WO2021052181A1 - 显示屏幕控制方法、装置、电子设备和存储介质 - Google Patents

显示屏幕控制方法、装置、电子设备和存储介质 Download PDF

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Publication number
WO2021052181A1
WO2021052181A1 PCT/CN2020/113124 CN2020113124W WO2021052181A1 WO 2021052181 A1 WO2021052181 A1 WO 2021052181A1 CN 2020113124 W CN2020113124 W CN 2020113124W WO 2021052181 A1 WO2021052181 A1 WO 2021052181A1
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WIPO (PCT)
Prior art keywords
screen
proximity
ultrasonic
instruction
display
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PCT/CN2020/113124
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English (en)
French (fr)
Inventor
邱长平
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深圳市万普拉斯科技有限公司
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Publication of WO2021052181A1 publication Critical patent/WO2021052181A1/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
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72463User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions to restrict the functionality of the device

Definitions

  • This application relates to the technical field of mobile smart terminals, and in particular to a display screen control method, device, electronic equipment, and storage medium.
  • mobile smart terminals such as smart phones, tablets and other devices are widely used in people's lives, which greatly facilitates people's lives.
  • mobile smart terminals are equipped with a touch screen, and human-computer interaction can be performed through the touch screen.
  • the method of screen control in the mobile terminal is mainly to emit infrared rays through the infrared sensor, and calculate the distance to the obstruction according to the received infrared rays, and then control the on and off of the screen.
  • the screen when the face is close to the mobile phone, if the infrared sensor detects that the distance between the face and the screen reaches the screen-off distance threshold, the screen is off; if the infrared sensor detects that the distance between the face and the screen reaches the screen-off distance When the threshold is set, the screen lights up.
  • the present application provides a display screen control method, the method includes:
  • a display proximity function wake-up instruction is generated, the display proximity sensing data is received, and a second screen on/off control instruction is generated according to the received display proximity sensing data.
  • the present application also provides a display screen control device, which includes:
  • Brightness detection module used to obtain screen brightness parameters
  • the ultrasonic proximity wake-up module is configured to generate an ultrasonic proximity function wake-up instruction when it is recognized that the screen is in a bright state and voice call control parameters exist according to the screen brightness parameter, and the voice call control parameter is used to control the execution of a voice call;
  • Ultrasonic proximity module for receiving ultrasonic proximity sensing data, and generating a first screen on/off control command based on the received ultrasonic proximity sensing data
  • the display proximity module is used to generate the display proximity function wake-up instruction when the ultrasonic proximity function failure instruction is detected, receive the display proximity sensing data, and generate the second brightness according to the received display proximity sensing data Off-screen control instructions.
  • the present application also provides an electronic device, including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program:
  • a display proximity function wake-up instruction is generated, the display proximity sensing data is received, and a second screen on/off control instruction is generated according to the received display proximity sensing data.
  • This application also provides a computer-readable storage medium on which a computer program is stored, and when the computer program is executed by a processor, the following steps are implemented:
  • a display proximity function wake-up instruction is generated, the display proximity sensing data is received, and a second screen on/off control instruction is generated according to the received display proximity sensing data.
  • FIG. 1 is an internal structure diagram of a mobile terminal in an embodiment
  • FIG. 2 is a schematic flowchart of a display screen control method in an embodiment
  • FIG. 3 is a schematic flowchart of a display screen control method in another embodiment
  • Fig. 4 is a structural block diagram of a display screen control device in an embodiment.
  • the traditional screen control method relies on the infrared sensor to achieve.
  • the infrared sensor fails, the screen turns on and off and the screen proximity function cannot be used, which leads to the problem of poor stability of the proximity function of the mobile terminal display.
  • a mobile terminal is provided, and its internal structure is shown in FIG. 1.
  • the terminal includes a processor, a memory, and a display screen connected via a system bus.
  • the processor is used to provide computing and control capabilities.
  • the memory includes a non-volatile storage medium and internal memory.
  • the non-volatile storage medium stores an operating system and a computer program.
  • the internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage medium.
  • the computer program is executed by the processor to realize a display screen control method.
  • the display screen of the terminal may be a touch screen, such as a capacitive screen or an electronic screen.
  • FIG. 1 is only a block diagram of a part of the structure related to the solution of the present application, and does not constitute a limitation on the terminal to which the solution of the present application is applied.
  • the specific mobile terminal may include More or fewer parts than shown in the figure, or some parts are combined, or have a different arrangement of parts.
  • a display screen control method is provided. Taking the method applied to the mobile terminal in FIG. 1 as an example for description, the method includes the following steps:
  • Step 202 Obtain screen brightness parameters.
