WO2017032017A1 - 一种控制用户终端的屏幕的方法及用户终端 - Google Patents

一种控制用户终端的屏幕的方法及用户终端 Download PDF

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Publication number
WO2017032017A1
WO2017032017A1 PCT/CN2016/080428 CN2016080428W WO2017032017A1 WO 2017032017 A1 WO2017032017 A1 WO 2017032017A1 CN 2016080428 W CN2016080428 W CN 2016080428W WO 2017032017 A1 WO2017032017 A1 WO 2017032017A1
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Prior art keywords
screen
touch
preset
touch operation
brightness value
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PCT/CN2016/080428
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English (en)
French (fr)
Inventor
李建林
曾元清
Original Assignee
广东欧珀移动通信有限公司
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Publication of WO2017032017A1 publication Critical patent/WO2017032017A1/zh
Priority to US15/631,750 priority Critical patent/US10613740B2/en
Priority to US15/709,720 priority patent/US10133476B2/en

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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
    • 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
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3206Monitoring of events, devices or parameters that trigger a change in power modality
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
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    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3206Monitoring of events, devices or parameters that trigger a change in power modality
    • G06F1/3212Monitoring battery levels, e.g. power saving mode being initiated when battery voltage goes below a certain level
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • G06F1/325Power saving in peripheral device
    • G06F1/3265Power saving in display device
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04847Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04883Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0251Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity
    • H04W52/0254Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity detecting a user operation or a tactile contact or a motion of the device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0274Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof
    • H04W52/0277Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof according to available power supply, e.g. switching off when a low battery condition is detected
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention claims the priority of the prior application titled "A method for controlling the screen of the user terminal and the user terminal" of the application No. 201510543227.5, which is filed on Aug. 27, 2015, and the content of the above-mentioned prior application is incorporated by reference. Into this text.
  • the present invention relates to the field of intelligent terminal technologies, and in particular, to a method for controlling a screen of a user terminal and a user terminal.
  • user terminals such as smart phones and tablet computers
  • users are more and more fond of using user terminals for various entertainments, such as reading novels on the user terminal, viewing news, browsing microblogs, playing games, and the like.
  • the user needs to press the power entity button on the user terminal to illuminate the screen before performing various entertainments.
  • the power entity button on the user terminal is generally set to be smaller and located at the edge position of the user terminal side, and the user needs to spend more time to find the location of the power entity button, and after pressing, In order to light up the screen, if the sensitivity of the power entity button is reduced, the user also needs to press multiple times. It can be seen that this method is cumbersome, complicated in operation, and low in efficiency in lighting the screen.
  • the embodiment of the invention provides a method for controlling a screen of a user terminal and a user terminal, which can improve the efficiency of controlling the lighting of the screen.
  • a first aspect of the embodiments of the present invention discloses a method for controlling a screen of a user terminal, including:
  • the screen is controlled to be switched from a black screen state to a bright screen state.
  • the method further includes:
  • the target brightness value corresponding to the average touch force of the sliding operation is queried according to the correspondence between the pre-stored velocity and the brightness;
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the method further includes:
  • the default brightness value preset in the screen and the brightness value are summed, and the summed brightness value is used as the first target brightness value;
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the first target brightness value is the screen brightness.
  • the method further includes:
  • the default brightness value preset to the screen and the brightness value are differenceed and an absolute value is taken, and the absolute value is used as the second target brightness value.
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the second target brightness value is the screen brightness.
  • the method further includes:
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the method further includes: after detecting a touch operation for the screen, and determining whether the location of the touch point of the touch operation belongs to the preset area in a black screen state, the method further includes:
  • the step of determining whether the location of the touch point of the touch operation belongs to the preset area is performed.
  • a second aspect of the embodiments of the present invention discloses a user terminal, where the user terminal includes a functional unit for performing some or all of the steps of any of the methods of the first aspect of the embodiments of the present invention.
  • the user terminal can improve the efficiency of controlling the lighting of the screen when performing some or all of the steps of any of the methods.
  • a third aspect of the embodiments of the present invention discloses a user terminal, the user terminal comprising: a processor, and a memory, the memory is configured to store an instruction, and the processor is configured to run the instruction, where The processor executes the instructions to perform some or all of the steps of any of the first aspects of the embodiments of the present invention.
  • the user terminal can improve the efficiency of controlling the lighting of the screen when performing some or all of the steps of any of the methods.
  • a fourth aspect of the embodiments of the present invention discloses a computer storage medium, the computer storage medium A program is stored, the program specifically including instructions for performing some or all of the steps of any of the methods of the first aspect of the embodiments of the present invention.
  • the user terminal in a black screen state, detects a touch operation for the screen, and determines whether the location of the touch point of the touch operation belongs to the preset area. If yes, the user terminal may further determine whether the duration of the touch operation is greater than The preset time, and whether the touch force of the touch operation is within the preset strength range. When the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, the user terminal may control the screen to switch from the black screen state to the bright screen state.
  • the user terminal can determine whether the control screen needs to be switched from the black screen state to the bright screen state without the user spending more. Time to find the power button and press the power button multiple times, which can improve the efficiency of the control screen lighting.
  • FIG. 1 is a schematic flowchart of a method for controlling a screen of a user terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart diagram of another method for controlling a screen of a user terminal according to an embodiment of the present disclosure
  • FIG. 3 is a schematic flowchart diagram of another method for controlling a screen of a user terminal according to an embodiment of the present disclosure
  • FIG. 4 is a schematic flowchart diagram of another method for controlling a screen of a user terminal according to an embodiment of the present disclosure
  • FIG. 5 is a schematic structural diagram of a user terminal according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of another user terminal according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural diagram of another user terminal according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural diagram of another user terminal according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of another user terminal according to an embodiment of the present invention.
  • the embodiment of the invention discloses a method for controlling a screen of a user terminal and a user terminal, which can improve the efficiency of controlling the lighting of the screen. The details are described below separately.
  • the user terminal may include, but is not limited to, a smart phone, a notebook computer, a personal computer (PC), a personal digital assistant (PDA), a mobile internet device (MID), Various types of user terminals such as smart wearable devices (such as smart watches and smart bracelets).
  • the operating system of the user terminal may include, but is not limited to, an Android operating system, an IOS operating system, a Symbian operating system, a Blackberry operating system, a Windows Phone 8 operating system, and the like. limited.
  • FIG. 1 is a schematic flowchart diagram of a method for controlling a screen of a user terminal according to an embodiment of the present invention. As shown in FIG. 1, the method can include the following steps.
  • the user terminal in a black screen state, can detect a touch operation of the user touching the screen.
  • the touch screen of the user may be a single touch or a multi-touch, and the position of the touch may be any position of the screen, which is not limited in the embodiment of the present invention.
  • step S102 Determine whether the location of the touch point of the touch operation belongs to the preset area. If yes, execute step S103. If no, end the process.
  • the user terminal may determine whether the location of the touch point of the touch operation belongs to the preset area, to avoid Misoperation.
  • the preset area may be any area on the screen, and the area of the preset area may be any area smaller than the screen area.
  • S103 Determine whether the duration of the touch operation is greater than a preset time, and determine whether the touch strength of the touch operation is within a preset dynamic range.
  • a touch force is applied to the screen, and the user terminal can measure the magnitude of the touch force through a built-in pressure sensor.
  • the user terminal may determine whether the duration of the touch operation is greater than the preset time, and determine whether the touch strength of the touch operation belongs to the preset dynamic range.
  • the preset time may be the default time set by the system, or may be a time set by the user, which is not limited in the embodiment of the present invention.
  • the user can set a preset velocity range in advance, for example, the preset velocity range is (A, B).
  • the user terminal can determine whether the duration of the touch operation is greater than the preset time, and whether the touch strength of the touch operation is within the preset dynamic range, or the user terminal can first determine whether the duration of the touch operation is greater than The preset time, if yes, continues to determine whether the touch force of the touch operation belongs to the preset dynamic range. If not, it is not necessary to determine whether the touch force of the touch operation belongs to the preset dynamic range, or the user terminal can First, it is determined whether the touch force of the touch operation belongs to the preset dynamic range. If yes, it is determined whether the duration of the touch operation is greater than the preset time. If not, it is not necessary to continue to determine whether the duration of the touch operation is greater than the preset time. .
  • the user terminal when the user terminal determines that the duration of the touch operation is greater than the preset time and the touch strength of the touch operation belongs to the preset dynamic range, the user terminal may control the screen to switch from the black screen state to the bright screen state.
  • the target brightness at the time of lighting the screen is determined first, and then in the control screen. Switch from the black screen state to the bright screen state with the target brightness as the screen brightness.
  • the user terminal in a black screen state, detects a touch operation for the screen, and determines whether the location of the touch point of the touch operation belongs to the preset area, and if so, the user terminal may further determine the touch operation. Whether the duration is greater than the preset time, and whether the touch force of the touch operation is within the preset strength range. When the duration of the touch operation is greater than the preset time When the touch force of the touch operation is within the preset dynamic range, the user terminal can control the screen to switch from the black screen state to the bright screen state.
  • the user terminal can determine whether the control screen needs to be switched from the black screen state to the bright screen state without the user spending more. Time to find the power button and press the power button multiple times, which can improve the efficiency of the control screen lighting.
