WO2017049479A1 - 一种智能手环的用电分配方法及智能手环 - Google Patents

一种智能手环的用电分配方法及智能手环 Download PDF

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Publication number
WO2017049479A1
WO2017049479A1 PCT/CN2015/090407 CN2015090407W WO2017049479A1 WO 2017049479 A1 WO2017049479 A1 WO 2017049479A1 CN 2015090407 W CN2015090407 W CN 2015090407W WO 2017049479 A1 WO2017049479 A1 WO 2017049479A1
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WO
WIPO (PCT)
Prior art keywords
event
power
smart bracelet
critical
amount
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PCT/CN2015/090407
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English (en)
French (fr)
Inventor
刘均
陈松林
周德臻
欧阳张鹏
Original Assignee
深圳还是威健康科技有限公司
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Application filed by 深圳还是威健康科技有限公司 filed Critical 深圳还是威健康科技有限公司
Priority to PCT/CN2015/090407 priority Critical patent/WO2017049479A1/zh
Priority to CN201580002065.2A priority patent/CN107003704A/zh
Publication of WO2017049479A1 publication Critical patent/WO2017049479A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof

Definitions

  • the present invention relates to the field of smart terminal technologies, and in particular, to a power distribution method and a smart wristband of a smart wristband.
  • Embodiments of the present invention provide a power distribution method and a smart wristband of a smart wristband, so that after the power of the smart wristband is insufficient, sufficient remaining power is reserved to process key events or transmit key data.
  • a power distribution method for a smart wristband includes:
  • the smart bracelet If it is determined that the remaining power is greater than the power required to process the critical data or event, and is less than the sum of the power required to process the critical data or event and the set margin, the smart bracelet enters a shutdown state.
  • the calculating a quantity of power required to process the key data includes: [0011] acquiring a size of the key data;
  • the amount of power required to process the critical event is calculated based on the process required to process the critical event and the amount of power required to complete each process.
  • the method further includes: [0016] The remaining power is displayed as zero.
  • the method further includes:
  • a smart wristband is provided, where the smart wristband includes:
  • a first calculating unit configured to calculate a power required to process the key data or the event when detecting that the remaining power of the smart bracelet is less than the set power value ;
  • a shutdown unit configured to determine, when the remaining power is greater than a power required to process critical data or an event, and less than a sum of a power required to process the critical data or event and a set margin, the smart bracelet Enter the shutdown state.
  • the first calculating unit includes:
  • an obtaining unit configured to acquire a size of the key data
  • the second calculating unit is configured to calculate, according to the acquired size of the key data, a quantity of power required to transmit or store the key data.
  • the calculating unit is specifically configured to:
  • the amount of power required to process the critical event is calculated based on the process that is required to process the critical event and the amount of power that is required to complete each process.
  • the smart bracelet further includes:
  • the display unit is configured to display that the remaining power is zero.
  • the smart bracelet further includes:
  • a processing unit configured to process the critical data or event when the smart bracelet enters a shutdown state and receives a request to process the critical data or event.
  • a smart wristband includes: an input device, an output device, a memory, and a processor;
  • the processor performs the following steps:
  • the smart bracelet If it is determined that the remaining power is greater than the power required to process the critical data or event, and is less than the sum of the power required to process the critical data or event and the set margin, the smart bracelet enters a shutdown state.
  • the step of the processor performing the calculation of the power required to process the key data includes:
  • the performing, by the processor, the step of calculating a power required to process a critical event includes:
  • the amount of power required to process the critical event is calculated based on the process that is required to process the critical event and the amount of power that is required to complete each process.
  • the processor further performs the following steps :
  • the processor further performs the following steps:
  • the power distribution method and the smart bracelet of the smart wristband provided by the embodiment of the present invention are used to calculate the remaining power of the smart wristband, and calculate the required data or event.
  • the amount of power remaining, and the remaining amount of power is greater than the amount of power required to process critical data or events, and less than the sum of the amount of power required to process critical data or events and the set margin, the smart bracelet enters a shutdown state, and the remaining power is saved. After the smart bracelet is running low, leave enough remaining power to handle critical events or transfer critical data , to avoid inconvenience and loss to the user.
  • FIG. 1 is a schematic flowchart of a power distribution method of a smart wristband according to an embodiment of the present invention
  • FIG. 2 is a schematic flow chart for further refining a power distribution method of a smart wristband according to an embodiment of the present invention shown in FIG. 1;
  • FIG. 3 is a schematic structural diagram of a smart wristband according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of further refinement of a smart bracelet provided by the embodiment of the present invention shown in FIG. 3 .
  • FIG. 5 is a schematic structural diagram of still another smart wristband according to an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a power distribution method of a smart wristband according to an embodiment of the present invention.
  • the method includes the following steps: S101. When detecting that the remaining power of the smart wristband is less than a set power value, Calculate the amount of power needed to process critical data or events.
  • the smart bracelet actually detects the remaining power, and when it detects that the remaining power is less than the set power value, that is, the warning value, calculates the amount of power required to process the key data or event in the smart bracelet.
