WO2020015524A1 - 亮灭屏方法、折叠屏终端及计算机可读存储介质 - Google Patents

亮灭屏方法、折叠屏终端及计算机可读存储介质 Download PDF

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Publication number
WO2020015524A1
WO2020015524A1 PCT/CN2019/094471 CN2019094471W WO2020015524A1 WO 2020015524 A1 WO2020015524 A1 WO 2020015524A1 CN 2019094471 W CN2019094471 W CN 2019094471W WO 2020015524 A1 WO2020015524 A1 WO 2020015524A1
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WIPO (PCT)
Prior art keywords
screen
instruction
time period
state
sending
Prior art date
Application number
PCT/CN2019/094471
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English (en)
French (fr)
Inventor
郝志坚
曹广
Original Assignee
中兴通讯股份有限公司
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Publication of WO2020015524A1 publication Critical patent/WO2020015524A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72469User interfaces specially adapted for cordless or mobile telephones for operating the device by selecting functions from two or more displayed items, e.g. menus or icons
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72484User interfaces specially adapted for cordless or mobile telephones wherein functions are triggered by incoming communication events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/16Details of telephonic subscriber devices including more than one display unit

Definitions

  • the present application relates to the field of communications technologies, for example, to a method for turning on and off a screen, a folding screen terminal, and a computer-readable storage medium.
  • a folding screen terminal refers to two touch screens provided on a smart terminal at the same time. Compared with a single touch screen terminal, a folding screen terminal will bring more power consumption when working. In order to reduce power consumption, it is necessary to be able to quickly turn off the screen when the user is not using the terminal device. At the same time, when users use the terminal, they also need to be able to light up the screen quickly.
  • the first way is to manually click the Power button to achieve it. This method requires manually clicking the Power button on each screen, which is tedious to operate and reduces people. Machine-to-machine performance.
  • the second method is to determine whether the screen is turned on or off by obtaining the folding angle, that is, the degree of folding between the two touch screens. This method requires the addition of an angle determination sensor, which increases the hardware investment cost.
  • embodiments of the present invention provide a method for turning on and off a folding screen terminal with low cost and better interactive performance, a folding screen terminal, and a computer-readable storage medium.
  • a method for turning on and off a screen is applied to a folding screen terminal.
  • the method includes: when it is determined that the screen is currently on the screen and no touch signal is collected in the first time period, the first screen is sent to the first screen according to the second time period.
  • Two screens send a screen off command; when the second screen receives the screen off command sent by the first screen, control at least one of the first screen and the second screen according to the screen off command As soon as the screen goes off.
  • a method for turning on and off a screen is applied to a folding screen terminal.
  • the method includes: when it is determined that the screen is currently off, the first screen sends a screen off instruction to the second screen according to a third time period; And when the second screen receives the screen-off instruction that meets the set conditions, controlling the first screen and the second screen to keep the screen-off state; receiving the screen-off instruction on the second screen does not meet the requirements
  • the first screen and the second screen is controlled to enter a bright screen state according to a current display mode.
  • a folding screen terminal includes a memory, a processor, and a computer program stored on the memory.
  • the processor executes the computer program, the method for turning on or off the screen according to any embodiment of the present application is implemented.
  • a computer-readable storage medium stores a screen-on and screen-off program stored on the computer-readable storage medium, and when the screen-on and screen-off program is executed by a processor, the screen-on and screen-off method according to any embodiment of the present application is implemented.
  • FIG. 1 is a schematic flowchart of a method for turning on and off a screen according to an embodiment of the present application
  • FIG. 2 is a schematic flowchart of a method for turning on and off a screen according to another embodiment of the present application
  • FIG. 3 is a schematic flowchart of a method for turning on and off a screen according to another embodiment of the present application.
  • FIG. 4 is a schematic flowchart of a method for turning on and off a screen according to another embodiment of the present application.
  • FIG. 5 is a schematic flowchart of a mobile phone screen-off method provided by an optional embodiment of the present application.
  • FIG. 6 is a schematic flowchart of a method for brightening a screen of a mobile phone according to an optional embodiment of the present application
  • FIG. 7 is a schematic structural diagram of a folding screen terminal according to an embodiment of the present application.
  • FIG. 1 it is a schematic flowchart of a method for turning on and off a screen according to an embodiment of the present application.
  • the method includes: Step 11 and Step 12.
  • step 11 when it is determined that the screen is currently in the bright screen state and no touch signal is collected in the first time period, the first screen sends a screen-off instruction to the second screen according to the second time period.
  • the first screen When it is determined that the folding screen terminal is currently in the bright screen state and no touch signal is collected within the first time period, the first screen sends a screen-off instruction to the second screen according to the second time period.
  • the first time period and the second time period may be preset time periods, or may be adjusted and set based on receiving an instruction input by a user.
  • the user may set the first time period according to the habits of the terminal. For example, when the user wishes to suspend the use of the terminal and let the terminal enter the screen-off state as soon as possible, a shorter first time may be set.
  • the terminal may be a mobile phone, a computer, or the like.
  • the second time period is a preset time period, and the second time period may be less than 1 second, for example, 0.5 seconds or 0.8 seconds. Setting a shorter second time period allows the terminal Quickly enter the off-screen state and reduce power consumption.
  • step 12 when the second screen receives the screen off instruction sent by the first screen, the second screen controls the first screen and / or the second screen to enter a screen off state according to the screen off instruction. .
  • the folding screen terminal determines that the second screen receives the screen off instruction sent by the first screen, it controls the first screen and / or the second screen to enter the screen off state according to the screen off instruction.
  • the sending screen-off instruction and the receiving screen-off instruction may be controlled by the same controller, or may be controlled by two controllers respectively.
  • one of the controllers may be the controller of the first screen, which is used to implement the first screen to send or receive the screen-off instruction
  • the other controller may be the controller of the second screen. It is used to correspondingly implement the second screen to send or receive the screen off instruction.
  • the same controller is the main controller and communicates with the first screen and the second screen through the main controller. The main controller is based on the current status of the first screen and the second screen, Whether a touch signal is received, and whether a screen-off instruction is received, uniformly controls the first screen and / or the second screen to enter a screen-off state.
  • the folding screen terminal implements the first and second screens by sending the screen off command.
  • the control of the screen to automatically turn off the screen does not need to add additional hardware components such as the angle determination sensor, and the user can realize the control of turning on and off the screen without manual operation by the user.
  • the sending of the screen-off instruction to the second screen by the first screen according to the second time period includes: the first screen sends the screen-off instruction to the second screen by the HotKnot wireless communication method according to the second time period. Sending the screen-off instruction.
  • the first screen and the second screen may be capacitive screens, and the HotKnot wireless communication function of the capacitive screens is used to directly implement mutual communication between the first screen and the second screen.
