WO2010139169A1 - 终端电量节省方法及装置 - Google Patents

终端电量节省方法及装置 Download PDF

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Publication number
WO2010139169A1
WO2010139169A1 PCT/CN2009/075763 CN2009075763W WO2010139169A1 WO 2010139169 A1 WO2010139169 A1 WO 2010139169A1 CN 2009075763 W CN2009075763 W CN 2009075763W WO 2010139169 A1 WO2010139169 A1 WO 2010139169A1
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WO
WIPO (PCT)
Prior art keywords
terminal
power saving
service
module
sleep mode
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PCT/CN2009/075763
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English (en)
French (fr)
Inventor
索之玲
张晓勇
刘攀
占明
Original Assignee
中兴通讯股份有限公司
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Publication of WO2010139169A1 publication Critical patent/WO2010139169A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0251Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity
    • H04W52/0254Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity detecting a user operation or a tactile contact or a motion of the device
    • 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 communications, and in particular to a terminal power saving method and apparatus.
  • Terminal devices especially mobile phones, have gradually become an indispensable part of people's lives and work.
  • the limitation of battery power brings great inconvenience to the use of the mobile phone. Therefore, how to save power efficiently becomes an urgent problem to be solved in the application mobile phone.
  • the idea of power saving is to make the function modules of the terminal as much as possible in the sleep mode (power saving mode) without affecting the terminal to achieve normal functions, so as to achieve the purpose of power saving, thereby extending the standby time.
  • the screen of the mobile phone will be darkened.
  • the mobile phone enters the sleep mode (ie, all peripheral devices are turned off, Only the mobile phone can receive the paging on the network side). While other applications or services are running, the phone cannot enter sleep mode, only enter half-sleep mode (turn off some unused peripherals), or just turn off the display, screen backlight, and keyboard light.
  • the power saving method described above does not optimize the power saving effect of the mobile phone.
  • the screen is usually darkened after a period of delay, and after a period of time, the screen is turned off, and then a longer period is passed.
  • the phone goes into sleep mode.
  • the mobile phone is still in a state of high energy consumption.
  • the user is in a hurry, and every few minutes, he needs to take out the mobile phone to light up the screen to watch the time, and the mobile phone has to wait for a period of time, such as two minutes to enter the sleep mode.
  • the mobile phone is in a state of high energy consumption for most of the time, and it is very likely that the power is quickly used up.
  • a terminal power saving method is provided.
  • the terminal power saving method includes: the terminal obtains the service type of the service currently performed by the terminal in response to the power saving instruction input by the user; and determines that the terminal needs to start the power saving function when performing the service type service according to the preset setting. In this case, the preset operation corresponding to the power saving policy corresponding to the current service of the terminal is performed, so that the terminal enters the sleep mode.
  • a terminal power saving device is provided.
  • the terminal power saving device includes: an input module, an obtaining module, a determining module, and an executing module, wherein the input module is configured to acquire a power saving instruction input by the user; and the obtaining module is configured to be triggered by the power saving instruction input by the input module.
  • the input module is configured to acquire a power saving instruction input by the user
  • the obtaining module is configured to be triggered by the power saving instruction input by the input module.
  • the user inputs a power saving instruction
  • the terminal responds to the above instruction to determine the current service type, and according to the preset setting, it is determined that the current power consumption function needs to be activated when the current service type service is performed, and the preset terminal and the terminal are executed.
  • the corresponding operation of the power saving policy corresponding to the currently performed service and enters the sleep mode. Therefore, the problem that the mobile phone can not quickly enter the sleep mode and the power is lost can be solved, thereby allowing the mobile phone to quickly enter the power saving mode, reducing unnecessary power consumption, saving resources, and prolonging the battery life.
  • FIG. 1 is a flowchart of a method for saving power of a terminal according to an embodiment of the present invention
  • FIG. 2 is a flowchart of a method for saving power of a terminal according to a preferred embodiment of the present invention
  • FIG. 3 is a structure of a power saving device for a terminal according to an embodiment of the present invention
  • 4 is a schematic structural diagram of a terminal power saving device in a preferred embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a terminal power saving device in an example of the present invention.
  • the embodiment of the present invention provides an improved terminal power saving scheme.
  • a province is triggered to trigger a province in consideration of the problem that the power is not allowed to quickly enter the sleep mode in the related art.
  • the electrical function operates to generate the interrupt information, and the software flow control is used to make the mobile phone enter the power saving mode according to the current service in each interface or service, and quickly enter the power saving mode according to the above manner, so that the high efficiency province can be immediately realized.
  • FIG. 1 is a flowchart of a method for saving power of a terminal according to an embodiment of the present invention. As shown in FIG.