  • FIG. 2 is a schematic flowchart diagram of another method for controlling a screen of a user terminal according to an embodiment of the present invention. As shown in FIG. 2, the method can include the following steps.
  • the user terminal In a black screen state, the user terminal detects a touch operation on the screen.
  • step S202 The user terminal determines whether the location of the touch point of the touch operation belongs to the preset area. If yes, step S203 is performed, and if not, the process ends.
  • the user terminal determines whether the duration of the touch operation is greater than a preset time, and determines whether the touch strength of the touch operation is within a preset dynamic range.
  • step S204 When the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, the user terminal detects whether the sliding position of the touch point is the starting position and slides in the preset direction. The sliding operation, if yes, proceeds to step S205, and if not, ends the flow.
  • the user can use any finger to slide in any direction on the screen with the position of the touch point as the starting position, for example, left, right, up, down, and the like.
  • the user terminal may further detect whether the location where the touch point is located is the starting position on the screen.
  • the sliding operation of sliding in the preset direction if yes, the user terminal can detect and acquire the touch force during the sliding process in real time, and calculate the average touch force, wherein the preset direction can be a user-defined direction, or the system
  • the default direction such as: down.
  • the user terminal queries, according to the correspondence between the pre-stored strength and the brightness, the target brightness value corresponding to the average touch strength of the sliding operation.
  • the user may obtain the correspondence between the strength and the brightness through multiple experiments in advance, and store the corresponding relationship in the user terminal. After the user terminal determines the average touch force, The user terminal can query the target brightness value corresponding to the average touch strength of the sliding operation according to the correspondence between the pre-stored strength and the brightness.
  • the user terminal control screen is switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the user terminal after the user terminal queries the target brightness value corresponding to the average touch intensity of the sliding operation, the user terminal can control the screen to switch from the black screen state to the bright screen state with the target brightness value as the screen brightness, instead of
  • the system default brightness value is the screen brightness, which can meet the user's personalized needs and improve the user experience.
  • the user terminal may further detect whether the location of the touched point occurs on the screen.
  • the sliding operation for sliding the starting position to the preset direction if yes, the user terminal queries the target brightness value corresponding to the average touch force of the sliding operation according to the correspondence between the pre-stored velocity and the brightness, and controls the screen to switch from the black screen state to The bright state of the screen brightness with the target brightness value. It can be seen that, according to the embodiment of the present invention, the user terminal can determine the screen brightness when the screen is illuminated according to the relevant sliding information of the user's sliding operation on the screen, which can meet the personalized requirements of the user and improve the user experience.
  • FIG. 3 is a schematic flowchart diagram of another method for controlling a screen of a user terminal according to an embodiment of the present invention. As shown in FIG. 3, the method can include the following steps.
  • the user terminal detects a touch operation on the screen.
  • step S302 The user terminal determines whether the location of the touch point of the touch operation belongs to the preset area. If yes, step S303 is performed, and if not, the process ends.
  • the user terminal determines whether the duration of the touch operation is greater than a preset time, and determines whether the touch strength of the touch operation is within a preset dynamic range.
  • step S304 When the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, the user terminal detects whether the sliding position of the touch point is the starting position and slides in the preset direction. The sliding operation, if yes, proceeds to step S305, and if not, ends the flow.
  • the user can use the finger to touch the screen.
  • the position of the point is the sliding position in any direction for the starting position, for example, left, right, up, down, and the like.
  • the user terminal may further detect whether the position of the touched point is the starting position on the screen.
  • the sliding operation of sliding in a preset direction if yes, the user terminal can detect and acquire the maximum touch force and the minimum touch force during the sliding process in real time, and calculate the difference between the maximum touch intensity and the minimum touch intensity.
  • the user terminal queries, according to the correspondence between the pre-stored strength and the brightness, the brightness value corresponding to the difference between the maximum touch strength and the minimum touch strength in the sliding operation.
  • the user may obtain the correspondence between the strength and the brightness through multiple experiments in advance, and store the corresponding relationship in the user terminal. After the user terminal determines the difference between the maximum touch strength and the minimum touch strength, the user terminal may query the brightness value corresponding to the difference between the maximum touch strength and the minimum touch strength in the sliding operation according to the pre-stored correspondence between the velocity and the brightness. .
  • Step S306. When the preset direction is used to indicate the brightness of the screen, the user terminal sums the default brightness value and the brightness value preset on the screen, and uses the summed brightness value as the first target brightness value, and executes Step S307.
  • the user may preset the operation indicated by the direction of the sliding, for example, sliding upward for indicating the brightness of the screen, sliding downward for indicating the brightness of the screen, or sliding to the left for indicating the height adjustment.
  • Screen brightness swipe to the right to indicate a decrease in screen brightness.
  • the user terminal may first determine whether the direction is a preset direction, and if so, may further determine the target operation indicated by the direction according to the preset setting.
  • the preset direction is used to indicate the brightness of the screen, the user terminal may sum the default brightness value preset by the screen and the queried brightness value, and use the summed brightness value as the first target brightness value.
  • the preset brightness value set by the screen may be a default brightness value set by the user terminal at the factory, or may be a default brightness value set by the user, which is not limited in the embodiment of the present invention.
  • the user terminal control screen is switched from a black screen state to a bright screen state in which the first target brightness value is the screen brightness, and the process ends.
  • the user terminal may control the screen to switch from the black screen state to the bright screen state where the first target brightness value is the screen brightness, instead of The default brightness value set in advance is the screen brightness, so that the user's personalized needs can be satisfied and the user experience is improved.
  • the user terminal When the preset direction is used to indicate that the brightness of the screen is lowered, the user terminal performs a difference between the default brightness value and the brightness value preset on the screen and takes an absolute value, and uses the absolute value as the second target brightness value, and performs the step. S309.
  • the user terminal may advance the screen.
  • the set default brightness value and the queried brightness value are compared and the absolute value is taken, and the absolute value is used as the second target brightness value.
  • the user terminal control screen is switched from a black screen state to a bright screen state in which the second target brightness value is the screen brightness, and the process ends.
  • the user terminal may control the screen to switch from the black screen state to the bright screen state where the second target brightness value is the screen brightness, instead of the preset default brightness.
  • the value is the screen brightness, which can meet the user's personalized needs and improve the user experience.
  • the user terminal may detect whether the position where the touch point is located on the screen is a sliding operation of sliding the starting position to the preset direction, and if yes, querying the brightness value corresponding to the difference between the maximum touch force and the minimum touch force in the sliding operation according to the correspondence between the pre-stored velocity and the brightness, and further,
  • the preset direction is used to indicate the brightness of the screen
  • the default brightness value and the brightness value preset on the screen are summed, and the summed brightness value is used as the first target brightness value, and the screen is controlled by the black screen state.
  • the user terminal can determine the screen brightness when the screen is illuminated according to the relevant sliding information of the user's sliding operation on the screen, which can meet the personalized requirements of the user and improve the user experience.
  • FIG. 4 is another schematic diagram of a screen for controlling a user terminal according to an embodiment of the present invention. Schematic diagram of the process. As shown in FIG. 4, the method can include the following steps.
  • the user terminal detects a touch operation on the screen.
  • the user terminal determines a focus point of the user's eyeball according to the acquired activity information of the user's eyeball.
  • the user terminal can obtain the eye movement information of the user through the eyeball tracking technology to determine the target that the eyeball is watching, that is, the focus point.
  • the user's eyeball can be illuminated by the low-intensity infrared light velocity, and the light reflected from different parts such as the pupil, the iris, and the cornea can be extracted by the sensor, and analyzed by a preset algorithm to determine the target of the eyeball.
  • step S404 The user terminal determines whether there is a target point matching the focus point on the screen. If yes, step S404 is performed, and if not, the process ends.
  • the specific implementation manner of the user terminal determining whether there is a target point matching the focus point on the screen may be:
  • the user terminal determines whether there is a point on the screen where the distance from the focus point is less than or equal to the preset distance threshold, and if so, determines that there is a target point on the screen that matches the focus point.
  • the distance between the focus point of the user's eyeball and any point on the screen may exceed the preset distance threshold. At this time, the user does not pay attention to the screen of the user terminal, that is, the user. Touching the screen may be a mistake. In order to save the battery power of the user terminal, the user terminal does not need to light up the screen.
  • step S404 The user terminal determines whether the location of the touch point of the touch operation belongs to the preset area. If yes, step S405 is performed, and if not, the process ends.
  • the user terminal determines whether the duration of the touch operation is greater than a preset time, and determines whether the touch strength of the touch operation belongs to a preset dynamic range.
  • the user terminal acquires the current battery power of the user terminal.
  • the user terminal when the user terminal determines that the duration of the touch operation is greater than the preset time and the touch strength of the touch operation belongs to the preset dynamic range, the user terminal may acquire the current battery of the user terminal by using the built-in battery detection module. Electricity.
  • the user terminal queries the target brightness value corresponding to the current battery power according to the correspondence between the pre-stored battery power and the brightness.
  • the higher the screen brightness of the user terminal the faster the battery power consumption speed is.
