WO2019090590A1 - 一种智能终端的电量调控方法及电量调控系统 - Google Patents

一种智能终端的电量调控方法及电量调控系统 Download PDF

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Publication number
WO2019090590A1
WO2019090590A1 PCT/CN2017/110168 CN2017110168W WO2019090590A1 WO 2019090590 A1 WO2019090590 A1 WO 2019090590A1 CN 2017110168 W CN2017110168 W CN 2017110168W WO 2019090590 A1 WO2019090590 A1 WO 2019090590A1
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Prior art keywords
power
smart terminal
reserved
value
virtual
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PCT/CN2017/110168
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English (en)
French (fr)
Inventor
木魁
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深圳传音通讯有限公司
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Priority to PCT/CN2017/110168 priority Critical patent/WO2019090590A1/zh
Priority to CN201780096652.1A priority patent/CN111316525B/zh
Publication of WO2019090590A1 publication Critical patent/WO2019090590A1/zh

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

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  • the present invention relates to the field of battery power control of a smart terminal, and in particular to a power control method and a power control system for an intelligent terminal.
  • the present invention provides a method for reserve power of a smart terminal and a system for reserve power.
  • the user can set a reserved power value for the smart terminal in advance, and the smart terminal can automatically shut down when the power consumption reaches the reserved power value, thereby storing a certain amount of power for the user to be used at all times. .
  • the present invention provides a method for controlling power consumption of an intelligent terminal, which includes the steps of: inputting a reserved power amount value in the smart terminal, and hiding the reserved power amount value according to the reserved power amount value The power is generated, and a virtual power is generated. When the virtual power is less than a preset threshold, the smart terminal is turned off, the smart terminal is started again, and the power corresponding to the reserved power value is restored.
  • the step of inputting a reserved power value in the smart terminal includes: starting a power regulation setting system of the smart terminal, inputting a reserved power value to the smart terminal, where the smart terminal reads Presupposition And retaining the electric quantity value, and converting the reserved electric quantity value into a computer-readable digital information is stored in the smart terminal.
  • the power corresponding to the reserved power quantity is hidden, and the step of generating a virtual power includes monitoring a current battery power of the smart terminal, and a current battery power of the smart terminal. Substituting the reserved power amount value to obtain a virtual power quantity, rewriting the monitoring result of monitoring the battery power of the smart terminal again, and rewriting the monitoring result to the virtual power quantity.
  • the step of shutting down the smart terminal includes: monitoring a battery power of the smart terminal, acquiring a current virtual power, and performing the current virtual power with a preset threshold. For comparison, when the current virtual power is less than the preset threshold, an operation instruction for closing the smart terminal is generated.
  • the smart terminal is activated again, and the step of using the reserved power includes: monitoring the battery power of the smart terminal after the smart terminal is started again, when the battery power is less than the preset threshold, Monitoring whether to activate the reserved power setting system, when the reserved power setting system has been started, turning off the reserved power setting system, using the hidden power amount corresponding to the reserved power value, when the reserved power setting When the system is not started, the smart terminal is turned off.
  • a power control system for an intelligent terminal which includes the following module, an input module, and a reserved power value is input in the smart terminal, and the virtual module is hidden according to the reserved power value.
  • the control module is configured to: when the virtual power is less than a preset threshold, shut down the smart terminal, and restore the module, and resume using the smart terminal when the smart terminal is restarted. The amount of power corresponding to the reserve power value.
  • the input module includes: a starting unit, a starting reserve power setting system, an input unit, capturing a reserved power value input to the smart terminal, a storage unit, and the smart terminal reading the reservation And calculating a quantity of electricity and converting the value of the reserved amount of electricity into a computer-readable digital information stored in the smart terminal.
  • the virtual module includes: a first monitoring unit that monitors a current battery power of the smart terminal, and a data processing unit that subtracts the reserved power value from the current battery power of the smart terminal to obtain a virtual power, a rewriting unit, rewriting the monitoring result of monitoring the battery power of the smart terminal again, and rewriting the monitoring result to the virtual power.
  • control module includes: a second monitoring unit, monitoring battery power of the smart terminal, acquiring current virtual power, and a second instruction module, comparing the current virtual power with a preset threshold, when When the current virtual power is less than the preset threshold, an operation instruction for shutting down the smart terminal is generated, and the first control unit controls to close the smart terminal.
  • the recovery module includes: a third monitoring unit, after starting the smart terminal again, monitoring the The battery power of the smart terminal, the fourth monitoring unit, when the battery power is less than the preset threshold, monitoring whether to activate the reserved power setting system, and when the reserved power setting system is started, generating a shutdown
  • the operation instruction of the reserved power setting system the second control unit controls to turn off the reserved power setting system, uses the hidden power corresponding to the reserved power value, and the third control unit, when the reserved power setting system When not activated, the control turns off the smart terminal.
  • the technical advantage of the present invention is that the present invention provides a power regulation method and a power regulation system for an intelligent terminal.
  • the user may store a reserved power value in the smart terminal in advance, and the smart terminal hides the battery power corresponding to the reserved power value according to the reserved power value, and displays a virtual power value to the user.
