WO2021042866A1 - 柔性屏终端及其显示方法、计算机可读存储介质 - Google Patents

柔性屏终端及其显示方法、计算机可读存储介质 Download PDF

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Publication number
WO2021042866A1
WO2021042866A1 PCT/CN2020/100803 CN2020100803W WO2021042866A1 WO 2021042866 A1 WO2021042866 A1 WO 2021042866A1 CN 2020100803 W CN2020100803 W CN 2020100803W WO 2021042866 A1 WO2021042866 A1 WO 2021042866A1
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WIPO (PCT)
Prior art keywords
folding
display
preset
flexible screen
touch
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PCT/CN2020/100803
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English (en)
French (fr)
Inventor
李希鹏
党松
王溢
柴晓红
张佳妮
武宁远
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US17/601,568 priority Critical patent/US11899896B2/en
Priority to EP20860803.4A priority patent/EP3951569A4/en
Publication of WO2021042866A1 publication Critical patent/WO2021042866A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input 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
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1641Details related to the display arrangement, including those related to the mounting of the display in the housing the display being formed by a plurality of foldable display components
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1637Details related to the display arrangement, including those related to the mounting of the display in the housing
    • G06F1/1652Details related to the display arrangement, including those related to the mounting of the display in the housing the display being flexible, e.g. mimicking a sheet of paper, or rollable
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • 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
    • G06F1/1675Miscellaneous details related to the relative movement between the different enclosures or enclosure parts
    • G06F1/1677Miscellaneous details related to the relative movement between the different enclosures or enclosure parts for detecting open or closed state or particular intermediate positions assumed by movable parts of the enclosure, e.g. detection of display lid position with respect to main body in a laptop, detection of opening of the cover of battery compartment
    • 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 disclosure relates to the field of display technology.
  • One aspect of the embodiments of the present disclosure provides a display method of a flexible screen terminal, including: determining a folding boundary line corresponding to the folding operation when a folding operation corresponding to the flexible screen terminal is detected; and, based on the folding boundary line and the flexible screen terminal The preset display rules for the implementation of split-screen display operations.
  • a flexible screen terminal including a memory, a processor, and a display program of the flexible screen terminal stored in the memory and running on the processor.
  • the display program of the flexible screen terminal is controlled by the processor. At least one step of the above-mentioned display method of the flexible screen terminal is realized during execution.
  • Another aspect of the embodiments of the present disclosure provides a computer-readable storage medium on which a display program of a flexible screen terminal is stored.
  • the display program of the flexible screen terminal is executed by a processor, at least one of the above-mentioned display methods of the flexible screen terminal is implemented step.
  • FIG. 1 is a schematic diagram of a structure of a flexible screen terminal provided by an embodiment of the present disclosure.
  • FIG. 2 is a schematic flowchart of a display method of a flexible screen terminal provided by an embodiment of the disclosure.
  • FIG. 1 it is a schematic structural diagram of a flexible screen terminal provided by an embodiment of the present disclosure, which shows the hardware operating environment of the flexible screen terminal.
  • the flexible screen terminal may be a foldable terminal device with a display function such as a smart phone, a tablet computer, an e-book reader, etc.
  • the flexible screen terminal may include a processor 1001, such as a CPU (Central Processing Unit, central processing unit), a network interface 1004, a user interface 1003, a memory 1005, and a communication bus 1002.
  • the communication bus 1002 may be configured to implement connection and communication between these components.
  • the user interface 1003 may include a display screen (Display), and an input unit, such as a keyboard (Keyboard).
  • the user interface 1003 may also include a standard wired interface and a wireless interface.
  • the network interface 1004 may include a standard wired interface and a wireless interface (such as a Wi-Fi (mobile hotspot) interface).
  • the memory 1005 may be a high-speed RAM memory, or a stable memory (Non-Volatile memory), for example, a magnetic disk memory.
  • the memory 1005 may also be a storage device independent of the aforementioned processor 1001.
  • the flexible screen terminal may also include a camera, an RF (Radio Frequency) circuit, a sensor, an audio circuit, a Wi-Fi module, and so on.
  • the sensors may include light sensors, motion sensors, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor; the ambient light sensor can adjust the brightness of the display screen according to the brightness of the ambient light, and the proximity sensor can turn off the display screen and/or backlight when the flexible screen terminal is moved to the ear.
  • the gravity acceleration sensor can detect the magnitude of acceleration in various directions (usually three-axis), and can detect the magnitude and direction of gravity when it is stationary, and can be used to identify the application of the flexible screen terminal posture (such as horizontal and vertical screen switching) , Related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer, percussion), etc.
  • the flexible screen terminal can also be equipped with other sensors such as gyroscope, barometer, hygrometer, thermometer, infrared sensor, etc., which will not be repeated here.
  • the structure of the flexible screen terminal shown in FIG. 1 does not constitute a limitation on the flexible screen terminal, and may include more or less components than shown in the figure, or a combination of certain components, or different components. Component arrangement.
  • the memory 1005 as a computer storage medium may include an operating system, a network communication module, a user interface module, and a display processing program.
  • the network interface 1004 can be mainly configured to connect to a back-end server and perform data communication with the back-end server; the user interface 1003 can be mainly configured to connect to a client (user side) to communicate with the client Data communication; and the processor 1001 can be configured to call the display processing program stored in the memory 1005.
  • the flexible screen processing device may include a memory 1005, a processor 1001, and a display processing program stored on the memory 1005 and running on the processor 1001.
  • the processor 1001 may call the display processing program stored in the memory 1005 and perform the following operations: when a folding operation corresponding to the flexible screen terminal is detected, determine the folding boundary line corresponding to the folding operation; and, based on the folding boundary line and the flexible screen terminal.
  • the processor 1001 can call the display processing program stored in the memory 1005 to perform the following operations: when a folding operation corresponding to the flexible screen terminal is detected, it is judged whether the folding operation is a valid folding operation; For an effective folding operation, the coordinate information corresponding to the folding operation is obtained; and, based on the coordinate information, the folding boundary is determined.
  • the processor 1001 may call the display processing program stored in the memory 1005 to perform the following operations: determine whether the bending angle corresponding to the folding operation reaches the preset angle, and if the bending angle reaches the preset angle, It is determined that the folding operation is a valid folding operation.
  • the processor 1001 may call a display processing program stored in the memory 1005 to perform the following operations: when a folding operation corresponding to the flexible screen terminal is detected, it is determined whether the folding operation is detected within a preset time interval. The touch operation corresponding to the display area; if a touch operation is detected, the touch parameter corresponding to the touch operation is acquired; and whether the touch parameter meets a preset condition is determined, and when the touch parameter meets the preset condition, it is determined that the folding operation is a valid folding operation.
  • the processor 1001 may call the display processing program stored in the memory 1005 to perform the following operations: determine whether the sliding distance reaches the first preset distance, and if the sliding distance reaches the first preset distance, then determine the touch The parameters meet the preset conditions.
  • the processor 1001 may call the display processing program stored in the memory 1005 to perform the following operations: determine whether the number of presses reaches the preset number of times, and whether the touch point distance is greater than the second preset distance, if the number of presses When the preset number of times is reached and the touch point distance is greater than the second preset distance, it is determined that the touch parameter meets the preset condition.
