方法, 其特征在于, 所述设定所述物体与终端的 距离值或距离变化值与翻页操作指令的对应关系, 包括:
根据所述物体与终端的距离值或距离变化值与基准距离的比值关系将文 件的总页数进行分配, 设定相应比值对应的翻页页数或翻页目标页码。
8、 一种终端, 其特征在于, 包括:
获取单元, 用于获取终端指定方向上的物体与终端的距离值或距离变化 值;
处理单元, 用于根据预设的物体与终端的距离值或距离变化值与翻页操 作指令的对应关系,生成所述物体与终端的距离值或距离变化值对应的翻页操 作指令;
执行单元, 用于执行所述翻页操作指令。
9、如权利要求 8所述的终端,其特征在于,所述终端指定的方向, 包括: 所述终端的运动方向或者所述终端的测量方向。
10、 如权利要求 9所述的终端, 其特征在于, 所述终端, 还包括: 预设单元, 用于预设所述物体与终端的距离值或距离变化值与翻页操作 指令的对应关系;
其中, 所述翻页操作指令, 包括: 翻页方向、 翻页速度、 翻页页数、 比 例翻页中至少一种。
11、 如权利要求 10所述的终端, 其特征在于, 所述预设单元包括: 第一 预设单元、 第二预设单元、 第三预设单元中至少一个;
其中, 第一预设单元, 用于设定每一个所述物体与终端的距离值或距离变 化值对应的翻页速度; 第二预设单元,用于将所述物体与终端的距离值或距离变化值分成多个距 离区间, 并设定每一个距离区间对应的翻页速度或者翻页方向;
第三预设单元,用于根据所述物体与终端的距离值或距离变化值与基准距 离的比值关系将文件的总页数进行分配,设定相应比值对应的翻页页数或翻页 目标页码;
其中, 所述物体与终端的距离值或距离变化值与所述翻页速度的对应关 系, 或者, 所述距离区间与所述翻页速度的对应关系, 包括: 线性对应关系、 指数对应关系中至少一种。
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