  • the smart terminal is turned off, and when the power is turned back on, the power usage is restored, and a reserved power is stored for the user, so as to be used when necessary.
  • FIG. 1 is a schematic flow chart of a method for reserving power of a smart terminal according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic flow chart of a step of inputting a reserved power amount value in the smart terminal according to FIG. 1;
  • FIG. 3 is a flow chart showing a step of generating a virtual power according to the amount of power reserved in the first embodiment according to FIG.
  • FIG. 4 is a schematic flow chart of a step of shutting down the smart terminal according to FIG. 1 , preferably when the virtual power is less than a predetermined threshold;
  • FIG. 5 is a schematic flow chart of a step of using the reserved power according to a preferred embodiment of FIG.
  • FIG. 6 is a structural diagram of a power regulation system of a smart terminal in accordance with a preferred embodiment of the present invention.
  • first, second, third, etc. may be used in the present disclosure to describe various information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other.
  • first information may also be referred to as second information without departing from the scope of the present disclosure.
  • second information may also be referred to as first information.
  • word “if” as used herein may be interpreted as "when” or "when” or "in response to determination"
  • the consumption of battery power of smart terminals is a major problem currently existing in smart terminals.
  • the smart terminal has no power, which causes great trouble to the user.
  • the user often ignores the consumption rate of the smart terminal because it relies too much on the smart terminal, which causes the smart terminal to be in a state of no power when the smart terminal needs to be used, which seriously affects the user. Use experience.
  • the present invention provides a method for reserve power of a smart terminal.
  • the invention reminds the customer of the power consumption situation on the one hand, and stores a certain current for the user in time to prepare for the emergency.
  • 1 is a schematic flowchart of a method for reserving power of a smart terminal according to a preferred embodiment of the present invention. It can be seen from the figure that the method for reserve power of the smart terminal provided by this embodiment includes:
  • the user may input a reserved power amount value in the smart terminal according to the user's needs according to the usage experience.
  • an input module is disposed in the smart terminal, and the input module can capture an operation instruction of a user, and input a reserved power amount value in the smart terminal according to the operation instruction.
  • FIG. 2 it is a schematic flowchart of a step of inputting a reserved power value in the smart terminal according to FIG.
  • the step of inputting a value of the reserved power amount in the smart terminal includes:
  • the input module of the smart terminal includes an activation unit, and the activation unit may capture an operation instruction input by the user to the smart terminal, such as touching a shortcut on the smart terminal screen. a shortcut in the icon or the shortcut menu, or pressing a shortcut button on the smart terminal, etc., the smart terminal sensing the trigger action of the user on the smart terminal, reading the trigger action, and further parsing the Triggering an action, acquiring desktop information currently displayed by the smart terminal, desktop coordinates of the triggering action, pressure, speed, frequency, and the like of the triggering action, thereby performing, according to the operation content included in the parsed operation instruction The action of the power regulation system of the smart terminal is activated.
  • the smart terminal may pop up a dialog box in the display interface of the smart terminal, prompting the user to input a reservation. The amount of electricity. Then, the user can input a reserved power value to the smart terminal according to the experience of use or the needs of the user.
  • the input module in the smart terminal includes an input unit, and the input unit can capture a reserved power value input by the user to the smart terminal.
  • the smart terminal reads the reserved power amount value, and converts the reserved power amount value into a computer readable value
  • the digital information is stored in the smart terminal.
  • the smart terminal further includes a storage unit, the storage unit can read the reserved power value input by the user in the smart terminal, and convert the reserved power value into a computer.
  • the readable digital information such as converting the decimal information input by the user into a computer-readable binary information, and storing the converted digital information representing the reserved power amount value, such as binary information, in the smart terminal In storage space.
  • the smart terminal may further store a power consumption table of each application of the smart terminal per unit time, such as WeChat consumes X milliamperes or Y% every four minutes, thereby The user can directly select an application to be used, and the smart terminal calculates a pre-charge value according to a pre-stored calculation method.
  • a power consumption table of each application of the smart terminal per unit time such as WeChat consumes X milliamperes or Y% every four minutes, thereby The user can directly select an application to be used, and the smart terminal calculates a pre-charge value according to a pre-stored calculation method.
  • a virtual module in the smart terminal further reads the reservation. a battery value, and according to the reserved power value, the battery power of the smart terminal corresponding to the reserved power value is hidden, so that when the power of the battery of the smart terminal is consumed to the reserved power value, The smart terminal is prevented from continuing to consume battery power.
  • FIG. 3 it is a schematic flowchart of a step of generating a virtual power according to the preset power amount value, hiding the power corresponding to the reserved power value.
  • the step of hiding the amount of power corresponding to the reserved power value according to the reserved power value, and generating a virtual power mainly includes:
  • the virtual module in the smart terminal includes a first monitoring unit, and the first monitoring unit monitors the consumption of the battery power of the smart terminal in real time, and acquires the current battery of the smart terminal. Power and send out.
