WO2017088549A1 - Implementation method and system for reserving battery power of smart terminal - Google Patents

Implementation method and system for reserving battery power of smart terminal Download PDF

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Publication number
WO2017088549A1
WO2017088549A1 PCT/CN2016/098029 CN2016098029W WO2017088549A1 WO 2017088549 A1 WO2017088549 A1 WO 2017088549A1 CN 2016098029 W CN2016098029 W CN 2016098029W WO 2017088549 A1 WO2017088549 A1 WO 2017088549A1
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WIPO (PCT)
Prior art keywords
battery power
smart terminal
power
mode
power threshold
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PCT/CN2016/098029
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French (fr)
Chinese (zh)
Inventor
谢祖国
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Tcl移动通信科技(宁波)有限公司
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Publication of WO2017088549A1 publication Critical patent/WO2017088549A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M19/00Current supply arrangements for telephone systems
    • H04M19/08Current supply arrangements for telephone systems with current supply sources at the substations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • H04M1/73Battery saving arrangements
    • 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

Definitions

  • the present invention relates to the field of intelligent terminal technologies, and in particular, to a method and system for realizing battery power reserved for a smart terminal.
  • Smartphones At present, smart phones are more and more accepted by the public, but the battery life problem has not been qualitatively improved. Smartphones generally need to be charged one day, that is, the battery life problem in one day is very serious, such as:
  • the power is not enough to support the power-on again. If the user does not carry the mobile power charging or has no backup battery, then the mobile phone is completely unusable (for example, the telephone cannot be connected, which may affect the user's emergency telephone contact). This is true for almost every smartphone.
  • the present invention aims to provide a method and system for realizing the battery power of a smart terminal, which aims to solve the problem that the smart terminal in the prior art can only continue if the battery is not charged or replaced when the battery is low. Power consumption, unable to intelligently reserve part of the power, used for emergency call defects.
  • the invention provides a method for realizing the battery power of the smart terminal, wherein the method comprises the following steps:
  • the smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
  • the remaining current battery power is used as the reserved power
  • the reserved power it automatically restarts and enters the eco mode, or automatically shuts down, wherein the eco mode is a system native security mode that disables the third party application.
  • the smart terminal before the smart terminal detects the battery power according to a specified period, the smart terminal includes:
  • the intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • the system automatically restarts and enters an environmental mode in which the non-system native process is shut down, or automatically shuts down, including:
  • the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
  • the smart terminal automatically restarts and enters the eco mode after restarting
  • the smart terminal automatically shuts down.
  • the smart terminal automatically restarts, and after restarting, enters an eco mode in which the non-system native process is closed, and further includes: when the smart terminal detects that the current battery power is less than the When the power threshold changes to be greater than the power threshold or when the charger is detected, the environmental mode is exited.
  • the brightness of the display screen is adjusted to a specified brightness
  • the lock screen time is adjusted to a specified time
  • the ringing prompt is turned on
  • the data connection, WiFi, Bluetooth, GPS service, NFC, and vibration prompt are turned off.
  • the invention also provides a method for realizing the battery power of the smart terminal, wherein the method comprises the following steps:
  • the smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
  • the current battery power is less than the power threshold, it will automatically restart and enter the environmental mode that shuts down the non-system native process, or automatically shut down.
  • the smart terminal before the smart terminal detects the battery power according to a specified period, the smart terminal includes:
  • the intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • the system automatically restarts and enters an environmental mode in which the non-system native process is shut down, or automatically shuts down, including:
  • the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
  • the smart terminal automatically restarts, and after the restart, enters the eco mode in which the non-system native process is closed;
  • the smart terminal automatically shuts down.
  • the method for realizing the battery power of the smart terminal wherein when the option is to enter the eco mode, the smart terminal automatically restarts, and after the restart, enters an environmental mode in which the non-system native process is closed, and includes: when the smart When the terminal detects that the current battery power changes from being smaller than the power threshold to be greater than the power threshold or detects that the charger is connected, the terminal exits the environment mode.
  • the method for realizing the battery power of the smart terminal is reserved, wherein when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection and the WiFi are closed.
  • Bluetooth, GPS service, NFC and vibrating alert is reserved, wherein
  • the invention also provides an implementation system for reserving battery power of a smart terminal, comprising:
  • the power detecting and determining module is configured to detect, by the smart terminal, the battery power according to a specified period, and determine whether the current battery power is less than a preset power threshold;
  • the control module is configured to automatically restart and enter an environmental mode in which the non-system native process is turned off, or automatically shut down if the current battery power is less than the power threshold.
  • the method further includes:
  • the setting module is configured to receive an operation instruction of the user by the smart terminal, set a power threshold, and set an option to enter an eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • control module specifically includes:
  • the selection determining unit is configured to: if the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
  • the eco mode startup unit is configured to automatically restart the smart terminal when the option is to enter the eco mode, and enter the eco mode that shuts down the non-system native process after the restart;
  • the automatic shutdown unit is used to automatically shut down the intelligent terminal when the option is automatic shutdown.
  • the eco mode startup unit is further configured to exit the eco mode when the smart terminal detects that the current battery power changes from less than the power threshold to be greater than the power threshold or detects a charger access.
  • the brightness of the display screen is adjusted to a specified brightness
  • the lock screen time is adjusted to a specified time
  • the ringing prompt is turned on
  • the data connection, WiFi, Bluetooth, GPS service, NFC, and vibration prompt are turned off. Wait.
  • the invention provides a method and a system for realizing the battery power of the smart terminal.
  • the method includes: the smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold; if the current battery power is less than When the power threshold is reached, it automatically restarts and enters an environmental mode in which the non-system native process is turned off, or automatically shuts down.
  • the invention realizes that when the battery level of the intelligent terminal is lower than the power threshold, if the battery cannot be charged or replaced, the system automatically restarts and enters the environmental protection mode in which the non-system native process is turned off, or automatically shuts down, to ensure that the smart terminal reserves a certain amount of power. For users to use in emergency communication, it is convenient for users.
  • FIG. 1 is a flowchart of a preferred embodiment of a method for implementing battery power reserved for a smart terminal according to the present invention.