  • the processor 1001 may call a display processing program stored in the memory 1005 to perform the following operations: obtain a touch point coordinate set corresponding to the touch operation; and determine coordinate information based on the touch point coordinate set.
  • the processor 1001 may call the display processing program stored in the memory 1005 to perform the following operations: based on the folding boundary line, determine the screen between the first display area and the second display area corresponding to the flexible screen terminal Angle; and, based on the screen angle and preset display rules, perform split-screen display operations.
  • the embodiment of the present disclosure also provides a display method of a flexible screen terminal, as shown in FIG. 2, which is a schematic flowchart of a display method of a flexible screen terminal provided by an embodiment of the present disclosure.
  • the display method of the flexible screen terminal may include step S100 and step S200.
  • step S100 when a folding operation corresponding to the flexible screen terminal is detected, a folding boundary line corresponding to the folding operation is determined.
  • the flexible screen terminal does not make any response to the user's folding operation of the flexible screen.
  • the folding detection unit of the flexible screen terminal detects the folding operation of the flexible screen, it judges whether the folding operation is a valid folding operation according to preset folding parameters. If the folding operation is judged to be an invalid folding operation, the folding detection unit does not report this event to the processing unit of the flexible screen terminal. If the folding operation is judged to be a valid folding operation, the folding detection unit reports the event to the flexible screen.
  • the processing unit of the terminal obtains the coordinate set of the operating point of the effective folding process and performs regression analysis on this coordinate set, fits a linear line with the smallest square error, and determines whether the error is within the preset error range, where the preset The error range can be flexibly set.
  • the linear line is the corresponding effective folding boundary line in the effective folding operation; if the error is not within the preset error range, it is determined that the linear line fitting is invalid, and the folding boundary is issued A message prompt that the line cannot be recognized, and a prompt for the user to reconfirm the folding boundary line at the same time.
  • the preset folding parameters can be flexibly set according to specific conditions.
  • the preset folding parameter can be the folding angle
  • the folding angle refers to the change value of the included angle of the display interface of the flexible screen terminal during folding, and the change value can be flexibly set, which is not specifically limited here.
  • the preset folding angle is 30°.
  • the preset folding parameter can also be the sliding distance at the folding boundary. The sliding distance can be flexibly set and is not specified here. For example, when the folding stops, the user can perform a bottom-up sliding operation on the touch screen of the folding boundary.
  • the preset folding parameters can also be the number of pressing operations on the folding boundary within the preset duration and the touch point distance corresponding to the pressing operation.
  • the preset duration and touch point distance can be flexibly set, and the preset number of times is twice or twice. The above is not stipulated here. For example, when the folding stops, within a preset time, the user presses the preset number of times and the distance between any two touch points corresponding to the press operation reaches the preset touch distance. Identified as a valid folding operation.
  • step S200 a split-screen display operation is performed based on the folding boundary line and the preset display rule of the flexible screen terminal.
  • the display content of the display interface before the split screen is acquired, and the screen display area is divided into two areas with the folding boundary line as the boundary;
  • the two areas are on the same horizontal plane before folding, and after the two display areas are determined, corresponding display operations are performed on the two display areas respectively based on a preset display rule.
  • the preset display rules can be flexibly set, and there are no specific restrictions.
  • the folding angle in the folding direction is greater than the second preset angle and smaller than the first preset angle, and the folding angle is within the preset range
  • the time reaches the first preset time, where the first preset angle, the second preset angle, and the first preset time can be flexibly set, and no specific provisions are made here; for example, it is detected that the folding angle is greater than 100° and less than 150°
  • the time for the folding angle within this range to reach 3s the display content of the display interface before the split screen is displayed in two display areas at the same time, and the ratio of these two display areas to the main screen display area before the split screen is adjusted respectively.
  • the interface layout of the content displayed in the two display areas is a predefined range
  • the third preset angle and the second preset time may be Flexible settings, no specific provisions are made here; for example, if the folding angle is detected to be greater than 50° and less than 100° and the time for the folding angle to be within this range reaches 5s, the infrared sensors in the two display areas are used to detect human radiation infrared signals, respectively Obtain the infrared signal strength in the two display areas and determine the display area with the highest signal strength, display the display content of the display interface before the split screen in the display area with the highest signal strength, and display the desktop interface of the terminal on the other display In the area, adjust the interface layout of the content displayed in the two display areas according to the ratio of the display area and the main screen display area before the split screen.
  • the display area selection will be issued Based on the user’s display area selection, the display content of the display interface before the split screen is displayed in the selected area based on the user’s display area, while the desktop interface of the terminal is displayed in another display area.
  • the third preset angle can be flexibly set, and no specific setting is made here; for example, when the folding angle is detected to be less than 50°, the infrared sensor in the two display areas Detect human radiation infrared signals, obtain the infrared signal strengths in the two display areas and determine the display area with the highest signal strength, and display the display content of the display interface before the split screen in the display area with the highest signal strength. According to the display area and The ratio of the main screen display area before split screen is adjusted respectively to the interface layout of the content displayed in this display area, and the other display screen is turned off.
  • the folding operation is detected to stop, and the sensor of the flexible screen terminal detects the overlapping part between the two screens; the overlapping part refers to the display area after the flexible screen is folded The smaller display area and the projection of the smaller display area in the normal direction of the other display area; if the overlap between the two screens accounts for more than 7% of the main screen display area before the split screen Ten, the folding process is judged to be invalid; if the overlap between the two screens accounts for less than or equal to 30% of the main screen display area before the split screen, the overlap will be extinguished after the overlap between the two screens is determined Part of the display area, the display content of the display interface before the split screen is displayed in the non-coincident display area, and the interface layout of the content displayed in the non-coincident display area is adjusted according to the ratio of the non-coincident display area to the main screen display area before the split screen .
  • the folding boundary line corresponding to the folding operation is determined, and then the split screen display operation is performed based on the folding boundary line and the preset display rule of the flexible screen terminal
  • the flexible screen terminal can be split-screen display according to the folding boundary line of the folding operation, so that the flexible screen terminal can be split-screen display according to the user's folding operation at any position to meet the user's different folding position requirements and improve the user experience .
  • step S100 may specifically include step S110, step S120, and step S130.
  • step S110 when a folding operation corresponding to the flexible screen terminal is detected, it is determined whether the folding operation is a valid folding operation.
  • step S120 if the folding operation is a valid folding operation, the coordinate information corresponding to the folding operation is acquired.
  • step S130 based on the coordinate information, a folding boundary line is determined.
  • the angle sensor when there is an angle sensor in the flexible screen terminal, the angle sensor can detect the folding angle during the folding process, and the processing program of the terminal can calculate the change value of the folding angle.
  • This folding operation is recognized as a valid folding operation, where the preset value can be flexibly set, and no specific setting is made here; or, according to the touch parameters of other touch operations detected by the flexible screen terminal, it is determined whether the folding operation is a valid folding operation .
  • the folding operation is a valid folding operation
  • the coordinate information corresponding to the folding operation is obtained, and the folding boundary line is determined based on the coordinate information.
  • the folding detection unit of the terminal reports the event to the processing unit, and the processing unit receives and obtains the coordinate information of the folding point during the folding process.