  • the screen brightness parameter is used to characterize the current state of the screen, and may specifically include the on-screen state and the off-screen state.
  • Step 204 When it is recognized that the screen is in a bright state and voice call control parameters exist according to the screen brightness parameter, an ultrasonic proximity function wake-up instruction is generated, and the voice call control parameter is used to control the execution of the voice call.
  • the voice call control parameters are issued by the voice call device of the mobile terminal.
  • the voice call device of the mobile terminal includes a microphone and a receiver.
  • the microphone is an energy conversion device that converts a sound signal into an electrical signal, that is, collects the voice of the mobile terminal side;
  • the earpiece is a transducer device that converts electrical signals into sound signals, that is, the electrical signals generated by talking with the other party on the mobile terminal side are converted into sound for playback.
  • the ultrasonic proximity function wake-up command is used to turn on the ultrasonic proximity function.
  • Step 206 Receive the ultrasonic proximity sensing data, and generate a first screen on/off control instruction based on the received ultrasonic proximity sensing data.
  • the ultrasonic proximity function can be specifically activated by turning on the ultrasonic sensor, transmitting ultrasonic signals through the ultrasonic sensor, and receiving the reflected ultrasonic signals through the ultrasonic sensor.
  • the intensity of the reflected ultrasonic signal is greater than the preset threshold, it is determined that the mobile terminal is in the blocking state and the control screen is in the off-screen state.
  • the intensity of the reflected ultrasonic signal is less than or equal to the preset threshold, it is determined that the mobile terminal is not in a shielded state, and the control screen is in a bright screen state.
  • Step 208 When an ultrasonic proximity function failure instruction is detected, a display proximity function wake-up instruction is generated, display proximity sensing data is received, and a second screen on/off control instruction is generated based on the received display proximity sensing data .
  • the state of the ultrasonic proximity function includes an effective state and a failure state.
  • the effective state means that the screen can be turned on and off by the ultrasonic proximity function
  • the failure state is that the screen cannot be turned on or off by the ultrasonic proximity function.
  • Enabling the display proximity function can be implemented by turning on a TP (Touch Pad, display) sensor, transmitting a signal through the TP sensor, and receiving the reflected signal through the TP sensor.
  • TP uch Pad, display
  • the intensity of the reflected signal is greater than the preset threshold, it is determined that the mobile terminal is in the blocking state and the control screen is in the off-screen state.
  • the intensity of the reflected signal is less than or equal to the preset threshold, it is determined that the mobile terminal is not in a blocking state, and the control screen is in a bright screen state.
  • the above display screen control method combines the ultrasonic proximity function and the display proximity function to control the screen on and off under the bright screen state.
  • the ultrasonic proximity function fails, the screen on and off is controlled by the display proximity function to ensure When the current state of the screen of the mobile terminal is the bright screen state, the stability of the screen control, and when the current state of the mobile terminal's screen is the bright screen state, turning on the ultrasonic proximity function can reduce the power consumption of the mobile terminal to turn on the proximity function.
  • the display screen control method further includes: when it is detected that there is no voice call control parameter, generating a display proximity function wake-up instruction; receiving display proximity sensing data, and according to the received display proximity sensing Data, generate a second on-off control command.
  • the absence of voice call control parameters is detected, it indicates that the state of the voice call device is off at this time. Since the screen is controlled by the ultrasonic proximity function when the handset is not working normally, the power consumption of the mobile terminal is compared Therefore, when it is detected that the state of the voice call device is off, the display proximity function is turned on, and the screen is turned on and off through the display proximity function to reduce energy consumption.
  • the display screen control method further includes: generating an ultrasonic proximity function wake-up command when detecting the presence of a display screen proximity function failure command and an ultrasonic proximity function valid command; receiving ultrasonic proximity sensor data, and according to the received ultrasonic proximity sensor data.
  • Ultrasonic proximity sensor data generates the first screen on/off control instruction. In the bright screen scene, when the display proximity function failure instruction is detected, the screen on and off control cannot be realized through the display proximity function. At this time, switch to the on and off control of the screen through the ultrasonic proximity function. In order to ensure that the proximity function of the mobile terminal can still be used when the display screen proximity function fails, and the user experience is improved.
  • the display screen control method further includes: acquiring real-time data in a preset register; when the real-time data is consistent with the preset value, generating an effective instruction for the display screen proximity function; when the real-time data is inconsistent with the preset value, Generate a display screen proximity function failure instruction.
  • the TP sensor corresponds to different modes under different working conditions, such as normal touch mode, black screen gesture mode, TP proximity mode, and the mode setting is realized by writing different values to a fixed register, so the method of determining whether the TP proximity function is invalid This can be achieved by obtaining the value of the preset register and judging whether the value matches the expected value.