  • FIG. 2 is a structural block diagram of a preferred embodiment of a system for implementing battery power reserved for a smart terminal according to the present invention.
  • the present invention provides a method and system for realizing the battery power of the smart terminal.
  • the present invention will be further described in detail below. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
  • FIG. 1 is a flowchart of a preferred embodiment of a method for implementing battery power reserved for a smart terminal according to the present invention. As shown in Figure 1, it includes the following steps:
  • Step S100 The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold.
  • the smart terminal needs to periodically detect the battery power, and compare the detected current battery power with the power threshold to determine whether the current battery power is less than the power threshold. When the current battery power is less than the power threshold, the remaining battery power is used as the reserved power for the user to use for emergency communication.
  • Step S200 If the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is turned off, or automatically shuts down.
  • step S200 when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection, WiFi, Bluetooth, GPS service, NFC, and Vibration tips, etc., to ensure maximum power savings.
  • the brightness of the display screen when the brightness of the display screen is adjusted to the specified brightness, the brightness of the display screen is adjusted to 10% of the maximum brightness of the display screen of the smart terminal; when the lock screen time is adjusted to the specified time, the lock screen time is shortened from the current value to the current value. 15s (the minimum lock screen time for most smart terminals is set at 10-15s).
  • the above code only refers to the code of the core modules such as Zygote and ActivityManagerNative.
  • the code of other modules is not provided.
  • the smart phone As an example to illustrate, in the smart phone, RF, baseband, AP (Application The Processor, which is the application processor, occupies 45%, 25%, and 30% of the power consumption, respectively. Because the phone function of the mobile phone is a basic function, the power consumption of the radio frequency and the baseband part does not consider how to save power. The present invention mainly considers how to reduce the power consumption of the AP, that is, how to minimize the AP when the smart terminal enters the environmental protection mode. Power consumption.
  • the application can get the PARTIAL_WAKE_LOCK lock, which allows the screen to be turned off, but will keep the CPU running the specified process all the time. This lock will prevent the CPU from entering deep sleep mode (deep Sleep), bringing a lot of background power consumption.
  • the data connection is a "long connection slow heartbeat".
  • the application In order to maintain the heartbeat, the application must periodically wake up the CPU once and use the network once. This power consumption is also considerable. If there are many such applications, the power consumption will be multiplied, and such applications are generally third-party applications.
  • Some applications monitor a large number of unrelated system events such as network switching, signal changes, battery changes, etc. Once the event is triggered, they are frequently woken up and executed, and the power consumption of this application is also considerable.
  • the method further includes:
  • Step S10 The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • the power threshold may be set.
  • the power threshold is set to 10-15% of the total battery power in the case of full power.
  • it can also set an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • the option to enter the eco mode is checked, if the current battery charge is less than the power threshold, it will automatically restart and enter the eco mode of the non-system native process; when the auto power off option is selected, When the current battery level is less than the power threshold, it will automatically shut down.
  • the automatic reset mode is entered into the eco mode, or the automatic shutdown is performed to automatically reserve the power, thereby avoiding the complete battery power. Exhausted and unable to boot emergency communication again.
  • step S200 specifically includes:
  • Step S201 If the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
  • Step S202 When the selected item is in the eco mode, the smart terminal automatically restarts, and after restarting, enters an environmental mode in which the non-system native process is closed;
  • Step S203 When the option is automatic shutdown, the smart terminal automatically shuts down.
  • the step S202 further includes: when the smart terminal detects that the current battery power is changed from being less than the power threshold to being greater than the power threshold or detecting the charger access, exiting the environment mode.
  • the environmental mode will be exited and the mode will be restored until the mode is not switched to the eco mode, so that the user can open various non-system natives again. Process use.
  • the smart terminal switches to the super power saving mode, even if it is charged, it cannot be intelligently exited from the super power saving mode, and the effect of automatic switching is more, and the user does not need to manually switch, which is convenient for the user. Regardless of whether the battery is below or above the threshold, the user can manually force the environmental mode to be turned off/out, thereby ensuring the user's own free use of the phone function.
  • the present invention further provides an implementation system for reserving battery power of a smart terminal.
  • FIG. 2 is a structural block diagram of a preferred embodiment of a system for implementing battery power reserved for a smart terminal according to the present invention. As shown in Figure 2, it includes:
  • the power detection determining module 100 is configured to detect, by the smart terminal, the battery power according to a specified period, and determine whether the current battery power is less than a preset power threshold;
  • the control module 200 is configured to automatically restart and enter an environmental protection mode in which the non-system native process is turned off, or automatically shut down if the current battery power is less than the power threshold.
  • the method further includes:
  • the setting module is configured to receive an operation instruction of the user by the smart terminal, set a power threshold, and set an option to enter an eco mode or automatically shut down if the current battery power is lower than the power threshold.
  • control module 200 specifically includes:
  • the selection determining unit is configured to: if the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
  • the eco mode startup unit is configured to automatically restart the smart terminal when the option is to enter the eco mode, and enter the eco mode that shuts down the non-system native process after the restart;
  • the automatic shutdown unit is used to automatically shut down the intelligent terminal when the option is automatic shutdown.
  • the brightness of the display screen is adjusted to a specified brightness
  • the lock screen time is adjusted to a specified time
  • the ringing prompt is turned on
  • the function is turned off.
  • the eco mode startup unit is further configured to: when the smart terminal detects that the current battery power is changed from being less than the power threshold to being greater than the power threshold or detecting When the charger is connected, the environmental mode is exited.
  • the present invention provides a method and system for realizing the battery power of a smart terminal, the method comprising: the smart terminal detecting the battery power according to a specified period, and determining whether the current battery power is less than a preset power threshold; If the current battery power is less than the power threshold, it will automatically restart and enter the environmental mode that shuts down the non-system native process, or automatically shut down.
  • the invention realizes that when the battery level of the intelligent terminal is lower than the power threshold, if the battery cannot be charged or replaced, the system automatically restarts and enters the environmental protection mode in which the non-system native process is turned off, or automatically shuts down, to ensure that the smart terminal reserves a certain amount of power. For users to use in emergency communication, it is convenient for users.

