WO2016119283A1 - 终端双系统运行的方法及终端 - Google Patents

终端双系统运行的方法及终端 Download PDF

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Publication number
WO2016119283A1
WO2016119283A1 PCT/CN2015/073431 CN2015073431W WO2016119283A1 WO 2016119283 A1 WO2016119283 A1 WO 2016119283A1 CN 2015073431 W CN2015073431 W CN 2015073431W WO 2016119283 A1 WO2016119283 A1 WO 2016119283A1
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WIPO (PCT)
Prior art keywords
terminal
power
security system
power threshold
setting
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English (en)
French (fr)
Inventor
张充
袁刚
郑礼良
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
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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
    • H04M1/725Cordless telephones
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of mobile communications technologies, and in particular, to a method and a terminal for operating a dual system of a terminal.
  • the terminal mainly uses the battery power to extend the battery power usage time.
  • the power saving mode of the terminal includes: Daily power consumption, intelligent power saving and exceptional standby.
  • the daily power consumption is the fastest mode for consuming the terminal power; the long standby can greatly increase the standby time of the terminal, but it is necessary to clean up more applications in the background of the terminal; intelligent power saving is a kind of The power-saving mode between daily power consumption and abnormal standby, the standby time is moderate, and the related applications in the background of the terminal are also cleaned up.
  • intelligent power saving is a kind of The power-saving mode between daily power consumption and abnormal standby, the standby time is moderate, and the related applications in the background of the terminal are also cleaned up.
  • the above three power saving modes still have a place to be improved, and the battery power cannot be used intelligently and more efficiently.
  • the main object of the present invention is to provide a method and a terminal for operating a dual system of a terminal, aiming at solving the technical problem that the power saving mode of the existing terminal cannot use the power of the battery intelligently and more efficiently.
  • the present invention provides a method for operating a dual system of a terminal, and the method for operating the dual system of the terminal includes the following steps:
  • the step of setting the operating status of the security system and the general system of the terminal according to the current power of the terminal includes:
  • the plurality of different power thresholds include a first power threshold, a second power threshold, and a third power threshold, wherein the first power threshold, the second power threshold, and the third power threshold are sequentially decreased.
  • the steps of setting the security system of the terminal and the operating state of the general system include:
  • the step of acquiring the current power of the terminal when the terminal is in the non-charging state further includes:
  • the security system and the general system are set to operate.
  • the present invention further provides a terminal, where the terminal includes:
  • An acquiring module configured to acquire a current power of the terminal when the terminal is in a non-charging state
  • a first setting module configured to set a security system of the terminal according to a current power of the terminal; The operating status of the normal system.
  • the first setting module comprises:
  • a determining unit configured to determine a size relationship between the current power of the terminal and the set different power thresholds, and obtain a determination result
  • a setting unit configured to set an operating state of the security system of the terminal and the general system according to the determination result.
  • the plurality of different power thresholds include a first power threshold, a second power threshold, and a third power threshold, wherein the first power threshold, the second power threshold, and the third power threshold are sequentially decreased in size
  • the setup unit includes:
  • a first setting subunit configured to: when the current power of the terminal is greater than the first power threshold, set the security system and the common system to run;
  • a second setting subunit configured to: when the current power of the terminal is between the first power threshold and the second power threshold, set a core application in the security system and the common system to run, and set The non-core application in the security system is shut down;
  • a third setting subunit configured to: when the current power of the terminal is between the second power threshold and the third power threshold, set a core application of the security system and a core application of the common system to run, Setting the non-core application of the security system and the non-core application of the common system are all closed;
  • the terminal further includes:
  • a determining module configured to determine whether the terminal is in a charging state
  • the second setting module is configured to set the safety system and the general system to operate when in the charging state.
  • the method and the terminal for operating the terminal dual system when the terminal is in a non-charging state, setting the security system of the terminal and the running state of the common system according to the current power of the terminal, that is, setting the application in the security system or the common system as the operation. Or shut down the operation.
  • the user can set the battery automatically according to the power of the battery, avoiding the excessive consumption of the battery of the terminal, and using the battery power intelligently, more efficiently and reasonably. Extend the application of dual system terminals Running time.
  • FIG. 1 is a schematic flowchart of a first embodiment of a method for operating a dual system of a terminal according to the present invention
  • FIG. 2 is a schematic diagram of a refinement process of step S102 in FIG. 1;
  • FIG. 3 is a schematic flowchart of a second embodiment of a method for operating a dual system of a terminal according to the present invention
  • FIG. 4 is a schematic diagram of functional modules of a first embodiment of a terminal according to the present invention.