  • the first screen and the second screen are capacitive screens, and when the distance between the first screen and the second screen is less than 2CM, the first screen may use the HotKnot wireless communication method. Transmitting the screen-off instruction to the second screen, and implementing the screen-off control of the first screen and / or the second screen according to the status of the screen-off instruction received by the second screen.
  • the HotKnot wireless communication technology is used to implement the off-screen control of the first screen and / or the second screen, the first screen and the second screen can be used to directly implement wireless communication, so there is no need to set additional communication hardware, Further reduce hardware costs.
  • the method further includes steps 21 to 24.
  • step 21 it is determined whether the second screen receives the screen-extinguishing instruction sent by the first screen.
  • step 22 when the second screen does not receive the screen-extinguishing instruction sent by the first screen, it is determined whether the first screen and the second screen receive a touch signal.
  • step 23 when the first screen or the second screen receives a touch signal, the first screen stops sending the screen-off instruction to the second screen.
  • step 24 when it is determined that the first screen and the second screen have not received a touch signal, the first screen continues to send the screen-extinguishing instruction to the second screen according to the second time period. After the first screen continues to send the screen-off instruction to the second screen according to the second time period, it returns to step 21 to determine whether the second screen has received the screen-off instruction sent by the first screen.
  • the first screen after the first screen sends a screen-off instruction to the second screen according to the second time period, it is further determined whether the first screen and the second screen receive a touch signal.
  • a touch signal When a touch signal is received, it indicates that the user is still performing terminal operations, and the user still has the use requirements of the terminal. The terminal cannot enter the off-screen state for the time being. Therefore, the first screen stops sending the off-screen to the second screen.
  • controlling the first screen and / or the second screen to enter a screen-off state according to the screen-off instruction includes: detecting, by a sensor, whether the first screen and the second screen are The first screen or the second screen that is not in the hand-held state and / or is not face-up is controlled to enter the screen-off state according to the screen-off instruction.
  • the screen-off instruction is only to control the first screen that is not in a handheld state and / or does not face up.
  • One screen enters a screen-off state, and the second screen is kept in a bright-screen state. This embodiment does not affect the user's use of the terminal while saving energy consumption, and adapts to energy-saving requirements in different scenarios.
  • FIG. 3 it is a schematic flowchart of a method for turning on and off a screen according to another embodiment of the present application.
  • the method includes: Step 31 and Step 32.
  • step 31 when it is determined that the screen is currently off, the first screen sends a screen off instruction to the second screen according to a third time period.
  • step 32 when the second screen receives the screen-off instruction that meets the set conditions, controls the first screen and the second screen to keep the screen-off state; otherwise, controls the first screen according to the current display mode. Screen and / or the second screen enters the bright screen state.
  • the folding screen terminal determines that the screen is currently off, it sends a screen off instruction to the second screen through the first screen according to the third time period.
  • the third time period may be a preset time period, or may be adjusted and set based on receiving an instruction input by a user.
  • the third time period is less than 1 second, for example, 0.5 seconds or 0.8 seconds, and setting the shorter third time period allows the terminal to quickly enter a bright screen state.
  • the folding screen terminal determines that the second screen receives the screen-off instruction that meets the set conditions, it controls the first screen and the second screen to keep the screen-off state; otherwise, controls the first screen according to the current display mode. And / or the second screen enters the bright screen state.
  • the sending screen-off instruction and the receiving screen-off instruction may be controlled by the same controller, or may be controlled by two controllers respectively.
  • one of the controllers may be the controller of the first screen, which is used to implement the first screen to send or receive the screen-off instruction
  • the other controller may be the controller of the second screen. It is used to correspondingly implement the second screen to send or receive the screen off instruction.
  • the same controller is the main controller and communicates with the first screen and the second screen through the main controller.
  • the main controller is based on the current status of the first screen and the second screen, Whether a touch signal is received, and whether a screen-off instruction is received, uniformly controls the first screen and / or the second screen to enter a bright screen state.
  • the first screen and the second screen are in a screen-off state
  • the first screen and / or the second screen are automatically turned on by sending the screen-off command.
  • the control of the screen does not need to add additional hardware components such as the angle determination sensor, and can realize the on and off screen control without the user's manual operation.
  • the cost is low, the operation is simple, and the user experience is good.
  • the sending of the screen-off instruction to the second screen according to the third time period by the first screen includes: sending the first screen to the second screen by the HotKnot wireless communication method according to the third time period. Off screen instruction.
  • the first screen and the second screen may be capacitive screens, and the HotKnot wireless communication function of the capacitive screens is used to directly implement mutual communication between the first screen and the second screen.
  • the first screen and the second screen are capacitive screens, and when the distance between the first screen and the second screen is less than 2CM, the first screen may use the HotKnot wireless communication method. Sending the screen-extinguishing instruction to the second screen, and realizing the bright-screen control of the first screen and / or the second screen according to the state of the screen-receiving instruction received by the second screen.
  • HotKnot wireless communication technology is used to control the bright screen of the first screen and / or the second screen, wireless communication can be directly implemented by using the first screen and the second screen. Therefore, no additional communication hardware is required. Further reduce hardware costs.
  • the method further includes steps 41 to 45.
  • step 41 it is determined whether the screen-off instruction received by the second screen meets a setting condition.
  • the receiving of the screen-off instruction by the second screen that meets the setting conditions includes that the second screen receives the screen-off instruction n times in a row, where n is greater than 1, and not greater than the first screen according to a third
  • the total number of times to send the screen-off instruction is not less than 10, for example, 15 or 20 times. The greater the total number of times, the longer the sending time is necessarily longer. And timely control the first screen and / or the second screen to enter a bright screen state according to the current display mode.
  • step 42 when it is determined that the screen-off instruction received by the second screen meets the set conditions, the first screen stops sending screen-off instructions to the second screen, and waits for a fourth time period, and then returns to step 31.
  • the first screen sends a screen-off instruction to the second screen according to a third time period.
  • stopping the first screen from sending the screen-off instruction to the second screen can save signaling resources.
  • step 43 when it is determined that the second screen receives the screen-off instruction does not meet the set conditions, it is determined whether the current display mode is a single-screen mode, and the first screen and / Or the second screen enters the bright screen state.
  • step 44 if the current display mode is a single screen mode, control the first screen or the second screen to enter a bright screen state.
  • step 45 if the current display mode is a dual screen mode, control the first screen and the second screen to enter a bright screen state at the same time.
  • the single-screen mode is a mode in which only the first screen or only the second screen displays information content, for example, displaying pictures or menu information only on the first screen or only on the second screen.