  • the method for saving power of a terminal includes the following steps: step S101: Step S101: Step S101: The power saving command input by the terminal in response to the user input Obtaining the service type of the service currently performed by the terminal; in a specific implementation process, the operation of inputting a power saving instruction by the user may include at least one of the following methods: pressing the power saving button, performing the slide operation, rotating the button, and pressing Multiple buttons are pressed, at least two buttons are pressed at the same time, and at least two click points of the touch screen are touched at the same time.
  • the power saving button may be a button specially set for entering a sleep mode.
  • all services performed on the mobile phone can be pre-divided into three categories, the first type is Local business, for example, enabling phonebook services, enabling short message services, enabling calendar services, or playing videos or songs.
  • the second type of service is a call service, for example, making a voice call and making a video call.
  • the third type of service is a data service. For example, a user opens a browser to browse a webpage and plays a streaming media.
  • the terminal for example, the mobile phone
  • the terminal for example, the mobile phone
  • the terminal after receiving the power saving instruction, responds to the above instruction, and needs to first determine the service type of the current service, and determine that the current service is the three types described above.
  • Step S103 In the case that the terminal needs to start the power saving function when performing the service of the service type, the preset operation corresponding to the power saving policy corresponding to the service currently performed by the terminal is performed, so that the terminal enters the sleep mode.
  • the user before the power saving instruction input by the user, the user needs to preset whether the operation of inputting the power saving instruction is enabled according to different service types according to requirements (that is, when the terminal performs the service)
  • the operation of the power saving instruction is input as a valid operation, whether the power saving function is activated when performing business of each service type. And the above settings are added to the configuration file, and the user can add or delete the above settings in the configuration file as needed.
  • the configuration file is a file stored in the terminal file system. When the terminal is closed, the configuration file is not lost, so the setting is still saved. According to the settings saved in the configuration file, you need to determine whether the terminal needs to start the power saving function when performing services of the above service type. Specifically, the description can be made in combination with various service types. If the service type of the currently performed service is the first type of service, that is, the local service. After the user inputs the power saving command, the mobile phone can be directly put into the sleep mode; or according to the setting in the configuration file (whether the first type of service is required, whether the power saving function needs to be activated), whether the above operation is a valid operation, if If the set operation is enabled, the operation is valid, that is, enters the sleep mode.
  • a dialog mode may also be set in advance, and the user inputs power saving when performing local service.
  • the command pops up a dialog box asking the user whether to enter the sleep mode.
  • the user can perform subsequent operations according to the specific situation.
  • the local service includes a special service. When the service is running, multiple peripheral hardware is required to cooperate. For example, the multimedia service needs to stop the multimedia service before entering the sleep mode.
  • the operation may include at least one of the following: pressing a wake-up button, performing a slide operation, rotating a button, pressing a multiplex button, simultaneously pressing at least two buttons, and simultaneously touching the touch screen At least two by point and so on.
  • the above-mentioned wake-up button may be a button specially set to restore the state before sleep. If the service type of the currently performed service is the second type of service, that is, the call service. After the user inputs the power saving instruction, because the call service is a more important service for the mobile phone to operate, if the user operates by mistake, the call may end.
  • the operation of the input power saving instruction is a valid operation, that is, whether the operation is enabled or not can be set in advance. If the above operation preset in the configuration file is not enabled, after the power saving instruction is input during the call, no operation is performed and the current call service is continued. If the user is set to the enabled state in advance, after the power saving command is input during the call, the call service is first terminated, and then the terminal enters the sleep mode. Preferably, the dialog mode can be set in advance. After the power saving instruction is input, a dialog box pops up to ask the user whether to end the current call and enter the sleep mode, and the user can select whether to enter the sleep mode according to his or her own wishes.
  • the terminal In the case of entering the sleep mode, if the terminal needs to resume the call state before sleep, it needs to perform a wake-up operation, as described in the wake-up operation mode described in the local service.
  • the service type of the currently performed service is the third type of service, that is, the data service. For example, when the user is surfing the Internet and inputting the power saving instruction, the setting in the configuration file is first obtained. If the above operation in the configuration file is set to the non-enabled state, the power saving instruction is not input after the call is made. Any operation, continue to perform the current online business.
  • the service is first terminated, and then the Packet Data Protocol (PDP) is deactivated, and then the terminal enters the sleep mode.
  • PDP Packet Data Protocol
  • the terminal In the case of entering the sleep mode, if the terminal needs to restore the data service before sleep, for example, the user continues to access the Internet service. It needs to perform a wake-up operation. Whether to perform PDP activation when waking up depends on the specific situation of the mobile phone. Some mobile phones perform PDP activation when they enter the browser application, and then no longer activate when the webpage is opened. After the wake-up operation is required, PDP activation is performed to ensure that the user can continue to access the Internet service.