  • the display screen control method further includes: acquiring the recording of the microphone in real time; when the recording includes the preset ultrasonic frequency spectrum, generating the effective instruction of the ultrasonic proximity function; when the recording does not include the preset ultrasonic frequency spectrum, generating the ultrasonic proximity Function failure instruction.
  • the display screen control method further includes: when it is recognized that the screen is in the off-screen state according to the screen brightness parameter, generating an infrared proximity function wake-up instruction; receiving infrared proximity sensor data, and according to the received infrared proximity sensor Data, generate the third on-off screen control instruction.
  • the infrared sensor In the full-screen technology, the infrared sensor is generally placed under the screen. In the bright screen scene, the infrared sensor is used to control the screen on and off. There will be a problem with the screen flash point, so in the off screen scene, the infrared sensor proximity function can be used to realize the on and off. Screen control. The infrared proximity sensor data is compared with the preset value to realize the on-off screen control.
  • the screen when the real-time distance between the screen and the obstruction is less than or equal to the preset off-screen distance, the screen is controlled to be off; When the real-time distance from the obstruction is greater than or equal to the preset bright screen distance, the screen is controlled to brighten.
  • a display screen control method includes the following steps: step 310, obtain screen brightness parameters; step 321, when it is recognized that the screen is in a bright state and there is voice according to the screen brightness parameters When calling control parameters, generate the ultrasonic proximity function wake-up command, and the voice call control parameters are used to control the execution of the voice call; step 323, receive the ultrasonic proximity sensor data, and generate the first on-off screen according to the received ultrasonic proximity sensor data Control instruction; step 325, when an ultrasonic proximity function failure instruction is detected, a display proximity function wake-up instruction is generated, the display proximity sensor data is received, and the second on/off is generated according to the received display proximity sensing data Screen control instruction; step 327, when the display proximity function failure instruction is detected, enter step 321 of generating an ultrasonic proximity function wake-up instruction; step 329, when it is detected that there is no voice call control parameter, generate the display proximity function wake-up Instruction; receiving display proximity sensing data, and generating a second screen on
  • the proximity function can be realized, and when the current state of the mobile terminal’s screen is the on-screen state, the ultrasonic proximity function is turned on first, which can reduce the mobile terminal’s opening proximity.
  • the power consumption of the function is the
  • a display screen control device including: a bright screen detection module 402, an ultrasonic proximity wake-up module 404, an ultrasonic proximity module 406, and a display screen proximity module 408.
  • the brightness detection module is used to obtain screen brightness parameters.
  • the ultrasonic proximity wake-up module is used to generate an ultrasonic proximity function wake-up instruction when it is recognized that the screen is in a bright state and voice call control parameters exist according to the screen brightness parameters.
  • the voice call control parameters are used to control the execution of a voice call.
  • the ultrasonic proximity module is used to receive ultrasonic proximity sensing data, and generate a first screen on/off control instruction according to the received ultrasonic proximity sensing data.
  • the display proximity module is used to generate the display proximity function wake-up instruction when the ultrasonic proximity function failure instruction is detected, receive the display proximity sensing data, and generate the second brightness according to the received display proximity sensing data Off-screen control instructions.
  • the display screen control device further includes: a proximity selection module, which is used to generate a display proximity function wake-up instruction when it is detected that there is no voice call control parameter; receive display proximity sensing data, and according to the received The display screen is close to the sensor data, and the second screen on/off control instruction is generated.
  • a proximity selection module which is used to generate a display proximity function wake-up instruction when it is detected that there is no voice call control parameter.
  • the display screen control device further includes a display screen proximity failure module, which is used to generate an ultrasonic proximity function wake-up command when detecting that the display screen proximity function failure command and the ultrasonic proximity function valid command exist; and receive the ultrasonic proximity sensor According to the received ultrasonic proximity sensor data, the first screen on/off control instruction is generated.
  • a display screen proximity failure module which is used to generate an ultrasonic proximity function wake-up command when detecting that the display screen proximity function failure command and the ultrasonic proximity function valid command exist; and receive the ultrasonic proximity sensor According to the received ultrasonic proximity sensor data, the first screen on/off control instruction is generated.
  • the display screen control device further includes a display screen proximity instruction generation module, which is used to obtain real-time data in the preset register; when the real-time data is consistent with the preset value, generate a display screen proximity function effective instruction; When the data is inconsistent with the preset value, an instruction to disable the proximity function of the display screen is generated.
  • a display screen proximity instruction generation module which is used to obtain real-time data in the preset register; when the real-time data is consistent with the preset value, generate a display screen proximity function effective instruction; When the data is inconsistent with the preset value, an instruction to disable the proximity function of the display screen is generated.