  • the dual screen mode is a mode in which information content is displayed on the first screen and the second screen at the same time, and the information content may be picture information, interface application information, and the like.
  • the display mode can be set by the user in advance, so that the user can personalize the terminal.
  • the judgment of the single screen mode may be: detecting whether the first screen or the second screen is in a handheld state and facing up by a sensor; when the first screen or the second screen is in a handheld state And when facing up, you can confirm that the folding screen terminal is currently in a single screen state. At this time, the first screen or the second screen facing up enters a bright screen state.
  • a sensor is used to detect whether the first screen or the second screen is in a handheld state and face up, and the sensor may be a speed sensor and / or a gravity sensor.
  • the second screen when it is determined that the screen-off instruction received by the second screen does not meet the setting conditions, if it is detected that the terminal is still in a handheld state and the second screen is still in The face-up state indicates that the user only needs to use the second screen of the terminal. For example, if the user only watches the e-book through the second screen, only the second screen is controlled to enter the bright screen state.
  • a method of screen-off of a mobile phone is taken as an example for description.
  • the screen-off process of the mobile phone includes the following steps S51 to S56.
  • the HotKnot command detection mode is a mode for sending a screen-off command through the HotKnot technology.
  • the sending of the screen-off instruction and the control of the screen are performed by the same controller.
  • step S53 it is determined whether the second screen receives a screen-off instruction.
  • step S54 when the screen off instruction is received on the second screen, the first screen and the second screen are turned off.
  • step S55 when the screen-off instruction is not received on the second screen, it is determined whether the first screen and the second screen have received a touch signal.
  • step S56 when the first screen and the second screen receive the touch signal, the HotKnot command detection mode is exited; otherwise, the process returns to step S52.
  • the first screen and the second screen are automatically implemented by sending the screen off command.
  • the control of turning off the screen does not require additional hardware components such as an angle determination sensor, and the user can realize the control of turning off the screen without manual operation.
  • the cost is low, the operation is simple, and the user experience is good.
  • a method of brightening a screen of a mobile phone is taken as an example for description.
  • the process of brightening a screen of a mobile phone includes the following steps S61 to S67.
  • step S61 when both the first screen and the second screen of the mobile phone are in the off-screen state, the first screen enters the HotKnot command detection mode; wherein, the HotKnot command detection mode is a mode in which the screen-off command is sent through the HotKnot technology.
  • the sending of the screen-off instruction and the control of the screen are performed by the same controller.
  • step S63 it is determined whether or not the second screen has received the screen-off instruction for 1 ⁇ n ⁇ 15 times in a row.
  • step S64 if the second screen receives the screen-off instruction for 15 consecutive times, the screen-off state is maintained, the HotKnot command detection mode is exited, and the startup is waited for the arrival of the next cycle.
  • step S65 if the second screen has not received the screen-extinguishing instruction for 1 ⁇ n ⁇ 15 times in a row, it is determined whether it is currently in a single-screen mode; wherein, in the single-screen mode, only one of the first screen and the second screen performs display.
  • step S66 if it is determined that the result is not in the voucher mode, control lights up the first screen and the second screen; otherwise, step S67 is performed.
  • step S67 control lights up the first screen or the second screen.
  • the mobile phone when the first screen and the second screen are in a screen-off state, the mobile phone implements the automatic screen brightening of the first screen and / or the second screen by sending the screen-off command.
  • Control without the need to add additional hardware components such as the angle determination sensor, and without the user's manual operation to achieve on-off control, low cost, simple operation, and good user experience.
  • the folding screen terminal includes a memory 71, a processor 72, and a computer program stored on the memory 71.
  • the processor 72 executes all When the computer program is described, the following operations are implemented: when it is determined that the screen is currently in the bright state and no touch signal is collected within the first time period, the first screen sends a screen-off instruction to the second screen according to the second time period; the second screen receives When the screen-off instruction sent by the first screen is reached, the first screen and / or the second screen is controlled to enter a screen-off state according to the screen-off instruction.
  • the sending of the screen-out instruction to the second screen according to the second time period by the first screen includes: sending the screen-out instruction to the second screen by the HotKnot wireless communication method according to the second time period.
  • the processor 72 executes the computer program, it is further configured to implement: after the first screen sends a screen-off instruction to the second screen according to a second time period, the second screen does not receive the first screen
  • the screen-off instruction sent by the screen determines whether the first screen or the second screen receives a touch signal; when it is determined that the first screen or the second screen receives a touch signal, the first screen
  • the screen stops sending a screen-off instruction to the second screen; when it is determined that the first screen and the second screen do not receive a touch signal, the first screen continues to send to the second screen according to the second time period
  • the screen-off instruction when it is determined that the first screen and the second screen do not receive a touch signal.
  • controlling the first screen and / or the second screen to enter a screen-extinguishing state according to the screen-extinguishing instruction includes: detecting, by a sensor, whether the first screen and the second screen are in a handheld state and have a front side. Face up; controlling the first screen or the second screen that is not in a hand-held state and / or not facing up to enter a screen-off state according to the screen-off command.
  • the processor 72 executes the computer program, it is further configured to implement: when it is determined that the screen is currently off, the first screen sends a screen off instruction to the second screen according to a third time period; the second screen When receiving the screen-off instruction that meets the setting conditions, control the first screen and the second screen to keep the screen-off state; otherwise, control the first screen and / or the second screen to enter according to the current display mode Bright screen status.
  • the sending of the screen-off instruction to the second screen according to the third time period by the first screen includes: sending the screen-off instruction to the second screen by the HotKnot wireless communication method according to the third time period.
  • the second screen receiving the screen-extinguishing instruction meets the setting conditions includes: the second screen receiving the screen-extinguishing instruction n times in a row, where n is greater than 1, and not greater than the first screen according to A total number of times that the screen-off instruction is sent to the second screen in the third time period.
  • the processor 72 executes the computer program, the processor 72 is further configured to implement: after the second screen receives the screen-off instruction that meets a set condition, the first screen stops sending the screen-off to the second screen. Screen instruction, and after waiting for the fourth time period, return to the step of the first screen sending a screen-off instruction to the second screen according to the third time period.
  • controlling the first screen and / or the second screen to enter a bright screen state according to the current display mode includes: if the current display mode is a single screen mode, controlling the first screen or the second screen Enter a bright screen state; if the current display mode is a dual screen mode, control the first screen and the second screen to enter a bright screen state at the same time.
  • the processor 72 illustrated in FIG. 7 does not refer to one processor 72. In practical applications, the number of processors 72 may be one or more.
  • the memory 71 illustrated in FIG. 7 does not refer to The number of generation memories 71 is one. In practical applications, the number of memories 71 may be one or more.