  • Flash write operations include receiving SMS messages, MMS moments, saving contacts, SMS messages, MMS messages, pictures, videos, etc.
  • . 2 is a flow chart of a method for saving power of a terminal in accordance with a preferred embodiment of the present invention. As shown in FIG.
  • the terminal power saving method in the preferred embodiment of the present invention includes the following steps (step S201 - step S223): Step S201: the user presses a power saving button specially set for entering the sleep mode; step S203: determining the If the power-saving button is set to the enabled state, if the power-saving button is preset to the non-enabled state in the configuration file, no operation is performed; otherwise, step S205 is performed; Step S205: determining whether a flash write operation is being performed, If yes, go to step S207, otherwise, execute step 4 to gather S209; Step S207: Wait for the flash operation to be completed, and then complete step S209; Step S209: Determine whether it is in the call, if yes, execute step S211, otherwise, execute Step S215: Step S211: determining whether the power-saving button is set to be enabled in the configuration file in the call service; Step 4: S213: End the current call, enter the sleep mode; Step S215: Determine whether the multimedia service is in progress, if yes Step S
  • FIG. 3 is a schematic structural diagram of a terminal power saving device according to an embodiment of the present invention.
  • 4 is a schematic structural diagram of a terminal power saving device in a preferred embodiment of the present invention.
  • the terminal power saving device in the embodiment of the present invention includes: an input module 30, an obtaining module 32, a determining module 34, and an executing module 36. The details of each of the above modules are described further below in conjunction with FIG.
  • the input module 30 is configured to obtain a power-saving instruction input by the user, and the obtaining module 32 is connected to the input module 30, and is configured to acquire, according to a power-saving instruction input by the input module, a service type of a service currently performed by the terminal; 34.
  • the method is connected to the obtaining module 32, and is configured to determine, according to the preset setting, whether the acquiring module needs to start the power saving function when acquiring the service of the service type; the executing module 36 is connected to the determining module 34, and the determining result of the determining module is In this case, the preset operation corresponding to the power saving policy corresponding to the current service of the terminal is performed, so that the terminal performs the sleep mode.
  • the preset operation corresponding to the power saving policy corresponding to the current service of the terminal is performed, so that the terminal performs the sleep mode.
  • the foregoing execution module 36 may further include: a determining unit 360, an executing unit 362, where the determining unit 360 is configured to determine, according to a preset, a power saving policy corresponding to a service currently performed by the terminal;
  • the executing unit 362 is connected to the determining unit 360 for performing an operation corresponding to the power saving policy determined by the determining unit.
  • the power saving strategy includes at least one of the following: directly entering the sleep mode; stopping the current service, and then entering the sleep mode; stopping the current service, deactivating the PDP, and then entering the sleep mode.
  • the foregoing apparatus may further include: a setting module 40, configured to classify all services performed by the terminal, and respectively set whether to enable a power saving function when performing services of each service type.
  • the foregoing apparatus may further include: a storage module 42 configured to store Set whether the terminal set by the module starts the information about the power saving function when performing the service of each service type.
  • the terminal power saving scheme can be implemented by using the input module 30, the obtaining module 32, the determining module 34, and the executing module 36.
  • FIG. 5 is a schematic structural diagram of a terminal power saving device in an example of the present invention. As shown in FIG.
  • the terminal power saving device includes: a power saving function hardware structure 50, a power saving function setting module 52, a power saving function file storage module 54, a service query module 56, and a power saving function control module. 58.
  • the power saving function hardware structure 50 is equivalent to the input module 30 in FIGS. 4 and 5, and a power saving command can be input through the hardware structure.
  • Specific implementation methods include but are not limited to: adding a power-saving button, or multiplexing a button, or a certain action of the slider, or a certain operation of rotating the button, etc., after the user generates the operation, The generation of the trigger interrupt is generated, and the power saving function execution module 4 is notified to perform the next operation.
  • the power saving function setting module 52 is equivalent to the setting module 40, and is configured to allow the user to set whether the power saving function is required according to requirements. You can set whether to enable the operation of the power-saving function hardware structure to be enabled, whether it is enabled in the call service, and whether it is enabled in the data service. The above settings can be added or deleted as needed. After the user sets, the settings are stored in the power saving function file storage module 54. When the power saving function control module 58 needs to query these configurations, the power saving function control module 58 can read the power saving function file storage module 54 at any time. Configuration file.
  • the power saving function file storage module 54 is equivalent to the storage module 42 and is connected to the power saving function setting module 52 for storing the above settings of the user (refer to the description set in the power saving function setting module 52;), the configuration file is Stored in the file system of the mobile phone, the phone will not be lost after the switch is turned on, and the settings of the previous user are still saved.