  • the virtual module of the smart terminal further includes a data processing unit, and the data processing unit is communicably connected to the first monitoring unit, and can read the current battery power sent by the first monitoring unit, and simultaneously Reading the reserved power value stored in the smart terminal, and subtracting the reserved power value from the current power of the smart terminal according to a preset calculation method to obtain a virtual power And send it out.
  • the data processing unit is communicably connected to the first monitoring unit, and can read the current battery power sent by the first monitoring unit, and simultaneously Reading the reserved power value stored in the smart terminal, and subtracting the reserved power value from the current power of the smart terminal according to a preset calculation method to obtain a virtual power And send it out.
  • the virtual module of the smart terminal further includes a rewriting unit, and the rewriting unit is in communication connection with the data processing unit, and can receive the virtual power sent by the data processing unit, and According to a preset procedure, the monitoring result of monitoring the battery power of the smart terminal is rewritten, and the virtual power is replaced by the monitoring result. Therefore, the monitoring result of the battery power received by the smart terminal is a virtual power value minus the reserved power value, and the power of the reserved power value is hidden.
  • the user in order to better simulate the operating mode under normal battery conditions, the user is created a hypothetical environment with insufficient power.
  • the smart terminal when the virtual power is less than a preset threshold, for example, the preset threshold may be 4%, 3% or other of the battery power, the smart terminal will automatically close.
  • a control module is disposed in the smart terminal, and the control module may compare the virtual power with a preset threshold, and when the comparison result is that the virtual power is less than the preset threshold The control module will control to shut down the smart terminal.
  • FIG. 4 it is a schematic flowchart of a step of shutting down the smart terminal when the virtual power is less than a predetermined threshold according to FIG.
  • the step of shutting down the smart terminal includes the following steps:
  • control module of the smart terminal includes a second monitoring unit, and the second monitoring unit can perform real-time monitoring on the battery power of the smart terminal after the power control system is activated.
  • the battery power data obtained by the second monitoring unit is the battery power data after the actual battery power data is subtracted from the reserved power value, that is, a current virtual power. .
  • control module of the smart terminal further includes a second instruction module, the second instruction module is communicatively connected with the second monitoring unit, and the second instruction module can receive and read Taking the current virtual power and comparing the current virtual power with a preset threshold, when the comparison result is that the current virtual power is less than the preset threshold, the second instruction module generates a shutdown of the smart terminal. Operation instructions and send them out.
  • control module of the smart terminal further includes a first control unit, the first control unit is communicatively connected with the second command unit, and the first control unit can receive the Determining an operation instruction of the smart terminal issued by the second instruction unit, and controlling to close the smart terminal according to the operation instruction. Thereby, the smart terminal is stopped from continuing to consume power.
  • a recovery module in the smart terminal can restore the battery power in the smart terminal. Normal use.
  • FIG. 5 it is a schematic flowchart of a step of using the reserved power according to a preferred one of FIG. It can be seen from the figure that, in this embodiment, the step of using the reserved power again to start the smart terminal is further provided:
  • the recovery module specifically includes a third monitoring module, and when the user starts the smart terminal again, the third monitoring module can monitor the battery power of the smart terminal and compare it with a preset.
  • the thresholds are compared, and the preset thresholds may be equal to the preset thresholds mentioned in the above embodiments.
  • a detection command is generated and sent out.
  • the recovery module further includes a fourth monitoring unit, the fourth monitoring unit is in communication with the third monitoring unit, and can receive a detection instruction issued by the third monitoring unit, and according to the detecting And instructing to monitor whether the smart terminal starts the reserved power setting system, and when the detection result is that the reserved power setting system has been started, generating an operation instruction for closing the reserved power setting system; As a result, when the reserved power setting system is not started, an operation instruction for closing the smart terminal is generated.
  • the reserved power setting system When the reserved power setting system has been started, the reserved power setting system is turned off, using the hidden
  • the recovery module of the smart terminal further includes a second control unit, and the second control unit Communicating with the fourth monitoring unit.
  • the second control unit may receive an operation instruction for shutting down the reserved power setting system sent by the fourth monitoring unit, and control to turn off the reserved power setting system according to the operation instruction, thereby
  • the smart terminal can normally use and display the power corresponding to the reserved power value hidden in the above embodiment.
  • the fourth monitoring The unit when the detection result is that the reserved power setting system is not activated, indicating that the actual battery power in the smart terminal is already lower than the preset threshold, then the fourth monitoring The unit generates an operation instruction to close the smart terminal.
  • the recovery module further includes a third control unit, the third control unit is also in communication with the fourth monitoring unit, and can receive an operation instruction of the fourth monitoring unit to close the smart terminal, and according to The operation instruction turns off the smart terminal.
  • the present invention provides a method for power regulation of an intelligent terminal.
  • the user may store a reserved power value in the smart terminal in advance, and the smart terminal hides the battery power corresponding to the reserved power value according to the reserved power value, and displays a virtual power value to the user.
  • the smart terminal is turned off, and when the power is turned back on, the power usage is restored, and a reserved power is stored for the user, so as to be used when necessary.