  • the user can obtain the correspondence between the battery power and the brightness through multiple experiments in advance, and store the corresponding relationship in the user terminal. After the user terminal obtains the current battery power of the user terminal, the user terminal may query the target brightness value corresponding to the current battery power according to the pre-stored correspondence between the battery power and the brightness. Among them, in the corresponding relationship, the battery power and the brightness are in one-to-one correspondence, and each brightness can ensure that the standby time can be maintained without affecting the user's viewing under the corresponding battery power.
  • the battery power A1 corresponds to the brightness B1
  • the battery level of the user terminal is A1
  • the screen brightness of the user terminal is adjusted to B1
  • the user does not affect the user's viewing of the user terminal screen, and can maintain the brightness under the B1 brightness. Long standby time.
  • the user terminal control screen is switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the user terminal controls the screen to switch from the black screen state to the bright screen state where the target brightness value is the screen brightness, so as to ensure that the battery power is saved as much as possible when the target brightness value is the screen brightness. Maintain a long standby time.
  • the user terminal can determine whether the face image is collected within the collection area of the front camera, and if so, the user terminal can Further determining whether the location of the touch point of the touch operation belongs to the preset area, and if the duration of the touch operation is greater than the preset time and the touch strength of the touch operation is within the preset dynamic range, the user terminal acquires the current current of the user terminal. According to the correspondence between the pre-stored battery power and the brightness, the target brightness value corresponding to the current battery power is queried, and the control screen is switched from the black screen state to the bright screen state where the target brightness value is the screen brightness.
  • the user terminal determines that the user is currently paying attention to the screen by determining a target point that matches the focus point on the screen, and further determines the screen brightness when the screen is lit according to the current battery power, thereby saving the user.
  • the battery power of the terminal can also meet the personalized requirements of the user and improve the user experience.
  • the device embodiment of the present invention is used to perform the method in the method embodiment of the present invention.
  • the device embodiment of the present invention is used to perform the method in the method embodiment of the present invention.
  • Only parts related to the embodiment of the present invention are shown, and the specific technical details are not disclosed. Reference is made to the above method embodiments of the present invention.
  • FIG. 5 is a schematic structural diagram of a user terminal according to an embodiment of the present invention, such as As shown in FIG. 5, the user terminal 500 may include: a detecting unit 501, a first determining unit 502, a second determining unit 503, and a control unit 504, where:
  • the detecting unit 501 is configured to detect a touch operation for the screen in a black screen state.
  • the detecting unit 501 in the black screen state, can detect a touch operation of the user touching the screen.
  • the touch screen of the user may be a single touch or a multi-touch, and the position of the touch may be any position of the screen, which is not limited in the embodiment of the present invention.
  • the first determining unit 502 is configured to determine whether the location of the touch point of the touch operation belongs to the preset area.
  • the first determining unit 502 may determine whether the location of the touch point of the touch operation belongs to the preset area.
  • the preset area may be any area on the screen, and the area of the preset area may be any area smaller than the screen area.
  • the second determining unit 503 is configured to determine, when the first determining unit 502 determines that the touch point of the touch operation belongs to the preset area, determine whether the duration of the touch operation is greater than a preset time, and determine whether the touch force of the touch operation belongs to Within the preset strength range.
  • a touch force is applied to the screen, and the user terminal can measure the magnitude of the touch force through a built-in pressure sensor.
  • the second determining unit 503 may determine whether the duration of the touch operation is greater than the preset time, and determine whether the touch force of the touch operation belongs to the preset.
  • the preset time may be the default time set by the system, or may be a time set by the user, which is not limited in the embodiment of the present invention.
  • the user can set a preset velocity range in advance, for example, the preset velocity range is (A, B).
  • the second determining unit 503 can determine whether the duration of the touch operation is greater than the preset time, and whether the touch force of the touch operation belongs to the preset dynamic range, or the second determining unit 503 can determine the touch first. Whether the duration of the operation is greater than the preset time. If yes, it is determined whether the touch force of the touch operation belongs to the preset dynamic range. If not, it is not necessary to determine whether the touch force of the touch operation belongs to the preset dynamic range. Or, the second determining unit 503 may first determine whether the touch force of the touch operation belongs to the preset dynamic range, and if yes, continue to determine whether the duration of the touch operation is greater than the preset time, and if not, do not need to continue to determine the touch. Whether the duration of the operation is greater than the preset time.
  • the control unit 504 is configured to: when the second determining unit 503 determines that the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, the control screen is switched from the black screen state to the bright screen state.
  • the control unit 504 can control the screen to switch from the black screen state to the bright state. Screen status.
  • FIG. 6 is a schematic structural diagram of another user terminal according to an embodiment of the present invention.
  • the user terminal shown in FIG. 6 is further optimized based on the user terminal shown in FIG. 5, and Compared with the user terminal shown in FIG. 5, the user terminal shown in FIG. 6 includes all the units of the user terminal shown in FIG.
  • the detecting unit 501 is further configured to: after the second determining unit 503 determines that the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, whether the location of the touched point occurs on the screen is A sliding operation in which the starting position slides in a preset direction.
  • the user can use any finger to slide in any direction on the screen with the position of the touch point as the starting position, for example, left, right, up, down, and the like.
  • the detecting unit 501 may detect whether the position at the touch point occurs on the screen.
  • the sliding operation for sliding the starting position to the preset direction if yes, the detecting unit 501 can detect and acquire the touch force during the sliding process in real time, and calculate the average touch force, wherein the preset direction can be pre-customized by the user.
  • the user terminal shown in FIG. 6 may further include:
  • the first query unit 505 is configured to: when the detecting unit 501 detects a sliding operation on the screen that slides the position where the touched point is located as the starting position to the preset direction, according to the corresponding relationship between the pre-stored velocity and the brightness, the query sliding The target brightness value corresponding to the average touch force of the operation.
  • the user can obtain the corresponding relationship between the intensity and the brightness through multiple experiments in advance. And store the correspondence in the user terminal.
  • the first query unit 505 may query the target brightness value corresponding to the average touch force of the sliding operation according to the correspondence between the pre-stored velocity and the brightness.
  • the control unit 504 is specifically configured to control the screen to be switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the control unit 504 can control the screen to switch from the black screen state to the bright screen state with the target brightness value as the screen brightness.
  • the screen brightness can meet the user's personalized needs and improve the user experience.
  • FIG. 7 is a schematic structural diagram of another user terminal according to an embodiment of the present invention, wherein the user terminal shown in FIG. 7 is further optimized based on the user terminal shown in FIG. 5, and Compared with the user terminal shown in FIG. 5, the user terminal shown in FIG. 7 includes all the units of the user terminal shown in FIG.
  • the detecting unit 501 is further configured to: after the second determining unit 503 determines that the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range, whether the location of the touched point occurs on the screen is A sliding operation in which the starting position slides in a preset direction.
  • the user can use any finger to slide in any direction on the screen with the position of the touch point as the starting position, for example, left, right, up, down, and the like.
  • the detecting unit 501 may detect whether the position where the touch point is located on the screen is The sliding operation of the starting position sliding in the preset direction, if yes, the user terminal can detect and acquire the maximum touch strength and the minimum touch strength during the sliding process in real time, and calculate the difference between the maximum touch strength and the minimum touch strength.
  • the user terminal 500 shown in FIG. 7 may further include:
  • the second querying unit 506 is configured to: when the detecting unit 501 detects a sliding operation on the screen that slides the position where the touched point is located as the starting position to the preset direction, according to the corresponding relationship between the pre-stored velocity and the brightness, the query sliding The brightness corresponding to the difference between the maximum touch force and the minimum touch force in operation value.
  • the user may obtain the correspondence between the strength and the brightness through multiple experiments in advance, and store the corresponding relationship in the user terminal.
  • the second query unit 506 may query the difference between the maximum touch strength and the minimum touch strength in the sliding operation according to the pre-stored correspondence between the velocity and the brightness. The brightness value.
  • the first determining unit 507 is configured to: when the preset direction is used to indicate the brightness of the screen, the default brightness value and the brightness value preset in the screen are summed, and the summed brightness value is used as the first target brightness. value.
  • the user may preset the operation indicated by the direction of the sliding, for example, sliding upward for indicating the brightness of the screen, sliding downward for indicating the brightness of the screen, or sliding to the left for indicating the height adjustment.
  • Screen brightness swipe to the right to indicate a decrease in screen brightness.
  • the user terminal may first determine whether the direction is a preset direction, and if so, may further determine the target operation indicated by the direction according to the preset setting.
  • the first determining unit 507 may sum the default brightness value preset by the screen and the queried brightness value, and use the summed brightness value as the first target. Brightness value.
  • the preset brightness value set by the screen may be a default brightness value set by the user terminal at the factory, or may be a default brightness value set by the user, which is not limited in the embodiment of the present invention.
  • the control unit 504 is specifically configured to control the screen to be switched from a black screen state to a bright screen state in which the first target brightness value is the screen brightness.
  • the first determining unit 507 may control the screen to switch from the black screen state to the bright screen state with the first target brightness value as the screen brightness, instead of pre-
  • the default brightness value set is the screen brightness, which can meet the user's personalized needs and improve the user experience.
  • the first determining unit 507 is further configured to: when the preset direction is used to indicate that the brightness of the screen is turned down, perform a difference between the default brightness value and the brightness value preset on the screen, and take an absolute value, and take the absolute value as The second target brightness value.