  • the set power value is generally greater than the sum of the power required to process critical data or events and the set margin. S102. If it is determined The remaining power is greater than the amount of power required to process critical data or events, and is less than the sum of the amount of power required to process critical data or events and the set margin, and the smart bracelet enters a shutdown state.
  • the smart bracelet When the remaining power is less than the sum of the calculated power and event required for processing the critical data or event, of course, to ensure that the remaining power is greater than the power required to process the critical data or event, the smart bracelet enters The shutdown state prevents the user from using the smart bracelet to handle other events, so as to reserve enough remaining power to handle critical events or transmit critical data, thereby avoiding inconvenience and loss to the user.
  • a power distribution method for a smart wristband calculates the amount of power required to process critical data or an event after detecting that the remaining power of the smart wristband is greater than the warning value.
  • the remaining battery power is greater than the power required to process critical data or events, and is less than the sum of the power required to process critical data or events and the set margin.
  • the smart bracelet enters the shutdown state and saves the remaining power, thus the smart bracelet If the power is low, leave enough remaining power to handle critical events or transmit critical data to avoid inconvenience and loss to the user.
  • FIG. 2 is a schematic flowchart of further refining the power distribution method of the smart wristband provided by the embodiment of the present invention shown in FIG. 1 , the method includes the following steps: S201, when detecting the smart bracelet The remaining battery is less than the set battery value, and the size of the key data is obtained. S202. Calculate, according to the size of the obtained key data, the amount of power required to transmit or store the key data.
  • the amount of power required to process the critical event is calculated, including:
  • Calculating the amount of power required to process the critical event is based on the process that is required to process the critical event and the amount of power that is required to complete each process. S203. If it is determined that the remaining power is greater than the power required to process the critical data or event, and is less than the sum of the power required to process the critical data or event and the set margin, the remaining power is displayed as zero.
  • the remaining power is less than the sum of the calculated power and the required amount of processing key data or events, of course, to ensure that the remaining power is greater than the power required to process the critical data or event, the remaining power is displayed to the user.
  • the user stops using the smartphone to handle any other transaction.
  • S204. The smart bracelet enters a shutdown state.
  • the smart bracelet automatically enters a shutdown state.
  • S205. Process the key data or event when the smart bracelet enters a shutdown state and receives a request to process the critical data or event.
  • the critical data or event is processed.
  • the request may be sent internally by the smart bracelet. For example, when there is still no remaining data stored, when the smart bracelet enters the shutdown state, the system automatically stores the remaining data; the request may also be externally input.
  • the user wants to make an emergency call with the smart bracelet, and after receiving the request, the emergency call interface is opened, the user's call request is received, and the call state is entered.
  • a power distribution method of a smart wristband calculates the amount of power required to process critical data or an event after detecting that the remaining power of the smart wristband is greater than the warning value.
  • the remaining battery power is greater than the power required to process critical data or events, and is less than the sum of the power required to process critical data or events and the set margin.
  • the smart bracelet enters the shutdown state and saves the remaining power, thus the smart bracelet If the power is low, leave enough remaining power to handle critical events or transmit critical data to avoid inconvenience and loss to the user.
  • FIG. 3 is a schematic structural diagram of a smart wristband according to an embodiment of the present invention.
  • the smart wristband 1000 includes a first computing unit 11 and a shutdown unit 12 connected to each other.
  • the first calculating unit 11 is configured to calculate, when the remaining power of the smart bracelet is less than the set power value, calculate the amount of power required to process the key data or the event.
  • the smart bracelet actually detects the remaining power, and when it detects that the remaining power is less than the set power value, that is, the warning value ⁇ , calculates the amount of power required to process the key data or event in the smart bracelet.
  • the set power value is generally greater than the sum of the power required to process critical data or events and the set margin.
  • the shutdown unit 12 is configured to: if it is determined that the remaining power is greater than a power required to process critical data or an event, and is smaller than a sum of a power required to process the critical data or event and a set margin, the smart hand The ring enters the shutdown state.
  • the smart bracelet when the remaining power is less than the sum of the calculated power and event required for processing the critical data or event, the smart bracelet enters a shutdown state, so that users cannot use the smart bracelet to handle other events, so as to leave enough remaining power to handle critical events or transmission keys. Data, to avoid inconvenience and loss to the user.
  • a smart wristband is configured to calculate a power required to process critical data or an event after detecting that the remaining power of the smart wristband is greater than the warning value, and the remaining power is greater than the processing key.
  • the amount of power required by the data or event and less than the sum of the amount of power required to process the critical data or event and the set margin.
  • the smart bracelet enters the shutdown state, and the remaining battery is saved, so that the power of the smart bracelet is insufficient. Sufficient remaining power to handle critical events or transmit critical data to avoid inconvenience and loss to the user.