  • the folding screen terminal further includes a first screen and a second screen. The first screen and the second screen are pivotally connected or detachably connected. The first screen and the second screen have Relatively closed folded state and relatively open and opened state.
  • Computer storage media can be ferroelectric random access memory (FRAM), read-only memory (ROM), programmable read-only memory (Programmable Read Only Memory, PROM), programmable Erasable Programmable ReadOnly Memory (EPROM), Electrically Erasable Programmable ReadOnly Memory (EEPROM), Flash Memory, Magnetic Surface Memory, Optical Disk, or Compact Disc Read -Only Memory (CD-ROM) and other memories; it can also be various devices including one or any combination of the above memories, such as mobile phones, computers, tablet devices, personal digital assistants, etc.
  • FRAM ferroelectric random access memory
  • ROM read-only memory
  • PROM programmable read-only memory
  • PROM programmable Erasable Programmable ReadOnly Memory
  • EPROM programmable Erasable Programmable ReadOnly Memory
  • EEPROM Electrically Erasable Programmable ReadOnly Memory
  • Flash Memory Magnetic Surface Memory, Optical Disk, or Compact Disc Read -Only Memory (CD-ROM) and other memories; it can also
  • a computer storage medium wherein the computer-readable storage medium stores an on-off screen program, and the on-off screen program is implemented by the processor as follows: it is determined that the screen is currently in the on-screen state and no touch is collected in the first time period.
  • the first screen sends a screen-off instruction to the second screen according to a second time period;
  • the second screen receives the screen-off instruction sent by the first screen, the second screen controls the screen-off instruction according to the screen-off instruction.
  • the first screen and / or the second screen enter a screen-off state.
  • the sending of the screen-off instruction to the second screen according to the second time period by the first screen includes: sending the screen-off instruction to the second screen by the HotKnot wireless communication method according to the second time period.
  • the processor executes the computer program, it is further configured to implement: after the first screen sends a screen-off instruction to the second screen according to a second time period, the second screen does not receive the first screen
  • the screen-off instruction is sent, determine whether the first screen or the second screen receives a touch signal; when it is determined that the first screen or the second screen receives a touch signal, the first screen Stop sending a screen-off instruction to the second screen; when it is determined that the first screen and the second screen do not receive a touch signal, the first screen continues to send all the data to the second screen according to the second time period
  • the screen off instruction is described.
  • controlling the first screen and / or the second screen to enter a screen-extinguishing state according to the screen-extinguishing instruction includes: detecting, by a sensor, whether the first screen and the second screen are in a handheld state and have a front side. Face up; controlling the first screen or the second screen that is not in a hand-held state and / or not facing up to enter a screen-off state according to the screen-off command.