  • the preset direction is used to indicate that the brightness of the screen is lowered.
  • the first determining unit 507 may perform a difference between the default brightness value preset on the screen and the queried brightness value and take an absolute value, and use the absolute value as the second target brightness value.
  • the control unit 504 is specifically configured to control the screen to switch from a black screen state to a bright screen state in which the second target brightness value is the screen brightness.
  • the first determining unit 507 may control the screen to switch from the black screen state to the bright screen state with the second target brightness value as the screen brightness, instead of pre-
  • the default brightness value set is the screen brightness, which can meet the user's personalized needs and improve the user experience.
  • FIG. 8 is a schematic structural diagram of another user terminal according to an embodiment of the present invention.
  • the user terminal shown in FIG. 8 is further optimized based on the user terminal shown in FIG. 5, and
  • the user terminal shown in FIG. 5 may include: in addition to all the units of the user terminal shown in FIG. 5, the user terminal shown in FIG.
  • the obtaining unit 508 is configured to acquire the current battery power of the user terminal after the second determining unit 503 determines that the duration of the touch operation is greater than the preset time and the touch force of the touch operation belongs to the preset dynamic range.
  • the obtaining unit 508 may acquire the user by using the built-in battery detecting module. The current battery level of the terminal.
  • the third query unit 509 is configured to query the target brightness value corresponding to the current battery power according to the pre-stored correspondence between the battery power and the brightness.
  • the higher the screen brightness of the user terminal the faster the battery power consumption speed and the shorter the standby time.
  • the user can obtain the correspondence between the battery power and the brightness through multiple experiments in advance, and store the corresponding relationship in the user terminal.
  • the third query unit 509 may query the target brightness value corresponding to the current battery power according to the pre-stored correspondence between the battery power and the brightness.
  • the battery power and the brightness are in one-to-one correspondence, and each brightness can ensure that the standby time can be maintained without affecting the user's viewing under the corresponding battery power.
  • the battery power A1 corresponds to the brightness B1
  • the battery level of the user terminal is A1
  • the screen brightness of the user terminal is adjusted to B1
  • neither impact is affected.
  • the user views the user terminal screen and can maintain a long standby time under the B1 brightness.
  • the control unit 504 is specifically configured to control the screen to be switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • control unit 504 controls the screen to switch from the black screen state to the bright screen state where the target brightness value is the screen brightness, so as to ensure that the battery power is saved as much as possible when the target brightness value is the screen brightness. And maintain a long standby time.
  • the user terminal 500 shown in FIG. 8 may further include:
  • the second determining unit 510 is configured to: after the detecting unit 501 detects the touch operation for the screen in the black screen state, and before the first determining unit 502 determines whether the touch point of the touch operation belongs to the preset area, according to the acquired The activity information of the user's eyeball determines the focus point of the user's eyeball.
  • the second determining unit 510 may acquire the eyeball activity information of the user through the eyeball tracking technology to determine the target that the eyeball is watching, that is, the focus point.
  • the user's eyeball can be illuminated by the low-intensity infrared light velocity, and the light reflected from different parts such as the pupil, the iris, and the cornea can be extracted by the sensor, and analyzed by a preset algorithm to determine the target of the eyeball.
  • the third determining unit 511 is configured to determine whether there is a target point on the screen that matches the focus point.
  • the specific determining manner of the third determining unit 511 determining whether there is a target point matching the focus point on the screen may be:
  • the third determining unit 511 determines whether there is a point on the screen where the distance from the focus point is less than or equal to the preset distance threshold, and if so, determines that there is a target point on the screen that matches the focus point.
  • the distance between the focus point of the user's eyeball and any point on the screen may exceed the preset distance threshold. At this time, the user does not pay attention to the screen of the user terminal, that is, the user. Touching the screen may be a mistake. In order to save the battery power of the user terminal, the user terminal does not need to light up the screen.
  • the first determining unit 502 is specifically configured to determine, when the third determining unit 511 determines that there is a target point matching the focus point on the screen, whether the location of the touch point of the touch operation belongs to the preset area.
  • the detecting unit 501 detects a touch operation for the screen, and the first determining unit 502 determines whether the location of the touch point of the touch operation belongs to the preset area, and if The second determining unit 503 may further determine whether the duration of the touch operation is greater than a preset time, and determine whether the touch strength of the touch operation belongs to a preset dynamic range.
  • the control unit 504 may control the screen to switch from the black screen state to the bright screen state.