  • the processing unit receives and obtains the coordinate information of the folding point during the folding process.
  • Regression analysis fit a linear line with the largest determination coefficient, the determination coefficient of this linear line is within the preset determination coefficient range, and use this linear line as the corresponding effective folding boundary line in the effective folding operation;
  • the range of the determination coefficient can be set flexibly, such as 0.85 ⁇ 1.00, which is not limited here.
  • the folding boundary line corresponding to the effective folding operation can be determined, which can accurately determine the folding position corresponding to the folding operation, and improve the accuracy of the folding boundary line. In turn, the accuracy of the split-screen display is improved.
  • step S110 may specifically include step S111.
  • step S111 it is determined whether the bending angle corresponding to the folding operation reaches a preset angle, and if the bending angle reaches the preset angle, it is determined that the folding operation is a valid folding operation.
  • the bending angle refers to the change value of the included angle of the display interface of the flexible screen terminal when folded, wherein the preset angle value can be flexibly set, and there is no specific limitation here; for example, the preset angle is 30°
  • the folding detection unit of the terminal obtains the bending angle of the folding process through the angle sensor and detects whether the bending angle in the process reaches 30°.
  • the folding operation It is recognized as a valid folding operation.
  • the folding operation by determining whether the bending angle corresponding to the folding operation reaches a preset angle, if the bending angle reaches the preset angle, the folding operation is determined to be an effective folding operation, and whether the folding operation is accurately determined according to the bending angle
  • the accuracy of the judgment of the effective folding operation is improved, and the accuracy of the split-screen display is improved, and the user experience is further improved.
  • step S110 may further include step S112, step S113, and step S114.
  • step S112 when a folding operation corresponding to the flexible screen terminal is detected, it is determined whether a touch operation corresponding to the display area to which the folding operation belongs is detected within a preset time interval.
  • step S113 if a touch operation is detected, a touch parameter corresponding to the touch operation is acquired.
  • step S114 it is determined whether the touch parameter satisfies a preset condition, and when the touch parameter satisfies the preset condition, it is determined that the folding operation is a valid folding operation.
  • the detection unit detects whether a touch operation on the folding boundary touch screen is detected within a preset time, and if it is not detected within the preset time A touch operation on the fold boundary touch screen is determined to be an invalid folding operation, and a prompt instruction indicating that the operation process is wrong is issued, and a prompt message that the touch operation is performed on the fold boundary touch screen within a preset time is issued at the same time;
  • the preset time can be flexibly set, such as 3 seconds; the touch operation can be sliding or pressing, which is not specifically limited.
  • the detection unit obtains the touch parameter corresponding to the touch operation, and detects whether the touch parameter meets the preset condition. If the touch parameter meets the preset condition, then The folding operation is determined to be a valid folding operation; if the touch parameter does not meet the preset condition, the folding operation is determined to be an invalid folding operation, and a prompt message indicating that the touch operation is invalid is issued.
  • the preset condition can be set according to the situation. For example, when the terminal's recognizable operation is a sliding operation, the parameter corresponding to the sliding operation is the sliding distance, and the preset condition is a specific sliding distance. The sliding distance can be flexibly set, such as 5 cm.
  • step S114 may include: determining whether the sliding distance reaches a first preset distance, and if the sliding distance reaches the first preset distance, determining that the touch parameter satisfies the preset condition.
  • the touch operation is a sliding touch operation
  • the detection unit detects this sliding touch operation event and obtains the sliding distance corresponding to the sliding touch operation, and detects whether the sliding distance reaches the first preset distance; wherein, the first preset distance
  • the set distance refers to the preset sliding distance when the user performs a sliding touch.
  • the preset sliding distance value can be flexibly set, for example, 5 cm; if the sliding distance reaches the first preset distance, the folding operation is judged to be a valid folding operation ; If the sliding distance does not reach the first preset distance, it is determined that the folding operation is an invalid folding operation, and a prompt message that the sliding touch operation is invalid and the touch process is too short is issued. Furthermore, it is possible to accurately determine whether the folding operation is an effective folding operation according to the sliding distance, which improves the accuracy of determining the effective folding operation.
  • step S114 may include step S116.
  • step S116 it is determined whether the number of presses reaches the preset number and the distance of the touch point is greater than the second preset distance. If the number of presses reaches the preset number and the distance of the touch point is greater than the second preset distance, it is determined that the touch parameter meets the preset distance. Set conditions.
  • the touch operation is a pressing operation
  • the detection unit detects this pressing operation event and obtains the number of pressings corresponding to the pressing operation, and detects whether the number of pressings reaches the preset number of pressings; wherein the preset number of pressings is two Or more than two times, the specific times can be flexibly set, and it is not specified here; if the number of presses does not reach the preset number of presses, a message indicating that the number of presses is not enough will be issued; if the number of presses reaches the preset number of presses, the press operation will be obtained The distance between the two pressing points furthest apart among the corresponding pressing points, if the distance between the two pressing points furthest apart among the pressing points corresponding to the user pressing operation is greater than the second preset distance, the fold is determined The operation is a valid folding operation; if the distance between the two pressing points that are the furthest apart among the pressing points corresponding to the user pressing operation does not reach the preset distance, the
  • the folding operation corresponding to the flexible screen terminal when the folding operation corresponding to the flexible screen terminal is detected, it is determined whether the touch operation corresponding to the display area to which the folding operation belongs is detected within a preset time interval; then, if the touch operation is detected, the touch is acquired Operate the corresponding touch parameter, and then determine whether the touch parameter meets the preset condition, and when the touch parameter meets the preset condition, it is determined that the folding operation is a valid folding operation. It can accurately determine whether the folding operation is an effective folding operation according to the touch parameters, which improves the accuracy of the effective folding operation, thereby improving the accuracy of the split-screen display, further improving the user experience, and avoiding the user's accidental touch. The operation is more convenient and flexible, thereby improving the user experience.
  • step S120 may include step S121 and step S122.
  • step S121 a touch point coordinate set corresponding to the touch operation is acquired.
  • step S122 coordinate information is determined based on the touch point coordinate set.
  • the touch point coordinate set corresponding to the touch operation can be specifically determined by the pressure sensor corresponding to the flexible screen to determine the coordinates of each touch point corresponding to the touch operation, thereby obtaining the touch point Coordinate set; and then perform regression analysis on this touch point coordinate set to fit a linear line with the largest coefficient of determination, and determine whether the coefficient of determination of this line is within the range of the preset coefficient of determination; among them, the preset decision
  • the coefficient range can be flexibly set, such as 0.85 ⁇ 1.00; if the determination coefficient is within the preset determination coefficient range, the coordinates of the touch point on the linear line will be used as the coordinate information; if the coordinates of the touch point are concentrated in the If the touch point on the linear line is less than 2, the coordinates of any two or more points on the linear line can be used as the coordinate information.
  • the coordinate information can be accurately determined according to the touch operation, and the folding position corresponding to the folding operation can be accurately determined.
  • the accuracy of the folding boundary line is improved, and the accuracy of the split screen display is improved.
  • step S200 may include step S201 and step S202.