  • the processor when the processor executes the computer program, the processor is further configured to implement: when it is determined that the screen is currently off, the first screen sends a screen off instruction to the second screen according to a third time period; and the second screen receives When the screen-off instruction meets the setting conditions, control the first screen and the second screen to keep the screen-off state; otherwise, control the first screen and / or the second screen to turn on according to the current display mode. Screen status.
  • the sending of the screen-off instruction to the second screen according to the third time period by the first screen includes: sending the screen-off instruction to the second screen by the HotKnot wireless communication method according to the third time period.
  • the second screen receiving the screen-extinguishing instruction meets the setting conditions includes: the second screen receiving the screen-extinguishing instruction n times in a row, where n is greater than 1, and not greater than the first screen according to A total number of times that the screen-off instruction is sent to the second screen in the third time period.
  • the processor when the processor executes the computer program, the processor is further configured to implement: after the second screen receives the screen-off instruction that meets a set condition, the first screen stops sending the screen-off to the second screen. Instruction, and after waiting for the fourth time period, return to the step of the first screen sending a screen-off instruction to the second screen according to the third time period.
  • controlling the first screen and / or the second screen to enter a bright screen state according to the current display mode includes: if the current display mode is a single screen mode, controlling the first screen or the second screen Enter a bright screen state; if the current display mode is a dual screen mode, control the first screen and the second screen to enter a bright screen state at the same time.

Abstract

公开了一种亮灭屏方法,应用于折叠屏终端,所述方法包括:在确定第一屏和第二屏当前处于亮屏状态且第一时间周期内未采集到触摸信号的情况下,第一屏根据第二时间周期向第二屏发送灭屏指令;在所述第二屏接收到所述第一屏发送的所述灭屏指令的情况下,根据所述灭屏指令控制所述第一屏和所述第二屏中的至少之一进入灭屏状态。

Description

亮灭屏方法、折叠屏终端及计算机可读存储介质
本申请要求在2018年07月17日提交中国专利局、申请号为201810783482.0的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信技术领域,例如涉及一种亮灭屏方法、折叠屏终端及计算机可读存储介质。
背景技术
随着通信网络技术的快速发展,手机、平板电脑等带触摸屏的终端在人们生活中的普及率越来越高。其中,具有双触摸屏的终端,也即折叠屏终端因其良好的交互性能成为一种市场主流产品。折叠屏终端是指一个智能终端上同时设置有两个触摸屏。相比较单触摸屏终端,折叠屏终端工作时会带来更多的电能消耗,为了减少电能消耗,需要在用户不使用终端设备时能够快速灭屏。同时,当用户使用该终端时,也需要能够快速点亮屏幕。
目前,双触摸屏终端的亮灭屏方式主要有两种方式:第一种方式是采用手动点按Power键来实现,这种方式需要手动点击每个屏上的Power键,操作繁琐,降低了人机交互的性能。第二种方式是通过获取折叠角度即两个触摸屏之间的折叠程度来判断是点亮屏幕还是熄灭屏幕,这种方式需要增加一个角度判定传感器来实现,增加了硬件投入成本。
发明内容
有鉴于此,本发明实施例提供了一种成本低、且交互性能更优的折叠屏终端亮灭屏方法、折叠屏终端及计算机可读存储介质。
本发明实施例的技术方案是这样实现的:
一种亮灭屏方法,应用于折叠屏终端,所述方法包括:在确定当前处于亮屏状态且第一时间周期内未采集到触摸信号的情况下,第一屏根据第二时间周期向第二屏发送灭屏指令;所述第二屏接收到所述第一屏发送的所述灭屏指令时,根据所述灭屏指令控制所述第一屏和所述第二屏中的至少之一进入灭屏状态。
一种亮灭屏方法,应用于折叠屏终端,所述方法包括:在确定当前处于灭屏状态的情况下,所述第一屏根据第三时间周期向第二屏发送灭屏指令;在所述第二屏接收到所述灭屏指令符合设置条件的情况下,控制所述第一屏和所述第二屏保持灭屏状态;在所述第二屏接收到所述灭屏指令不符合设置条件的情况下,根据当前显示模式控制所述第一屏和所述第二屏中的至少之一进入亮屏状态。
一种折叠屏终端,包括存储器、处理器及存储在所述存储器上运行的计算机程序,所述处理器执行所述计算机程序时实现如本申请任一实施例所述的亮灭屏方法。
一种计算机可读存储介质,所述计算机可读存储介质上存储有亮灭屏程序,所述亮灭屏程序被处理器执行时实现如本申请任一实施例所述的亮灭屏方法。
附图概述
图1为本申请一实施例提供的一种亮灭屏方法的流程示意图;
图2为本申请另一实施例提供的一种亮灭屏方法的流程示意图;
图3为本申请又一实施例提供的一种亮灭屏方法的流程示意图;
图4为本申请再一实施例提供的一种亮灭屏方法的流程示意图;