  • control unit 504 can determine whether the control screen needs to be switched from the black screen state to the bright screen state without the user More time to find the power button and press the power button multiple times, which can improve the efficiency of the control screen lighting.
  • FIG. 9 is a schematic structural diagram of another user terminal according to an embodiment of the present invention.
  • the user terminal may include a processor 901 and a memory 902, wherein the processor 901 is connected to the memory 902 through a bus, wherein the memory 902 may be a high speed RAM memory or a non-unstable memory. (non-volatile memory), such as at least one disk storage.
  • the memory 902 can also optionally be at least one storage device located remotely from the aforementioned processor 901.
  • the application stored by the processor 901 for reading the memory 902 performs the following operations:
  • the screen is controlled to be switched from a black screen state to a bright screen state.
  • the processor 901 is further configured to read the storage stored by the memory 902.
  • the application does the following:
  • the target brightness value corresponding to the average touch force of the sliding operation is queried according to the correspondence between the pre-stored velocity and the brightness;
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the processor 901 is further configured to read the storage stored by the memory 902.
  • the application does the following:
  • the default brightness value preset in the screen and the brightness value are summed, and the summed brightness value is used as the first target brightness value;
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the first target brightness value is the screen brightness.
  • the processor 901 is further configured to: read an application stored in the memory 902 to perform the following operations:
  • the default brightness value preset to the screen and the brightness value are differenceed and an absolute value is taken, and the absolute value is used as the second target brightness value.
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the second target brightness value is the screen brightness.
  • the processor 901 is further configured to read the storage stored by the memory 902.
  • the application does the following:
  • the controlling the screen to switch from a black screen state to a bright screen state includes:
  • the screen is controlled to be switched from a black screen state to a bright screen state in which the target brightness value is the screen brightness.
  • the processor 901 is further configured to read the memory 902.
  • the stored application does the following:
  • the step of determining whether the location of the touch point of the touch operation belongs to the preset area is performed.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

一种控制用户终端的屏幕的方法及用户终端。其中,该方法包括:在黑屏状态下,检测针对屏幕的触摸操作(S101);判断所述触摸操作的触摸点所处位置是否属于预设区域(S102);若是,则判断所述触摸操作的持续时间是否大于预设时间,以及判断所述触摸操作的触摸力度是否属于预设力度范围之内(S103);当所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态(S104)。该方法可以提高控制屏幕点亮的效率。

Description

一种控制用户终端的屏幕的方法及用户终端
本发明要求2015年08月27日递交的发明名称为“一种控制用户终端的屏幕的方法及用户终端”的申请号201510543227.5的在先申请优先权,上述在先申请的内容以引入的方式并入本文本中。
技术领域
本发明涉及智能终端技术领域,尤其涉及一种控制用户终端的屏幕的方法及用户终端。
背景技术
随着智能手机、平板电脑等用户终端的广泛应用,用户越来越喜欢使用用户终端来进行各种娱乐,比如:在用户终端上阅读小说、查看新闻、浏览微博、玩游戏等。通常,用户在进行各种娱乐前,需要按压用户终端上的电源实体按键以点亮屏幕。
然而实践中发现,用户终端上的电源实体按键一般设置的比较小且位于用户终端一侧的边缘位置,用户需要花较多的时间去查找该电源实体按键所在的位置,并进行按压操作后,才能点亮屏幕,如果电源实体按键的灵敏度下降,用户还需要多次按压。可见,这种方式比较繁琐,操作复杂,点亮屏幕的效率较低。
发明内容
本发明实施例提供了一种控制用户终端的屏幕的方法及用户终端,可以提高控制屏幕点亮的效率。
本发明实施例第一方面公开了一种控制用户终端的屏幕的方法,包括:
在黑屏状态下,检测针对屏幕的触摸操作;
判断所述触摸操作的触摸点所处位置是否属于预设区域;
若是,则判断所述触摸操作的持续时间是否大于预设时间,以及判断所述 触摸操作的触摸力度是否属于预设力度范围之内;
当所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态。
在一个可能的实施方式中,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
若发生,则根据预存储的力度与亮度的对应关系,查询所述滑动操作的平均触摸力度对应的目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
在一个可能的实施方式中,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
若发生,根据预存储的力度与亮度的对应关系,查询所述滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值;
当所述预设方向用于指示调高屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求和,并将求和后的亮度值作为第一目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述第一目标亮度值为屏幕亮度的亮屏状态。
在一个可能的实施方式中,所述方法还包括:
当所述预设方向用于指示调低屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求差并取绝对值,将所述绝对值作为第二目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述第二目标亮度值为屏幕亮度的亮屏状态。
在一个可能的实施方式中,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
获取用户终端的当前电池电量;
根据预存储的电池电量与亮度的对应关系,查询所述当前电池电量对应的目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
在一个可能的实施方式中,所述在黑屏状态下,检测针对屏幕的触摸操作之后,以及所述判断所述触摸操作的触摸点所处位置是否属于预设区域之前,所述方法还包括:
根据获取的用户眼球的活动信息,确定所述用户眼球的聚焦点;
判断所述屏幕上是否存在与所述聚焦点匹配的目标点;
若是,则执行所述判断所述触摸操作的触摸点所处位置是否属于预设区域的步骤。
本发明实施例第二方面公开了一种用户终端,所述用户终端包括用于执行本发明实施例第一方面任一方法的部分或全部步骤的功能单元。其中,该用户终端执行第一方面任一方法的部分或全部步骤时可以提高控制屏幕点亮的效率。
本发明实施例第三方面公开了一种用户终端,所述用户终端包括:处理器、以及存储器,所述存储器被配置用于存储指令,所述处理器被配置用于运行所述指令,所述处理器运行所述指令以执行本发明实施例第一方面任一方法的部分或全部步骤。其中,该用户终端执行第一方面任一方法的部分或全部步骤时可以提高控制屏幕点亮的效率。
本发明实施例第四方面公开了一种计算机存储介质,所述计算机存储介质 存储有程序,所述程序具体包括用于执行本发明实施例第一方面任一方法的部分或全部步骤的指令。
本发明实施例中,在黑屏状态下,用户终端检测针对屏幕的触摸操作,并判断触摸操作的触摸点所处位置是否属于预设区域,若是,用户终端可以进一步判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端可以控制屏幕由黑屏状态切换为亮屏状态。可见,通过本发明实施例,用户终端可以根据用户的触摸操作的触摸信息(触摸位置,触摸事件以及触摸力度)来确定是否需要控制屏幕由黑屏状态切换为亮屏状态,而无需用户花较多时间查找电源按键以及多次按压电源按键,从而可以提高控制屏幕点亮的效率。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的一种控制用户终端的屏幕的方法的流程示意图;
图2是本发明实施例公开的另一种控制用户终端的屏幕的方法的流程示意图;
图3是本发明实施例公开的另一种控制用户终端的屏幕的方法的流程示意图;
图4是本发明实施例公开的另一种控制用户终端的屏幕的方法的流程示意图;
图5是本发明实施例公开的一种用户终端的结构示意图;
图6是本发明实施例公开的另一种用户终端的结构示意图;
图7是本发明实施例公开的另一种用户终端的结构示意图;
图8是本发明实施例公开的另一种用户终端的结构示意图;
图9是本发明实施例公开的另一种用户终端的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开了一种控制用户终端的屏幕的方法及用户终端,可以提高控制屏幕点亮的效率。以下分别进行详细说明。
本发明实施例中,用户终端可以包括但不限于智能手机、笔记本电脑、个人计算机(Personal Computer,PC)、个人数字助理(Personal Digital Assistant,PDA)、移动互联网设备(Mobile Internet Device,MID)、智能穿戴设备(如智能手表、智能手环)等各类用户终端。其中,该用户终端的操作***可包括但不限于Android操作***、IOS操作***、Symbian(塞班)操作***、Black Berry(黑莓)操作***、Windows Phone8操作***等等,本发明实施例不做限定。
请参见图1,图1是本发明实施例公开的一种控制用户终端的屏幕的方法的流程示意图。如图1所示,该方法可以包括以下步骤。
S101、在黑屏状态下,检测针对屏幕的触摸操作。
本发明实施例中,在黑屏状态下,用户终端可以检测用户触摸屏幕的触摸操作。其中,用户触摸屏幕可以为单点触摸,也可以为多点触摸,触摸的位置可以为屏幕的任意位置,本发明实施例不作限定。
S102、判断触摸操作的触摸点所处位置是否属于预设区域,若是,执行步骤S103,若否,结束本流程。