  • FIG. 6 is a structural diagram of a power regulation system of a smart terminal according to a preferred embodiment of the present invention.
  • the provided power control system includes the following modules and units:
  • the input module includes:
  • a startup unit configured to start a reserved power setting system
  • An input unit configured to capture a reserved power value input to the smart terminal
  • a storage unit configured to read the reserved power quantity value, and convert the reserved power quantity value into a computer-readable digital information and store the digital information in the smart terminal.
  • the virtual module includes:
  • the first monitoring unit is configured to monitor a current battery power of the smart terminal.
  • a data processing unit configured to subtract the reserved power amount value from the current battery power of the smart terminal to obtain a virtual power amount
  • a rewriting unit configured to rewrite the monitoring result of monitoring the battery power of the smart terminal again, and rewriting the monitoring result to the virtual power.
  • the control module includes:
  • a second monitoring unit monitoring battery power of the smart terminal, and acquiring current virtual power
  • the second instruction module compares the current virtual power with a preset threshold, and when the current virtual power is less than the preset threshold, generates an operation instruction for closing the smart terminal;
  • the first control unit is configured to control to close the smart terminal.
  • the recovery module includes
  • a third monitoring unit after starting the smart terminal again, monitoring a battery power of the smart terminal;
  • a fourth monitoring unit when the battery power is less than the preset threshold, monitoring whether to activate the reserved power setting system, and when the reserved power setting system is started, generating a system for turning off the reserved power setting system Operation instruction
  • a second control unit configured to turn off the reserved power setting system, and use the hidden power corresponding to the reserved power value
  • a third control unit when the reserved power setting system is not activated, controlling to close the smart terminal.
  • the present invention further provides a power control system for an intelligent terminal, wherein the power control system can be used to store a reserved power value in the smart terminal.
  • the smart terminal hides the battery power corresponding to the reserved power value according to the reserved power value, displays a virtual power value to the user, and turns off the smart terminal when the battery power of the smart terminal is consumed to the reserved power value, and When re-opening, restore power usage and store a reserved amount of power for the user to use when necessary.