Abstract

Disclosed are an implementation method and device for reserving battery power of a smart terminal. The method comprises: a smart terminal detects battery power according to a specified cycle and determines whether the current battery power is less than a preset power threshold; and if the current battery power is less than the power threshold, then either automatically restarts and enters an economy mode in which non-system native processes are closed or automatically shuts off.

Description

一种预留智能终端电池电量的实现方法及系统 Method and system for realizing battery capacity of reserved intelligent terminal 技术领域Technical field
本发明涉及智能终端技术领域,尤其涉及的是一种预留智能终端电池电量的实现方法及系统。The present invention relates to the field of intelligent terminal technologies, and in particular, to a method and system for realizing battery power reserved for a smart terminal.
背景技术Background technique
目前,智能手机越来越被大众接受,但是电池的续航问题始终没有出现质的提升。智能手机一般均需要一天一充,即一天内的续航问题非常严峻,比如:At present, smart phones are more and more accepted by the public, but the battery life problem has not been qualitatively improved. Smartphones generally need to be charged one day, that is, the battery life problem in one day is very serious, such as:
(1)在运行多个应用、频繁访问数据网络情况下,当天就会电量耗尽并关机;(1) In the case of running multiple applications and frequently accessing the data network, the power will be exhausted and shut down on the same day;
(2)用户在玩手机游戏或者看视频等过程中,如果忘记了低电量提醒,可能就会电量耗尽并关机。(2) If the user forgets the low battery reminder during the process of playing mobile games or watching videos, the user may run out of power and shut down.
而且关机后电量已经不足以支持再次开机,若用户没有携带移动电源充电或者没有备用电池,那么这个手机完全没法使用(比如没法接打电话,可能影响用户的紧急电话联系)。几乎每台智能手机均为如此。Moreover, after the power is turned off, the power is not enough to support the power-on again. If the user does not carry the mobile power charging or has no backup battery, then the mobile phone is completely unusable (for example, the telephone cannot be connected, which may affect the user's emergency telephone contact). This is true for almost every smartphone.
可见,现有的智能手机都没有预留应急电量这方面的“智能”,即市面的智能手机厂商,几乎都没有考虑“智能”地预留部分电量,用来应急通话。It can be seen that the existing smart phones do not reserve the "intelligence" of emergency power. That is, the smart phone manufacturers in the market almost never consider "smart" to reserve part of the power for emergency calls.
因此,现有技术还有待于改进和发展。Therefore, the prior art has yet to be improved and developed.
技术问题technical problem
鉴于上述现有技术的不足,本发明的目的在于提供一种预留智能终端电池电量的实现方法及系统,旨在解决现有技术中智能终端在电量低时若无充电或更换电池只能继续耗电,无法智能的预留部分电量,用来应急通话的缺陷。In view of the above-mentioned deficiencies of the prior art, the present invention aims to provide a method and system for realizing the battery power of a smart terminal, which aims to solve the problem that the smart terminal in the prior art can only continue if the battery is not charged or replaced when the battery is low. Power consumption, unable to intelligently reserve part of the power, used for emergency call defects.
技术解决方案Technical solution
本发明的技术方案如下:The technical solution of the present invention is as follows:
本发明提供了一种预留智能终端电池电量的实现方法,其中所述方法包括以下步骤:The invention provides a method for realizing the battery power of the smart terminal, wherein the method comprises the following steps:
智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
若当前电池电量小于所述电量阈值时,将所述剩余的当前电池电量作为预留电量;If the current battery power is less than the power threshold, the remaining current battery power is used as the reserved power;
根据所述预留电量,自动重启并进入环保模式,或自动关机,其中,所述环保模式为将第三方应用禁用的系统原生安全模式。According to the reserved power, it automatically restarts and enters the eco mode, or automatically shuts down, wherein the eco mode is a system native security mode that disables the third party application.
优选的,所述智能终端对电池电量按指定周期进行检测之前,包括:Preferably, before the smart terminal detects the battery power according to a specified period, the smart terminal includes:
智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
优选的,所述若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,具体包括:Preferably, if the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is shut down, or automatically shuts down, including:
若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;If the current battery power is less than the power threshold, it is determined that the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入环保模式;When the option is to enter the eco mode, the smart terminal automatically restarts and enters the eco mode after restarting;
当选择项为自动关机时,则智能终端自动关机。When the option is automatic shutdown, the smart terminal automatically shuts down.
优选的,所述当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式,还包括:当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。Preferably, when the option is to enter the eco mode, the smart terminal automatically restarts, and after restarting, enters an eco mode in which the non-system native process is closed, and further includes: when the smart terminal detects that the current battery power is less than the When the power threshold changes to be greater than the power threshold or when the charger is detected, the environmental mode is exited.
优选的,所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示。Preferably, when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection, WiFi, Bluetooth, GPS service, NFC, and vibration prompt are turned off. .
本发明还提供了一种预留智能终端电池电量的实现方法,其中所述方法包括以下步骤:The invention also provides a method for realizing the battery power of the smart terminal, wherein the method comprises the following steps:
智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。If the current battery power is less than the power threshold, it will automatically restart and enter the environmental mode that shuts down the non-system native process, or automatically shut down.
优选的,所述智能终端对电池电量按指定周期进行检测之前,包括:Preferably, before the smart terminal detects the battery power according to a specified period, the smart terminal includes:
智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
优选的,所述若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,具体包括:Preferably, if the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is shut down, or automatically shuts down, including:
若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;If the current battery power is less than the power threshold, it is determined that the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;When the option is to enter the eco mode, the smart terminal automatically restarts, and after the restart, enters the eco mode in which the non-system native process is closed;
当选择项为自动关机时,则智能终端自动关机。When the option is automatic shutdown, the smart terminal automatically shuts down.
所述预留智能终端电池电量的实现方法,其中所述当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式,还包括:当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。The method for realizing the battery power of the smart terminal, wherein when the option is to enter the eco mode, the smart terminal automatically restarts, and after the restart, enters an environmental mode in which the non-system native process is closed, and includes: when the smart When the terminal detects that the current battery power changes from being smaller than the power threshold to be greater than the power threshold or detects that the charger is connected, the terminal exits the environment mode.
所述预留智能终端电池电量的实现方法,其中所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示等。The method for realizing the battery power of the smart terminal is reserved, wherein when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection and the WiFi are closed. Bluetooth, GPS service, NFC and vibrating alert.
本发明还提供了一种预留智能终端电池电量的实现系统,其包括:The invention also provides an implementation system for reserving battery power of a smart terminal, comprising:
电量检测判断模块,用于智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The power detecting and determining module is configured to detect, by the smart terminal, the battery power according to a specified period, and determine whether the current battery power is less than a preset power threshold;
控制模块,用于若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。The control module is configured to automatically restart and enter an environmental mode in which the non-system native process is turned off, or automatically shut down if the current battery power is less than the power threshold.
优选的,还包括:Preferably, the method further includes:
设置模块,用于智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The setting module is configured to receive an operation instruction of the user by the smart terminal, set a power threshold, and set an option to enter an eco mode or automatically shut down if the current battery power is lower than the power threshold.