  • step S201 based on the folding boundary line, the screen angle between the first display area and the second display area corresponding to the flexible screen terminal is determined.
  • step S202 a split-screen display operation is performed based on the screen angle and preset display rules.
  • the display content of the display interface before the split screen is acquired, and the screen display area is divided into the first display area and the second display using the folding boundary line as the boundary.
  • Area; after determining the two display areas, the angle sensor in the terminal determines the angle between the two display areas, and performs corresponding display operations on the two display areas based on the screen angle and preset display rules .
  • the preset display rules can be flexibly set, and there are no specific restrictions.
  • the folding angle in the folding direction is greater than the second preset angle and smaller than the first preset angle, and the folding angle is within the preset range.
  • the first preset angle, the second preset angle, and the first preset time can be flexibly set, and no specific provisions are made here; for example, it is detected that the folding angle is greater than 100° and less than When 150° and the folding angle is within this range for 3 seconds, the display content of the display interface before the split screen is displayed in two display areas at the same time, and according to the difference between the two display areas and the main screen display area before the split screen Proportion size adjusts the interface layout of the content displayed in the two display areas respectively.
  • the third preset angle and the second preset time can be Flexible settings, no specific provisions are made here; for example, when the folding angle is detected to be greater than 50° and less than 100° and the folding angle is within this range for 5 seconds, the human body radiation infrared signal is detected by the infrared sensors in the two display areas , Obtain the infrared signal strength in the two display areas and determine the display area with the highest signal strength, display the display content of the display interface before the split screen in the display area with the highest signal strength, and display the desktop interface of the terminal on the other display area.
  • a display area adjust the interface layout of the content displayed in the two display areas according to the ratio of the display area and the main screen display area before split screen; if it is detected that the intensity of the infrared signal in the two display areas is the same, the display will be displayed
  • the prompt message of area selection and based on the user's display area selection, display the display content of the pre-split display interface in the selected area, and display the desktop interface of the terminal in another display area.
  • the third preset angle can be flexibly set, and no specific setting is made here; for example, when the folding angle is detected to be less than 50°, the infrared sensor in the two display areas Detect human radiation infrared signals, obtain the infrared signal strengths in the two display areas and determine the display area with the highest signal strength, and display the display content of the display interface before the split screen in the display area with the highest signal strength. According to the display area and The ratio of the main screen display area before split screen is adjusted respectively to the interface layout of the content displayed in this display area, and the other display screen is turned off.
  • a prompt message for display area selection is issued, and the corresponding display content is displayed in the selected area based on the user's display area selection, and the other display screen is turned off at the same time.
  • the folding operation is detected to stop, and the sensor of the flexible screen terminal detects the overlapping part between the two screens, where the overlapping part refers to the display area after the flexible screen is folded
  • the overlapping part refers to the display area after the flexible screen is folded
  • the folding process is judged to be invalid; if the overlap between the two screens accounts for less than or equal to 30% of the main screen display area before the split screen, the overlap will be extinguished after the overlap between the two screens is determined
  • the display content of the display interface before the split screen is displayed in the non-coincident display area, and the interface layout of the content displayed in the non-coincident display area is adjusted according to the ratio of the non-coincident display area to the main screen display area before the split screen .
  • the screen angle between the first display area and the second display area corresponding to the flexible screen terminal is determined based on the folding boundary line, and then the screen split is executed based on the screen angle and the preset display rule
  • the display operation realizes the split screen display of the flexible screen terminal according to the screen angle, and then the accurate split screen display according to the screen angle and folding operation, thereby improving the user experience.
  • the embodiment of the present disclosure also proposes a computer-readable storage medium on which a display program of a flexible screen terminal is stored.
  • the display program of the flexible screen terminal is executed by a processor, the following operations can be realized:
  • the folding boundary line corresponding to the folding operation is determined; and, based on the folding boundary line and the preset display rule of the flexible screen terminal, the split-screen display operation is performed.
  • the following operations can also be realized: when the folding operation corresponding to the flexible screen terminal is detected, it is judged whether the folding operation is a valid folding operation; if the folding operation is For an effective folding operation, the coordinate information corresponding to the folding operation is obtained; and, based on the coordinate information, the folding boundary line is determined.
  • the display program of the flexible screen terminal can also implement the following operations when executed by the processor: determine whether the bending angle corresponding to the folding operation reaches the preset angle, and if the bending angle reaches the preset angle, determine The folding operation is an effective folding operation.
  • the following operations can also be realized: when a folding operation corresponding to the flexible screen terminal is detected, it is determined whether the display to which the folding operation belongs is detected within a preset time interval. The touch operation corresponding to the area; if the touch operation is detected, the touch parameter corresponding to the touch operation is acquired; and whether the touch parameter meets the preset condition is determined, and when the touch parameter meets the preset condition, it is determined that the folding operation is a valid folding operation.
  • the display program of the flexible screen terminal can also realize the following operations when being executed by the processor: determine whether the sliding distance reaches the first preset distance, and if the sliding distance reaches the first preset distance, determine the touch parameter Meet the preset conditions.
  • the following operations can also be implemented: determine whether the number of presses reaches the preset number of times, and whether the touch point distance is greater than the second preset distance, if the number of presses reaches The preset number of times and the touch point distance is greater than the second preset distance, then it is determined that the touch parameter satisfies the preset condition.
  • the following operations can also be implemented: obtaining the coordinate set of the operating point corresponding to the effective folding operation; and determining coordinate information based on the coordinate set of the operating point.
  • the following operations can also be realized: based on the folding boundary line, the screen clip between the first display area and the second display area corresponding to the flexible screen terminal is determined Angle; and, based on the screen angle and preset display rules, perform split-screen display operations.
  • the technical solution of the present disclosure essentially or the part that contributes to the prior art can be embodied in the form of a software product, and the computer software product is stored in a storage medium (such as ROM/RAM) as described above. , Magnetic disk, optical disk), including several instructions to make a terminal device (can be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) execute the methods described in the various embodiments of the present disclosure.