  • FIG. 4 is a schematic structural diagram of further refinement of a smart bracelet provided by the embodiment of the present invention shown in FIG. 3 .
  • the smart bracelet 2000 includes: a first computing unit 21, a display unit 22, a shutdown unit 23, and a processing unit 24 that are sequentially connected.
  • the first calculating unit 21 is configured to calculate, when the remaining power of the smart bracelet is less than the set power value, calculate the amount of power required to process the critical data or event.
  • the first calculation unit 21 includes an acquisition unit 211 and a second calculation unit 212.
  • the obtaining unit 211 is configured to acquire the size of the key data when it is detected that the remaining power of the smart bracelet is less than the set power value.
  • the second calculating unit 212 is configured to calculate, according to the acquired size of the key data, a quantity of power required to transmit or store the key data.
  • the first calculating unit 21 is further configured to:
  • the amount of power required to process the critical event is calculated based on the process required to process the critical event and the amount of power required to complete each process.
  • the display unit 22 is configured to: if the remaining power is greater than the amount of power required to process the critical data or event, and less than the sum of the amount of power required to process the critical data or event and the set margin, display the remaining The charge is zero. [0083] When the remaining power is less than the sum of the calculated power and the required amount of processing key data or events, of course, to ensure that the remaining power is greater than the power required to process the critical data or event, the remaining power is displayed to the user. Zero, the user stops using the smartphone to handle any other transaction.
  • the shutdown unit 23 is configured to enter a shutdown state.
  • the smart bracelet automatically enters a shutdown state.
  • the processing unit 24 is configured to process the critical data or event when the smart bracelet enters a shutdown state and receives a request to process the critical data or event.
  • the critical data or event is processed.
  • the request may be sent internally by the smart bracelet. For example, when there is still no remaining data stored, when the smart bracelet enters the shutdown state, the system automatically stores the remaining data; the request may also be externally input.
  • the user wants to make an emergency call with the smart bracelet, and after receiving the request, the emergency call interface is opened, the user's call request is received, and the call state is entered.
  • a smart wristband calculates the amount of power required to process critical data or events after detecting that the remaining power of the smart bracelet is greater than the warning value, and the remaining power is greater than the processing key.
  • the amount of power required by the data or event and less than the sum of the amount of power required to process the critical data or event and the set margin.
  • the smart bracelet enters the shutdown state, and the remaining battery is saved, so that the power of the smart bracelet is insufficient. Sufficient remaining power to handle critical events or transmit critical data to avoid inconvenience and loss to the user.
  • FIG. 5 is a schematic structural diagram of still another smart wristband according to an embodiment of the present invention.
  • the smart bracelet 3000 may include:
  • the input device 31, the output device 32, the memory 33, and the processor 34 (the number of the processors 34 in the smart bracelet may be one or more, and one processor in FIG. 5 is taken as an example).
  • the input device 31, the output device 32, the memory 33, and the processor 34 may be connected by a bus or other means, wherein the bus connection is exemplified in FIG.
  • the processor 34 is configured to perform the following steps:
  • the smart bracelet if it is determined that the remaining power is greater than the amount of power required to process critical data or events, and is less than the processing key According to the sum of the power required by the event and the set margin, the smart bracelet enters a shutdown state.
  • the processor performs the step of calculating the amount of power required to process the key data.
  • the processor performs the step of calculating a power required to process a critical event, including:
  • the amount of power required to process the critical event is calculated based on the process that is required to process the critical event and the amount of power that is required to complete each process.
  • the processor further performs the following steps:
  • the processor further performs the following steps:
  • a smart wristband calculates the amount of power required to process critical data or events after detecting that the remaining power of the smart bracelet is greater than the warning value, and the remaining power is greater than the processing key.
  • the amount of power required by the data or event and less than the sum of the amount of power required to process the critical data or event and the set margin.
  • the smart bracelet enters the shutdown state, and the remaining battery is saved, so that the power of the smart bracelet is insufficient. Sufficient remaining power to handle critical events or transmit critical data to avoid inconvenience and loss to the user.
  • Computer readable media includes both computer storage media and communication media, including communication media including any medium that facilitates transfer of a computer program from one location to another.
  • the storage medium can be any of the available media that the computer can access.
  • the computer readable medium may include a random access memory (RAM). Read-Only Memory (ROM).
  • EEPROM Electrically Erasable Programmable (Electrically Erasable Programmable) Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory
  • Any one connectable may suitably become a computer readable medium. For example, if the software is using coaxial cable, fiber optic cable, twisted pair, digital subscriber line
  • a disk and a disc include a compact disc (CD), a laser disc, a disc, a digital versatile disc (DVD), a floppy disc, and a Blu-ray disc, wherein the disc is usually magnetically copied, and the disc is The laser is used to optically replicate the data. Combinations of the above should also be included within the scope of the computer readable medium.