优选的,所述控制模块具体包括:Preferably, the control module specifically includes:
选择项判断单元,用于若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;The selection determining unit is configured to: if the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
环保模式启动单元,用于当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;The eco mode startup unit is configured to automatically restart the smart terminal when the option is to enter the eco mode, and enter the eco mode that shuts down the non-system native process after the restart;
自动关机单元,用于当选择项为自动关机时,则智能终端自动关机。The automatic shutdown unit is used to automatically shut down the intelligent terminal when the option is automatic shutdown.
优选的,所述环保模式启动单元还用于当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。Preferably, the eco mode startup unit is further configured to exit the eco mode when the smart terminal detects that the current battery power changes from less than the power threshold to be greater than the power threshold or detects a charger access.
优选的,所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示等。Preferably, when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection, WiFi, Bluetooth, GPS service, NFC, and vibration prompt are turned off. Wait.
有益效果 Beneficial effect
本发明提供了一种预留智能终端电池电量的实现方法及系统,方法包括:智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。本发明实现了智能终端的电池电量低于电量阈值时,若无法充电或更换电池,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,用来确保智能终端预留一定电量,以供用户应急通讯时使用,方便了用户。 The invention provides a method and a system for realizing the battery power of the smart terminal. The method includes: the smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold; if the current battery power is less than When the power threshold is reached, it automatically restarts and enters an environmental mode in which the non-system native process is turned off, or automatically shuts down. The invention realizes that when the battery level of the intelligent terminal is lower than the power threshold, if the battery cannot be charged or replaced, the system automatically restarts and enters the environmental protection mode in which the non-system native process is turned off, or automatically shuts down, to ensure that the smart terminal reserves a certain amount of power. For users to use in emergency communication, it is convenient for users.
附图说明DRAWINGS
图1为本发明提供的所述预留智能终端电池电量的实现方法较佳实施例的流程图。FIG. 1 is a flowchart of a preferred embodiment of a method for implementing battery power reserved for a smart terminal according to the present invention.
图2为本发明提供的所述预留智能终端电池电量的实现系统较佳实施例的结构框图。2 is a structural block diagram of a preferred embodiment of a system for implementing battery power reserved for a smart terminal according to the present invention.
本发明的最佳实施方式BEST MODE FOR CARRYING OUT THE INVENTION
本发明提供一种预留智能终端电池电量的实现方法及系统,为使本发明的目的、技术方案及效果更加清楚、明确,以下对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。The present invention provides a method and system for realizing the battery power of the smart terminal. In order to make the object, technical solution and effect of the present invention clearer and clearer, the present invention will be further described in detail below. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
请参见图1,图1是本发明提供的所述预留智能终端电池电量的实现方法较佳实施例的流程图。如图1所示,其包括以下步骤:Referring to FIG. 1, FIG. 1 is a flowchart of a preferred embodiment of a method for implementing battery power reserved for a smart terminal according to the present invention. As shown in Figure 1, it includes the following steps:
步骤S100、智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值。Step S100: The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold.
本发明的方法实施例中,智能终端需定时的检测电池电量,并将检测得到的当前电池电量与所述电量阈值进行比较,判断当前电池电量是否小于所述电量阈值。当当前电池电量小于所述电量阈值时,则将电池剩余电量作为预留电量,以供用户应急通讯时使用。In the method embodiment of the present invention, the smart terminal needs to periodically detect the battery power, and compare the detected current battery power with the power threshold to determine whether the current battery power is less than the power threshold. When the current battery power is less than the power threshold, the remaining battery power is used as the reserved power for the user to use for emergency communication.
步骤S200、若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。Step S200: If the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is turned off, or automatically shuts down.
在步骤S200中,所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示等,从而确保最大限度节约电量。In step S200, when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the data connection, WiFi, Bluetooth, GPS service, NFC, and Vibration tips, etc., to ensure maximum power savings.
具体实施时,将显示屏亮度调整为指定亮度时,即将显示屏亮度调节到智能终端的显示屏的最大亮度的10%;将锁屏时间调整至指定时间,即将锁屏时间由当前值缩短至15s(多数智能终端的锁屏时间最小值设置在10-15s)。In the specific implementation, when the brightness of the display screen is adjusted to the specified brightness, the brightness of the display screen is adjusted to 10% of the maximum brightness of the display screen of the smart terminal; when the lock screen time is adjusted to the specified time, the lock screen time is shortened from the current value to the current value. 15s (the minimum lock screen time for most smart terminals is set at 10-15s).
进入环保模式(也即自动启动安卓原生的安全模式,该模式会禁用所有第三方程序、插件等的运行,仅运行安卓核心程序运行)时,部分核心代码如下:Enter the eco-friendly mode (that is, automatically launch the Android native security mode, which will disable the running of all third-party programs, plug-ins, etc., only run the Android kernel program), some core code is as follows:
/base/services/java/com/android/server/SystemServer.java/base/services/java/com/android/server/SystemServer.java
final boolean safeMode = wm.detectSafeMode(); Final boolean safeMode = wm.detectSafeMode();
if (safeMode) { If (safeMode) {
try { Try {
ActivityManagerNative.getDefault().enterSafeMode(); ActivityManagerNative.getDefault().enterSafeMode();
// Post the safe mode state in the Zygote class // Post the safe mode state in the Zygote Class
Zygote.systemInSafeMode = true; Zygote.systemInSafeMode = true;
// Disable the JIT for the system_server process // Disable the JIT for the system_server Process
VMRuntime.getRuntime().disableJitCompilation(); VMRuntime.getRuntime().disableJitCompilation();
} catch (RemoteException e) { } catch (RemoteException e) {
} }
} else { } else {
// Enable the JIT for the system_server process // Enable the JIT for the system_server Process
VMRuntime.getRuntime().startJitCompilation(); VMRuntime.getRuntime().startJitCompilation();
} }
上述代码只涉及到Zygote及ActivityManagerNative等核心模块的代码,其他模块的代码并未提供。The above code only refers to the code of the core modules such as Zygote and ActivityManagerNative. The code of other modules is not provided.
现以智能手机为例来具体说明,在智能手机中,射频、基带、AP(Application Processor,即应用处理器)分别占用了耗电量的45%、25%、30%。因为手机的电话功能是基本功能,故射频和基带部分的耗电暂不考虑如何省电,本发明主要考虑如何降低AP的耗电,即智能终端进入环保模式时,如何最大程度的降低AP的耗电。Now take the smart phone as an example to illustrate, in the smart phone, RF, baseband, AP (Application The Processor, which is the application processor, occupies 45%, 25%, and 30% of the power consumption, respectively. Because the phone function of the mobile phone is a basic function, the power consumption of the radio frequency and the baseband part does not consider how to save power. The present invention mainly considers how to reduce the power consumption of the AP, that is, how to minimize the AP when the smart terminal enters the environmental protection mode. Power consumption.
在安卓手机上,耗电最多的程序类型有如下3种:On Android phones, the most power-hungry program types are as follows:
1)不释放wake lock的应用1) Applications that do not release wake lock
应用可以拿到PARTIAL_WAKE_LOCK锁,这个锁允许关闭屏幕,但会保持CPU一直运行指定的进程。该锁会阻止CPU进入深度休眠模式(deep sleep),带来大量的后台电力消耗。The application can get the PARTIAL_WAKE_LOCK lock, which allows the screen to be turned off, but will keep the CPU running the specified process all the time. This lock will prevent the CPU from entering deep sleep mode (deep Sleep), bringing a lot of background power consumption.
2)长期保持数据连接的应用2) Applications that maintain data connections for a long time
一般对于数据连接都是“长连接慢心跳”,为了保持心跳,应用必定会定期来唤醒一次CPU并且使用一次网络,这样的耗电也是很可观的。如果这种应用很多,那么耗电量会成倍增加,这种应用一般都是第三方应用。Generally speaking, the data connection is a "long connection slow heartbeat". In order to maintain the heartbeat, the application must periodically wake up the CPU once and use the network once. This power consumption is also considerable. If there are many such applications, the power consumption will be multiplied, and such applications are generally third-party applications.
3)对大量无关事件进行监听(注册)的应用3) Application for monitoring (registering) a large number of unrelated events