  • the service query module 56 is equivalent to the obtaining module 32 and the executing module 36, and is configured to provide an interface function to the power saving control module 58 to query the running status of each service in the mobile phone and control the running of each service, for example, whether the mobile phone is in a call. Whether the PDP is activated, the call is hung up, the PDP is deactivated, and so on.
  • the power-saving function control module 58 is respectively connected to the power-saving function hardware structure 50, the power-saving function file storage module 54, and the service query module 56, and is used for controlling the entire process, first in the power-saving function. After the operation of the hardware structure 50, an interrupt message is obtained, and the power saving function setting module 52 and the service query module 56 are interacted to obtain the user's settings and the running status of each service module, and the power saving function of the mobile phone is controlled according to the power saving policy.
  • a terminal power saving device is provided. By inputting a power saving instruction, each module interacts, and according to the preset setting and the service type, the mobile phone can quickly enter the sleep mode when the power saving function needs to be activated.
  • the terminal power saving solution provided by the above embodiment of the present invention solves the problem that the mobile phone cannot enter the power saving mode (sleep mode) quickly, resulting in power loss, and the mobile phone can quickly enter the power saving mode. , which reduces the unnecessary power consumption of the mobile phone battery, saves resources, and prolongs battery life.
  • the above modules or steps of the present invention can be implemented by a general-purpose computing device, which can be concentrated on a single computing device or distributed over a network composed of multiple computing devices.
  • the invention is not limited to any specific combination of hardware and software.