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Abstract

一种柔性屏终端及其显示方法、计算机可读存储介质,该显示方法包括:在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线(S100);以及,基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作(S200)。

Description

柔性屏终端及其显示方法、计算机可读存储介质 技术领域
本公开涉及显示技术领域。
背景技术
由于柔性屏显示装置具有可折替和可弯曲等特性,目前市场上对柔性屏显示装置的智能终端越来越推崇,然而由于硬件技术发展限制,当前业内对于柔性屏显示装置的技术非常欠缺。
相关的柔性屏终端,通常只具备屏幕可折叠的特点,且折叠位置固定,且只能按照终端内设置的与折叠位置对应的比例进行分屏显示,不能根据用户选择的位置进行折叠,造成柔性屏不能按照用户的需求进行分屏显示,影响用户体验。
发明内容
本公开实施例的一个方面提供一种柔性屏终端的显示方法,包括:在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线;以及,基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作。
本公开实施例的另一方面提供一种柔性屏终端,包括:存储器、处理器及存储在存储器上并可在处理器上运行的柔性屏终端的显示程序,柔性屏终端的显示程序被处理器执行时实现上述柔性屏终端的显示方法的至少一个步骤。
本公开实施例的再一方面提供一种计算机可读存储介质,其上存储有柔性屏终端的显示程序,柔性屏终端的显示程序被处理器执行时实现上述柔性屏终端的显示方法的至少一个步骤。
附图说明
图1是本公开实施例提供的柔性屏终端的一种结构示意图。
图2为本公开实施例提供的柔性屏终端的显示方法的一种流程示意图。
本公开目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本公开,并不用于限定本公开。
如图1所示,其为本公开实施例提供的柔性屏终端的一种结构示意图,其显示了该柔性屏终端的硬件运行环境。柔性屏终端可以是智能手机、平板电脑、电子书阅读器等具有显示功能的可折叠式终端设备。
如图1所示,该柔性屏终端可以包括:处理器1001,例如CPU(Central Processing Unit,中央处理器),网络接口1004,用户接口1003,存储器1005,以及通信总线1002。其中,通信总线1002可被配置为实现这些组件之间的连接通信。用户接口1003可以包括显示屏(Display),以及输入单元,比如键盘(Keyboard)。用户接口1003还可以包括标准的有线接口、无线接口。网络接口1004可以包括标准的有线接口、无线接口(如Wi-Fi(行动热点)接口)。存储器1005可以是高速RAM存储器,也可以是稳定的存储器(Non-Volatile memory),例如,磁盘存储器。存储器1005还可以是独立于前述处理器1001的存储装置。
根据本公开提供的实施例,柔性屏终端还可以包括摄像头、RF(Radio Frequency,射频)电路,传感器、音频电路、Wi-Fi模块等等。其中,传感器可包括光传感器、运动传感器以及其他传感器。光传感器可包括环境光传感器及接近传感器;其中,环境光传感器可根据环境光线的明暗来调节显示屏的亮度,接近传感器可在柔性屏终端 移动到耳边时,关闭显示屏和/或背光。作为运动传感器的一种,重力加速度传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别柔性屏终端姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等。当然,柔性屏终端还可配置陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
本领域技术人员可以理解,图1中示出的柔性屏终端的结构并不构成对柔性屏终端的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
如图1所示,作为一种计算机存储介质的存储器1005中可以包括操作系统、网络通信模块、用户接口模块以及显示处理程序。
在图1所示的柔性屏终端中,网络接口1004可主要被配置为连接后台服务器,与后台服务器进行数据通信;用户接口1003可主要被配置为连接客户端(用户端),与客户端进行数据通信;而处理器1001可以被配置为调用存储器1005中存储的显示处理程序。
根据本公开提供的实施例,柔性屏处理装置可包括:存储器1005、处理器1001及存储在存储器1005上并可在处理器1001上运行的显示处理程序。处理器1001可调用存储器1005中存储的显示处理程序,并执行以下操作:在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线;以及,基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:在检测到柔性屏终端对应的折叠操作时,判断折叠操作是否为有效折叠操作;若折叠操作为有效折叠操作,则获取折叠操作对应的坐标信息;以及,基于坐标信息,确定折叠边界。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:判断折叠操作对应的弯折角 度是否达到预设角度,若弯折角度达到预设角度,则判定折叠操作为有效折叠操作。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:在检测到柔性屏终端对应的折叠操作时,确定预设时间间隔内是否检测到折叠操作所属显示区域对应的触摸操作;若检测到触摸操作,则获取触摸操作对应的触摸参数;以及,确定触摸参数是否满足预设条件,在触摸参数满足预设条件时,判定折叠操作为有效折叠操作。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:判断滑动距离是否达到第一预设距离,若滑动距离达到第一预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:判断按压次数是否达到预设次数,以及触摸点距离是否大于第二预设距离,若按压次数达到预设次数且触摸点距离大于第二预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:获取触摸操作对应的触摸点坐标集;以及,基于触摸点坐标集确定坐标信息。
根据本公开提供的实施例,处理器1001可以调用存储器1005中存储的显示处理程序,执行以下操作:基于折叠边界线,确定柔性屏终端对应的第一显示区域与第二显示区域之间的屏幕夹角;以及,基于屏幕夹角与预设显示规则,执行分屏显示操作。
本公开实施例还提供一种柔性屏终端的显示方法,如图2所示,其为本公开实施例提供的柔性屏终端的显示方法的一种流程示意图。该柔性屏终端的显示方法可包括步骤S100和步骤S200。
在步骤S100中,在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线。
根据本公开提供的实施例,可首先确定柔性屏处于亮屏状态。若柔性屏处于熄屏状态,则柔性屏终端对用户对柔性屏的折叠操作不作任何反应。
柔性屏终端的折叠检测单元检测到柔性屏的折叠操作时,通过预先设定的折叠参数判断此折叠操作是否为有效折叠操作。若此折叠操作被判定为无效折叠操作,则折叠检测单元不将此事件上报给柔性屏终端的处理单元,若此折叠操作被判定为有效折叠操作,则折叠检测单元将此事件上报给柔性屏终端的处理单元。处理单元获取此有效折叠过程的操作点的坐标集并对此坐标集进行回归分析,拟合出一条平方误差最小的线性线,并确定此误差是否在预设误差范围内,其中,此预设误差范围可以灵活设置。若此误差在预设误差范围内,则此线性线就是有效折叠操作中对应的有效折叠边界线;若此误差不在预设误差范围内,则判定拟合出此线性线无效,并发出折叠边界线不能识别的消息提示,同时发出用户重新确认折叠边界线的提示。