  • FIG. 5 is a schematic diagram of a refinement function module of the setting module in FIG. 4;
  • FIG. 6 is a schematic diagram of functional modules of a second embodiment of a terminal according to the present invention.
  • a method for operating a dual system of the terminal includes:
  • Step S101 when the terminal is in a non-charging state, acquiring the current power of the terminal;
  • the terminal may be a battery-powered smart terminal such as a mobile phone or a tablet computer.
  • the power saving module of the terminal when the power saving module of the terminal is set, it is determined whether the terminal is currently in a charging state, and the terminal can be connected to the charger or the charging treasure for charging. If the terminal is not currently in the charging state, but is powered by the battery. , the current power of the terminal is obtained, and then the power saving mode of the terminal is set.
  • the terminal is not in the charging state for most of the time, so it is necessary to set the power saving mode of the terminal by determining the size of the power.
  • Step S102 setting an operating state of the security system and the general system of the terminal according to the current power of the terminal.
  • the terminal includes a security system and a common system, that is, the terminal is a dual-system terminal.
  • the operating states of the security system and the common system may be respectively set, that is, the security system is separately set and The running state of an application in a normal system is running or shutting down.
  • the terminal includes a security system and a general system.
  • the difference between the security system and the general system is the degree of correlation with the network service (which can also be understood as the power consumption of the application), and the application that is not related to the network service is security.
  • the applications in the system, the applications related to the network services, and the unrelated applications are all applications in the common system, and then the operating states of the two systems are set.
  • the common system and the security system are two independent systems, and each system has its own independent interface.
  • the operating status of the security system and the general system For example, when the battery power is sufficient, all the applications in the security system and the general system can be run. When the battery is low, the operating security system or the general system can be shut down. The application to achieve intelligent power saving effects.
  • the security system also includes a core application and a non-core application (the core application is an important and/or frequently used application), and the core application and the non-core application are also included in the common system, and the smartphone is taken as an example.
  • the core applications in the system include Internet access, address book, incoming calls, text messages, pictures, etc.
  • the core applications of the security system include SMS, address book, and incoming calls.
  • the operating states of the core application and the non-core application in the security system and the common system can be further set separately, so as to achieve the effect of efficiently using the battery power.
  • the security system of the terminal and the running state of the general system are set according to the current power of the terminal, that is, the application in the security system or the general system is set to run or shut down.
  • the user can set the battery automatically according to the power of the battery, avoiding the excessive consumption of the battery of the terminal, and intelligently and efficiently using the battery power to extend the dual system.
  • the running time of the application of the terminal is set according to the current power of the terminal.
  • the foregoing step S102 includes:
  • Step S1021 Determine a size relationship between the current power quantity of the terminal and the set multiple different power consumption thresholds, and obtain a determination result;
  • Step S1022 Set an operating state of the security system of the terminal and the general system according to the determination result.
  • a plurality of different power thresholds are preset, and the operating states of the security system and the general system are set according to the power range in which the power of the terminal is located, so that the power of the battery can be used more efficiently.
  • the preset three power thresholds are a first power threshold, a second power threshold, and a third power threshold, and the first power threshold, the second power threshold, and the third power threshold are sequentially decreased, and the current terminal is determined.
  • the power is greater than the first power threshold, between the first power threshold and the second power threshold, between the second power threshold and the third power threshold, or less than the third power threshold, and the power range according to the current power of the terminal Make settings.
  • the security system and the general system are all set to operate;
  • the core application and the common system in the security system are all set to run, and the non-core application in the security system is set to be shut down;
  • the core application of the security system and the core application of the common system are all running, and the non-core application of the security system and the non-core application of the common system are all closed. run;
  • the core application of the security system is set to run, and the non-core application and the normal system of the security system are all closed.
  • the preset three power thresholds are 80%, 50%, and 30% of the total power:
  • the core application and the common system in the security system are set to run, and the non-core application in the security system is set to be shut down;
  • the core application of the security system and the core application of the common system are all running, and the non-core application of the security system and the non-core application of the common system are all closed;
  • the core application of the security system is set to run, and the non-core application of the security system and the general system are all closed.