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Abstract

一种智能终端的电量调控方法及电量调控系统,其包括以下步骤:在智能终端中输入一预留电量数值,按照预留电量数值,隐藏预留电量数值对应的电量,生成一虚拟电量,当虚拟电量小于一预设阈值时,关闭智能终端,再次启动智能终端,恢复使用预留电量数值对应的电量。用户可以预先为其智能终端设置一预留电量数值,则智能终端可在电量消耗达到该预留电量数值时,自动关闭,从而,为用户存储一定的电量以备必须时刻使用。

Description

一种智能终端的电量调控方法及电量调控系统 技术领域
本发明涉及智能终端的电池电量控制领域,尤其涉及一种智能终端的电量调控方法及电量调控系统。
背景技术
随着科技的发展和进步,智能终端的发展也是日新月异,智能终端因其便利性和功能性,已经逐渐渗入到人们生活的方方面面,成为人们生活中不可或缺的辅助设备。特别是,随着智能终端可借助于网络技术实现彼此之间的通讯连接,极大地提高了智能终端的智能化及便捷性,备受用户的青睐。例如,微信、微博等通讯或者信息媒介的发展,改变了传统的信息交流以及传播方式。
但是,随着智能终端使用频率的增加,智能终端电池电量的消耗快是智能终端目前存在的一大问题。特别的,当用户遇到紧急情况需要智能终端协助处理,比如在陌生环境下,需要导航,或者打电话咨询时,智能终端没有电量,会给用户带来极大的困扰。同时,随着智能终端应用性的增强,用户常常因为太依赖智能终端,而忽视智能终端电量的消耗速率,从而导致出现在需要使用智能终端时,智能终端却处于无电量状态,严重影响用户的使用体验。
发明内容
为解决上述问题,本发明提出一种智能终端的预留电量方法及预留电量系统。利用本发明,用户可以预先为其智能终端设置一预留电量数值,则,智能终端可在电量消耗达到该预留电量数值时,自动关闭,从而,为用户存储一定的电量以备必须时刻使用。
具体地,本发明提供一种智能终端的电量调控的方法,其包括以下步骤:在所述智能终端中输入一预留电量数值,按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量,当所述虚拟电量小于一预设阈值时,关闭所述智能终端,再次启动所述智能终端,恢复使用所述预留电量数值对应的电量。
优选地,在所述智能终端中输入一预留电量数值的步骤包括,启动所述智能终端的电量调控设置系统,向所述智能终端中输入一预留电量数值,所述智能终端读取所述预 留电量数值,并将所述预留电量数值转换为一计算机可读的数字信息存储于所述智能终端中。
优选地,按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量的步骤包括,监控所述智能终端的当前电池电量,在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量,改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
优选地,当所述虚拟电量小于一预设阈值时,关闭所述智能终端的步骤包括,监控所述智能终端的电池电量,获取当前虚拟电量,将所述当前虚拟电量与一预设阈值进行比较,当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令。
优选地,再次启动所述智能终端,使用所述预留电量的步骤包括,再次启动所述智能终端后,监控所述智能终端的电池电量,当所述电池电量小于所述预设阈值时,监测是否启动预留电量设置系统,当所述预留电量设置系统已启动时,关闭所述预留电量设置系统,使用隐藏的所述预留电量数值对应的电量,当所述预留电量设置系统未启动时,关闭所述智能终端。
本发明另一方面,还提供一种智能终端的电量调控系统,其包括以下模块,输入模块,在所述智能终端中输入一预留电量数值,虚拟模块,按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量,控制模块,当所述虚拟电量小于一预设阈值时,关闭所述智能终端,恢复模块,当再次启动所述智能终端时,恢复使用所述预留电量数值对应的电量。
优选地,所述输入模块包括,启动单元,启动预留电量设置系统,输入单元,捕获对所述智能终端中输入的一预留电量数值,存储单元,所述智能终端读取所述预留电量数值,并将所述预留电量数值转换为一计算机可读的数字信息存储于所述智能终端中。
优选地,所述虚拟模块包括,第一监控单元,监控所述智能终端的当前电池电量,数据处理单元,在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量,改写单元,改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
优选地,所述控制模块包括,第二监控单元,监控所述智能终端的电池电量,获取当前虚拟电量,第二指令模块,将所述当前虚拟电量与一预设阈值进行比较,当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令,第一控制单元,控制关闭所述智能终端。
优选地,所述恢复模块包括,第三监控单元,再次启动所述智能终端后,监控所述 智能终端的电池电量,第四监控单元,当所述电池电量小于所述预设阈值时,监测是否启动预留电量设置系统,当所述预留电量设置系统已启动时,生成一关闭所述预留电量设置系统的操作指令,第二控制单元,控制关闭所述预留电量设置系统,使用隐藏的所述预留电量数值对应的电量,第三控制单元,当所述预留电量设置系统未启动时,控制关闭所述智能终端。
与现有技术相比较,本发明的技术优势在于:本发明提供一种智能终端的电量调控方法及电量调控系统。利用本发明中的方法,用户可预先在智能终端中存储一预留电量数值,所述智能终端根据所述预留电量数值隐藏该预留电量数值对应的电池电量,向用户显示一虚拟电量数值,并在智能终端的电池电量消耗至所述预留电量数值时,关闭智能终端,并在重新开启时,恢复电量使用,为用户存储一预留电量,以备必要时使用。