  • the above is only the preferred embodiment of the present invention, and is not intended to limit the present invention, and various modifications and changes can be made to the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the scope of the present invention are intended to be included within the scope of the present invention.

Description

终端电量节省方法及装置 技术领域 本发明涉及通信领域, 具体而言, 涉及一种终端电量节省方法及装置。 背景技术 终端设备,特别是手机,逐渐成为人们生活和工作中不可或缺的一部分。 但是, 电池电量的限制给手机的使用带来了很大的不便。 因此, 如何高效节 省电量成为应用手机中急需解决的问题。 目前, 针对上述问题, 出现了很多节省终端电量的方法。 电量节省的思 路就是在不影响终端实现正常功能的同时, 使终端内部各个功能模块尽可能 多的处于睡眠模式 (省电模式), 以达到省电的目的, 从而延长待机时间。 在待机界面, 如果没有其他业务的运行, 并且在一定的时间之内没有用 户的操作,手机的屏幕就会变暗,经过一定的时间后,手机进入睡眠模式(即, 关闭所有的外围设备, 只保证手机可以接收到网络侧的寻呼)。在其他应用或 业务运行期间, 手机不能进入睡眠模式, 只能进入半睡眠模式 (关闭部分不 用的外围设备), 或者只将显示屏、 屏幕背光和键盘灯关灭。 上面描述的省电方式, 没有使手机的省电效果达到最佳, 相关技术中, 通常在经过一段时延之后, 将屏幕变暗, 再经过一段时间, 将屏幕关闭, 然 后再经过一段较长的时间, 手机才进入睡眠模式。 然而在上述时间内, 手机 仍处于高耗能状态。 例如, 在用户的手机快没电的情况下, 用户又特别赶时 间, 每隔几分钟需要拿出手机点亮屏幕看时间, 而手机要等一段的时间, 比 如两分钟才能进入睡眠模式, 在上述情况下, 手机大部分时间都处于高耗能 的状态, 很有可能迅速将电量用光。 或者, 如果用户正在进行其他的操作, 将手机放置起来, 经过一段时间后手机会将屏幕和键盘灯关闭, 但并不能进 入睡眠模式, 会导致电量快速地流失。 因此, 通过上述方法, 并不能 4艮好地 解决手机电量节省的问题。 发明内容 针对相关技术中不能使手机快速进入省电模式 (睡眠模式), 从而使电 量流失的问题而提出本发明, 为此, 本发明的主要目的在于提供一种改进的 终端电量节省方法及装置, 以解决上述问题至少之一。 才艮据本发明的一个方面, 提供了一种终端电量节省方法。 才艮据本发明的终端电量节省方法包括: 终端响应于用户输入的省电指 令, 获取终端当前进行的业务的业务类型; 根据预先设置确定终端在进行业 务类型的业务时需要启动省电功能的情况下, 执行预设的与终端当前进行的 业务对应的省电策略相应的操作, 使终端进入睡眠模式。 根据本发明的另一个方面, 提供了一种终端电量节省装置。 根据本发明的终端电量节省装置包括:输入模块、获取模块、判断模块、 执行模块, 其中, 输入模块用于获取用户输入的省电指令; 获取模块用于在 输入模块输入的省电指令触发下, 获取终端当前进行的业务的业务类型; 判 断模块用于根据预先设置判断在进行获取模块获取的业务类型的业务时是否 需要启动省电功能; 执行模块用于在判断模块的判断结果为是情况下, 执行 预设的与终端当前进行的业务对应的省电策略相应的操作, 以使终端进行睡 眠模式。 通过本发明的上述技术方案, 用户输入省电指令, 终端响应上述指令, 判断当前所处业务类型, 根据预先设置确定在进行当前业务类型的业务时需 要启动省电功能, 执行预设的与终端当前进行的业务对应的省电策略相应的 操作, 并进入睡眠模式。 从而解决了不能使手机快速进入睡眠模式, 而使电 量流失的问题,进而可以让手机快速地进入省电模式, 减少了不必要的耗电, 节省了资源, 延长了电池使用时间。 本发明的其它特征和优点将在随后的说明书中阐述, 并且, 部分地从说 明书中变得显而易见, 或者通过实施本发明而了解。 本发明的目的和其他优 点可通过在所写的说明书、 权利要求书、 以及附图中所特别指出的结构来实 现和获得。 附图说明 此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部 分, 本发明的示意性实施例及其说明用于解释本发明, 并不构成对本发明的 不当限定。 在附图中: 图 1为根据本发明实施例的终端电量节省方法的流程图; 图 2为根据本发明优选实施例的终端电量节省方法的流程图; 图 3为 居本发明实施例的终端电量节省装置的结构示意图; 图 4为 居本发明优选实施例的终端电量节省装置的结构示意图; 图 5为 居本发明实例的终端电量节省装置的结构示意图。 具体实施方式 功能相克述 考虑到相关技术中不能使手机快速进入睡眠模式, 而使电量流失的问 题, 本发明实施例提供了改进的终端电量节省方案, 在本发明实施例中, 引 入触发一个省电功能操作以产生中断信息, 通过软件流程控制使手机在各个 界面或者业务中, 才艮据当前业务确定进入省电模式的方式, 并按照上述方式 快速进入省电模式, 从而可以立即达到高效省电的状态, 并延长手机的待机 时间。 需要说明的是, 在不冲突的情况下, 本申请中的实施例及实施例中的特 征可以相互组合。 