图5为本申请一可选实施例提供的一种手机灭屏方法的流程示意图;
图6为本申请一可选实施例提供的一种手机亮屏方法的流程示意图;
图7为本申请一实施例提供的一种折叠屏终端的结构示意图。
具体实施方式
下面将结合附图及具体实施例对本申请作进一步详细说明。
如图1所示,为本申请一实施例提供的一种亮灭屏方法流程示意图,所述方法包括:步骤11和步骤12。
在步骤11中,确定当前处于亮屏状态且第一时间周期内未采集到触摸信号时,第一屏根据第二时间周期向第二屏发送灭屏指令。
折叠屏终端确定当前处于亮屏状态且第一时间周期内未采集到触摸信号时,通过第一屏根据第二时间周期向第二屏发送灭屏指令。这里,第一时间周期、第二时间周期分别可以是预先设置的时间周期,也可以是基于接收用户输入的指令而调整设置的。作为一种实施方式,用户可以根据自己使用终端的习惯设 置所述第一时间周期,例如,当用户希望暂停使用终端后,让终端尽快进入灭屏状态,则可以设置一个较短的第一时间周期,如3分钟;当用户希望暂停使用终端后,让终端在较长时间段内不进入灭屏状态,则可以设置一个较长的第一时间周期,如10分钟。其中,第一时间周期的可调整设置能够实现个性化定制,提升了用户体验。所述终端可以是手机、电脑等。
作为一种实施方式,所述第二时间周期是预设设置的时间周期,第二时间周期可以小于1秒,例如,0.5秒或0.8秒,设置较短的所述第二时间周期可以让终端快速进入灭屏状态,降低电能消耗。
在步骤12中,所述第二屏接收到所述第一屏发送的所述灭屏指令时,根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态。
折叠屏终端确定第二屏接收到所述第一屏发送的所述灭屏指令时,根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态。作为一种实施方式,所述发送灭屏指令和接收灭屏指令可以由同一个控制器控制,也可以分别由两个控制器分别控制。当分别由两个控制器控制时,其中一个控制器可以是第一屏的控制器,用于相应实现第一屏发送或接收灭屏指令,另外一个控制器可以是第二屏的控制器,用于相应实现第二屏发送或接收灭屏指令。作为另一种实施方式,同一个控制器为主控制器,通过主控制器与第一屏和第二屏之间通信连接,所述主控制器根据第一屏和第二屏的当前状态、是否接收到触摸信号、以及是否接收到灭屏指令,统一控制所述第一屏和/或所述第二屏进入灭屏状态。
本申请上述实施例中,折叠屏终端在所述第一屏和所述第二屏未采集到触摸信号时,通过发送所述灭屏指令的方式实现了所述第一屏和所述第二屏自动灭屏的控制,无需额外增加角度判定传感器等硬件元器件,且无需用户手动操作即可实现亮灭屏控制,成本低、且操作简单,用户体验好。
其中,在步骤11中,所述第一屏根据第二时间周期向第二屏发送灭屏指令包括:所述第一屏根据所述第二时间周期通过HotKnot无线通信方式向所述第二屏发送所述灭屏指令。
这里,第一屏和第二屏可以为电容屏,利用电容屏的HotKnot无线通信功能直接实现第一屏和第二屏之间的相互通信。作为一种实施方式,所述第一屏和所述第二屏为电容屏,在所述第一屏和所述第二屏之间的距离小于2CM时,第一屏可以通过HotKnot无线通信方式向第二屏进行所述灭屏指令传输,并根据第二屏接收到灭屏指令的状态实现所述第一屏和/或第二屏的灭屏控制。采用 HotKnot无线通信技术来实现所述第一屏和/或第二屏的灭屏控制时,可以利用所述第一屏和所述第二屏直接实现无线通信,因此,无需额外设置通信硬件,进一步降低硬件成本。
其中,请参见图2,步骤11,所述第一屏根据所述第二时间周期向所述第二屏发送所述灭屏指令之后,还包括:步骤21至步骤24。
在步骤21中,判断所述第二屏是否接收到所述第一屏发送的所述灭屏指令。
在步骤22中,当所述第二屏未接收到所述第一屏发送的所述灭屏指令时,判断所述第一屏和所述第二屏是否接收到触摸信号。
在步骤23中,当所述第一屏或所述第二屏接收到触摸信号时,所述第一屏停止向所述第二屏发送所述灭屏指令。
在步骤24中,确定所述第一屏和所述第二屏未接收到触摸信号时,所述第一屏继续根据所述第二时间周期向所述第二屏发送所述灭屏指令。第一屏继续根据第二时间周期向第二屏发送灭屏指令后,返回执行步骤21,判断所述第二屏是否接收到所述第一屏发送的所述灭屏指令。
本申请上述实施例中,在所述第一屏根据所述第二时间周期向所述第二屏发送灭屏指令之后,进一步判断所述第一屏和所述第二屏是否接收到触摸信号,当接收到触摸信号时,表明用户还在进行终端的操作,用户还有终端的使用需求,终端暂时还不能进入灭屏状态,因此,所述第一屏停止向所述第二屏发送灭屏指令,这样可以避免信令资源的浪费;当未接收到触摸信号时,表明用户暂停了终端的操作,用户暂时不再有使用终端的需求,所述第一屏会继续根据所述第二时间周期向所述第二屏发送所述灭屏指令,以实现快速灭屏,节省屏幕的能耗。
在一个实施方式中,所述根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态,包括:通过传感器检测所述第一屏和所述第二屏是否处于手持状态并且正面朝上;根据所述灭屏指令控制没有处于手持状态和/或没有正面朝上的所述第一屏或第二屏进入灭屏状态。
这里,在所述第二屏接收到所述第一屏发送的所述灭屏指令后,如果检测到终端仍处于手持状态且所述第二屏仍处于正面朝上的状态,表明用户还有使用终端的所述第二屏的需求,比如用户还在通过所述第二屏看电子书,这时,所述灭屏指令只是控制没有处于手持状态和/或没有正面朝上的所述第一屏进入灭屏状态,而保持所述第二屏处于亮屏状态。本实施方式在节省能耗的同时并 不影响用户使用终端,适应不同场景下的节能需求。
如图3所示,为本申请另一实施例提供的一种亮灭屏方法流程示意图,所述方法包括:步骤31和步骤32。
在步骤31中,确定当前处于灭屏状态时,所述第一屏根据第三时间周期向第二屏发送灭屏指令。
在步骤32中,所述第二屏接收到所述灭屏指令符合设置条件时,控制所述第一屏和所述第二屏保持灭屏状态;否则,根据当前显示模式控制所述第一屏和/或第二屏进入亮屏状态。
折叠屏终端确定当前处于灭屏状态时,通过第一屏根据第三时间周期向第二屏发送灭屏指令。这里,第三时间周期可以是预先设置的时间周期,也可以是基于接收用户输入的指令而调整设置的。作为一种实施方式,所述第三时间周期小于1秒,例如,0.5秒或0.8秒,设置较短的所述第三时间周期可以让终端快速进入亮屏状态。
折叠屏终端确定所述第二屏接收到所述灭屏指令符合设置条件时,控制所述第一屏和所述第二屏保持灭屏状态;否则,根据当前显示模式控制所述第一屏和/或第二屏进入亮屏状态。作为一种实施方式,所述发送灭屏指令和接收灭屏指令可以由同一个控制器控制,也可以分别由两个控制器分别控制。当分别由两个控制器控制时,其中一个控制器可以是第一屏的控制器,用于相应实现第一屏发送或接收灭屏指令,另外一个控制器可以是第二屏的控制器,用于相应实现第二屏发送或接收灭屏指令。作为另一种实施方式,同一个控制器为主控制器,通过主控制器与第一屏和第二屏之间通信连接,所述主控制器根据第一屏和第二屏的当前状态、是否接收到触摸信号、以及是否接收到灭屏指令,统一控制所述第一屏和/或所述第二屏进入亮屏状态。
本申请上述实施例中,折叠屏终端在所述第一屏和所述第二屏处于灭屏状态时,通过发送所述灭屏指令的方式实现了第一屏和/或第二屏自动亮屏的控制,无需额外增加角度判定传感器等硬件元器件,且无需用户手动操作即可实现亮灭屏控制,成本低、且操作简单,用户体验好。
在一个实施方式中,所述第一屏根据第三时间周期向第二屏发送灭屏指令包括:所述第一屏根据所述第三时间周期通过HotKnot无线通信方式向所述第二屏发送灭屏指令。
这里,第一屏和第二屏可以为电容屏,利用电容屏的HotKnot无线通信功 能直接实现第一屏和第二屏之间的相互通信。作为一种实施方式,所述第一屏和所述第二屏为电容屏,在所述第一屏和所述第二屏之间的距离小于2CM时,第一屏可以通过HotKnot无线通信方式向第二屏发送所述灭屏指令,并根据第二屏接收到灭屏指令的状态实现所述第一屏和/或第二屏的亮屏控制。采用HotKnot无线通信技术来实现所述第一屏和/或第二屏的亮屏控制时,可以利用所述第一屏和所述第二屏直接实现无线通信,因此,无需额外设置通信硬件,进一步降低硬件成本。