有些应用会监听网络切换、信号变化、电池变化等大量无关的系统事件,一旦事件触发就会被频繁唤醒并执行,且这种应用的耗电也是很可观的。Some applications monitor a large number of unrelated system events such as network switching, signal changes, battery changes, etc. Once the event is triggered, they are frequently woken up and executed, and the power consumption of this application is also considerable.
故当切换至环保模式时,则通过安卓原生的安全模式将上述三类第三方应用禁用,只保留系统原生进程,这样有效的降低了AP的耗电。Therefore, when switching to the eco mode, the above three types of third-party applications are disabled through the Android native security mode, and only the system native process is retained, which effectively reduces the AP's power consumption.
进一步的,所述步骤S100之前还包括:Further, before the step S100, the method further includes:
步骤S10、智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。Step S10: The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
在步骤S10中,当用户进入智能终端的设置界面时,可设置电量阈值,一般该电量阈值设置为满电量情况下电池总电量的10-15%。同时,还可设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。当勾选了进入环保模式的选择项后,若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式;当勾选了自动关机的选择项后,若当前电池电量小于所述电量阈值时,则自动关机。这样,即使用户在使用智能终端时电池电量低于15%,而不能及时充电或更换电池时,则通过自动重启进入环保模式,或是自动关机来实现自动预留电量,避免了出现电池电量完全耗尽而无法再次开机应急通讯的问题。In step S10, when the user enters the setting interface of the smart terminal, the power threshold may be set. Generally, the power threshold is set to 10-15% of the total battery power in the case of full power. At the same time, it can also set an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold. When the option to enter the eco mode is checked, if the current battery charge is less than the power threshold, it will automatically restart and enter the eco mode of the non-system native process; when the auto power off option is selected, When the current battery level is less than the power threshold, it will automatically shut down. In this way, even if the user is using the smart terminal when the battery power is lower than 15%, and the battery cannot be charged or replaced in time, the automatic reset mode is entered into the eco mode, or the automatic shutdown is performed to automatically reserve the power, thereby avoiding the complete battery power. Exhausted and unable to boot emergency communication again.
进一步的,所述步骤S200具体包括:Further, the step S200 specifically includes:
步骤S201、若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;Step S201: If the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
步骤S202、当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;Step S202: When the selected item is in the eco mode, the smart terminal automatically restarts, and after restarting, enters an environmental mode in which the non-system native process is closed;
步骤S203、当选择项为自动关机时,则智能终端自动关机。Step S203: When the option is automatic shutdown, the smart terminal automatically shuts down.
进一步的,所述步骤S202中还包括:当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。此时即用户已开始对智能终端进行充电,或是更换电量充足的电池,则将退出所述环保模式,并恢复到未切换至环保模式之前的模式,这样用户能再次开启各种非系统原生进程使用。这与现有技术中当智能终端切换至超级省电模式时,即使对其充电也无法智能退出超级省电模式相比,更具自动切换的效果,无需用户手动去切换,方便了用户。无论电量低于还是高于所述阈值,用户均可以手动强制关闭/退出所述环保模式,从而确保用户本身对手机功能的自由使用。Further, the step S202 further includes: when the smart terminal detects that the current battery power is changed from being less than the power threshold to being greater than the power threshold or detecting the charger access, exiting the environment mode. At this point, when the user has started charging the smart terminal or replacing the battery with sufficient power, the environmental mode will be exited and the mode will be restored until the mode is not switched to the eco mode, so that the user can open various non-system natives again. Process use. Compared with the prior art, when the smart terminal switches to the super power saving mode, even if it is charged, it cannot be intelligently exited from the super power saving mode, and the effect of automatic switching is more, and the user does not need to manually switch, which is convenient for the user. Regardless of whether the battery is below or above the threshold, the user can manually force the environmental mode to be turned off/out, thereby ensuring the user's own free use of the phone function.
基于上述方法实施例,本发明还提供一种预留智能终端电池电量的实现系统。Based on the foregoing method embodiments, the present invention further provides an implementation system for reserving battery power of a smart terminal.
请参见图2,图2为本发明提供的所述预留智能终端电池电量的实现系统较佳实施例的结构框图。如图2所示,其包括:Referring to FIG. 2, FIG. 2 is a structural block diagram of a preferred embodiment of a system for implementing battery power reserved for a smart terminal according to the present invention. As shown in Figure 2, it includes:
电量检测判断模块100,用于智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The power detection determining module 100 is configured to detect, by the smart terminal, the battery power according to a specified period, and determine whether the current battery power is less than a preset power threshold;
控制模块200,用于若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。The control module 200 is configured to automatically restart and enter an environmental protection mode in which the non-system native process is turned off, or automatically shut down if the current battery power is less than the power threshold.
进一步的,在所述预留智能终端电池电量的实现系统中,还包括:Further, in the system for realizing the battery power of the reserved smart terminal, the method further includes:
设置模块,用于智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The setting module is configured to receive an operation instruction of the user by the smart terminal, set a power threshold, and set an option to enter an eco mode or automatically shut down if the current battery power is lower than the power threshold.
进一步的,在所述预留智能终端电池电量的实现系统中,所述控制模块200具体包括:Further, in the system for realizing the battery power of the smart terminal, the control module 200 specifically includes:
选择项判断单元,用于若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;The selection determining unit is configured to: if the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
环保模式启动单元,用于当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;The eco mode startup unit is configured to automatically restart the smart terminal when the option is to enter the eco mode, and enter the eco mode that shuts down the non-system native process after the restart;
自动关机单元,用于当选择项为自动关机时,则智能终端自动关机。The automatic shutdown unit is used to automatically shut down the intelligent terminal when the option is automatic shutdown.
进一步的,在所述预留智能终端电池电量的实现系统中,所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示。Further, in the implementation system for reserving the battery power of the smart terminal, when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the function is turned off. Data connection, WiFi, Bluetooth, GPS service, NFC and vibrating alert.
进一步的,在所述预留智能终端电池电量的实现系统中,所述环保模式启动单元还用于当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。Further, in the implementation system for reserving the battery power of the smart terminal, the eco mode startup unit is further configured to: when the smart terminal detects that the current battery power is changed from being less than the power threshold to being greater than the power threshold or detecting When the charger is connected, the environmental mode is exited.
综上所述,本发明提供了一种预留智能终端电池电量的实现方法及系统,方法包括:智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。本发明实现了智能终端的电池电量低于电量阈值时,若无法充电或更换电池,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,用来确保智能终端预留一定电量,以供用户应急通讯时使用,方便了用户。In summary, the present invention provides a method and system for realizing the battery power of a smart terminal, the method comprising: the smart terminal detecting the battery power according to a specified period, and determining whether the current battery power is less than a preset power threshold; If the current battery power is less than the power threshold, it will automatically restart and enter the environmental mode that shuts down the non-system native process, or automatically shut down. The invention realizes that when the battery level of the intelligent terminal is lower than the power threshold, if the battery cannot be charged or replaced, the system automatically restarts and enters the environmental protection mode in which the non-system native process is turned off, or automatically shuts down, to ensure that the smart terminal reserves a certain amount of power. For users to use in emergency communication, it is convenient for users.
应当理解的是,本发明的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本发明所附权利要求的保护范围。It is to be understood that the application of the present invention is not limited to the above-described examples, and those skilled in the art can make modifications and changes in accordance with the above description, all of which are within the scope of the appended claims.