  • a core application in an ordinary system includes an Internet access, a communication record, Calls, text messages, pictures, etc.
  • non-core applications are other applications in the ordinary system except the core application;
  • the core applications of the security system include SMS, address book, incoming call, etc.
  • the non-core application is in the security system except the core application. other apps.
  • the operating state of the core application and the non-core application in the security system and the common system is set according to the current power of the terminal, and the battery power can be used more efficiently, and the running time of the core application is prolonged, which is convenient for the user to use.
  • the core applications of both the normal system and the security system are running, and the applications are in an encrypted state.
  • the application in the ordinary system can be called.
  • the application in the security system can share the address book, the short message, and the like in the ordinary system by calling.
  • the method further includes:
  • Step S202 determining whether the terminal is in a charging state
  • step S203 when in the charging state, the security system and the general system are all set to operate.
  • the terminal it is determined whether the terminal is currently in a charging state.
  • the charging state that is, when the charger or the charging treasure is connected, the terminal has a sufficient power source, and the security system and the general system are set to operate. That is, all applications of the terminal are running.
  • the application in the ordinary system can be called by decrypting the application in the ordinary system.
  • the present invention further provides a terminal.
  • the terminal includes:
  • the obtaining module 101 is configured to acquire the current power of the terminal when the terminal is in a non-charging state
  • the terminal may be a battery-powered smart terminal such as a mobile phone or a tablet computer.
  • the power saving module of the terminal when the power saving module of the terminal is set, it is determined whether the terminal is currently in a charging state, and the terminal can be connected to the charger or the charging treasure for charging. If the terminal is not currently in the charging state, but is powered by the battery. , the current power of the terminal is obtained, and then the power saving mode of the terminal is set.
  • the terminal is not in the charging state for most of the time, so it is necessary to set the power saving mode of the terminal by determining the size of the power.
  • the first setting module 102 is configured to set an operating state of the security system and the general system of the terminal according to the current power of the terminal.
  • the terminal includes a security system and a common system, that is, the terminal is a dual-system terminal.
  • the operating states of the security system and the common system may be respectively set, that is, the security system is separately set and The running state of an application in a normal system is running or shutting down.
  • the terminal includes a security system and a general system.
  • the difference between the security system and the general system is the degree of correlation with the network service (which can also be understood as the power consumption of the application), and the application that is not related to the network service is security.
  • the applications in the system, the applications related to the network services, and the unrelated applications are all applications in the common system, and then the operating states of the two systems are set.
  • the common system and the security system are two independent systems, and each system has its own independent interface.
  • the operating status of the security system and the general system For example, when the battery power is sufficient, all the applications in the security system and the general system can be run. When the battery is low, the operating security system or the general system can be shut down. The application to achieve intelligent power saving effects.
  • the security system also includes a core application and a non-core application (the core application is an important and/or frequently used application), and the core application and the non-core application are also included in the common system, and the smartphone is taken as an example.
  • the core applications in the system include Internet access, address book, incoming calls, text messages, pictures, etc.
  • the core applications of the security system include SMS, address book, and incoming calls.
  • the operating states of the core application and the non-core application in the security system and the common system can be further set separately, so as to achieve the effect of efficiently using the battery power.
  • the first setting module 102 includes:
  • the determining unit 1021 is configured to determine a size relationship between the current power of the terminal and the set multiple different power thresholds, and obtain a determination result;
  • a setting unit 1022 configured to set a security system of the terminal according to the determination result, and a common The operating state of the system.
  • a plurality of different power thresholds are preset, and the operating states of the security system and the general system are set according to the power range in which the power of the terminal is located, so that the power of the battery can be used more efficiently.
  • the preset three power thresholds are a first power threshold, a second power threshold, and a third power threshold, and the first power threshold, the second power threshold, and the third power threshold are sequentially decreased, and the current terminal is determined.
  • the power is greater than the first power threshold, between the first power threshold and the second power threshold, between the second power threshold and the third power threshold, or less than the third power threshold, and the power range according to the current power of the terminal Make settings.
  • the security system and the general system are all set to operate;
  • the core application and the common system in the security system are all set to run, and the non-core application in the security system is set to be shut down;
  • the core application of the security system and the core application of the common system are all running, and the non-core application of the security system and the non-core application of the common system are all closed. run;
  • the core application of the security system is set to run, and the non-core application and the normal system of the security system are all closed.