其中,请参见图4,步骤31,所述第一屏根据第三时间周期向第二屏发送灭屏指令之后,还包括:步骤41至步骤45。
在步骤41中,判断所述第二屏接收到的所述灭屏指令是否符合设置条件。所述第二屏接收到所述灭屏指令符合设置条件包括:所述第二屏连续n次接收到所述灭屏指令,所述n大于1、且不大于所述第一屏根据第三时间周期向第二屏发送灭屏指令的总次数。作为一种实施方式,所述发送灭屏指令的总次数不小于10,例如15或20次,总次数越多对应的发送时间必然更长,更长的发送时间能够使得终端快速获取亮屏需求,并及时控制所述第一屏和/或第二屏根据当前显示模式进入亮屏状态。
在步骤42中,确定所述第二屏接收到所述灭屏指令符合设置条件时,所述第一屏停止向所述第二屏发送灭屏指令,并等待第四时间周期后,返回步骤31,所述第一屏根据第三时间周期向所述第二屏发送灭屏指令的步骤。当确定所述第二屏接收到所述灭屏指令符合设置条件时,所述第一屏停止向所述第二屏发送灭屏指令能够节省信令资源。
在步骤43中,确定所述第二屏接收到所述灭屏指令不符合设置条件时,判断当前显示模式是否为单屏模式,并根据当前显示模式的判断结果控制所述第一屏和/或第二屏进入亮屏状态。在步骤44中,若当前显示模式为单屏模式,则控制所述第一屏或第二屏进入亮屏状态。
在步骤45中,若当前显示模式为双屏模式,则控制所述第一屏和第二屏同时进入亮屏状态。
所述单屏模式为只有所述第一屏或只有所述第二屏显示信息内容的模式,比如,只在所述第一屏或只在所述第二屏显示图片或菜单信息。所述双屏模式为同时在所述第一屏和所述第二屏显示信息内容的模式,所述信息内容可以是图片信息、界面应用信息等。所述显示模式用户可以预先进行设置,这样用户 可以实现终端的个性化定制。
其中,所述单屏模式的判断可以是:通过传感器检测所述第一屏或所述第二屏是否处于手持状态并且正面朝上;当所述第一屏或所述第二屏处于手持状态并且正面朝上时,则可以确认折叠屏终端当前处于单屏状态。此时,正面朝上的所述第一屏或第二屏进入亮屏状态。这里,通过传感器检测所述第一屏或所述第二屏是否处于手持状态并且正面朝上,所述传感器可以是速度传感器和/或重力传感器。作为一种示例性实施方式,在确定所述第二屏接收到所述灭屏指令不符合设置条件时,通过速度传感器和重力传感器如果检测到终端仍处于手持状态且所述第二屏仍处于正面朝上的状态,表明用户只有使用终端的所述第二屏的需求,比如用户只是通过所述第二屏看电子书,则只控制第二屏进入亮屏状态。
下面将结合两个应用实施例对本发明实施例的亮灭屏方法作进一步说明:
实施例一:
本实施例以手机的灭屏方法为例进行说明,请参见图5,手机的灭屏过程包括如下步骤S51至步骤S56。
在步骤S51中,当手机第一屏和第二屏处于亮屏状态时,且t1=10分钟内在第一屏和第二屏上均未采集到触摸信号后,手机进入HotKnot指令侦测模式。其中,HotKnot指令侦测模式为通过HotKnot技术发送灭屏指令的模式。其中,t1=10分钟为用户根据需求预先设置的第一时间周期参数。
在步骤S52中,第一屏向第二屏按一定的周期t2=1秒发送灭屏指令;其中,t2=1秒为用户根据需求预先设置的第二时间周期参数。其中,灭屏指令的发送及屏幕的控制通过同一个控制器执行。
在步骤S53中,判断第二屏是否接收到灭屏指令。
在步骤S54中,当第二屏接收到灭屏指令时,熄灭第一屏和第二屏。
在步骤S55中,当第二屏没有接收到灭屏指令时,判断第一屏和第二屏是否有接收到触摸信号。
在步骤S56中,当第一屏和第二屏接收到触摸信号时,退出HotKnot指令侦测模式;否则,返回执行步骤S52。
本申请上述实施例中,手机在所述第一屏和所述第二屏未采集到触摸信号时,通过发送所述灭屏指令的方式实现了所述第一屏和所述第二屏自动灭屏的控制,无需额外增加角度判定传感器等硬件元器件,且无需用户手动操作即可 实现亮灭屏控制,成本低、且操作简单,用户体验好。
实施例二:
本实施例以手机的亮屏方法为例进行说明,请参见图6,手机的亮屏过程包括如下步骤S61至步骤S67。
在步骤S61中,当手机第一屏和第二屏都处于灭屏状态时,第一屏进入HotKnot指令侦测模式;其中,HotKnot指令侦测模式为通过HotKnot技术发送灭屏指令的模式。
在步骤S62中,第一屏按照周期t3=1秒连续向第二屏发送15次灭屏指令;其中,t3=1秒、发送次数为15次为用户根据需求预先设置的第三时间周期参数。这里,灭屏指令的发送及屏幕的控制通过同一个控制器执行。
在步骤S63中,判断第二屏是否连续1<n≤15次接收到灭屏指令。
在步骤S64中,如果第二屏连续15次接收到熄屏指令,保持灭屏状态,退出HotKnot指令侦测模式,等待下一周期的到来后再启动。
在步骤S65中,如果第二屏没有连续1<n≤15次接收到灭屏指令,则判断当前是否处于单屏模式;其中,单屏模式为第一屏和第二屏中只有一个屏进行显示。
在步骤S66中,如果判断结果不是处于单凭模式,控制点亮第一屏和第二屏;否则,执行步骤S67。
在步骤S67中,控制点亮第一屏或第二屏。
本申请上述实施例中,手机在所述第一屏和所述第二屏处于灭屏状态时,通过发送所述灭屏指令的方式实现了第一屏和/或第二屏自动亮屏的控制,无需额外增加角度判定传感器等硬件元器件,且无需用户手动操作即可实现亮灭屏控制,成本低、且操作简单,用户体验好。
本申请另一实施例还提供一种折叠屏终端,请参阅图7,该折叠屏终端包括存储器71、处理器72及存储在所述存储器71上运行的计算机程序,所述处理器72执行所述计算机程序时实现如下操作:确定当前处于亮屏状态且第一时间周期内未采集到触摸信号时,第一屏根据第二时间周期向第二屏发送灭屏指令;所述第二屏接收到所述第一屏发送的所述灭屏指令时,根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态。
这里,所述第一屏根据第二时间周期向第二屏发送灭屏指令包括:所述第 一屏根据第二时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
这里,所述处理器72执行所述计算机程序时还设置为实现:所述第一屏根据第二时间周期向第二屏发送灭屏指令之后,所述第二屏未接收到所述第一屏发送的所述灭屏指令时,判断所述第一屏或所述第二屏是否接收到触摸信号;确定所述第一屏或所述第二屏接收到触摸信号时,所述第一屏停止向所述第二屏发送灭屏指令;确定所述第一屏和第二屏未接收到触摸信号时,所述第一屏继续根据所述第二时间周期向所述第二屏发送所述灭屏指令。
这里,所述根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态包括:通过传感器检测所述第一屏和所述第二屏是否处于手持状态并且正面朝上;根据所述灭屏指令控制没有处于手持状态和/或没有正面朝上的所述第一屏或所述第二屏进入灭屏状态。
这里,所述处理器72执行所述计算机程序时还设置为实现:确定当前处于灭屏状态时,所述第一屏根据第三时间周期向第二屏发送灭屏指令;所述第二屏接收到所述灭屏指令符合设置条件时,控制所述第一屏和所述第二屏保持灭屏状态;否则,根据当前显示模式控制所述第一屏和/或所述第二屏进入亮屏状态。
这里,所述第一屏根据第三时间周期向第二屏发送灭屏指令包括:所述第一屏根据第三时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
这里,所述第二屏接收到所述灭屏指令符合设置条件包括:所述第二屏连续n次接收到所述灭屏指令,所述n大于1、且不大于所述第一屏根据所述第三时间周期向所述第二屏发送所述灭屏指令的总次数。
这里,所述处理器72执行所述计算机程序时还设置为实现:所述第二屏接收到所述灭屏指令符合设置条件时之后,所述第一屏停止向所述第二屏发送灭屏指令,并等待第四时间周期后,返回所述第一屏根据第三时间周期向所述第二屏发送灭屏指令的步骤。