  • the display screen control device further includes an ultrasonic proximity command generation module, which is used to obtain the recording of the microphone in real time; when the recording includes the preset ultrasonic frequency spectrum, generate the effective command of the ultrasonic proximity function; when the recording does not include the preset When the ultrasonic spectrum is used, an instruction to disable the ultrasonic proximity function is generated.
  • an ultrasonic proximity command generation module which is used to obtain the recording of the microphone in real time; when the recording includes the preset ultrasonic frequency spectrum, generate the effective command of the ultrasonic proximity function; when the recording does not include the preset When the ultrasonic spectrum is used, an instruction to disable the ultrasonic proximity function is generated.
  • the display screen control device further includes a screen-off processing module, which is used to generate an infrared proximity function wake-up instruction when the screen is recognized as being in the off-screen state according to the screen brightness parameters; receive infrared proximity sensor data, and according to the received The received infrared proximity sensor data generates a third on-off screen control instruction.
  • a screen-off processing module which is used to generate an infrared proximity function wake-up instruction when the screen is recognized as being in the off-screen state according to the screen brightness parameters; receive infrared proximity sensor data, and according to the received The received infrared proximity sensor data generates a third on-off screen control instruction.
  • Each module in the above-mentioned display screen control device can be implemented in whole or in part by software, hardware, and a combination thereof.
  • the above-mentioned modules may be embedded in the form of hardware or independent of the processor in the computer equipment, or may be stored in the memory of the computer equipment in the form of software, so that the processor can call and execute the operations corresponding to the above-mentioned modules.
  • an electronic device including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program: acquiring screen brightness parameters, and when the screen is identified according to the screen brightness parameters When the screen is on and there are voice call control parameters, the ultrasonic proximity function wake-up command is generated, and the voice call control parameters are used to control the execution of the voice call; receive ultrasonic proximity sensor data, and generate according to the received ultrasonic proximity sensor data The first screen on/off control command; when the ultrasonic proximity function failure command is detected, the display proximity function wake-up command is generated, the display proximity sensing data is received, and the second display is generated based on the received display proximity sensing data On and off the screen control instructions.
  • an electronic device including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program: when it is detected that there is no voice call control parameter, a display is generated The screen proximity function wake-up command; receives the display screen proximity sensor data, and generates a second screen on/off control command according to the received display screen proximity sensor data.
  • an electronic device which includes a memory and a processor, the memory stores a computer program, and the processor implements the following steps when the computer program is executed: when it is detected that the display screen approaches the function failure instruction and the ultrasonic approach approaches When the function is valid, the ultrasonic proximity function wake-up command is generated; the ultrasonic proximity sensor data is received, and the first screen on/off control command is generated according to the received ultrasonic proximity sensor data.
  • an electronic device including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program: acquiring real-time data in a preset register; When the preset values are consistent, an effective instruction for the display proximity function is generated; when the real-time data is inconsistent with the preset value, an instruction for invalidation of the display proximity function is generated.
  • an electronic device including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when the computer program is executed: real-time acquisition of the recording of the microphone; when the recording includes a preset ultrasound When the frequency spectrum is used, an effective instruction for the ultrasonic approach function is generated; when the preset ultrasonic frequency spectrum is not included in the recording, an instruction for invalidation of the ultrasonic approach function is generated.
  • an electronic device including a memory and a processor, the memory stores a computer program, and the processor implements the following steps when executing the computer program: when the screen is in an off-screen state identified according to the screen brightness parameter , Generate an infrared proximity function wake-up instruction; receive infrared proximity sensor data, and generate a third on-off screen control instruction according to the received infrared proximity sensor data.
  • a computer-readable storage medium on which a computer program is stored.
  • the following steps are implemented: acquiring screen brightness parameters, and when the screen is identified as bright screen according to the screen brightness parameters
  • the ultrasonic proximity function wake-up command is generated.
  • the voice call control parameters are used to control the execution of the voice call; the ultrasonic proximity sensor data is received, and the first light is generated according to the received ultrasonic proximity sensor data Turn off the screen control instruction; when the ultrasonic proximity function failure instruction is detected, the display proximity function wake-up instruction is generated, the display proximity sensor data is received, and the second on/off screen is generated according to the received display proximity sensing data Control instruction.
  • a computer-readable storage medium is provided, and a computer program is stored thereon.
  • the computer program is executed by a processor, the following steps are implemented: when it is detected that there is no voice call control parameter, the display screen proximity function is generated Wake-up instruction; receiving display proximity sensor data, and according to the received display proximity sensing data, generate a second screen on/off control instruction.
  • a computer-readable storage medium is provided, and a computer program is stored thereon.