下面将参考附图并结合实施例来详细说明本发明。 方法实施例 根据本发明实施例, 提供了一种终端电量节省方法。 图 1为根据本发明 实施例的终端电量节省方法的流程图。 如图 1所示, 才艮据本发明实施例的终 端电量节省方法包括以下步 4聚 (步 4聚 S 101-步 4聚 S 103 ): 步骤 S 101 : 终端响应于用户输入的省电指令, 获取终端当前进行的业 务的业务类型; 在具体实施过程中,用户输入一个省电指令的操作可以包括以下至少之 一的方式: 按动省电按键、 进行滑盖操作、 旋转按钮、 按动复用按键、 同时 按动至少两个按键、 同时触摸触摸屏的至少两个按点等。 其中, 上述省电按 键可以是专门为进入休眠模式设置的按键。 优选地, 可以将在手机上进行的所有业务预先划分为三类, 第一类为本 地业务, 例如, 启用电话本业务, 启用短消息业务, 启用日程表业务, 或者 播放视频或歌曲。 第二类业务为通话业务, 例如, 进行语音电话, 进行视频 电话。 第三类业务为数据业务, 例如, 用户打开浏览器浏览网页, 播放流媒 体。 具体地, 当用户输入省电指令, 终端 (例如, 手机)在接收到上述省电 指令之后, 响应上述指令, 需要首先判断其当前进行的业务的业务类型, 确 定当前业务是以上描述的三类业务中的哪一类业务, 再执行步骤 S 103。 步骤 S 103 : 居预先设置确定终端在进行业务类型的业务时需要启动 省电功能的情况下, 执行预设的与终端当前进行的业务对应的省电策略相应 的操作, 使终端进入睡眠模式。 在具体实施过程中, 在响应于用户输入的省电指令之前, 用户按照需求 根据不同的业务类型, 需要预先设置上述输入省电指令的操作是否为使能的 状态 (即, 当终端进行该业务时, 输入该省电指令的操作是否为有效操作), 在进行每种业务类型的业务时是否启动省电功能。 并且将上述设置添加进配 置文件中, 用户可以根据需要在配置文件中对上述设置进行增删的操作。 其 中,上述配置文件是存储在终端文件系统内部的文件,在终端关闭的情况下, 该配置文件不会丢失, 因此该设置仍然保存。 根据配置文件中保存的设置,需要确定终端在进行上述业务类型的业务 时是否需要启动省电功能。 具体地, 可以分别结合各种业务类型进行描述。 如果当前进行的业务的业务类型为第一类业务, 即本地业务。 在用户输 入省电指令之后, 可以直接让手机进入睡眠模式; 也可以根据配置文件中的 设置(进行第一类业务时, 是否需要启动省电功能), 判断上述操作是否为有 效操作, 如果预先设置的该操作为使能状态, 则该操作有效, 即进入睡眠模 式, 否则, 继续执行当前业务, 不作任何操作; 还可以预先设置一个对话框 模式, 在执行本地业务时, 用户输入了省电指令, 弹出对话框, 询问用户是 否需要进入睡眠模式, 用户可根据具体情况进行后续的操作。 优选地, 本地业务中包含特殊的业务, 该业务运行时, 需要多个外围硬 件进行配合, 例如, 多媒体业务, 如果需要进入睡眠模式, 需先将多媒体业 务停止, 然后才进入睡眠模式。 在进入睡眠模式的情况下, 如果需要使终端恢复睡眠之前的状态, 需要 对其进行一个唤醒的操作, 该操作可以包括以下至少之一的方式: 按动唤醒 按键、 进行滑盖操作、 旋转按钮、 按动复用按键、 同时按动至少两个按键、 同时触摸触摸屏的至少两个按点等。 其中, 上述唤醒按键可以是专门为恢复 睡眠之前的状态设置的按键。 如果当前进行的业务的业务类型为第二类业务, 即通话业务。 在用户输 入了省电指令之后, 因为通话业务为手机运行的较为重要的业务, 如果用户 误操作, 可能会造成通话的结束。 因此, 可以预先设置该输入省电指令的操 作是否为有效操作, 即设置该操作是否为使能状态。 如果预先设置在配置文 件中的上述操作为非使能状态, 则在通话中输入省电指令后, 不进行任何操 作, 继续执行当前通话业务。 如果用户预先设置为使能状态, 则在通话中输 入省电指令后, 首先结束通话业务, 再让终端进入睡眠模式。 优选地, 可以 预先设置对话框模式, 当输入省电指令后, 弹出对话框, 询问用户是否结束 当前通话进入睡眠模式, 用户可以根据自己的意愿选择是否进入睡眠模式。 在进入睡眠模式的情况下, 如果需要使终端恢复睡眠之前的通话状态, 需要对其进行一个唤醒的操作,可以参见在本地业务中描述的唤醒操作方式。 如果当前进行的业务的业务类型为第三类业务, 即数据业务。 例如, 当 用户正在上网, 输入了省电指令之后, 首先获取配置文件中的设置, 如果预 先设置在配置文件中的上述操作为非使能状态,则在通话中输入省电指令后, 不进行任何操作, 继续执行当前上网业务。 如果用户预先设置为使能状态, 进行该业务时, 输入省电指令后, 首先结束该业务, 然后将分组数据协议 ( Packet Data Protocol, 简称为 PDP ) 去激活, 再让终端进入睡眠模式。 在进入睡眠模式的情况下, 如果需要使终端恢复睡眠之前的数据业务, 例如, 用户继续上网业务。 需要对其进行一个唤醒的操作, 唤醒时是否进行 PDP激活操作要根据手机的具体情况, 有的手机在进入浏览器应用时就进行 PDP激活操作, 之后打开网页时就不再进行激活, 该情况需要执行唤醒操作 后, 再进行 PDP激活, 以保证用户可以继续进行上网业务; 有的手机是在打 开网页时进行判断当前 PDP有没有激活, 如果没有, 就进行激活操作, 该情 况下, 执行唤醒操作后就没有必要再进行 PDP激活了, 用户选中网页会自动 进行激活。 