Claims (15)

  1. 一种预留智能终端电池电量的实现方法,其中所述方法包括以下步骤: A method for realizing a battery power of a smart terminal, wherein the method comprises the following steps:
    智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
    若当前电池电量小于所述电量阈值时,将所述剩余的当前电池电量作为预留电量;If the current battery power is less than the power threshold, the remaining current battery power is used as the reserved power;
    根据所述预留电量,自动重启并进入环保模式,或自动关机,其中,所述环保模式为将第三方应用禁用的系统原生安全模式。According to the reserved power, it automatically restarts and enters the eco mode, or automatically shuts down, wherein the eco mode is a system native security mode that disables the third party application.
  2. 根据权利要求1所述预留智能终端电池电量的实现方法,其中所述智能终端对电池电量按指定周期进行检测之前,包括:The method for realizing the battery power of the smart terminal according to claim 1, wherein before the smart terminal detects the battery power for a specified period, the method includes:
    智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  3. 根据权利要求1所述预留智能终端电池电量的实现方法,其中所述若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,具体包括:The method for realizing the battery power of the smart terminal according to claim 1, wherein if the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is turned off, or automatically shuts down, specifically include:
    若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;If the current battery power is less than the power threshold, it is determined that the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
    当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入环保模式;When the option is to enter the eco mode, the smart terminal automatically restarts and enters the eco mode after restarting;
    当选择项为自动关机时,则智能终端自动关机。When the option is automatic shutdown, the smart terminal automatically shuts down.
  4. 根据权利要求3所述预留智能终端电池电量的实现方法,其中所述当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式,还包括:当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。The method for realizing the battery power of the smart terminal according to claim 3, wherein when the option is to enter the eco mode, the smart terminal automatically restarts, and after restarting, enters an environmental mode in which the non-system native process is closed, and The method includes: when the smart terminal detects that the current battery power changes from being less than the power threshold to be greater than the power threshold or detecting a charger access, exiting the environment mode.
  5. 根据权利要求1所述预留智能终端电池电量的实现方法,其中所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示。The method for realizing the battery power of the smart terminal according to claim 1, wherein when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the method is turned off. Data connection, WiFi, Bluetooth, GPS service, NFC and vibrating alert.
  6. 一种预留智能终端电池电量的实现方法,其中所述方法包括以下步骤:A method for realizing a battery power of a smart terminal, wherein the method comprises the following steps:
    智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The smart terminal detects the battery power according to a specified period, and determines whether the current battery power is less than a preset power threshold;
    若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。If the current battery power is less than the power threshold, it will automatically restart and enter the environmental mode that shuts down the non-system native process, or automatically shut down.
  7. 根据权利要求6所述预留智能终端电池电量的实现方法,其中所述智能终端对电池电量按指定周期进行检测之前,包括:The method for realizing the battery power of the smart terminal according to claim 6, wherein before the smart terminal detects the battery power for a specified period, the method includes:
    智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The intelligent terminal receives the operation instruction of the user, sets the power threshold, and sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold.
  8. 根据权利要求6所述预留智能终端电池电量的实现方法,其中所述若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机,具体包括:The method for realizing the battery power of the smart terminal according to claim 6, wherein if the current battery power is less than the power threshold, the system automatically restarts and enters an environmental mode in which the non-system native process is closed, or automatically shuts down, specifically include:
    若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;If the current battery power is less than the power threshold, it is determined that the user sets an option to enter the eco mode or automatically shut down if the current battery power is lower than the power threshold;
    当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;When the option is to enter the eco mode, the smart terminal automatically restarts, and after the restart, enters the eco mode in which the non-system native process is closed;
    当选择项为自动关机时,则智能终端自动关机。When the option is automatic shutdown, the smart terminal automatically shuts down.
  9. 根据权利要求8所述预留智能终端电池电量的实现方法,其中所述当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式,还包括:当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。The method for realizing the battery power of the smart terminal according to claim 8, wherein when the option is to enter the eco mode, the smart terminal automatically restarts, and after the restart, enters an environmental mode in which the non-system native process is closed, and The method includes: when the smart terminal detects that the current battery power changes from being less than the power threshold to be greater than the power threshold or detecting a charger access, exiting the environment mode.
  10. 根据权利要求6所述预留智能终端电池电量的实现方法,其中所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示。The method for realizing the battery power of the smart terminal according to claim 6, wherein when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the method is turned off. Data connection, WiFi, Bluetooth, GPS service, NFC and vibrating alert.
  11. 一种预留智能终端电池电量的实现系统,其包括:An implementation system for reserving battery power of a smart terminal, comprising:
    电量检测判断模块,用于智能终端对电池电量按指定周期进行检测,并判断当前电池电量是否小于预设的电量阈值;The power detecting and determining module is configured to detect, by the smart terminal, the battery power according to a specified period, and determine whether the current battery power is less than a preset power threshold;
    控制模块,用于若当前电池电量小于所述电量阈值时,则自动重启并进入关闭了非系统原生进程的环保模式,或自动关机。The control module is configured to automatically restart and enter an environmental mode in which the non-system native process is turned off, or automatically shut down if the current battery power is less than the power threshold.
  12. 根据权利要求11所述预留智能终端电池电量的实现系统,其中还包括:The system for realizing the battery power of the smart terminal according to claim 11, further comprising:
    设置模块,用于智能终端接收用户的操作指令,设置电量阈值,并设置若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项。The setting module is configured to receive an operation instruction of the user by the smart terminal, set a power threshold, and set an option to enter an eco mode or automatically shut down if the current battery power is lower than the power threshold.
  13. 根据权利要求11所述预留智能终端电池电量的实现系统,其中所述控制模块具体包括:The system for realizing the battery power of the smart terminal according to claim 11, wherein the control module specifically includes:
    选择项判断单元,用于若当前电池电量小于所述电量阈值时,则判断用户设置的若当前电池电量低于所述电量阈值时是进入环保模式、或是自动关机的选择项;The selection determining unit is configured to: if the current battery power is less than the power threshold, determine, if the current battery power is lower than the power threshold, the user enters the environmental protection mode or selects an automatic shutdown;
    环保模式启动单元,用于当选择项为进入环保模式时,则智能终端自动重启,并在重启后进入关闭了非系统原生进程的环保模式;The eco mode startup unit is configured to automatically restart the smart terminal when the option is to enter the eco mode, and enter the eco mode that shuts down the non-system native process after the restart;
    自动关机单元,用于当选择项为自动关机时,则智能终端自动关机。The automatic shutdown unit is used to automatically shut down the intelligent terminal when the option is automatic shutdown.
  14. 根据权利要求13所述预留智能终端电池电量的实现系统,其中所述环保模式启动单元还用于当智能终端检测到当前电池电量由小于所述电量阈值变化为大于所述电量阈值或者检测到充电器接入时,则退出所述环保模式。The system for reserving the battery power of the smart terminal according to claim 13, wherein the eco mode activation unit is further configured to: when the smart terminal detects that the current battery power changes from less than the power threshold to be greater than the power threshold or detects When the charger is connected, the environmental mode is exited.
  15. 根据权利要求11所述预留智能终端电池电量的实现系统,其中所述智能终端在进入环保模式时,显示屏亮度调整为指定亮度,锁屏时间调整至指定时间,开启响铃提示,并关闭数据连接、WiFi、蓝牙、GPS服务、NFC及振动提示。The system for realizing the battery power of the smart terminal according to claim 11, wherein when the smart terminal enters the eco mode, the brightness of the display screen is adjusted to a specified brightness, the lock screen time is adjusted to a specified time, the ringing prompt is turned on, and the function is turned off. Data connection, WiFi, Bluetooth, GPS service, NFC and vibrating alert.
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180060175A1 (en) * 2016-08-30 2018-03-01 Samsung Electronics Co., Ltd. Method for displaying time information in low power state and electronic device including the same
CN112462923A (en) * 2020-11-27 2021-03-09 星业(海南)科技有限公司 Method and system for realizing power saving reminding by automatically adjusting screen size
CN113315872A (en) * 2021-05-20 2021-08-27 中国联合网络通信集团有限公司 Mobile terminal control method and device and mobile terminal

Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105554316B (en) * 2015-11-26 2019-04-30 Tcl移动通信科技(宁波)有限公司 A kind of realization method and system of reserved intelligent terminal battery capacity
CN105867591A (en) * 2016-03-31 2016-08-17 乐视控股(北京)有限公司 Terminal control method and device
WO2018032329A1 (en) * 2016-08-16 2018-02-22 陈银芳 Mobile phone-based multi-thread scheduling method and system
CN106502370A (en) * 2016-10-28 2017-03-15 北京小米移动软件有限公司 The method of control intelligent terminal and intelligent terminal
CN106547672A (en) * 2016-11-03 2017-03-29 深圳市金立通信设备有限公司 Method and terminal that a kind of electricity shows
CN106658685A (en) * 2016-12-30 2017-05-10 北京数字天域科技有限责任公司 Communication method and device of smart mobile terminal based on low power state
CN106708245A (en) * 2017-01-06 2017-05-24 广东小天才科技有限公司 Mobile terminal starting-up method and mobile terminal
CN107228985B (en) * 2017-06-02 2021-05-28 Tcl移动通信科技(宁波)有限公司 RTC (real time clock) power supply capacitance detection method, storage device and mobile terminal
CN111316525B (en) * 2017-11-09 2023-04-11 深圳传音通讯有限公司 Electric quantity regulation and control method and electric quantity regulation and control system of intelligent terminal
CN111143802B (en) * 2019-04-13 2021-06-11 深圳市信瑞时代科技有限公司 On-site database access method
CN110633288B (en) * 2019-04-13 2020-06-12 浩德科技股份有限公司 On-site database access device
CN113541262A (en) * 2021-07-23 2021-10-22 天长市盛能电子科技有限公司 Charger capable of detecting battery electric quantity
CN115009223A (en) * 2022-06-30 2022-09-06 长城汽车股份有限公司 Intelligent key control method and device, intelligent key, vehicle and storage medium