  • the computer program implements the following steps when executed by a processor: when it is detected that there is a display screen proximity function failure instruction and an ultrasonic proximity function effective instruction When the time, the ultrasonic proximity function wake-up instruction is generated; the ultrasonic proximity sensing data is received, and the first on-off screen control instruction is generated according to the received ultrasonic proximity sensing data.
  • a computer-readable storage medium is provided, and a computer program is stored thereon.
  • the computer program is executed by a processor, the following steps are implemented: obtaining real-time data in a preset register; When they are consistent, an effective instruction for the display proximity function is generated; when the real-time data is inconsistent with the preset value, a failure instruction for the display proximity function is generated.
  • a computer-readable storage medium on which a computer program is stored.
  • the computer program is executed by a processor, the following steps are implemented: real-time acquisition of the recording of the microphone; when the recording includes a preset ultrasonic frequency spectrum, Generate a valid instruction for the ultrasonic proximity function; when the preset ultrasonic frequency spectrum is not included in the recording, generate a failure instruction for the ultrasonic proximity function.
  • a computer-readable storage medium is provided, and a computer program is stored thereon.
  • the computer program is executed by a processor, the following steps are implemented: when the screen is in an off state according to the screen brightness parameter, it generates infrared Proximity function wake-up command; receiving infrared proximity sensor data, and according to the received infrared proximity sensor data, generate a third screen on/off control command.
  • Non-volatile memory may include read only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory.
  • Volatile memory may include random access memory (RAM) or external cache memory.
  • RAM is available in many forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous chain Channel (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

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  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Environmental & Geological Engineering (AREA)
  • Telephone Function (AREA)
  • Controls And Circuits For Display Device (AREA)

Abstract

本申请涉及移动智能终端技术领域,特别是涉及一种显示屏幕控制方法、装置、电子设备和存储介质。一个实施例中的方法包括:获取屏幕亮度参数,当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。

Description

显示屏幕控制方法、装置、电子设备和存储介质
本申请要求于2019年9月16日提交中国专利局的申请号为201910871391.7、名称为“显示屏幕控制方法、装置、电子设备和存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及移动智能终端技术领域,特别是涉及一种显示屏幕控制方法、装置、电子设备和存储介质。
背景技术
随着科学技术的发展,移动智能终端比如智能手机、平板等设备广泛应用于人们的生活中,极大地方便了人们的生活。一般而言,移动智能终端设有触控屏,可以通过触控屏进行人机交互。移动终端中屏幕控制的方式主要是通过红外传感器发射红外线,根据接收到的红外线计算与遮挡物之间的距离,进而控制屏幕的亮灭。