如果用户播放流媒体, 用户输入省电指令后, 会先停止播放流媒 体, 再进行 PDP去激活操作后, 才让手机进入睡眠模式。 在一些特殊情况下, 手机在进行内置 flash (即, 闪存) 或外置大存储 器写操作的时候, 是不便被打 4尤的。 例如, 使用 T-FLASH卡进行写操作, 如果此时将手机进入睡眠模式, 会将 flash内数据破坏, 从而无法恢复。 flash 写操作包括接收短信、 彩信时刻, 保存名片夹、 短信、 彩信、 图片、 视频等, 进行上述操作时, 可以设置信号量进行保护, 不能强制进入睡眠模式, 等待 flash操作结束, 再进入睡眠模式。 图 2 为根据本发明优选实施例的终端电量节省方法的流程图。 如图 2 所示, 居本发明优选实施例的终端电量节省方法包括以下步骤(步骤 S201- 步骤 S223 ): 步骤 S201 : 用户按动专门为进入睡眠模式设置的省电按键; 步骤 S203 : 判断该省电按键是否设置为使能状态, 如果在配置文件中 该省电按键预先设置为非使能状态, 则不进行任何操作, 否则, 执行步骤 S205; 步骤 S205 : 判断是否正在进行 flash写操作, 如果是, 执行步骤 S207, 否则, 执行步 4聚 S209; 步骤 S207: 等待 flash操作完成, 完成后, 再执行步骤 S209; 步骤 S209: 判断是否在通话中, 如果是, 执行步骤 S211 , 否则, 执行 步骤 S215; 步骤 S211 : 判断通话业务中, 省电按键在配置文件中设置是否为使能 状态; 步 4聚 S213 : 结束当前通话, 进入睡眠模式; 步骤 S215 : 判断是否正在进行多媒体业务, 如果是, 执行步骤 S217, 否则, 执行步 4聚 S219; 步骤 S217: 停止多媒体业务; 步骤 S219: 判断 PDP是否激活, 如果是, 执行步骤 S221 , 否则, 执行 步骤 S223; 步骤 S221 : 将 PDP去激活, 并进入睡眠模式; 步骤 S223 : 进入睡眠模式。 通过上述实施例, 提供了一种终端电量节省方法, 通过软件流程控制使 手机在各个界面或者业务中都能立即达到高效省电的状态, 从而延长了手机 待机时间。 系统实施例 才艮据本发明实施例, 还提供了一种终端电量节省装置。 图 3为 居本发 明实施例的终端电量节省装置的结构示意图。 图 4为 居本发明优选实施例 的终端电量节省装置的结构示意图。 如图 3所示, 居本发明实施例的终端 电量节省装置包括: 输入模块 30、 获取模块 32、 判断模块 34、 以及执行模 块 36。 以下进一步结合图 4来描述上述各个模块的细节。 输入模块 30, 用于获取用户输入的省电指令; 获取模块 32 , 与输入模块 30相连接, 用于在输入模块输入的省电指令 触发下, 获取终端当前进行的业务的业务类型; 判断模块 34, 与获取模块 32相连接, 用于根据预先设置判断获取模块 获取业务类型的业务时是否需要启动省电功能; 执行模块 36, 与判断模块 34相连接, 用于在判断模块的判断结果为是 情况下, 执行预设的与终端当前进行的业务对应的省电策略相应的操作, 以 使终端进行睡眠模式。 优选地,如图 4所示,上述执行模块 36可以进一步包括:确定单元 360、 执行单元 362 , 其中, 确定单元 360, 用于根据预先设置, 确定与终端当前 进行的业务对应的省电策略; 执行单元 362, 与确定单元 360相连接, 用于 执行与确定单元确定的省电策略相应的操作。 其中, 省电策略包括以下至少 之一: 直接进入睡眠模式; 停止当前业务、 再进入睡眠模式; 停止当前业务、 PDP去激活、 再进入睡眠模式。 优选地, 如图 4所示, 上述装置还可以包括: 设置模块 40, 用于对终 端执行的所有业务进行分类, 分别设置在进行每种业务类型的业务时是否启 动省电功能。 优选地, 如图 4所示, 上述装置还可以包括: 存储模块 42 , 用于存储 设置模块设置的终端在进行每种业务类型的业务时是否启动省电功能的信 息。 在具体实施过程中, 通过输入模块 30、 获取模块 32、 判断模块 34、 以 及执行模块 36实现终端电量节省方案可以参照图 1和图 2中的具体描述, 此处不再赘述。 图 5为 居本发明实例的终端电量节省装置的结构示意图。如图 5所示, 根据本发明实例的终端电量节省装置包括: 省电功能硬件结构 50、 省电功能 设置模块 52、 省电功能文件存储模块 54、 业务查询模块 56、 以及省电功能 控制模块 58。 省电功能硬件结构 50, 相当于图 4和图 5中的输入模块 30, 可以通过 该硬件结构输入一个省电指令。 具体实现方式包括但不限于: 增添一个省电 按键, 或对某个按键的复用, 或者滑盖的某个动作, 或者旋转按钮的某种操 作等类似硬件操作, 用户产生这个操作后, 会触发中断的产生, 通知省电功 能执行模块 4进行下一步的操作。 省电功能设置模块 52 , 相当于设置模块 40, 用于让用户按照需求设置是 否需要上述省电功能。