本发明实施例中,由于用户触摸屏幕的位置可以为屏幕的任意位置,因此,在检测针对屏幕的触摸操作之后,用户终端可以判断触摸操作的触摸点所处位置是否属于预设区域,以避免误操作。其中,该预设区域可以为屏幕上的任意区域,该预设区域的面积可以为小于屏幕面积的任意面积。
S103、判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。
本发明实施例中,用户触摸屏幕时,将会给屏幕施加一个触摸力度,用户终端可以通过内置的压力传感器测量该触摸力度的大小。
当用户终端判断触摸操作的触摸点所处位置属于预设区域时,用户终端可以判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。其中,该预设时间可以为***默认设置的时间,也可以为用户自定义设置的时间,本发明实施例不作限定。用户预先可以设置一个预设力度范围,比如,该预设力度范围为(A,B)。
可选的,用户终端可以同时判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内,或者,用户终端可以先判断触摸操作的持续时间是否大于预设时间,若是,则继续判断触摸操作的触摸力度是否属于预设力度范围之内,若否,则不需要判断触摸操作的触摸力度是否属于预设力度范围之内了,或者,用户终端可以先判断触摸操作的触摸力度是否属于预设力度范围之内,若是,则继续判断触摸操作的持续时间是否大于预设时间,若否,则不需要继续判断触摸操作的持续时间是否大于预设时间。
S104、当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,控制屏幕由黑屏状态切换为亮屏状态。
本发明实施例中,当用户终端判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端就可以控制屏幕由黑屏状态切换为亮屏状态。
在多个实施例中,用户终端可以在判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内之后,先确定点亮屏幕时的目标亮度,然后在控制屏幕由黑屏状态切换为以目标亮度为屏幕亮度的亮屏状态。
在图1所描述的方法流程中,在黑屏状态下,用户终端检测针对屏幕的触摸操作,并判断触摸操作的触摸点所处位置是否属于预设区域,若是,用户终端可以进一步判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。当触摸操作的持续时间大于预设时间 且触摸操作的触摸力度属于预设力度范围之内时,用户终端可以控制屏幕由黑屏状态切换为亮屏状态。可见,通过本发明实施例,用户终端可以根据用户的触摸操作的触摸信息(触摸位置,触摸事件以及触摸力度)来确定是否需要控制屏幕由黑屏状态切换为亮屏状态,而无需用户花较多时间查找电源按键以及多次按压电源按键,从而可以提高控制屏幕点亮的效率。
请参见图2,图2是本发明实施例公开的另一种控制用户终端的屏幕的方法的流程示意图。如图2所示,该方法可以包括以下步骤。
S201、在黑屏状态下,用户终端检测针对屏幕的触摸操作。
S202、用户终端判断触摸操作的触摸点所处位置是否属于预设区域,若是,执行步骤S203,若否,结束本流程。
S203、用户终端判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。
S204、当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,执行步骤S205,若否,结束本流程。
本发明实施例中,用户触摸屏幕后,用户可以使用手指在屏幕上以该触摸点所在位置为起始位置进行任意方向的滑动,比如,向左、向右、向上、向下等。
当用户终端判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,进一步地,用户终端可以检测屏幕上是否发生以该触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,则用户终端可以实时检测并获取滑动过程中的触摸力度,并计算平均触摸力度,其中,该预设方向可以为用户预先自定义的方向,或者***默认的方向,比如:向下。
S205、用户终端根据预存储的力度与亮度的对应关系,查询滑动操作的平均触摸力度对应的目标亮度值。
本发明实施例中,用户可以预先通过多次实验获取力度与亮度的对应关系,并将该对应关系存储在用户终端中。当用户终端确定平均触摸力度之后, 用户终端就可以根据预存储的力度与亮度的对应关系,查询滑动操作的平均触摸力度对应的目标亮度值。
S206、用户终端控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,用户终端在查询到滑动操作的平均触摸力度对应的目标亮度值之后,用户终端就可以控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态,而不是以***默认的亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
在图2所描述的方法流程中,当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端可以进一步检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,用户终端根据预存储的力度与亮度的对应关系,查询滑动操作的平均触摸力度对应的目标亮度值,并控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。可见,通过本发明实施例,用户终端可以根据用户在屏幕上的滑动操作的相关滑动信息来确定点亮屏幕时的屏幕亮度,可以满足用户个性化的要求,提高用户体验。
请参见图3,图3是本发明实施例公开的另一种控制用户终端的屏幕的方法的流程示意图。如图3所示,该方法可以包括以下步骤。
S301、在黑屏状态下,用户终端检测针对屏幕的触摸操作。
S302、用户终端判断触摸操作的触摸点所处位置是否属于预设区域,若是,执行步骤S303,若否,结束本流程。
S303、用户终端判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。
S304、当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,执行步骤S305,若否,结束本流程。
本发明实施例中,用户触摸屏幕后,用户可以使用手指在屏幕上以该触摸 点所在位置为起始位置进行任意方向的滑动,比如,向左、向右、向上、向下等。
当用户终端判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,进一步地,用户终端可以检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,则用户终端可以实时检测并获取滑动过程中的最大触摸力度和最小触摸力度,并计算最大触摸力度和最小触摸力度的差值。
S305、用户终端根据预存储的力度与亮度的对应关系,查询滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值。
本发明实施例中,用户可以预先通过多次实验获取力度与亮度的对应关系,并将该对应关系存储在用户终端中。当用户终端确定最大触摸力度和最小触摸力度的差值之后,用户终端就可以根据预存储的力度与亮度的对应关系,查询滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值。
S306、当预设方向用于指示调高屏幕的亮度时,用户终端对屏幕预先设置的默认亮度值和亮度值进行求和,并将求和后的亮度值作为第一目标亮度值,并执行步骤S307。
本发明实施例中,用户可以预先设置滑动的方向所指示的操作,比如,向上滑动用于指示调高屏幕亮度,向下滑动用于指示调低屏幕亮度,或者,向左滑动用于指示调高屏幕亮度,向右滑动用于指示调低屏幕亮度。当检测到向某方向的滑动时,用户终端可以先判断该方向是否为预设方向,若是,则可以进一步根据预先的设置来确定该方向所指示的目标操作。当预设方向用于指示调高屏幕的亮度时,用户终端可以对屏幕预先设置的默认亮度值和查询到的亮度值进行求和,并将求和后的亮度值作为第一目标亮度值。其中,屏幕预先设置的默认亮度值可以为用户终端出厂时设置的默认亮度值,也可以为用户自定义设置的默认亮度值,本发明实施例不作限定。
S307、用户终端控制屏幕由黑屏状态切换为以第一目标亮度值为屏幕亮度的亮屏状态,并结束本流程。
本发明实施例中,用户终端在确定第一目标亮度值之后,用户终端就可以控制屏幕由黑屏状态切换为以第一目标亮度值为屏幕亮度的亮屏状态,而不是 以预先设置的默认亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
S308、当预设方向用于指示调低屏幕的亮度时,用户终端对屏幕预先设置的默认亮度值和亮度值进行求差并取绝对值,将绝对值作为第二目标亮度值,并执行步骤S309。
本发明实施例中,用户终端查询到滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值之后,当预设方向用于指示调低屏幕的亮度时,用户终端可以对屏幕预先设置的默认亮度值和查询到的亮度值进行求差并取绝对值,将绝对值作为第二目标亮度值。
S309、用户终端控制屏幕由黑屏状态切换为以第二目标亮度值为屏幕亮度的亮屏状态,并结束本流程。
本发明实施例中,用户终端在确定第二目标亮度值之后,用户终端就可以控制屏幕由黑屏状态切换为以第二目标亮度值为屏幕亮度的亮屏状态,而不是以预先设置的默认亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
在图3所描述的方法流程中,当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端可以检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,则根据预存储的力度与亮度的对应关系,查询滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值,进一步地,当预设方向用于指示调高屏幕的亮度时,对屏幕预先设置的默认亮度值和亮度值进行求和,并将求和后的亮度值作为第一目标亮度值,并控制屏幕由黑屏状态切换为以第一目标亮度值为屏幕亮度的亮屏状态,当预设方向用于指示调低屏幕的亮度时,对屏幕预先设置的默认亮度值和亮度值进行求差并取绝对值,将绝对值作为第二目标亮度值,并控制屏幕由黑屏状态切换为以第二目标亮度值为屏幕亮度的亮屏状态。可见,通过本发明实施例,用户终端可以根据用户在屏幕上的滑动操作的相关滑动信息来确定点亮屏幕时的屏幕亮度,可以满足用户个性化的要求,提高用户体验。
请参见图4,图4是本发明实施例公开的另一种控制用户终端的屏幕的方 法的流程示意图。如图4所示,该方法可以包括以下步骤。
S401、在黑屏状态下,用户终端检测针对屏幕的触摸操作。
S402、用户终端根据获取的用户眼球的活动信息,确定用户眼球的聚焦点。
本发明实施例中,用户终端可以通过眼球追踪技术获取用户的眼球活动信息,以确定眼球所注视的目标,即聚焦点。具体地,可以利用低功率的红外线光速照射用户的眼球,再由传感器撷取由瞳孔、虹膜、角膜等不同部位反射回来的光线,经过预设的算法分析后以确定眼球注视的目标。
S403、用户终端判断屏幕上是否存在与聚焦点匹配的目标点,若是,执行步骤S404,若否,结束本流程。
本发明实施例中,用户终端判断屏幕上是否存在与聚焦点匹配的目标点的具体实施方式可以为:
用户终端判断屏幕上是否存在与聚焦点的距离小于或等于预设距离阈值的点,若是,则确定屏幕上存在与聚焦点匹配的目标点。
本发明实施例中,当用户的眼睛注视在远处时,用户眼球的聚焦点与屏幕上任意点的距离就可能超过预设距离阈值,此时,用户并没有关注用户终端的屏幕,即用户触摸屏幕有可能是一种误操作。为了节省用户终端的电池电量,用户终端就不需要点亮屏幕了。
S404、用户终端判断触摸操作的触摸点所处位置是否属于预设区域,若是,执行步骤S405,若否,结束本流程。
S405、用户终端判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。
S406、当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端获取用户终端的当前电池电量。
本发明实施例中,当用户终端判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端可以通过内置的电池检测模块来获取用户终端的当前电池电量。
S407、用户终端根据预存储的电池电量与亮度的对应关系,查询当前电池电量对应的目标亮度值。
本发明实施例中,用户终端的屏幕亮度越高,电池电量的消耗速度就越快, 待机时间就越短。用户可以预先通过多次实验获取电池电量与亮度的对应关系,并将该对应关系存储在用户终端中。当用户终端获取到用户终端的当前电池电量之后,用户终端可以根据预存储的电池电量与亮度的对应关系,查询当前电池电量对应的目标亮度值。其中,在该对应关系中,电池电量与亮度一一对应,每一个亮度能确保在与之对应的电池电量下既不影响用户观看也能维持较长的待机时间。比如:电池电量A1与亮度B1对应,则当用户终端的电池电量为A1时,将用户终端的屏幕亮度调节为B1时,既不影响用户观看用户终端屏幕,且能维持在该B1亮度下维持较长的待机时间。
S408、用户终端控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,用户终端控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态,这样,就可以确保在以目标亮度值为屏幕亮度时,尽可能地节约电池电量,并维持较长的待机时间。
在图4所描述的方法流程中,在黑屏状态下,用户终端检测针对屏幕的触摸操作之后,用户终端可以判断在前置摄像头的采集区域范围内是否采集到人脸图像,若是,用户终端可以进一步判断触摸操作的触摸点所处位置是否属于预设区域,若是,当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,用户终端获取用户终端的当前电池电量,并根据预存储的电池电量与亮度的对应关系,查询当前电池电量对应的目标亮度值,控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。可见,通过本发明实施例,用户终端通过判断屏幕上存在与聚焦点匹配的目标点来确定用户当前正在关注屏幕,并进一步根据当前电池电量来确定点亮屏幕时的屏幕亮度,从而可以节约用户终端的电池电量,同时,也可以满足用户个性化的要求,提高用户体验。