这里,所述根据当前显示模式控制所述第一屏和/或所述第二屏进入亮屏状态包括:若当前显示模式为单屏模式,则控制所述第一屏或所述第二屏进入亮屏状态;若当前显示模式为双屏模式,则控制所述第一屏和所述第二屏同时进入亮屏状态。
其中,图7中示意的处理器72并非指代处理器72的个数为一个,在实际应用中,处理器72的数量可以为一个或多个;同样,图7中示意的存储器71 并非指代存储器71的个数为一个,在实际应用中,存储器71的数量可以为一个或多个。所述折叠屏终端还包括第一屏和第二屏,所述第一屏与所述第二屏之间枢转式连接或者可拆卸式连接,所述第一屏与所述第二屏具有相对闭合的折叠状态及相对开启的打开状态。
本申请又一实施例还提供一种计算机可读存储介质,例如包括存储有计算机程序的存储器71,上述计算机程序可由上述装置中的处理器72执行,以完成前述方法所述步骤。计算机存储介质可以是铁电随机存取存储器(Ferroelectric random access memory,FRAM)、只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable Read Only Memory,PROM)、可檫可编程只读存储器(Erasable Programmable Read Only Memory,EPROM)、电可擦除可编程只读存储器(Electrically Erasable Programmable Read Only Memory,EEPROM)、Flash Memory、磁表面存储器、光盘、或只读光盘(Compact Disc Read-Only Memory,CD-ROM)等存储器;也可以是包括上述存储器之一或任意组合的各种设备,如移动电话、计算机、平板设备、个人数字助理等。
一种计算机存储介质,所述计算机可读存储介质上存储有亮灭屏程序,所述亮灭屏程序被处理器实现如下操作:确定当前处于亮屏状态且第一时间周期内未采集到触摸信号时,第一屏根据第二时间周期向第二屏发送灭屏指令;所述第二屏接收到所述第一屏发送的所述灭屏指令时,根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态。
这里,所述第一屏根据第二时间周期向第二屏发送灭屏指令包括:所述第一屏根据第二时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
这里,所述处理器执行所述计算机程序时还设置为实现:所述第一屏根据第二时间周期向第二屏发送灭屏指令之后,所述第二屏未接收到所述第一屏发送的所述灭屏指令时,判断所述第一屏或所述第二屏是否接收到触摸信号;确定所述第一屏或所述第二屏接收到触摸信号时,所述第一屏停止向所述第二屏发送灭屏指令;确定所述第一屏和第二屏未接收到触摸信号时,所述第一屏继续根据所述第二时间周期向所述第二屏发送所述灭屏指令。
这里,所述根据所述灭屏指令控制所述第一屏和/或所述第二屏进入灭屏状态包括:通过传感器检测所述第一屏和所述第二屏是否处于手持状态并且正面朝上;根据所述灭屏指令控制没有处于手持状态和/或没有正面朝上的所述第一 屏或所述第二屏进入灭屏状态。
这里,所述处理器执行所述计算机程序时还设置为实现:确定当前处于灭屏状态时,所述第一屏根据第三时间周期向第二屏发送灭屏指令;所述第二屏接收到所述灭屏指令符合设置条件时,控制所述第一屏和所述第二屏保持灭屏状态;否则,根据当前显示模式控制所述第一屏和/或所述第二屏进入亮屏状态。
这里,所述第一屏根据第三时间周期向第二屏发送灭屏指令包括:所述第一屏根据第三时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
这里,所述第二屏接收到所述灭屏指令符合设置条件包括:所述第二屏连续n次接收到所述灭屏指令,所述n大于1、且不大于所述第一屏根据所述第三时间周期向所述第二屏发送所述灭屏指令的总次数。
这里,所述处理器执行所述计算机程序时还设置为实现:所述第二屏接收到所述灭屏指令符合设置条件时之后,所述第一屏停止向所述第二屏发送灭屏指令,并等待第四时间周期后,返回所述第一屏根据第三时间周期向所述第二屏发送灭屏指令的步骤。
这里,所述根据当前显示模式控制所述第一屏和/或所述第二屏进入亮屏状态包括:若当前显示模式为单屏模式,则控制所述第一屏或所述第二屏进入亮屏状态;若当前显示模式为双屏模式,则控制所述第一屏和所述第二屏同时进入亮屏状态。

Claims (11)

  1. 一种亮灭屏方法,应用于折叠屏终端,包括:
    在确定第一屏和第二屏当前处于亮屏状态且第一时间周期内未采集到触摸信号的情况下,第一屏根据第二时间周期向第二屏发送灭屏指令;
    在所述第二屏接收到所述第一屏发送的所述灭屏指令的情况下,根据所述灭屏指令控制所述第一屏和所述第二屏中的至少之一进入灭屏状态。
  2. 根据权利要求1所述的方法,其中,所述第一屏根据第二时间周期向第二屏发送灭屏指令包括:所述第一屏根据第二时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
  3. 根据权利要求1所述的方法,在所述第一屏根据第二时间周期向第二屏发送灭屏指令之后,还包括:
    在所述第二屏未接收到所述第一屏发送的所述灭屏指令的情况下,判断所述第一屏或所述第二屏是否接收到触摸信号;
    在确定所述第一屏或所述第二屏接收到触摸信号的情况下,所述第一屏停止向所述第二屏发送灭屏指令;
    在确定所述第一屏和第二屏未接收到触摸信号的情况下,所述第一屏继续根据所述第二时间周期向所述第二屏发送所述灭屏指令。
  4. 根据权利要求1所述的方法,其中,所述根据所述灭屏指令控制所述第一屏和所述第二屏中的至少之一进入灭屏状态包括:通过传感器检测所述第一屏和所述第二屏是否处于手持状态并且处于正面朝上状态;根据所述灭屏指令控制没有处于以下至少之一状态的所述第一屏或所述第二屏进入灭屏状态:手持状态和正面朝上状态。
  5. 一种亮灭屏方法,应用于折叠屏终端,包括:
    在确定第一屏和第二屏当前处于灭屏状态的情况下,所述第一屏根据第三时间周期向第二屏发送灭屏指令;
    在所述第二屏接收到所述灭屏指令符合设置条件的情况下,控制所述第一屏和所述第二屏保持灭屏状态;在所述第二屏接收到所述灭屏指令不符合设置条件的情况下,根据当前显示模式控制所述第一屏和所述第二屏中的至少之一进入亮屏状态。
  6. 根据权利要求5所述的方法,其中,所述第一屏根据第三时间周期向第二屏发送灭屏指令包括:所述第一屏根据第三时间周期通过HotKnot无线通信方式向第二屏发送灭屏指令。
  7. 根据权利要求5所述的方法,其中,所述第二屏接收到所述灭屏指令符合设置条件包括:所述第二屏连续n次接收到所述灭屏指令,所述n大于1、且小于或等于所述第一屏根据所述第三时间周期向所述第二屏发送所述灭屏指令的总次数。
  8. 根据权利要求5所述的方法,在所述第二屏接收到所述灭屏指令符合设置条件时之后,还包括:
    所述第一屏停止向所述第二屏发送灭屏指令,并等待第四时间周期后,返回所述第一屏根据第三时间周期向所述第二屏发送灭屏指令的步骤。
  9. 根据权利要求5所述的方法,其中,所述根据当前显示模式控制所述第一屏和所述第二屏中的至少之一进入亮屏状态包括:
    在当前显示模式为单屏模式的情况下,控制所述第一屏或所述第二屏进入亮屏状态;在当前显示模式为双屏模式的情况下,控制所述第一屏和所述第二屏同时进入亮屏状态。
  10. 一种折叠屏终端,包括存储器、处理器及存储在所述存储器上运行的计算机程序,其中:所述处理器执行所述计算机程序时实现如权利要求1至9中任一项所述的亮灭屏方法。
  11. 一种计算机可读存储介质,所述计算机可读存储介质上存储有亮灭屏程序,所述亮灭屏程序被处理器执行时实现如权利要求1至9中任一项所述的亮灭屏方法。
PCT/CN2019/094471 2018-07-17 2019-07-03 亮灭屏方法、折叠屏终端及计算机可读存储介质 WO2020015524A1 (zh)

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