可以设置是否让省电功能硬件结构的操作为使能状态, 在通话业务中是否使能, 在数据业务中是否使能, 上述设置可以根据需要进 行增删。 用户设置之后, 将这些设置存储在省电功能文件存储模块 54 中, 当省电功能控制模块 58需要查询这些配置时, 省电功能控制模块 58可以随 时读取省电功能文件存储模块 54中的配置文件。 省电功能文件存储模块 54 , 相当于存储模块 42 , 与省电功能设置模块 52相连接, 用于存储用户的上述设置 (可以参见省电功能设置模块 52 中设 置的描述;),配置文件是存储在手机文件系统之内的,手机开关机后不会丢失, 仍然保存着之前用户的设置。 业务查询模块 56, 相当于获取模块 32和执行模块 36, 用于给省电控制 模块 58 提供接口函数, 查询手机中各个业务的运行状态和控制各个业务的 运行, 例如, 手机是否正在通话中, PDP是否激活, 将通话挂断, PDP去激 活等。 省电功能控制模块 58 , 分别与省电功能硬件结构 50、 省电功能文件存 储模块 54、 业务查询模块 56相连接, 用于控制整个流程, 首先在省电功能 硬件结构 50的操作后得到中断消息, 再和省电功能设置模块 52和业务查询 模块 56 进行交互, 得到用户的设置和各业务模块运行的状态, 根据省电策 略控制手机的省电功能。 通过上述实施例, 提供了一种终端电量节省装置, 通过输入省电指令, 各模块相互作用, 根据预先设置以及业务类型, 在需要启动省电功能的情况 下, 使手机可以快速进入睡眠模式, 从而可以达到高效省电的目的。 综上所述, 通过本发明的上述实施例提供的终端电量节省方案, 解决了 不能使手机快速进入省电模式(睡眠模式), 导致使电量流失的问题, 可以让 手机快速地进入省电模式, 使手机电池减少了不必要的耗电, 节省了资源, 延长了电池使用时间。 显然, 本领域的技术人员应该明白, 上述的本发明的各模块或各步骤可 以用通用的计算装置来实现, 它们可以集中在单个的计算装置上, 或者分布 在多个计算装置所组成的网络上, 可选地, 它们可以用计算装置可执行的程 序代码来实现, 从而, 可以将它们存储在存储装置中由计算装置来执行, 或 者将它们分别制作成各个集成电路模块, 或者将它们中的多个模块或步骤制 作成单个集成电路模块来实现。 这样, 本发明不限制于任何特定的硬件和软 件结合。 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本 领域的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的 ^"神和 原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的保护 范围之内。

Claims

权 利 要 求 书 一种终端电量节省方法, 其特征在于, 包括:
终端响应于用户输入的省电指令,获取所述终端当前进行的业务的 业务类型;
根据预先设置确定所述终端在进行所述业务类型的业务时需要启 动省电功能的情况下, 执行预设的与所述终端当前进行的业务对应的省 电策略相应的操作, 使所述终端进入睡眠模式。 根据权利要求 1所述的方法, 其特征在于, 在响应于用户输入所述省电 指令之前, 所述方法还包括:
对所述终端执行的所有业务进行分类,分别设置在进行每种业务类 型的业务时是否启动省电功能。 根据权利要求 2所述的方法, 其特征在于, 所述业务类型包括以下至少 之一: 本地业务、 通话业务、 数据业务。 才艮据权利要求 1至 3任一项所述的方法, 其特征在于, 所述终端当前进 行的业务对应的省电策略包括以下至少之一:
直接进入睡眠模式;
停止当前业务、 再进入睡眠模式;
停止当前业务、 分组数据协议 PDP去激活、 再进入睡眠模式。 才艮据权利要求 1所述的方法, 其特征在于, 确定所述终端在进行所述业 务类型的业务时不需要启动省电功能的情况下, 所述方法还包括: 所述终端继续进行当前的业务。 一种终端电量节省装置, 其特征在于, 包括: 输入模块, 用于获取用户输入的省电指令;
获取模块, 用于在所述输入模块输入的所述省电指令触发下, 获取 终端当前进行的业务的业务类型; 判断模块,用于根据预先设置判断在进行所述获取模块获取的所述 业务类型的业务时是否需要启动省电功能;
执行模块, 用于在所述判断模块的判断结果为是情况下, 执行预设 的与所述终端当前进行的业务对应的省电策略相应的操作, 以使所述终 端进行睡眠模式。
7. 根据权利要求 6所述的装置, 其特征在于, 所述装置还包括:
设置模块, 用于对所述终端执行的所有业务进行分类, 分别设置在 进行每种业务类型的业务时是否启动省电功能。
8. 根据权利要求 7所述的装置, 其特征在于, 所述装置还包括:
存储模块,用于存储所述设置模块设置的所述终端在进行每种业务 类型的业务时是否启动省电功能的信息。
9. 根据权利要求 6所述的装置, 其特征在于, 所述执行模块包括: 确定单元, 用于 居预先设置, 确定与所述终端当前进行的业务对 应的省电策略;
执行单元,用于执行与所述确定单元确定的所述省电策略相应的操 作。
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