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011017877A1 (en) * 2009-08-12 2011-02-17 中兴通讯股份有限公司 Mobile terminal and method for displaying key information thereof
CN202135331U (en) * 2011-06-25 2012-02-01 北京播思软件技术有限公司 Mobile terminal with power saving management mode
CN103248763A (en) * 2013-04-19 2013-08-14 北京小米科技有限责任公司 Communication method and mobile terminal
CN103581448A (en) * 2012-08-09 2014-02-12 华为技术有限公司 Multifunctional intelligent terminal and energy management method thereof
CN105554316A (en) * 2015-11-26 2016-05-04 Tcl移动通信科技(宁波)有限公司 Intelligent terminal battery capacity reserving realization method and system

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101873385A (en) * 2010-06-04 2010-10-27 北京播思软件技术有限公司 Device and method for entering power-saving mode of hand-held terminal rapidly
CN103533619A (en) * 2012-07-05 2014-01-22 华为技术有限公司 Mobile communication terminal and power management method thereof
CN104243720A (en) * 2013-06-24 2014-12-24 中兴通讯股份有限公司 Electricity saving method of terminal device and terminal device

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011017877A1 (en) * 2009-08-12 2011-02-17 中兴通讯股份有限公司 Mobile terminal and method for displaying key information thereof
CN202135331U (en) * 2011-06-25 2012-02-01 北京播思软件技术有限公司 Mobile terminal with power saving management mode
CN103581448A (en) * 2012-08-09 2014-02-12 华为技术有限公司 Multifunctional intelligent terminal and energy management method thereof
CN103248763A (en) * 2013-04-19 2013-08-14 北京小米科技有限责任公司 Communication method and mobile terminal
CN105554316A (en) * 2015-11-26 2016-05-04 Tcl移动通信科技(宁波)有限公司 Intelligent terminal battery capacity reserving realization method and system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180060175A1 (en) * 2016-08-30 2018-03-01 Samsung Electronics Co., Ltd. Method for displaying time information in low power state and electronic device including the same
US11016853B2 (en) * 2016-08-30 2021-05-25 Samsung Electronics Co., Ltd. Method for displaying time information in low power state and electronic device including the same
CN112462923A (en) * 2020-11-27 2021-03-09 星业(海南)科技有限公司 Method and system for realizing power saving reminding by automatically adjusting screen size
CN113315872A (en) * 2021-05-20 2021-08-27 中国联合网络通信集团有限公司 Mobile terminal control method and device and mobile terminal
CN113315872B (en) * 2021-05-20 2022-07-12 中国联合网络通信集团有限公司 Mobile terminal control method and device and mobile terminal

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