比如,当人脸靠近手机时,若红外传感器检测到人脸与屏幕之间的距离达到灭屏距离阈值时,屏幕灭屏;若红外传感器检测到人脸与屏幕之间的距离达到亮屏距离阈值时,屏幕亮屏。
发明内容
本申请提供一种显示屏幕控制方法,所述方法包括:
获取屏幕亮度参数;
当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
本申请还提供一种显示屏幕控制装置,所述装置包括:
亮度检测模块,用于获取屏幕亮度参数;
超声波接近唤醒模块,用于当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
超声波接近模块,用于接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
显示屏接近模块,用于当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
本申请还提供一种电子设备,包括存储器和处理器,所述存储器存储有计算机程序,所述处理器执行所述计算机程序时实现以下步骤:
获取屏幕亮度参数;
当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
本申请还提供一种计算机可读存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现以下步骤:
获取屏幕亮度参数;
当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
本发明的一个或多个实施例的细节在下面的附图和描述中提出。本发明的其它特征、目的和优点将从说明书、附图以及权利要求书变得明显。
附图说明
为了更好地描述和说明本申请的实施例,可参考一幅或多幅附图,但用于描述附图的附加细节或示例不应当被认为是对本申请的发明创造、目前所描述的实施例或优选方式中任何一者的范围的限制。
图1为一个实施例中移动终端的内部结构图;
图2为一个实施例中显示屏幕控制方法的流程示意图;
图3为另一个实施例中显示屏幕控制方法的流程示意图;
图4为一个实施例中显示屏幕控制装置的结构框图。
具体实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
传统的屏幕控制方式依赖红外传感器实现,当红外传感器发生故障时,屏幕亮灭屏接近功能无法使用,这样导致移动终端显示屏的接近功能存在稳定性差的问题。
在一个实施例中,提供了一种移动终端,其内部结构图如图1所示。该终端包括通过系统总线连接的处理器、存储器和显示屏。其中,该处理器用于提供计算和控制能力。该存储器包括非易失性存储介质、内存储器。该非易失性存储介质存储有操作系统和计算机程序。该内存储器为非易失性存储介质中的操作系统和计算机程序的运行提供环境。该计算机程序被处理器执行时以实现一种显示屏幕控制方法。该终端的显示屏可以是触摸显示屏,比如电容屏或电子屏。
本领域技术人员可以理解,图1中示出的结构,仅仅是与本申请方案相关的部分结构的框图,并不构成对本申请方案所应用于其上的终端的限定,具体的移动终端可以包括比图中所示更多或更少的部件,或者组合某些部件,或者具有不同的部件布置。
在一个实施例中,如图2所示,提供了一种显示屏幕控制方法,以该方法应用于图1中的移动终端为例进行说明,包括以下步骤:
步骤202,获取屏幕亮度参数。
屏幕亮度参数用于表征屏幕的当前状态,具体可以包括亮屏状态和灭屏状态。
步骤204,当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话。
具体地,语音通话控制参数由移动终端的语音通话设备发出,移动终端的语音通话设备包括麦克风和听筒,麦克风是将声音信号转换为电信号的能量转换器件,即采集移动终端侧说话的声音;听筒是把电信号转变为声音信号的换能器件,即将与移动终端侧进行通话的对方说话产生的电信号转换成声音进行播放。其中,超声波接近功能唤醒指令用于开启超声波接近功能。
步骤206,接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
开启超声波接近功能具体可以通过开启超声波传感器,通过超声波传感器发射超声波信号,并通过超声波传感器接收反射回来的超声波信号。当反射回来的超声波信号强度大于预设阈值时,判定移动终端处于遮挡状态,控制屏幕处于 灭屏状态。当反射回来的超声波信号强度小于或等于预设阈值时,判定移动终端不处于遮挡状态,控制屏幕处于亮屏状态。
步骤208,当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
超声波接近功能的状态包括有效状态和失效状态,有效状态是指可以通过超声波接近功能实现对屏幕的亮灭屏控制,失效状态是指无法通过超声波接近功能实现对屏幕的亮灭屏控制。开启显示屏接近功能具体可以通过开启TP(Touch Pad,显示屏)传感器,通过TP传感器发射信号,并通过TP传感器接收反射回来的信号。当反射回来的信号强度大于预设阈值时,判定移动终端处于遮挡状态,控制屏幕处于灭屏状态。当反射回来的信号强度小于或等于预设阈值时,判定移动终端不处于遮挡状态,控制屏幕处于亮屏状态。
上述显示屏幕控制方法,在亮屏状态下结合超声波接近功能和显示屏接近功能对屏幕进行亮灭屏控制,当超声波接近功能失效时,通过显示屏接近功能对屏幕进行亮灭屏控制,以保证移动终端的屏幕的当前状态为亮屏状态时下,屏幕控制的稳定性,且在移动终端的屏幕的当前状态为亮屏状态时开启超声波接近功能,可以降低移动终端开启接近功能的功耗。
在一个实施例中,显示屏幕控制方法还包括:当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。在检测到不存在语音通话控制参数时,表征此时语音通话设备的状态为关闭状态,由于在听筒没有正常工作的情况下,通过超声波接近功能进行灭屏控制,移动终端所产生的功耗比较大,所以在检测到语音通话设备的状态为关闭状态时,开启显示屏接近功能,通过显示屏接近功能对屏幕进行亮灭屏控制,以降低能耗。
在一个实施例中,显示屏幕控制方法还包括:当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。在亮屏场景下,当检测到存在显示屏接近功能失效指令时,即无法通过显 示屏接近功能实现对屏幕的亮灭屏控制,此时切换至通过超声波接近功能对屏幕进行亮灭屏控制,以保证在显示屏接近功能故障时,移动终端的接近功能仍然可以使用,提高用户体验度。
在一个实施例中,显示屏幕控制方法还包括:获取预设寄存器中的实时数据;当实时数据与预设值一致时,生成显示屏接近功能有效指令;当实时数据与预设值不一致时,生成显示屏接近功能失效指令。TP传感器在不同的工作状态下对应不同的模式,比如正常触摸模式、黑屏手势模式、TP接近模式,并且通过写不同的值至固定的寄存器实现模式的设置,所以TP接近功能是否失效的判定方法可以通过获取预设寄存器的值,通过判断该值与预期值是否相符来实现。