附图说明
图1为一符合本发明一优选实施例的智能终端的预留电量的方法的流程示意图;
图2为一符合图1中一优选地在所述智能终端中输入一预留电量数值的步骤的流程示意图;
图3为一符合图1中一优选地按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量的步骤的流程示意图;
图4为一符合图1中一优选地当所述虚拟电量小于一预设阈值时,关闭所述智能终端的步骤的流程示意图;
图5为一符合图1中一优选地再次启动所述智能终端,使用所述预留电量的步骤的流程示意图;
图6为一符合本发明一优选实施例的智能终端的电量调控系统的结构图。
具体实施方式
下面结合附图及具体实施例,详细阐述本发明的优势。
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
在本公开使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本公开。在本公开和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括 多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
应当理解,尽管在本公开可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本公开范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语“如果”可以被解释成为“在……时”或“当……时”或“响应于确定”
在后续的描述中,使用用于表示元件的诸如“模块”、“部件”或“单元”的后缀仅为了有利于本发明的说明,其本身并没有特定的意义。因此,“模块”与“部件”可以混合地使用。
当前,随着智能终端使用频率的增加,智能终端电池电量的消耗快是智能终端目前存在的一大问题。特别的,当用户遇到紧急情况需要智能终端协助处理,比如在陌生环境下,需要导航,或者打电话咨询时,智能终端没有电量,会给用户带来极大的困扰。同时,随着智能终端应用性的增强,用户常常因为太依赖智能终端,而忽视智能终端电量的消耗速率,从而导致出现在需要使用智能终端时,智能终端却处于无电量状态,严重影响用户的使用体验。
为解决上述问题,本发明提出一种智能终端的预留电量的方法。本发明通过在所述智能终端中预留一定的电池电量的方法,一方面提醒客户电量消耗情况;同时可为用户存储一定的电流以备不时之需。具体参阅图1,其为一符合本发明一优选实施例的智能终端的预留电量的方法的流程示意图。从图中可以看出,本实施例所提供的智能终端的预留电量的方法包括:
-在所述智能终端中输入一预留电量数值
本实施例中,用户可以根据使用经验,根据自身需求,预先在所述智能终端中输入一预留电量数值。具体地,本实施例中,所述智能终端中设置有一输入模块,所述输入模块可捕获一用户的操作指令,并根据该操作指令,在所述智能终端中输入一预留电量数值。
具体地,参阅图2,其为一符合图1中一优选地在所述智能终端中输入一预留电量数值的步骤的流程示意图。从图中可以看出,优选地,本实施例中,所提出的在所述智能终端中输入一预留电量的数值的步骤包括:
启动所述智能终端的电量调控系统
更加具体地,本实施例中,所述智能终端的输入模块包括一启动单元,所述启动单元可以捕获用户对所述智能终端输入的一操作指令,如触动所述智能终端屏幕上一快捷 图标或者快捷菜单中一快捷方式,或者按动所智能终端上一快捷按钮等,所述智能终端感应到用户对所述智能终端的触发动作,将读取所述触发动作,并进一步解析所述触发动作,获取所述智能终端当前显示桌面信息、所述触发动作的桌面坐标、所述触发动作的压力、速度、频率等,从而,根据解析后的所述操作指令所包含的操作内容,执行启动所述智能终端的电量调控系统的动作。
向所述智能终端中输入一预留电量数值
本实施例中,所述智能终端启动所述电量调控系统后,所述智能终端可在通过,优选地,在所述智能终端的显示界面中弹出一对话框的形式,提示用户输入一预留电量数值。则,用户可以根据使用经验,或者自身需求,向所述智能终端中输入一预留电量数值。具体地,本实施例中,所述智能终端中的输入模块包括一输入单元,所述输入单元可以捕获用户对所述智能终端中输入的一预留电量数值。
所述智能终端读取所述预留电量数值,并将所述预留电量数值转换为一计算机可读
的数字信息存储于所述智能终端中。
进一步地,所述智能终端中还包括一存储单元,所述存储单元可读取用户对所述智能终端中输入的所述预留电量数值,并可将所述预留电量数值转换为一计算机可读的数字信息,如将用户输入的十进制信息,转换为一计算机可读的二进制信息,并将转换后的代表所述预留电量数值的数字信息,如二进制信息存储于所述智能终端的存储空间中。
进一步优选地,本实施例中,所述智能终端中还可存储一所述智能终端的各应用程序的单位时间的电量消耗表,如微信每四分钟消耗电量X毫安或者Y%,从而,用户可以直接选择待使用应用程序,则,所述智能终端根据一预存的计算方法,计算获得一预电量数值。
-按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量
继续参阅图1,本实施例中,根据用户的经验及需求向所述智能终端中输入所述预留电量数值并存储后,所述智能终端中的一虚拟模块将进一步读取所述预留电量数值,并根据所述预留电量数值,隐藏所述智能终端对应所述预留电量数值的电池电量,从而,实现当所述智能终端的电池的电量消耗至所述预留电量数值时,阻止所述智能终端继续消耗电池电量。
具体地,参阅图3,其为一符合图1中一优选地按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量的步骤的流程示意图。从图中可以看出,本实施例中,所提供的按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量的步骤主要包括:
监控所述智能终端的当前电池电量
本实施例中,所述智能终端中的所述虚拟模块包括一第一监控单元,所述第一监控单元实时监控所述智能终端的电池电量的消耗情况,并获取所述智能终端的当前电池电量,并向外发送。
在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量