根据本公开提供的实施例,预先设定的折叠参数可根据具体情况灵活设置。比如,若预设的折叠参数可以是折叠角度,此折叠角度指折叠时柔性屏终端显示界面夹角的改变值,且此改变值大小可以灵活设置,在此不作具体限制。再如,预设折叠角度为30°,在折叠过程中,当折叠角度达到30°时,此折叠操作才被认定为有效折叠操作。预设的折叠参数也可以是在折叠边界的滑动距离,此滑动距离可以灵活设置,在此不作规定。例如,在折叠停止时,用户可在折叠边界的触控屏上进行从下至上的滑动操作,当此滑动操作对应的滑动距离达到预设的滑动距离时,此折叠操作才被认定为有效折叠操作。预设的折叠参数也可以是在预设时长内折叠边界的按压操作的按压次数以及按压操作对应的触摸点距离,预设时长以及触摸点距离可以灵活设置,预设次数为两次或两次以上,在此不作规定。例如,当在折叠停止时,在预设的时间内,用户的按压次数达到了预设次数以及按压操作对应的任意两触摸点之间的距离达到了预设的触摸距离,此 折叠操作才被认定为有效折叠操作。
在步骤S200中,基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作。
根据本公开提供的实施例,在得到折叠边界线的位置信息时,获取分屏前显示界面的显示内容,并以折叠边界线为边界,将屏幕显示区域分为两个区域;其中,这两个区域在折叠前处于同一水平面,在确定两个显示区域之后,基于预设的显示规则对这两个显示区域分别执行其对应的显示操作。其中,预设的显示规则可以灵活设置,具体不作限制。
比如,在折叠过程中,检测到柔性屏终端的后盖呈贴合趋势时,检测到折叠方向上的折叠角大于第二预设角小于第一预设角且此折叠角在预设范围内的时间达到第一预设时间,其中,第一预设角,第二预设角以及第一预设时间可以灵活设置,在此不作具体规定;比如,检测到折叠角大于100°小于150°且折叠角在此范围内的时间达到3s,将分屏前显示界面的显示内容同时显示在两个显示区域中,并根据这两个显示区域与分屏前主屏显示区域的比例大小分别调整这两个显示区域中显示内容的界面布局。
当检测到折叠角大于第三预设角小于第二预设角且此折叠角在预设范围内的时间达到第二预设时间时,其中,第三预设角以及第二预设时间可以灵活设置,在此不作具体规定;比如,检测到折叠角大于50°小于100°且此折叠角在此范围内的时间达到5s,通过两个显示区域中的红外传感器检测人体辐射红外信号,分别获取两个显示区域中的红外信号强度并判断出信号强度最大的显示区域,将分屏前显示界面的显示内容显示在信号强度最大的显示区域中,并将终端的桌面界面显示在另一显示区域中,根据显示区域与分屏前主屏显示区域的比列大小分别调整两个显示区域中显示内容的界面布局,若检测到两个显示区域中的红外信号强度大小一样,则发出显示区域选择的提示消息,并基于用户的显示区域选择在其选折的区域中显示分屏前 显示界面的显示内容,同时在另一显示区域中显示终端的桌面界面。
当检测到折叠角小于第三预设角时,其中,第三预设角可灵活设置,在此不作具体设置;比如,检测到折叠角小于50°时,通过两个显示区域中的红外传感器检测人体辐射红外信号,分别获取两个显示区域中的红外信号强度并判断出信号强度最大的显示区域,将分屏前显示界面的显示内容显示在信号强度最大的显示区域中,根据显示区域与分屏前主屏显示区域的比列大小分别调整此显示区域中显示内容的界面布局,并熄灭另一个显示屏。若检测到两个显示区域中的红外信号强度大小一样,则发出显示区域选择的提示消息,并基于用户的显示区域选择在其选折的区域中显示对应的显示内容,同时熄灭另一显示屏。
在折叠过程中,检测到柔性屏终端的显示屏呈贴合趋势时,检测到折叠操作停止,柔性屏终端的传感器检测两屏幕之间的重合部分;其中,重合部分指柔性屏折叠之后显示面积较小的显示区域部分以及显示面积较小的显示区域在另一显示区域法线方向上的投影部分;若两屏幕之间的重合部分占分屏前主屏幕显示区域的比例大于百分之七十,则判定此折叠过程无效;若两屏幕之间的重合部分占分屏前主屏幕显示区域的比例小于或等于百分之三十,则在确定两屏幕之间的重合部分之后,熄灭重合部分的显示区域,将分屏前显示界面的显示内容显示在未重合显示区域中,并根据未重合显示区域与分屏前主屏显示区域的比列大小调整未重合显示区域中显示内容的界面布局。
根据本公开提供的实施例,通过在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线,接着基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作;能够根据折叠操作的折叠边界线对柔性屏终端进行分屏显示,进而使得柔性屏终端可根据用户在任意位置的折叠操作进行分屏显示,以满足用户的不同折叠位置需求,提高了用户体验。
根据本公开提供的实施例,步骤S100可具体包括步骤S110、步 骤S120和步骤S130。
在步骤S110中,在检测到柔性屏终端对应的折叠操作时,判断折叠操作是否为有效折叠操作。
在步骤S120中,若折叠操作为有效折叠操作,则获取折叠操作对应的坐标信息。
在步骤S130中,基于坐标信息,确定折叠边界线。
根据本公开提供的实施例,在检测到用户的折叠操作时,通过预先设定的折叠参数判断此折叠操作是否为有效折叠操作,其中预先设定的折叠参数可以根据情况灵活设置,具体不作限制。比如,当柔性屏终端中有角度传感器时,角度传感器可以检测折叠过程中的折叠角度,终端的处理程序可以计算出折叠角度的变化值,当检测到折叠角度的变化值达到预设值时,此折叠操作才被认定为有效折叠操作,其中,此预设值可以灵活设置,在此不作具体设置;或者,根据柔性屏终端检测到的其他触摸操作的触摸参数确定折叠操作是否为有效折叠操作。
然后,若折叠操作为有效折叠操作,则获取折叠操作对应的坐标信息,并基于坐标信息,确定折叠边界线。
比如,当检测到折叠角度的变化值达到15°时,终端的折叠检测单元将此事件上报给处理单元,处理单元接收并获取折叠过程中折叠点的坐标信息,对此坐标信息的坐标点进行回归分析,拟合出一条决定系数最大的线性线,此线性线的决定系数在预设的决定系数范围内,并将此线性线作为有效折叠操作中对应的有效折叠边界线;其中,此预设的决定系数范围可以灵活设置,比如0.85~1.00,在此不作限制。
根据本公开提供的实施例,通过在检测到柔性屏终端对应的折叠操作时,判断折叠操作是否为有效折叠操作;接着若折叠操作为有效折叠操作,则获取折叠操作对应的坐标信息;而后基于坐标信息,确定折叠边界线,通过获取折叠边界的操作点的坐标信息进而来确定 有效折叠操作对应的折叠边界线,能够准确地确定折叠操作对应的折叠位置,提高了折叠边界线的精确度,进而提高了分屏显示的准确性。
根据本公开提供的实施例,步骤S110可具体包括步骤S111。
在步骤S111中,判断折叠操作对应的弯折角度是否达到预设角度,若弯折角度达到预设角度,则判定折叠操作为有效折叠操作。
根据本公开提供的实施例,弯折角度指折叠时柔性屏终端显示界面夹角的改变值,其中,预设角度值大小可以灵活设置,在此不作具体限制;比如,预设角度为30°,用户在进行折叠操作时,终端的折叠检测单元通过角度传感器获取折叠过程的弯折角度并检测此过程中的弯折角度是否达到30°,当弯折角度达到30°时,此折叠操作才被认定为有效折叠操作。
根据本公开提供的实施例,通过判断折叠操作对应的弯折角度是否达到预设角度,若弯折角度达到预设角度,则判定折叠操作为有效折叠操作,根据弯折角度准确判定折叠操作是否为有效折叠操作,提高了有效折叠操作的判定准确度,进而提高了分屏显示的准确性,进一步提高了用户的体验度。