下面为本发明装置实施例,本发明装置实施例用于执行本发明方法实施例中的方法,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照本发明上述方法实施例。
请参见图5,图5是本发明实施例公开的一种用户终端的结构示意图,如 图5所示,该用户终端500可以包括:检测单元501、第一判断单元502、第二判断单元503以及控制单元504,其中:
检测单元501,用于在黑屏状态下,检测针对屏幕的触摸操作。
本发明实施例中,在黑屏状态下,检测单元501可以检测用户触摸屏幕的触摸操作。其中,用户触摸屏幕可以为单点触摸,也可以为多点触摸,触摸的位置可以为屏幕的任意位置,本发明实施例不作限定。
第一判断单元502,用于判断触摸操作的触摸点所处位置是否属于预设区域。
本发明实施例中,由于用户触摸屏幕的位置可以为屏幕的任意位置,因此,在检测针对屏幕的触摸操作之后,第一判断单元502可以判断触摸操作的触摸点所处位置是否属于预设区域,以避免误操作。其中,该预设区域可以为屏幕上的任意区域,该预设区域的面积可以为小于屏幕面积的任意面积。
第二判断单元503,用于当第一判断单元502判断触摸操作的触摸点所处位置属于预设区域时,判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。
本发明实施例中,用户触摸屏幕时,将会给屏幕施加一个触摸力度,用户终端可以通过内置的压力传感器测量该触摸力度的大小。
当第一判断单元502判断触摸操作的触摸点所处位置属于预设区域时,第二判断单元503可以判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内。其中,该预设时间可以为***默认设置的时间,也可以为用户自定义设置的时间,本发明实施例不作限定。用户预先可以设置一个预设力度范围,比如,该预设力度范围为(A,B)。
可选的,第二判断单元503可以同时判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之内,或者,第二判断单元503可以先判断触摸操作的持续时间是否大于预设时间,若是,则继续判断触摸操作的触摸力度是否属于预设力度范围之内,若否,则不需要判断触摸操作的触摸力度是否属于预设力度范围之内了,或者,第二判断单元503可以先判断触摸操作的触摸力度是否属于预设力度范围之内,若是,则继续判断触摸操作的持续时间是否大于预设时间,若否,则不需要继续判断触摸 操作的持续时间是否大于预设时间。
控制单元504,用于当第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,控制屏幕由黑屏状态切换为亮屏状态。
本发明实施例中,当第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,控制单元504就可以控制屏幕由黑屏状态切换为亮屏状态。
请参见图6,图6是本发明实施例公开的另一种用户终端的结构示意图,其中,图6所示的用户终端是在图5所示的用户终端的基础上进一步优化得到的,与图5所示的用户终端相比,图6所示的用户终端除了包括图5所示的用户终端的所有单元外,
检测单元501,还用于在第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内之后,检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作。
本发明实施例中,用户触摸屏幕后,用户可以使用手指在屏幕上以该触摸点所在位置为起始位置进行任意方向的滑动,比如,向左、向右、向上、向下等。
当第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,进一步地,检测单元501可以检测屏幕上是否发生以该触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,则检测单元501可以实时检测并获取滑动过程中的触摸力度,并计算平均触摸力度,其中,该预设方向可以为用户预先自定义的方向,或者***默认的方向,比如:向下。
图6所示的用户终端还可以包括:
第一查询单元505,用于当检测单元501检测屏幕上发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作时,根据预存储的力度与亮度的对应关系,查询滑动操作的平均触摸力度对应的目标亮度值。
本发明实施例中,用户可以预先通过多次实验获取力度与亮度的对应关 系,并将该对应关系存储在用户终端中。当用户终端确定平均触摸力度之后,第一查询单元505就可以根据预存储的力度与亮度的对应关系,查询滑动操作的平均触摸力度对应的目标亮度值。
控制单元504,具体用于控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,第一查询单元505在查询到滑动操作的平均触摸力度对应的目标亮度值之后,控制单元504就可以控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态,而不是以***默认的亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
请参见图7,图7是本发明实施例公开的另一种用户终端的结构示意图,其中,图7所示的用户终端是在图5所示的用户终端的基础上进一步优化得到的,与图5所示的用户终端相比,图7所示的用户终端除了包括图5所示的用户终端的所有单元外,
检测单元501,还用于在第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内之后,检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作。
本发明实施例中,用户触摸屏幕后,用户可以使用手指在屏幕上以该触摸点所在位置为起始位置进行任意方向的滑动,比如,向左、向右、向上、向下等。
当第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,进一步地,检测单元501可以检测屏幕上是否发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作,若是,则用户终端可以实时检测并获取滑动过程中的最大触摸力度和最小触摸力度,并计算最大触摸力度和最小触摸力度的差值。
图7所示的用户终端500还可以包括:
第二查询单元506,用于当检测单元501检测屏幕上发生以触摸点所处位置为起始位置向预设方向进行滑动的滑动操作时,根据预存储的力度与亮度的对应关系,查询滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度 值。
本发明实施例中,用户可以预先通过多次实验获取力度与亮度的对应关系,并将该对应关系存储在用户终端中。当用户终端确定最大触摸力度和最小触摸力度的差值之后,第二查询单元506就可以根据预存储的力度与亮度的对应关系,查询滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值。
第一确定单元507,用于当预设方向用于指示调高屏幕的亮度时,对屏幕预先设置的默认亮度值和亮度值进行求和,并将求和后的亮度值作为第一目标亮度值。
本发明实施例中,用户可以预先设置滑动的方向所指示的操作,比如,向上滑动用于指示调高屏幕亮度,向下滑动用于指示调低屏幕亮度,或者,向左滑动用于指示调高屏幕亮度,向右滑动用于指示调低屏幕亮度。当检测到向某方向的滑动时,用户终端可以先判断该方向是否为预设方向,若是,则可以进一步根据预先的设置来确定该方向所指示的目标操作。当预设方向用于指示调高屏幕的亮度时,第一确定单元507可以对屏幕预先设置的默认亮度值和查询到的亮度值进行求和,并将求和后的亮度值作为第一目标亮度值。其中,屏幕预先设置的默认亮度值可以为用户终端出厂时设置的默认亮度值,也可以为用户自定义设置的默认亮度值,本发明实施例不作限定。
控制单元504,具体用于控制屏幕由黑屏状态切换为以第一目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,第一确定单元507在确定第一目标亮度值之后,控制单元504就可以控制屏幕由黑屏状态切换为以第一目标亮度值为屏幕亮度的亮屏状态,而不是以预先设置的默认亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
可选的,第一确定单元507,还用于当预设方向用于指示调低屏幕的亮度时,对屏幕预先设置的默认亮度值和亮度值进行求差并取绝对值,将绝对值作为第二目标亮度值。
本发明实施例中,第二查询单元506查询到滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值之后,当预设方向用于指示调低屏幕的亮度 时,第一确定单元507可以对屏幕预先设置的默认亮度值和查询到的亮度值进行求差并取绝对值,将绝对值作为第二目标亮度值。
控制单元504,具体用于控制屏幕由黑屏状态切换为以第二目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,第一确定单元507在确定第二目标亮度值之后,控制单元504就可以控制屏幕由黑屏状态切换为以第二目标亮度值为屏幕亮度的亮屏状态,而不是以预先设置的默认亮度值为屏幕亮度,从而可以满足用户个性化的需求,提高用户体验。
请参见图8,图8是本发明实施例公开的另一种用户终端的结构示意图,其中,图8所示的用户终端是在图5所示的用户终端的基础上进一步优化得到的,与图5所示的用户终端相比,图8所示的用户终端除了包括图5所示的用户终端的所有单元外,还可以包括:
获取单元508,用于在第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内之后,获取用户终端的当前电池电量。
本发明实施例中,当第二判断单元503判断触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,获取单元508可以通过内置的电池检测模块来获取用户终端的当前电池电量。
第三查询单元509,用于根据预存储的电池电量与亮度的对应关系,查询当前电池电量对应的目标亮度值。
本发明实施例中,用户终端的屏幕亮度越高,电池电量的消耗速度就越快,待机时间就越短。用户可以预先通过多次实验获取电池电量与亮度的对应关系,并将该对应关系存储在用户终端中。当获取单元508获取到用户终端的当前电池电量之后,第三查询单元509可以根据预存储的电池电量与亮度的对应关系,查询当前电池电量对应的目标亮度值。其中,在该对应关系中,电池电量与亮度一一对应,每一个亮度能确保在与之对应的电池电量下既不影响用户观看也能维持较长的待机时间。比如:电池电量A1与亮度B1对应,则当用户终端的电池电量为A1时,将用户终端的屏幕亮度调节为B1时,既不影响 用户观看用户终端屏幕,且能维持在该B1亮度下维持较长的待机时间。
控制单元504,具体用于控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态。
本发明实施例中,控制单元504控制屏幕由黑屏状态切换为以目标亮度值为屏幕亮度的亮屏状态,这样,就可以确保在以目标亮度值为屏幕亮度时,尽可能地节约电池电量,并维持较长的待机时间。
可选的,图8所示的用户终端500还可以包括:
第二确定单元510,用于在检测单元501在黑屏状态下,检测针对屏幕的触摸操作之后,以及第一判断单元502判断触摸操作的触摸点所处位置是否属于预设区域之前,根据获取的用户眼球的活动信息,确定用户眼球的聚焦点。
本发明实施例中,第二确定单元510可以通过眼球追踪技术获取用户的眼球活动信息,以确定眼球所注视的目标,即聚焦点。具体地,可以利用低功率的红外线光速照射用户的眼球,再由传感器撷取由瞳孔、虹膜、角膜等不同部位反射回来的光线,经过预设的算法分析后以确定眼球注视的目标。
第三判断单元511,用于判断屏幕上是否存在与聚焦点匹配的目标点。
本发明实施例中,第三判断单元511判断屏幕上是否存在与聚焦点匹配的目标点的具体实施方式可以为:
第三判断单元511判断屏幕上是否存在与聚焦点的距离小于或等于预设距离阈值的点,若是,则确定屏幕上存在与聚焦点匹配的目标点。
本发明实施例中,当用户的眼睛注视在远处时,用户眼球的聚焦点与屏幕上任意点的距离就可能超过预设距离阈值,此时,用户并没有关注用户终端的屏幕,即用户触摸屏幕有可能是一种误操作。为了节省用户终端的电池电量,用户终端就不需要点亮屏幕了。
第一判断单元502,具体用于当第三判断单元511判断屏幕上存在与聚焦点匹配的目标点时,判断触摸操作的触摸点所处位置是否属于预设区域。
在图5~图8所描述的用户终端500中,在黑屏状态下,检测单元501检测针对屏幕的触摸操作,第一判断单元502判断触摸操作的触摸点所处位置是否属于预设区域,若是,第二判断单元503可以进一步判断触摸操作的持续时间是否大于预设时间,以及判断触摸操作的触摸力度是否属于预设力度范围之 内。当触摸操作的持续时间大于预设时间且触摸操作的触摸力度属于预设力度范围之内时,控制单元504可以控制屏幕由黑屏状态切换为亮屏状态。可见,通过本发明实施例,控制单元504可以根据用户的触摸操作的触摸信息(触摸位置,触摸事件以及触摸力度)来确定是否需要控制屏幕由黑屏状态切换为亮屏状态,而无需用户花较多时间查找电源按键以及多次按压电源按键,从而可以提高控制屏幕点亮的效率。
请参见图9,图9是本发明实施例公开的另一种用户终端的结构示意图。在图9所描述的用户终端中,该用户终端可以包括处理器901以及存储器902,其中,处理器901通过总线连接存储器902,其中,存储器902可以是高速RAM存储器,也可以是非不稳定的存储器(non-volatile memory),例如至少一个磁盘存储器。存储器902可选的还可以是至少一个位于远离前述处理器901的存储装置。而处理器901用于读取存储器902存储的应用程序执行下述操作:
在黑屏状态下,检测针对屏幕的触摸操作;
判断所述触摸操作的触摸点所处位置是否属于预设区域;
若是,则判断所述触摸操作的持续时间是否大于预设时间,以及判断所述触摸操作的触摸力度是否属于预设力度范围之内;
当所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态。