进一步地,所述智能终端的所述虚拟模块还包括一数据处理单元,所述数据处理单元与所述第一监控单元通讯连接,可读取所述第一监控单元发送的当前电池电量,同时读取存储于所述智能终端中的所述预留电量数值,并根据一预设的计算方法,在所述智能终端的当前电量的基础上减去所述预留电量数值,获得一虚拟电量,并向外发送。
改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
更进一步地,本实施例中,所述智能终端的所述虚拟模块还包括一改写单元,所述改写单元与所述数据处理单元通讯连接,可接收所述数据处理单元发送的虚拟电量,并根据一预设程序,改写再次监控所述智能终端的电池电量的监控结果,将所述虚拟电量替代所述监控结果。从而,所述智能终端接收到的电池电量的监控结果为一减去所述预留电量数值的虚拟电量数值,所述预留电量数值的电量被隐藏。
-当所述虚拟电量小于一预设阈值时,关闭所述智能终端
继续参阅图1,从图中可以看出,为更好地模拟电池电量正常状态下的工作模式,给用户创造一电量不足的假定环境。本实施例中,所述智能终端中,当所述虚拟电量小于一预设阈值时,如,所述预设阈值可以是电池电量的4%、3%或者其他,所述智能终端将自动关闭。具体地,本实施例中,所述智能终端中设置有一控制模块,所述控制模块可将所述虚拟电量与一预设阈值进行比较,当比较结果为所述虚拟电量小于所述预设阈值时,所述控制模块将控制关闭所述智能终端。
具体地,参阅图4,其为一符合图1中一优选地当所述虚拟电量小于一预设阈值时,关闭所述智能终端的步骤的流程示意图。从图中可以看出,本实施例中,所提出的当所述虚拟电量小于一预设阈值时,关闭所述智能终端的步骤包括以下步骤:
监控所述智能终端的电池电量,获取当前虚拟电量
本实施例中,所述智能终端的控制模块中包括一第二监控单元,所述第二监控单元可启动所述电量控制系统后,对所述智能终端的电池电量进行实时监控,本实施例中,在隐藏所述预留电量数值对应的电量后,所述第二监控单元获得的电池电量数据为实际电池电量数据减去所述预留电量数值后的电池电量数据,即一当前虚拟电量。
将所述当前虚拟电量与一预设阈值进行比较
进一步地,本实施例中,所述智能终端的控制模块中还包括一第二指令模块,所述第二指令模块与所述第二监控单元通讯连接,所述第二指令模块可接收并读取所述当前虚拟电量,并将所述当前虚拟电量与一预设阈值进行比较,当比较结果为当前虚拟电量小于所述预设阈值时,所述第二指令模块生成一关闭所述智能终端的操作指令,并向外发送。
当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令
更进一步地,本实施例中,所述智能终端的控制模块中还包括一第一控制单元,所述第一控制单元与所述第二指令单元通讯连接,所述第一控制单元可以接收所述第二指令单元发出的关闭所述智能终端的操作指令,跟根据所述操作指令,控制关闭所述智能终端。从而,停止所述智能终端继续消耗电量。
-再次启动所述智能终端,恢复使用所述预留电量数值对应的电量
继续参阅图1,从图中可以看出,本实施例中,当用户再次触发并启动所述智能终端时,所述智能终端中的一恢复模块,可恢复所述智能终端中的电池电量的正常使用。
具体地,参阅图5,其为一符合图1中一优选地再次启动所述智能终端,使用所述预留电量的步骤的流程示意图。从图中可以看出,本实施例中,所提供的再次启动所述智能终端,使用所述预留电量的步骤主要包括:
再次启动所述智能终端后,监控所述智能终端的电池电量
本实施例中,所述恢复模块具体包括一第三监控模块,当用户再次启动所述智能终端时,所述第三监控模块可监控所述智能终端的电池电量,并将其与一预设阈值进行比较,所述预设阈值与上述实施例中提及的预设阈值可以相等。当所述电池电量小于所述预设阈值时,生产一检测指令,并向外发送。
监测是否启动预留电量设置系统
本实施例中,所述恢复模块还包括一第四监控单元,所述第四监控单元与所述第三监控单元通讯连接,可接收所第三监控单元发出的检测指令,并根据所述检测指令,监测所述智能终端是否启动预留电量设置系统,当检测结果为所述预留电量设置系统已启动时,则,生成一关闭所述预留电量设置系统的操作指令;当所述检测结果为所述预留电量设置系统未启动时,则,生成一关闭所述智能终端的操作指令。
当所述预留电量设置系统已启动时,关闭所述预留电量设置系统,使用隐藏的所述
预留电量数值对应的电量,
本实施例中,所述智能终端的恢复模块还包括一第二控制单元,所述第二控制单元 与所述第四监控单元通讯连接。所述第二控制单元可以接收所述第四监控单元发送的所述关闭所述预留电量设置系统的操作指令,并根据该操作指令,控制关闭所述预留电量设置系统,从而,所述智能终端可正常使用并显示上述实施例中隐藏的所述预留电量数值对应的电量。
当所述预留电量设置系统未启动时,关闭所述智能终端
然而,本实施例中,当所述检测结果为所述预留电量设置系统未启动时,说明所述智能终端中的实际电池电量已经低于所述预设阈值,则,所述第四监控单元生成一关闭所述智能终端的操作指令。所述恢复模块还包括一第三控制单元,所述第三控制单元也与所述第四监控单元通讯连接,可接收所述第四监控单元发送的关闭所述智能终端的操作指令,并根据所述操作指令,关闭所述智能终端。
综上所述,本发明提供一种智能终端的电量调控的方法。利用本发明中的方法,用户可预先在智能终端中存储一预留电量数值,所述智能终端根据所述预留电量数值隐藏该预留电量数值对应的电池电量,向用户显示一虚拟电量数值,并在智能终端的电池电量消耗至所述预留电量数值时,关闭智能终端,并在重新开启时,恢复电量使用,为用户存储一预留电量,以备必要时使用。
本发明另一方面,还提供一种智能终端的电量调控系统。参阅图6,其为一符合本发明一优选实施例的智能终端的电量调控系统的结构图。从图中可以看出,本实施例中,所提供的电量调控系统包括以下模块及单元:
-输入模块
用于在所述智能终端中输入一预留电量数值并存储于所述智能终端的存储空间中。其中,所述输入模块包括:
启动单元,用于启动预留电量设置系统;
输入单元,用于捕获对所述智能终端中输入的一预留电量数值;
存储单元,用于读取所述预留电量数值,并将所述预留电量数值转换为一计算机可读的数字信息存储于所述智能终端中。
-虚拟模块
用于按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量。其中,所述虚拟模块包括:
第一监控单元,用于监控所述智能终端的当前电池电量。
数据处理单元,用于在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量,