根据本公开提供的实施例,步骤S110还可包括步骤S112、步骤S113和步骤S114。
在步骤S112中,在检测到柔性屏终端对应的折叠操作时,确定预设时间间隔内是否检测到折叠操作所属显示区域对应的触摸操作。
在步骤S113中,若检测到触摸操作,则获取触摸操作对应的触摸参数。
在步骤S114中,确定触摸参数是否满足预设条件,在触摸参数满足预设条件时,判定折叠操作为有效折叠操作。
根据本公开提供的实施例,当检测到用户的折叠操作停止时,检测单元检测在预设的时间内是否检测到折叠边界触控屏上的触摸操作,若在预设的时间内没有检测到折叠边界触控屏上的触摸操作,则判定此折叠操作为无效折叠操作,且发出此操作过程错误的提示指令,同时发出在预设 的时间内在折叠边界触控屏执行触摸操作的提示消息;其中,预设的时间可以灵活设置,比如3秒;触摸操作可以为滑动或则按压,具体不作限制。
若在预设的时间内检测到折叠边界触控屏上的触摸操作,则检测单元获取触摸操作对应的触摸参数,检测此触摸参数是否满足预设条件,若此触摸参数满足预设条件,则判定此折叠操作为有效折叠操作;若此触摸参数不满足预设条件,则判定此折叠操作为无效折叠操作,并发出此触摸操作无效的提示消息。其中预设条件可根据情况具体设置,比如,当终端可识别的操作为滑动操作时,滑动操作对应的参数为滑动距离,预设条件为特定的滑动距离,此滑动距离可以灵活设置,比如5厘米。
根据本公开提供的实施例,步骤S114可包括:判断滑动距离是否达到第一预设距离,若滑动距离达到第一预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,触摸操作为滑动触摸操作,检测单元检测此滑动触摸操作事件并获取滑动触摸操作对应的滑动距离,检测此滑动距离是否达到第一预设距离;其中,第一预设距离指用户在进行滑动触摸时的预设滑动距离,此预设滑动距离值可以灵活设置,比如,5厘米;若此滑动距离达到第一预设距离,则判定此折叠操作为有效折叠操作;若此滑动距离未达到第一预设距离,则判定此折叠操作为无效折叠操作,并向发出此滑动触摸操作无效,触摸过程太短的提示消息。进而能够根据滑动距离准确判定折叠操作是否为有效折叠操作,提高了有效折叠操作的判定准确度。
根据本公开提供的实施例,步骤S114可包括步骤S116。
在步骤S116中,判断按压次数是否达到预设次数,以及触摸点距离是否大于第二预设距离,若按压次数达到预设次数且触摸点距离大于第二预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,触摸操作为按压操作,检测单元检测此按压操作事件并获取按压操作对应的按压次数,检测此按压次数 是否达到预设按压次数;其中,预设按压次数为两次或两次以上,具体次数可以灵活设置,在此不作规定;若此按压次数未达到预设按压次数,则发出按压次数不够的提示消息;若此按压次数达到预设按压次数,则获取按压操作对应的按压点中相距最远的两个按压点之间的距离,若用户按压操作对应的按压点中相距最远的两个按压点之间的距离大于第二预设距离,则判定此折叠操作为有效折叠操作;若用户按压操作对应的按压点中相距最远的两个按压点之间的距离未达到预设距离,则判定此按压操作为无效折叠操作,并向用户发出此按压操作距离太近无法确认的提示消息;其中,第二预设距离值大小可以灵活设置,比如3厘米。进而能够根据压次数以及触摸点距离准确判定折叠操作是否为有效折叠操作,提高了有效折叠操作的判定准确度。
根据本公开提供的实施例,通过在检测到柔性屏终端对应的折叠操作时,确定预设时间间隔内是否检测到折叠操作所属显示区域对应的触摸操作;接着若检测到触摸操作,则获取触摸操作对应的触摸参数,而后确定触摸参数是否满足预设条件,在触摸参数满足预设条件时,判定折叠操作为有效折叠操作。能够根据触摸参数准确判定折叠操作是否为有效折叠操作,提高了有效折叠操作的判定准确度,进而提高了分屏显示的准确性,进一步提高了用户的体验度,避免了用户的误触,用户操作更加方便、灵活,进而提高了用户体验度。
根据本公开提供的实施例,步骤S120可包括步骤S121和步骤S122。
在步骤S121中,获取触摸操作对应的触摸点坐标集。
在步骤S122中,基于触摸点坐标集确定坐标信息。
根据本公开提供的实施例,若触摸参数满足预设条件,则触摸操作对应的触摸点坐标集,具体可通过柔性屏对应的压力传感器确定触摸操作对应的各个触摸点的坐标,进而得到触摸点坐标集;而后对此触摸点坐标集进行回归分析,拟合出一条决定系数最大的线性线,并确定此性线的决定系数是否在预设的决定系数范围内;其中,此预 设的决定系数范围可以灵活设置,比如0.85~1.00;若此决定系数在预设决定系数范围内,则将触摸点坐标集中位于该线性线上的触摸点的坐标作为该坐标信息;若触摸点坐标集中位于该线性线上的触摸点小于2,则可将该线性线上任意两个以上的点的坐标作为该坐标信息。
根据本公开提供的实施例,通过获取触摸操作对应的触摸点坐标集,接着基于触摸点坐标集确定坐标信息,能够根据触摸操作准确确定坐标信息,进而准确地确定折叠操作对应的折叠位置,提高了折叠边界线的精确度,进而提高了分屏显示的准确性。
根据本公开提供的实施例,步骤S200可包括步骤S201和步骤S202。
在步骤S201中,基于折叠边界线,确定柔性屏终端对应的第一显示区域与第二显示区域之间的屏幕夹角。
在步骤S202中,基于屏幕夹角与预设显示规则,执行分屏显示操作。
根据本公开提供的实施例,在得到折叠边界线的位置信息时,获取分屏前显示界面的显示内容,并以折叠边界线为边界,将屏幕显示区域分为第一显示区域以及第二显示区域;确定这两个显示区域之后,终端中的角度传感器确定这两个显示区域之间的夹角,基于屏幕夹角与预设的显示规则对这两个显示区域分别执行其对应的显示操作。其中,预设的显示规则可以灵活设置,具体不作限制。
比如,在折叠过程中,检测到柔性屏终端的后盖呈贴合趋势时,检测到折叠方向上的折叠角大于第二预设角小于第一预设角时且此折叠角在预设范围内的时间达到第一预设时间时;其中,第一预设角,第二预设角以及第一预设时间可以灵活设置,在此不作具体规定;比如,检测到折叠角大于100°小于150°时且折叠角在此范围内的时间达到3秒时,将分屏前显示界面的显示内容同时显示在两个显示区域中,并根据这两个显示区域与分屏前主屏显示区域的比例大小分别调整这两个显示区域中显示内容的界面布局。
当检测到折叠角大于第三预设角小于第二预设角且此折叠角在预设范围内的时间达到第二预设时间时;其中,第三预设角以及第二预设时间可以灵活设置,在此不作具体规定;比如,检测到折叠角大于50°小于100°且此折叠角在此范围内的时间达到5秒时,通过两个显示区域中的红外传感器检测人体辐射红外信号,分别获取两个显示区域中的红外信号强度并判断出信号强度最大的显示区域,将分屏前显示界面的显示内容显示在信号强度最大的显示区域中,并将终端的桌面界面显示在另一显示区域中,根据显示区域与分屏前主屏显示区域的比列大小分别调整两个显示区域中显示内容的界面布局;若检测到两个显示区域中的红外信号强度大小一样,则发出显示区域选择的提示消息,并基于用户的显示区域选择在其选折的区域中显示分屏前显示界面的显示内容,同时在另一显示区域中显示终端的桌面界面。
当检测到折叠角小于第三预设角时,其中,第三预设角可灵活设置,在此不作具体设置;比如,检测到折叠角小于50°时,通过两个显示区域中的红外传感器检测人体辐射红外信号,分别获取两个显示区域中的红外信号强度并判断出信号强度最大的显示区域,将分屏前显示界面的显示内容显示在信号强度最大的显示区域中,根据显示区域与分屏前主屏显示区域的比列大小分别调整此显示区域中显示内容的界面布局,并熄灭另一个显示屏。若检测到两个显示区域中的红外信号强度大小一样,则发出显示区域选择的提示消息,并基于用户的显示区域选择在其选择的区域中显示对应的显示内容,同时熄灭另一显示屏。