  • the preset three power thresholds are 80%, 50%, and 30% of the total power:
  • the core application and the common system in the security system are set to run, and the non-core application in the security system is set to be shut down;
  • the core application of the security system and the core application of the common system are all running, and the non-core application of the security system and the non-core application of the common system are all closed;
  • the core application of the security system is set to run, and the non-core application of the security system and the general system are all closed.
  • the core applications in the common system include the Internet, the address book, the incoming call, the short message, the picture, etc.
  • the non-core application is other applications in the ordinary system except the core application;
  • the core of the security system Applications include SMS, address book, incoming call, etc.
  • Non-core applications are in addition to core applications.
  • the operating state of the core application and the non-core application in the security system and the common system is set according to the current power of the terminal, and the battery power can be used more efficiently, and the running time of the core application is prolonged, which is convenient for the user to use.
  • the core applications of both the normal system and the security system are running, and the applications are in an encrypted state.
  • the application in the ordinary system can be called.
  • the application in the security system can share the address book, the short message, and the like in the ordinary system by calling.
  • the terminal further includes:
  • the determining module 202 is configured to determine whether the terminal is in a charging state
  • the second setting module 203 is configured to, when in the charging state, set the safety system and the general system to operate.
  • the terminal it is determined whether the terminal is currently in a charging state.
  • the charging state that is, when the charger or the charging treasure is connected, the terminal has a sufficient power source, and the security system and the general system are set to operate. That is, all applications of the terminal are running.