在一个实施例中,显示屏幕控制方法还包括:实时获取麦克风的录音;当录音中包括预设超声波频谱时,生成超声波接近功能有效指令;当录音中不包括预设超声波频谱时,生成超声波接近功能失效指令。可以通过录取麦克风的声音,然后调用接口去分析录音的频谱中是否包括超声波传感器发出的超声波频谱,以判定超声波接近功能是否失效。
在一个实施例中,显示屏幕控制方法还包括:当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。由于全面屏技术中,红外传感器一般放置在屏幕的下面,亮屏场景使用红外传感器实现亮灭屏控制,会存在屏幕闪点的问题,所以在灭屏场景下通过红外传感接近功能实现亮灭屏控制。通过红外接近传感数据与预设值进行比较,以实现亮灭屏控制,具体地,当屏幕与遮挡物之间的实时距离小于或等于预设灭屏距离时,控制屏幕灭屏;当屏幕与遮挡物之间的实时距离大于或等于预设亮屏距离时,控制屏幕亮屏。
在一个实施例中,一种显示屏幕控制方法,如图3所示,包括如下步骤:步骤310,获取屏幕亮度参数;步骤321,当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话;步骤323,接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;步骤325,当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接 近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令;步骤327,当检测到存在显示屏接近功能失效指令时,进入生成超声波接近功能唤醒指令的步骤321;步骤329,当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令;步骤330,当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令,接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。这样不管移动终端的屏幕的当前状态是亮屏状态还是灭屏状态,都可以实现接近功能,且在移动终端的屏幕的当前状态为亮屏状态时优先开启超声波接近功能,可以降低移动终端开启接近功能的功耗。
应该理解的是,虽然图2-3的流程图中的各个步骤按照箭头的指示依次显示,但是这些步骤并不是必然按照箭头指示的顺序依次执行。除非本文中有明确的说明,这些步骤的执行并没有严格的顺序限制,这些步骤可以以其它的顺序执行。而且,图2-3中的至少一部分步骤可以包括多个子步骤或者多个阶段,这些子步骤或者阶段并不必然是在同一时刻执行完成,而是可以在不同的时刻执行,这些子步骤或者阶段的执行顺序也不必然是依次进行,而是可以与其它步骤或者其它步骤的子步骤或者阶段的至少一部分轮流或者交替地执行。
在一个实施例中,如图4所示,提供了一种显示屏幕控制装置,包括:亮屏检测模块402、超声波接近唤醒模块404、超声波接近模块406和显示屏接近模块408。亮度检测模块,用于获取屏幕亮度参数。超声波接近唤醒模块,用于当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话。超声波接近模块,用于接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。显示屏接近模块,用于当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,显示屏幕控制装置还包括:接近选择模块,用于当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传 感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,显示屏幕控制装置还包括显示屏接近失效模块,用于当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
在一个实施例中,显示屏幕控制装置还包括显示屏接近指令生成模块,用于获取预设寄存器中的实时数据;当实时数据与预设值一致时,生成显示屏接近功能有效指令;当实时数据与预设值不一致时,生成显示屏接近功能失效指令。
在一个实施例中,显示屏幕控制装置还包括超声波接近指令生成模块,用于实时获取麦克风的录音;当录音中包括预设超声波频谱时,生成超声波接近功能有效指令;当录音中不包括预设超声波频谱时,生成超声波接近功能失效指令。
在一个实施例中,显示屏幕控制装置还包括灭屏处理模块,用于当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。
关于显示屏幕控制装置的具体限定可以参见上文中对于显示屏幕控制方法的限定,在此不再赘述。上述显示屏幕控制装置中的各个模块可全部或部分通过软件、硬件及其组合来实现。上述各模块可以硬件形式内嵌于或独立于计算机设备中的处理器中,也可以以软件形式存储于计算机设备中的存储器中,以便于处理器调用执行以上各个模块对应的操作。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存储有计算机程序,该处理器执行计算机程序时实现以下步骤:获取屏幕亮度参数,当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存 储有计算机程序,该处理器执行计算机程序时实现以下步骤:当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存储有计算机程序,该处理器执行计算机程序时实现以下步骤:当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存储有计算机程序,该处理器执行计算机程序时实现以下步骤:获取预设寄存器中的实时数据;当实时数据与预设值一致时,生成显示屏接近功能有效指令;当实时数据与预设值不一致时,生成显示屏接近功能失效指令。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存储有计算机程序,该处理器执行计算机程序时实现以下步骤:实时获取麦克风的录音;当录音中包括预设超声波频谱时,生成超声波接近功能有效指令;当录音中不包括预设超声波频谱时,生成超声波接近功能失效指令。