改写单元,用于改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
-控制模块
当所述虚拟电量小于一预设阈值时,关闭所述智能终端。其中,所述控制模块包括:
第二监控单元,监控所述智能终端的电池电量,获取当前虚拟电量;
第二指令模块,将所述当前虚拟电量与一预设阈值进行比较,当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令;
第一控制单元,用于控制关闭所述智能终端。
-恢复模块
当再次启动所述智能终端时,用于恢复使用所述预留电量数值对应的电量。所述恢复模块包括,
第三监控单元,再次启动所述智能终端后,监控所述智能终端的电池电量;
第四监控单元,当所述电池电量小于所述预设阈值时,监测是否启动预留电量设置系统,当所述预留电量设置系统已启动时,生成一关闭所述预留电量设置系统的操作指令;
第二控制单元,控制关闭所述预留电量设置系统,使用隐藏的所述预留电量数值对应的电量;
第三控制单元,当所述预留电量设置系统未启动时,控制关闭所述智能终端。
综上所述,对应上述的智能终端的电量调控方法,本发明还提供一种智能终端的电量调控系统,利用该电量调控系统,用户可预先在智能终端中存储一预留电量数值,所述智能终端根据所述预留电量数值隐藏该预留电量数值对应的电池电量,向用户显示一虚拟电量数值,并在智能终端的电池电量消耗至所述预留电量数值时,关闭智能终端,并在重新开启时,恢复电量使用,为用户存储一预留电量,以备必要时使用。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种智能终端的电量调控的方法,其特征在于,包括以下步骤:
    在所述智能终端中输入一预留电量数值,
    按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量,
    当所述虚拟电量小于一预设阈值时,关闭所述智能终端,
    再次启动所述智能终端,恢复使用所述预留电量数值对应的电量。
  2. 如权利要求1所述的方法,其特征在于,
    在所述智能终端中输入一预留电量数值的步骤包括,
    启动所述智能终端的电量调控设置系统,
    向所述智能终端中输入一预留电量数值,
    所述智能终端读取所述预留电量数值,并将所述预留电量数值转换为一计算机可读的数字信息存储于所述智能终端中。
  3. 如权利要求1所述的方法,其特征在于,
    按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量的步骤包括,
    监控所述智能终端的当前电池电量,
    在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量,改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
  4. 如权利要求3所述的方法,其特征在于,
    当所述虚拟电量小于一预设阈值时,关闭所述智能终端的步骤包括,
    监控所述智能终端的电池电量,获取当前虚拟电量,
    将所述当前虚拟电量与一预设阈值进行比较,
    当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令。
  5. 如权利要求1所述的方法,其特征在于,
    再次启动所述智能终端,使用所述预留电量的步骤包括,
    再次启动所述智能终端后,监控所述智能终端的电池电量,
    当所述电池电量小于所述预设阈值时,
    监测是否启动预留电量设置系统,
    当所述预留电量设置系统已启动时,关闭所述预留电量设置系统,
    使用隐藏的所述预留电量数值对应的电量,
    当所述预留电量设置系统未启动时,关闭所述智能终端。
  6. 一种智能终端的电量调控系统,其特征在于,包括以下模块,
    输入模块,在所述智能终端中输入一预留电量数值,
    虚拟模块,按照所述预留电量数值,隐藏所述预留电量数值对应的电量,生成一虚拟电量,
    控制模块,当所述虚拟电量小于一预设阈值时,关闭所述智能终端,
    恢复模块,当再次启动所述智能终端时,恢复使用所述预留电量数值对应的电量。
  7. 如权利要求6所述的电量调控系统,其特征在于,
    所述输入模块包括,
    启动单元,启动预留电量设置系统,
    输入单元,捕获对所述智能终端中输入的一预留电量数值,
    存储单元,所述智能终端读取所述预留电量数值,并将所述预留电量数值转换为一计算机可读的数字信息存储于所述智能终端中。
  8. 如权利要求6所述的电量调控系统,其特征在于,
    所述虚拟模块包括,
    第一监控单元,监控所述智能终端的当前电池电量,
    数据处理单元,在所述智能终端的当前电池电量的基础上减去所述预留电量数值,获得一虚拟电量,
    改写单元,改写再次监控所述智能终端的电池电量的监控结果,将所述监控结果改写为所述虚拟电量。
  9. 如权利要求6所述的电量调控系统,其特征在于,
    所述控制模块包括,
    第二监控单元,监控所述智能终端的电池电量,获取当前虚拟电量,
    第二指令模块,将所述当前虚拟电量与一预设阈值进行比较,当所述当前虚拟电量小于所述预设阈值时,生成一关闭所述智能终端的操作指令,
    第一控制单元,控制关闭所述智能终端。
  10. 如权利要求6所述的电量调控系统,其特征在于,
    所述恢复模块包括,
    第三监控单元,再次启动所述智能终端后,监控所述智能终端的电池电量,
    第四监控单元,当所述电池电量小于所述预设阈值时,监测是否启动预留电量设置系 统,当所述预留电量设置系统已启动时,生成一关闭所述预留电量设置系统的操作指令,
    第二控制单元,控制关闭所述预留电量设置系统,使用隐藏的所述预留电量数值对应的电量,
    第三控制单元,当所述预留电量设置系统未启动时,控制关闭所述智能终端。
PCT/CN2017/110168 2017-11-09 2017-11-09 一种智能终端的电量调控方法及电量调控系统 WO2019090590A1 (zh)

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