  • the application in the ordinary system can be called by decrypting the application in the ordinary system.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Telephone Function (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

本发明公开了一种终端双系统运行的方法及终端,所述终端双系统运行的方法包括以下步骤:当终端处于非充电状态时,获取所述终端当前的电量;根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。本发明能够智能地、更高效合理地使用电池的电量,延长双系统终端的应用的运行时间。

Description

终端双系统运行的方法及终端
本申请要求于2015年01月30日提交中国专利局,申请号为CN201510052309.X、发明名称为“终端双系统运行的方法及终端”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
本发明涉及移动通信技术领域,尤其涉及一种终端双系统运行的方法及终端。
背景技术
目前,如智能手机及平板电脑等终端在大多数时候使用电池进行供电,因此,终端在供电方面主要是如何利用电池的电量以延长电池电量的使用时间,一般来说终端的省电模式包括:日常耗电、智能省电和超常待机。
在正常使用终端的过程中,日常耗电是消耗终端电量最快的模式;超长待机可以大幅度增加终端的待机时间,但要清理终端的后台的较多应用程序;智能省电是一种介于日常耗电和超常待机之间的省电模式,待机时间适中,同时也会清理终端的后台的相关应用程序。然而,随着终端的应用或服务越来越多,上述的这三种省电模式仍存在有待改进的地方,不能智能地、更高效地使用电池的电量。
上述内容仅用于辅助理解本发明的技术方案,并不代表承认上述内容是现有技术。
发明内容
本发明的主要目的在于提供一种终端双系统运行的方法及终端,旨在解决现有终端的省电模式不能智能地、更高效地使用电池的电量的技术问题。
为实现上述目的,本发明提供一种终端双系统运行的方法,所述终端双系统运行的方法包括以下步骤:
当终端处于非充电状态时,获取所述终端当前的电量;
根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。
优选地,所述根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态的步骤包括:
判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
根据所述判断结果设置所述终端的安全系统及普通系统的运行状态。
优选地,所述多个不同电量阈值包括第一电量阈值、第二电量阈值及第三电量阈值,所述第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,根据所述判断结果设置所述终端的安全系统及普通系统的运行状态的步骤包括:
当所述终端当前的电量大于所述第一电量阈值时,设置所述安全系统及普通系统均运行;
当所述终端当前的电量处于所述第一电量阈值与第二电量阈值之间时,设置所述安全系统中的核心应用及所述普通系统均运行,设置所述安全系统中的非核心应用关闭运行;
当所述终端当前的电量处于所述第二电量阈值与第三电量阈值之间时,设置所述安全系统的核心应用及所述普通系统的核心应用均运行,设置所述安全系统的非核心应用及所述普通系统的非核心应用均关闭运行;
当所述终端当前的电量小于所述第三电量阈值时,设置所述安全系统的核心应用运行,设置所述安全系统的非核心应用及所述普通系统均关闭运行。
优选地,所述当终端处于非充电状态时,获取所述终端当前的电量的步骤之前还包括:
判断终端是否处于充电状态;
当处于充电状态时,则设置所述安全系统及普通系统均运行。
此外,为实现上述目的,本发明还提供一种终端,所述终端包括:
获取模块,用于当终端处于非充电状态时,获取所述终端当前的电量;
第一设置模块,用于根据所述终端当前的电量设置所述终端的安全系统及 普通系统的运行状态。
优选地,所述第一设置模块包括:
判断单元,用于判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
设置单元,用于根据所述判断结果设置所述终端的安全系统及普通系统的运行状态。
优选地,所述多个不同电量阈值包括第一电量阈值、第二电量阈值及第三电量阈值,所述第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,所述设置单元包括:
第一设置子单元,用于当所述终端当前的电量大于所述第一电量阈值时,设置所述安全系统及普通系统均运行;
第二设置子单元,用于当所述终端当前的电量处于所述第一电量阈值与第二电量阈值之间时,设置所述安全系统中的核心应用及所述普通系统均运行,设置所述安全系统中的非核心应用关闭运行;
第三设置子单元,用于当所述终端当前的电量处于所述第二电量阈值与第三电量阈值之间时,设置所述安全系统的核心应用及所述普通系统的核心应用均运行,设置所述安全系统的非核心应用及所述普通系统的非核心应用均关闭运行;
第四设置子单元,用于当所述终端当前的电量小于所述第三电量阈值时,设置所述安全系统的核心应用运行,设置所述安全系统的非核心应用及所述普通系统均关闭运行。优选地,所述终端还包括:
判断模块,用于判断终端是否处于充电状态;
第二设置模块,用于当处于充电状态时,则设置所述安全系统及普通系统均运行。
本发明一种终端双系统运行的方法及终端,在终端处于非充电状态时,根据终端当前的电量设置终端的安全系统及普通系统的运行状态,即设置安全系统或普通系统中的应用为运行或关闭运行,通过这种方式,用户可以不用手动进行设置,而是终端自动根据电池的电量进行设置,避免终端的电池的电量过快消耗,能够智能地、更高效合理地使用电池的电量,延长双系统终端的应用 的运行时间。
附图说明
图1为本发明终端双系统运行的方法第一实施例的流程示意图;
图2为图1中步骤S102的细化流程示意图;
图3为本发明终端双系统运行的方法第二实施例的流程示意图;
图4为本发明终端第一实施例的功能模块示意图;
图5为图4中设置模块的细化功能模块示意图;
图6为本发明终端第二实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种终端双系统运行的方法,参照图1,在一实施例中,该终端双系统运行的方法包括:
步骤S101,当终端处于非充电状态时,获取所述终端当前的电量;
本实施例中,终端可以是手机或平板电脑等可使用电池供电的智能终端。
本实施例中,在设置终端的省电模块时,对终端当前是否处于充电状态进行判断,终端可连接充电器或充电宝进行充电,如果终端当前并非处于充电状态,而是使用电池进行供电时,则获取终端当前的电量,然后再设置终端的省电模式。
本实施例中,终端大部分时间是不处于充电状态的,所以需要通过判断电量的大小来设置终端的省电模式。
步骤S102,根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。
本实施例中,终端中包括安全系统及普通系统,即终端为双系统终端,在设置双系统终端的省电模式时,可以分别设置安全系统及普通系统的运行状态,即分别设置安全系统及普通系统中的应用的运行状态为运行或关闭运行。
本实施例中,终端中包括安全系统及普通系统,安全系统及普通系统的区别在于与网络服务的相关程度(也可以理解为应用的耗电程度),即将与网络服务不相关的应用为安全系统中的应用,与网络服务相关的应用及不相关的应用均为普通系统中的应用,然后设置这两个系统的运行状态。
本实施例中,普通系统和安全系统是两个独立的系统,各个系统有自己独立的界面。根据终端当前的电量,设置安全系统及普通系统的运行状态,例如在电池电量足够多时,可以运行安全系统及普通系统中的全部应用,在电池电量不足时,可以关闭运行安全系统或普通系统中的应用,以达到智能省电的效果。
进一步地,在安全系统中还包括核心应用及非核心应用(核心应用为重要和/或频繁使用的应用),在普通系统中也还包括核心应用及非核心应用,以智能手机为例,普通系统中的核心应用包括上网、通信录、来电、短信、图片等,安全系统的核心应用包括短信、通信录、来电等。本实施例还可以进一步分别设置安全系统及普通系统中核心应用及非核心应用的运行状态,达到高效使用电池电量的效果。
与现有技术相比,本实施例在终端处于非充电状态时,根据终端当前的电量设置终端的安全系统及普通系统的运行状态,即设置安全系统或普通系统中的应用为运行或关闭运行,通过这种方式,用户可以不用手动进行设置,而是终端自动根据电池的电量进行设置,避免终端的电池的电量过快消耗,能够智能地、更高效合理地使用电池的电量,延长双系统终端的应用的运行时间。
在一优选的实施例中,如图2所示,在上述图1的实施例的基础上,上述步骤S102包括:
步骤S1021,判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
步骤S1022,根据所述判断结果设置所述终端的安全系统及普通系统的运行状态。
本实施例中,预设多个不同电量阈值,根据终端的电量所处的电量范围来设置安全系统及普通系统的运行状态,从而能够更高效地使用电池的电量。
优选地,预设三个电量阈值为第一电量阈值、第二电量阈值以及第三电量阈值,第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,并判断终端当前的电量是大于第一电量阈值、处于第一电量阈值与第二电量阈值之间、处于第二电量阈值与第三电量阈值之间还是小于第三电量阈值,根据终端当前的电量所处的电量范围进行设置。
进一步地,当终端当前的电量大于第一电量阈值时,设置安全系统及普通系统均运行;
当终端当前的电量处于第一电量阈值与第二电量阈值之间时,设置安全系统中的核心应用及普通系统均运行,设置安全系统中的非核心应用关闭运行;
当终端当前的电量处于第二电量阈值与第三电量阈值之间时,设置安全系统的核心应用及普通系统的核心应用均运行,设置安全系统的非核心应用及普通系统的非核心应用均关闭运行;
当终端当前的电量小于第三电量阈值时,设置安全系统的核心应用运行,设置安全系统的非核心应用及普通系统均关闭运行。
例如,预设三个电量阈值为电量为总电量的80%、50%及30%:
当终端当前的电量大于等于80%时,设置安全系统及普通系统均运行;
当终端当前的电量大于等于50%且小于80%时,设置安全系统中的核心应用及普通系统均运行,设置安全系统中的非核心应用关闭运行;
当终端当前的电量大于等于30%且小于50%时,设置安全系统的核心应用及普通系统的核心应用均运行,设置安全系统的非核心应用及普通系统的非核心应用均关闭运行;
当终端当前的电量小于30%时,设置安全系统的核心应用运行,设置安全系统的非核心应用及普通系统均关闭运行。