在折叠过程中,检测到柔性屏终端的显示屏呈贴合趋势时,检测到折叠操作停止,柔性屏终端的传感器检测两屏幕之间的重合部分,其中,重合部分指柔性屏折叠之后显示面积较小的显示区域部分以及显示面积较小的显示区域在另一显示区域法线方向上的投影部分;若两屏幕之间的重合部分占分屏前主屏幕显示区域的比例大于百分之七十,则判定此折叠过程无效;若两屏幕之间的重合部分占分屏前主 屏幕显示区域的比例小于或等于百分之三十,则在确定两屏幕之间的重合部分之后,熄灭重合部分的显示区域,将分屏前显示界面的显示内容显示在未重合显示区域中,并根据未重合显示区域与分屏前主屏显示区域的比列大小调整未重合显示区域中显示内容的界面布局。
根据本公开提供的实施例,通过基于折叠边界线,确定柔性屏终端对应的第一显示区域与第二显示区域之间的屏幕夹角,接着基于屏幕夹角与预设显示规则,执行分屏显示操作,实现了根据屏幕夹角执行柔性屏终端的分屏显示,进而根据屏幕夹角以及折叠操作进行准确的分屏显示,进而提高了用户的体验度。
本公开实施例还提出一种计算机可读存储介质,其上存储有柔性屏终端的显示程序,柔性屏终端的显示程序被处理器执行时可实现如下操作:在检测到柔性屏终端对应的折叠操作时,确定折叠操作对应的折叠边界线;以及,基于折叠边界线以及柔性屏终端的预设显示规则,执行分屏显示操作。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:在检测到柔性屏终端对应的折叠操作时,判断折叠操作是否为有效折叠操作;若折叠操作为有效折叠操作,则获取折叠操作对应的坐标信息;以及,基于坐标信息,确定折叠边界线。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:判断折叠操作对应的弯折角度是否达到预设角度,若弯折角度达到预设角度,则判定折叠操作为有效折叠操作。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:在检测到柔性屏终端对应的折叠操作时,确定预设时间间隔内是否检测到折叠操作所属显示区域对应的触摸操作;若检测到触摸操作,则获取触摸操作对应的触摸参数;以及,确定触摸参数是否满足预设条件,在触摸参数满足预设条件时,判定折叠操作为有效折叠操作。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执 行时还可实现如下操作:判断滑动距离是否达到第一预设距离,若滑动距离达到第一预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:判断按压次数是否达到预设次数,以及触摸点距离是否大于第二预设距离,若按压次数达到预设次数且触摸点距离大于第二预设距离,则判定触摸参数满足预设条件。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:获取有效折叠操作对应的操作点坐标集;以及,基于操作点坐标集确定坐标信息。
根据本公开提供的实施例,柔性屏终端的显示程序被处理器执行时还可实现如下操作:基于折叠边界线,确定柔性屏终端对应的第一显示区域与第二显示区域之间的屏幕夹角;以及,基于屏幕夹角与预设显示规则,执行分屏显示操作。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者系统不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者系统所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者系统中还存在另外的相同要素。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本公开的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在如上所述的一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或 者网络设备等)执行本公开各个实施例所述的方法。
以上仅为本公开的优选实施例,并非因此限制本公开的专利范围,凡是利用本公开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,均同理包括在本公开的专利保护范围内。

Claims (10)

  1. 一种柔性屏终端的显示方法,包括:
    在检测到所述柔性屏终端对应的折叠操作时,确定所述折叠操作对应的折叠边界线;以及
    基于所述折叠边界线以及所述柔性屏终端的预设显示规则,执行分屏显示操作。
  2. 如权利要求1所述的柔性屏终端的显示方法,其中,确定所述折叠操作对应的所述折叠边界线,包括:
    判断所述折叠操作是否为有效折叠操作;
    响应于确定所述折叠操作为所述有效折叠操作,获取所述折叠操作对应的坐标信息;以及
    基于所述坐标信息,确定所述折叠边界线。
  3. 如权利要求2所述的柔性屏终端的显示方法,其中,判断所述折叠操作是否为所述有效折叠操作,包括:
    判断所述折叠操作对应的弯折角度是否达到预设角度;以及
    响应于确定所述弯折角度达到所述预设角度,确定所述折叠操作为所述有效折叠操作。
  4. 如权利要求2所述的柔性屏终端的显示方法,其中,判断所述折叠操作是否为所述有效折叠操作,还包括:
    确定是否在第一预设时长内在所述折叠操作所属显示区域中检测到触摸操作;
    响应于检测到所述触摸操作,获取所述触摸操作对应的触摸参数;
    判断所述触摸参数是否满足预设条件;以及
    响应于确定所述触摸参数满足所述预设条件,确定所述折叠操 作为所述有效折叠操作。
  5. 如权利要求4所述的柔性屏终端的显示方法,其中,所述触摸操作为滑动触摸操作,以及所述触摸参数包括所述滑动触摸操作的滑动距离;以及
    判断所述触摸参数是否满足所述预设条件,包括:
    判断所述滑动距离是否达到第一预设距离;以及
    响应于确定所述滑动距离达到所述第一预设距离,确定所述触摸参数满足所述预设条件。
  6. 如权利要求4所述的柔性屏终端的显示方法,其中,所述触摸操作为按压操作,以及所述触摸参数包括在第二预设时长内所述按压操作的按压次数以及所述按压操作对应的触摸点距离;以及
    判断所述触摸参数是否满足所述预设条件,包括:
    判断所述按压次数是否达到预设次数,以及所述触摸点距离是否大于第二预设距离;以及
    响应于确定所述按压次数达到所述预设次数且所述触摸点距离大于所述第二预设距离,确定所述触摸参数满足所述预设条件。
  7. 如权利要求4所述的柔性屏终端的显示方法,其中,获取所述折叠操作对应的所述坐标信息,包括:
    获取所述触摸操作对应的触摸点坐标集;以及
    根据所述触摸点坐标集确定所述坐标信息。
  8. 如权利要求1至7任一项所述的柔性屏终端的显示方法,其中,基于所述折叠边界线以及所述预设显示规则,执行所述分屏显示操作,包括:
    基于所述折叠边界线,确定所述柔性屏终端对应的第一显示区 域与第二显示区域之间的屏幕夹角;以及
    根据所述屏幕夹角以及所述预设显示规则,执行所述分屏显示操作。
  9. 一种柔性屏终端,包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的柔性屏终端的显示程序,所述柔性屏终端的显示程序被所述处理器执行时实现如权利要求1至8中任一项所述的柔性屏终端的显示方法的至少一个步骤。
  10. 一种计算机可读存储介质,其上存储有柔性屏终端的显示程序,所述柔性屏终端的显示程序被处理器执行时实现如权利要求1至8中任一项所述的柔性屏终端的显示方法的至少一个步骤。
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