在一个实施例中,提供了一种电子设备,包括存储器和处理器,该存储器存储有计算机程序,该处理器执行计算机程序时实现以下步骤:当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现以下步骤:获取屏幕亮度参数,当根据屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,语音通话控制参数用于控制执行语音通话;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序, 计算机程序被处理器执行时实现以下步骤:当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现以下步骤:当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现以下步骤:获取预设寄存器中的实时数据;当实时数据与预设值一致时,生成显示屏接近功能有效指令;当实时数据与预设值不一致时,生成显示屏接近功能失效指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现以下步骤:实时获取麦克风的录音;当录音中包括预设超声波频谱时,生成超声波接近功能有效指令;当录音中不包括预设超声波频谱时,生成超声波接近功能失效指令。
在一个实施例中,提供了一种计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现以下步骤:当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。
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,所述的计算机程序可存储于一非易失性计算机可读取存储介质中,该计算机程序在执行时,可包括如上述各方法的实施例的流程。其中,本申请所提供的各实施例中所使用的对存储器、存储、数据库或其它介质的任何引用,均可包括非易失性和/或易失性存储器。非易失性存储器可包括只读存储器(ROM)、可编程ROM(PROM)、电可编程ROM(EPROM)、电可擦除可编程ROM(EEPROM)或闪存。易失性存储器可包括随机存取存储器(RAM)或者外部高速缓冲存储器。作为说明而非局限,RAM以多种形式可得,诸如静态RAM(SRAM)、动态RAM(DRAM)、同步DRAM (SDRAM)、双数据率SDRAM(DDRSDRAM)、增强型SDRAM(ESDRAM)、同步链路(Synchlink)DRAM(SLDRAM)、存储器总线(Rambus)直接RAM(RDRAM)、直接存储器总线动态RAM(DRDRAM)、以及存储器总线动态RAM(RDRAM)等。
以上实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (14)

  1. 一种显示屏幕控制方法,所述方法包括:
    获取屏幕亮度参数;
    当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
    接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
    当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
  2. 根据权利要求1所述的方法,其特征在于,还包括:
    当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;
    接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
  3. 根据权利要求2所述的方法,其特征在于,还包括:
    当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;
    接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
  4. 根据权利要求3所述的方法,其特征在于,还包括:
    获取预设寄存器中的实时数据;
    当所述实时数据与预设值一致时,生成显示屏接近功能有效指令;
    当所述实时数据与所述预设值不一致时,生成显示屏接近功能失效指令。
  5. 根据权利要求1所述的方法,其特征在于,还包括:
    实时获取麦克风的录音;
    当所述录音中包括预设超声波频谱时,生成超声波接近功能有效指令;
    当所述录音中不包括所述预设超声波频谱时,生成超声波接近功能失效指令。
  6. 根据权利要求1所述的方法,其特征在于,还包括:
    当根据所述屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;
    接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。
  7. 一种显示屏幕控制装置,其特征在于,所述装置包括:
    亮度检测模块,用于获取屏幕亮度参数;
    超声波接近唤醒模块,用于当根据所述屏幕亮度参数识别到屏幕处于亮屏状态、且存在语音通话控制参数时,生成超声波接近功能唤醒指令,所述语音通话控制参数用于控制执行语音通话;
    超声波接近模块,用于接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令;
    显示屏接近模块,用于当检测到存在超声波接近功能失效指令时,生成显示屏接近功能唤醒指令,接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
  8. 根据权利要求7所述的装置,其特征在于,还包括:接近选择模块,用于当检测到不存在语音通话控制参数时,生成显示屏接近功能唤醒指令;接收显示屏接近传感数据,并根据接收到的显示屏接近传感数据,生成第二亮灭屏控制指令。
  9. 根据权利要求8所述的装置,其特征在于,还包括显示屏接近失效模块,用于当检测到存在显示屏接近功能失效指令与超声波接近功能有效指令时,生成超声波接近功能唤醒指令;接收超声波接近传感数据,并根据接收到的超声波接近传感数据,生成第一亮灭屏控制指令。
  10. 根据权利要求9所述的装置,其特征在于,还包括显示屏接近指令生成模块,用于获取预设寄存器中的实时数据;当实时数据与预设值一致时,生成显示屏接近功能有效指令;当实时数据与预设值不一致时,生成显示屏接近功能失 效指令。
  11. 根据权利要求7所述的装置,其特征在于,还包括超声波接近指令生成模块,用于实时获取麦克风的录音;当录音中包括预设超声波频谱时,生成超声波接近功能有效指令;当录音中不包括预设超声波频谱时,生成超声波接近功能失效指令。
  12. 根据权利要求7所述的装置,其特征在于,还包括灭屏处理模块,用于当根据屏幕亮度参数识别到屏幕处于灭屏状态时,生成红外接近功能唤醒指令;接收红外接近传感数据,并根据接收到的红外接近传感数据,生成第三亮灭屏控制指令。
  13. 一种电子设备,包括存储器和处理器,所述存储器存储有计算机程序,其特征在于,所述处理器执行所述计算机程序时实现权利要求1至6中任一项所述方法的步骤。
  14. 一种计算机可读存储介质,其上存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现权利要求1至6中任一项所述的方法的步骤。
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