本实施例中,以智能手机为例,普通系统中的核心应用包括上网、通信录、 来电、短信、图片等,非核心应用为除核心应用外的普通系统中的其他应用;安全系统的核心应用包括短信、通信录、来电等,非核心应用为除核心应用外的安全系统中的其他应用。本实施例根据终端当前的电量设置安全系统及普通系统中核心应用及非核心应用的运行状态,能够更高效使用电池电量,延长核心应用的运行时间,方便用户的使用。
另外,在终端的电量足够时,例如电量大于第一电量阈值或者处于第一电量阈值与第二电量阈值之间时,普通系统和安全系统两者的核心应用均运行,应用均处于加密状态,这时,在安全系统的应用中,通过对普通系统中的应用进行解密,就能够调用普通系统中的应用,例如安全系统中的应用通过调用可以共享普通系统中的通讯录、短信等等。
在一优选的实施例中,如图3所示,在上述图1的实施例的基础上,该方法还包括:
步骤S202,判断终端是否处于充电状态;
步骤S203,当处于充电状态时,则设置所述安全系统及普通系统均运行。
本实施例中,对终端当前是否处于充电状态进行判断,当处于充电状态时,即连接充电器或者充电宝的情况下,终端有足够的电量来源,设置所述安全系统及普通系统均运行,即终端所有的应用均运行。
另外,终端在充电状态下,在安全系统的应用中,通过对普通系统中的应用进行解密能够调用普通系统中的应用。
本发明还提供一种终端,如图4所示,在一实施例中,终端包括:
获取模块101,用于当终端处于非充电状态时,获取所述终端当前的电量;
本实施例中,终端可以是手机或平板电脑等可使用电池供电的智能终端。
本实施例中,在设置终端的省电模块时,对终端当前是否处于充电状态进行判断,终端可连接充电器或充电宝进行充电,如果终端当前并非处于充电状态,而是使用电池进行供电时,则获取终端当前的电量,然后再设置终端的省电模式。
本实施例中,终端大部分时间是不处于充电状态的,所以需要通过判断电量的大小来设置终端的省电模式。
第一设置模块102,用于根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。
本实施例中,终端中包括安全系统及普通系统,即终端为双系统终端,在设置双系统终端的省电模式时,可以分别设置安全系统及普通系统的运行状态,即分别设置安全系统及普通系统中的应用的运行状态为运行或关闭运行。
本实施例中,终端中包括安全系统及普通系统,安全系统及普通系统的区别在于与网络服务的相关程度(也可以理解为应用的耗电程度),即将与网络服务不相关的应用为安全系统中的应用,与网络服务相关的应用及不相关的应用均为普通系统中的应用,然后设置这两个系统的运行状态。
本实施例中,普通系统和安全系统是两个独立的系统,各个系统有自己独立的界面。根据终端当前的电量,设置安全系统及普通系统的运行状态,例如在电池电量足够多时,可以运行安全系统及普通系统中的全部应用,在电池电量不足时,可以关闭运行安全系统或普通系统中的应用,以达到智能省电的效果。
进一步地,在安全系统中还包括核心应用及非核心应用(核心应用为重要和/或频繁使用的应用),在普通系统中也还包括核心应用及非核心应用,以智能手机为例,普通系统中的核心应用包括上网、通信录、来电、短信、图片等,安全系统的核心应用包括短信、通信录、来电等。本实施例还可以进一步分别设置安全系统及普通系统中核心应用及非核心应用的运行状态,达到高效使用电池电量的效果。
在一优选的实施例中,如图5所示,在上述图4的实施例的基础上,所述第一设置模块102包括:
判断单元1021,用于判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
设置单元1022,用于根据所述判断结果设置所述终端的安全系统及普通 系统的运行状态。
本实施例中,预设多个不同电量阈值,根据终端的电量所处的电量范围来设置安全系统及普通系统的运行状态,从而能够更高效地使用电池的电量。
优选地,预设三个电量阈值为第一电量阈值、第二电量阈值以及第三电量阈值,第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,并判断终端当前的电量是大于第一电量阈值、处于第一电量阈值与第二电量阈值之间、处于第二电量阈值与第三电量阈值之间还是小于第三电量阈值,根据终端当前的电量所处的电量范围进行设置。
进一步地,当终端当前的电量大于第一电量阈值时,设置安全系统及普通系统均运行;
当终端当前的电量处于第一电量阈值与第二电量阈值之间时,设置安全系统中的核心应用及普通系统均运行,设置安全系统中的非核心应用关闭运行;
当终端当前的电量处于第二电量阈值与第三电量阈值之间时,设置安全系统的核心应用及普通系统的核心应用均运行,设置安全系统的非核心应用及普通系统的非核心应用均关闭运行;
当终端当前的电量小于第三电量阈值时,设置安全系统的核心应用运行,设置安全系统的非核心应用及普通系统均关闭运行。
例如,预设三个电量阈值为电量为总电量的80%、50%及30%:
当终端当前的电量大于等于80%时,设置安全系统及普通系统均运行;
当终端当前的电量大于等于50%且小于80%时,设置安全系统中的核心应用及普通系统均运行,设置安全系统中的非核心应用关闭运行;
当终端当前的电量大于等于30%且小于50%时,设置安全系统的核心应用及普通系统的核心应用均运行,设置安全系统的非核心应用及普通系统的非核心应用均关闭运行;
当终端当前的电量小于30%时,设置安全系统的核心应用运行,设置安全系统的非核心应用及普通系统均关闭运行。