可选的,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,处理器901还用于读取存储器902存储的应用程序执行下述操作:
检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
若发生,则根据预存储的力度与亮度的对应关系,查询所述滑动操作的平均触摸力度对应的目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状 态。
可选的,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,处理器901还用于读取存储器902存储的应用程序执行下述操作:
检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
若发生,根据预存储的力度与亮度的对应关系,查询所述滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值;
当所述预设方向用于指示调高屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求和,并将求和后的亮度值作为第一目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述第一目标亮度值为屏幕亮度的亮屏状态。
可选的,处理器901还用于读取存储器902存储的应用程序执行下述操作:
当所述预设方向用于指示调低屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求差并取绝对值,将所述绝对值作为第二目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述第二目标亮度值为屏幕亮度的亮屏状态。
可选的,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,处理器901还用于读取存储器902存储的应用程序执行下述操作:
获取用户终端的当前电池电量;
根据预存储的电池电量与亮度的对应关系,查询所述当前电池电量对应的目标亮度值;
所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
可选的,所述在黑屏状态下,检测针对屏幕的触摸操作之后,以及所述判断所述触摸操作的触摸点所处位置是否属于预设区域之前,处理器901还用于读取存储器902存储的应用程序执行下述操作:
根据获取的用户眼球的活动信息,确定所述用户眼球的聚焦点;
判断所述屏幕上是否存在与所述聚焦点匹配的目标点;
若是,则执行所述判断所述触摸操作的触摸点所处位置是否属于预设区域的步骤。
需要说明的是,对于前述的各个方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本申请并不受所描述的动作顺序的限制,因为依据本申请,某一些步骤可以采用其他顺序或者同时进行。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和单元并不一定是本申请所必须的。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其他实施例的相关描述。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims (18)

  1. 一种控制用户终端的屏幕的方法,其特征在于,包括:
    在黑屏状态下,检测针对屏幕的触摸操作;
    判断所述触摸操作的触摸点所处位置是否属于预设区域;
    若是,则判断所述触摸操作的持续时间是否大于预设时间,以及判断所述触摸操作的触摸力度是否属于预设力度范围之内;
    当所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态。
  2. 根据权利要求1所述的方法,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
    检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    若发生,则根据预存储的力度与亮度的对应关系,查询所述滑动操作的平均触摸力度对应的目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  3. 根据权利要求1所述的方法,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
    检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    若发生,根据预存储的力度与亮度的对应关系,查询所述滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值;
    当所述预设方向用于指示调高屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求和,并将求和后的亮度值作为第一目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述第一目标亮度值为屏幕亮度的亮 屏状态。
  4. 根据权利要求3所述的方法,其特征在于,所述方法还包括:
    当所述预设方向用于指示调低屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求差并取绝对值,将所述绝对值作为第二目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述第二目标亮度值为屏幕亮度的亮屏状态。
  5. 根据权利要求1所述的方法,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述方法还包括:
    获取用户终端的当前电池电量;
    根据预存储的电池电量与亮度的对应关系,查询所述当前电池电量对应的目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  6. 根据权利要求1~5任一项所述的方法,其特征在于,所述在黑屏状态下,检测针对屏幕的触摸操作之后,以及所述判断所述触摸操作的触摸点所处位置是否属于预设区域之前,所述方法还包括:
    根据获取的用户眼球的活动信息,确定所述用户眼球的聚焦点;
    判断所述屏幕上是否存在与所述聚焦点匹配的目标点;
    若是,则执行所述判断所述触摸操作的触摸点所处位置是否属于预设区域的步骤。
  7. 一种用户终端,其特征在于,包括:
    检测单元,用于在黑屏状态下,检测针对屏幕的触摸操作;
    第一判断单元,用于判断所述触摸操作的触摸点所处位置是否属于预设区域;
    第二判断单元,用于当所述第一判断单元判断所述触摸操作的触摸点所处 位置属于预设区域时,判断所述触摸操作的持续时间是否大于预设时间,以及判断所述触摸操作的触摸力度是否属于预设力度范围之内;
    控制单元,用于当所述第二判断单元判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态。
  8. 根据权利要求7所述的用户终端,其特征在于,所述检测单元还用于在所述第二判断单元判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    所述用户终端还包括:
    第一查询单元,用于当所述检测单元检测所述屏幕上发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作时,根据预存储的力度与亮度的对应关系,查询所述滑动操作的平均触摸力度对应的目标亮度值;
    所述控制单元,具体用于控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  9. 根据权利要求7所述的用户终端,其特征在于,所述检测单元还用于在所述第二判断单元判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    所述用户终端还包括:
    第二查询单元,用于当所述检测单元检测所述屏幕上发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作时,根据预存储的力度与亮度的对应关系,查询所述滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值;
    第一确定单元,用于当所述预设方向用于指示调高屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求和,并将求和后的亮度值作为第一目标亮度值;
    所述控制单元,具体用于控制所述屏幕由黑屏状态切换为以所述第一目标亮度值为屏幕亮度的亮屏状态。
  10. 根据权利要求7所述的用户终端,其特征在于,所述第一确定单元还用于当所述预设方向用于指示调低屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求差并取绝对值,将所述绝对值作为第二目标亮度值;
    所述控制单元,具体用于控制所述屏幕由黑屏状态切换为以所述第二目标亮度值为屏幕亮度的亮屏状态。
  11. 根据权利要求7所述的用户终端,其特征在于,所述用户终端还包括:
    获取单元,用于在所述第二判断单元判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,获取用户终端的当前电池电量;
    第三查询单元,用于根据预存储的电池电量与亮度的对应关系,查询所述当前电池电量对应的目标亮度值;
    所述控制单元,具体用于控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  12. 根据权利要求7~11任一项所述的用户终端,其特征在于,所述用户终端还包括:
    第二确定单元,用于在所述检测单元在黑屏状态下,检测针对屏幕的触摸操作之后,以及所述第一判断单元判断所述触摸操作的触摸点所处位置是否属于预设区域之前,根据获取的用户眼球的活动信息,确定所述用户眼球的聚焦点;
    第三判断单元,用于判断所述屏幕上是否存在与所述聚焦点匹配的目标点;
    所述第一判断单元,具体用于当所述第三判断单元判断所述屏幕上存在与所述聚焦点匹配的目标点时,判断所述触摸操作的触摸点所处位置是否属于预设区域。
  13. 一种用户终端,其特征在于,包括:处理器以及存储器,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    在黑屏状态下,检测针对屏幕的触摸操作;
    判断所述触摸操作的触摸点所处位置是否属于预设区域;
    若是,则判断所述触摸操作的持续时间是否大于预设时间,以及判断所述触摸操作的触摸力度是否属于预设力度范围之内;
    当所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内时,控制所述屏幕由黑屏状态切换为亮屏状态。
  14. 根据权利要求13所述的用户终端,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述处理器还用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    若发生,则根据预存储的力度与亮度的对应关系,查询所述滑动操作的平均触摸力度对应的目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  15. 根据权利要求13所述的用户终端,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述处理器还用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    检测所述屏幕上是否发生以所述触摸点所处位置为起始位置向预设方向进行滑动的滑动操作;
    若发生,根据预存储的力度与亮度的对应关系,查询所述滑动操作中的最大触摸力度和最小触摸力度的差值对应的亮度值;
    当所述预设方向用于指示调高屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求和,并将求和后的亮度值作为第一目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述第一目标亮度值为屏幕亮度的亮屏状态。
  16. 根据权利要求13所述的用户终端,其特征在于,所述处理器还用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    当所述预设方向用于指示调低屏幕的亮度时,对所述屏幕预先设置的默认亮度值和所述亮度值进行求差并取绝对值,将所述绝对值作为第二目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述第二目标亮度值为屏幕亮度的亮屏状态。
  17. 根据权利要求13所述的用户终端,其特征在于,在判断所述触摸操作的持续时间大于所述预设时间且所述触摸操作的触摸力度属于所述预设力度范围之内之后,所述处理器还用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    获取用户终端的当前电池电量;
    根据预存储的电池电量与亮度的对应关系,查询所述当前电池电量对应的目标亮度值;
    所述控制所述屏幕由黑屏状态切换为亮屏状态包括:
    控制所述屏幕由黑屏状态切换为以所述目标亮度值为屏幕亮度的亮屏状态。
  18. 根据权利要求13~17任一项所述的用户终端,其特征在于,所述在黑屏状态下,检测针对屏幕的触摸操作之后,以及所述判断所述触摸操作的触摸点所处位置是否属于预设区域之前,所述处理器还用于调用所述存储器中存储的程序代码,用于执行以下步骤:
    根据获取的用户眼球的活动信息,确定所述用户眼球的聚焦点;
    判断所述屏幕上是否存在与所述聚焦点匹配的目标点;
    若是,则执行所述判断所述触摸操作的触摸点所处位置是否属于预设区域的步骤。
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