本实施例中,以智能手机为例,普通系统中的核心应用包括上网、通信录、来电、短信、图片等,非核心应用为除核心应用外的普通系统中的其他应用;安全系统的核心应用包括短信、通信录、来电等,非核心应用为除核心应用外 的安全系统中的其他应用。本实施例根据终端当前的电量设置安全系统及普通系统中核心应用及非核心应用的运行状态,能够更高效使用电池电量,延长核心应用的运行时间,方便用户的使用。
另外,在终端的电量足够时,例如电量大于第一电量阈值或者处于第一电量阈值与第二电量阈值之间时,普通系统和安全系统两者的核心应用均运行,应用均处于加密状态,这时,在安全系统的应用中,通过对普通系统中的应用进行解密,就能够调用普通系统中的应用,例如安全系统中的应用通过调用可以共享普通系统中的通讯录、短信等等。
在一优选的实施例中,如图6所示,在上述图4的实施例的基础上,所述终端还包括:
判断模块202,用于判断终端是否处于充电状态;
第二设置模块203,用于当处于充电状态时,则设置所述安全系统及普通系统均运行。
本实施例中,对终端当前是否处于充电状态进行判断,当处于充电状态时,即连接充电器或者充电宝的情况下,终端有足够的电量来源,设置所述安全系统及普通系统均运行,即终端所有的应用均运行。
另外,终端在充电状态下,在安全系统的应用中,通过对普通系统中的应用进行解密能够调用普通系统中的应用。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (8)

  1. 一种终端双系统运行的方法,其特征在于,所述终端双系统运行的方法包括以下步骤:
    当终端处于非充电状态时,获取所述终端当前的电量;
    根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。
  2. 如权利要求1所述的终端双系统运行的方法,其特征在于,所述根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态的步骤包括:
    判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
    根据所述判断结果设置所述终端的安全系统及普通系统的运行状态。
  3. 如权利要求2所述的终端双系统运行的方法,其特征在于,所述多个不同电量阈值包括第一电量阈值、第二电量阈值及第三电量阈值,所述第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,根据所述判断结果设置所述终端的安全系统及普通系统的运行状态的步骤包括:
    当所述终端当前的电量大于所述第一电量阈值时,设置所述安全系统及普通系统均运行;
    当所述终端当前的电量处于所述第一电量阈值与第二电量阈值之间时,设置所述安全系统中的核心应用及所述普通系统均运行,设置所述安全系统中的非核心应用关闭运行;
    当所述终端当前的电量处于所述第二电量阈值与第三电量阈值之间时,设置所述安全系统的核心应用及所述普通系统的核心应用均运行,设置所述安全系统的非核心应用及所述普通系统的非核心应用均关闭运行;
    当所述终端当前的电量小于所述第三电量阈值时,设置所述安全系统的核心应用运行,设置所述安全系统的非核心应用及所述普通系统均关闭运行。
  4. 如权利要求1所述的终端双系统运行的方法,其特征在于,所述当终端处于非充电状态时,获取所述终端当前的电量的步骤之前还包括:
    判断终端是否处于充电状态;
    当处于充电状态时,则设置所述安全系统及普通系统均运行。
  5. 一种终端,其特征在于,所述终端包括:
    获取模块,用于当终端处于非充电状态时,获取所述终端当前的电量;
    第一设置模块,用于根据所述终端当前的电量设置所述终端的安全系统及普通系统的运行状态。
  6. 如权利要求5所述的终端,其特征在于,所述第一设置模块包括:
    判断单元,用于判断所述终端当前的电量与设置的多个不同电量阈值的大小关系,获取判断结果;
    设置单元,用于根据所述判断结果设置所述终端的安全系统及普通系统的运行状态。
  7. 如权利要求6所述的终端,其特征在于,所述多个不同电量阈值包括第一电量阈值、第二电量阈值及第三电量阈值,所述第一电量阈值、第二电量阈值以及第三电量阈值的大小依次减小,所述设置单元包括:
    第一设置子单元,用于当所述终端当前的电量大于所述第一电量阈值时,设置所述安全系统及普通系统均运行;
    第二设置子单元,用于当所述终端当前的电量处于所述第一电量阈值与第二电量阈值之间时,设置所述安全系统中的核心应用及所述普通系统均运行,设置所述安全系统中的非核心应用关闭运行;
    第三设置子单元,用于当所述终端当前的电量处于所述第二电量阈值与第三电量阈值之间时,设置所述安全系统的核心应用及所述普通系统的核心应用均运行,设置所述安全系统的非核心应用及所述普通系统的非核心应用均关闭 运行;
    第四设置子单元,用于当所述终端当前的电量小于所述第三电量阈值时,设置所述安全系统的核心应用运行,设置所述安全系统的非核心应用及所述普通系统均关闭运行。
  8. 如权利要求5所述的终端,其特征在于,所述终端还包括:
    判断模块,用于判断终端是否处于充电状态;
    第二设置模块,用于当处于充电状态时,则设置所述安全系统及普通系统均运行。
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