Abstract

一种智能手环的用电分配方法及智能手环。该方法用于当检测到智能手环的剩余电量小于设定电量值时,计算处理关键数据或事件所需的电量(S101);若判断所述剩余电量大于处理关键数据或事件所需的电量,且小于处理关键数据或事件所需的电量和设定余量之和时,所述智能手环进入关机状态(S102)。进而保存了剩余电量,从而在智能手环电量不足时,留足足够的剩余电量处理关键事件或传输关键数据,避免给用户带来不便和损失。

Description

说明书 发明名称:一种智能手环的用电分配方法及智能手环
[0001] 技术领域
[0002] 本发明涉及智能终端技术领域, 尤其涉及一种智能手环的用电分配方法及智能 手环。
[0003] 背景技术
[0004] 随着智能手环的流行, 人们使用智能手环的频率越来越高, 安装的应用越来越 多, 导致智能手环的续航吋间比较短, 而如果用户不能及吋给智能手环充电, 导致智能手环不能处理一下关键事件、 传输或存储一些关键数据, 这给用户带 来不便和损失。
[0005] 发明内容
[0006] 本发明实施例提供了一种智能手环的用电分配方法及智能手环, 以在智能手环 电量不足吋, 留足足够的剩余电量处理关键事件或传输关键数据。
[0007] 第一方面, 提供了一种智能手环的用电分配方法, 所述方法包括:
[0008] 当检测到智能手环的剩余电量小于设定电量值吋, 计算处理关键数据或事件所 需的电量;
[0009] 若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数 据或事件所需的电量和设定余量之和吋, 所述智能手环进入关机状态。
[0010] 在第一种可能的实现方式中, 所述计算处理关键数据所需的电量, 包括: [0011] 获取所述关键数据的大小;
[0012] 根据获取的所述关键数据的大小, 计算传输或存储所述关键数据所需的电量。
[0013] 结合第一方面或第一方面的第一种可能的实现方式, 在第二种可能的实现方式 中, 所述计算处理关键事件所需的电量, 包括:
[0014] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。
[0015] 结合第一方面或第一方面的第一种可能的实现方式或第一方面的第二种可能的 实现方式, 在第三种可能的实现方式中, 所述方法还包括: [0016] 显示所述剩余电量为零。
[0017] 结合第一方面或第一方面的第一种可能的实现方式或第一方面的第二种可能的 实现方式或第一方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所述方法还包括:
[0018] 当所述智能手环进入关机状态, 且接收到处理所述关键数据或事件的请求吋, 处理所述关键数据或事件。
[0019] 第二方面, 提供了一种智能手环, 所述智能手环包括:
[0020] 第一计算单元, 用于当检测到智能手环的剩余电量小于设定电量值吋, 计算处 理关键数据或事件所需的电量;
[0021] 关机单元, 用于若判断所述剩余电量大于处理关键数据或事件所需的电量, 且 小于处理关键数据或事件所需的电量和设定余量之和吋, 所述智能手环进入关 机状态。
[0022] 在第一种可能的实现方式中, 所述第一计算单元包括:
[0023] 获取单元, 用于获取所述关键数据的大小;
[0024] 第二计算单元, 用于根据获取的所述关键数据的大小, 计算传输或存储所述关 键数据所需的电量。
[0025] 结合第二方面或第二方面的第一种可能的实现方式, 在第二种可能的实现方式 中, 所述计算单元具体用于:
[0026] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。
[0027] 结合第二方面或第二方面的第一种可能的实现方式或第二方面的第二种可能的 实现方式, 在第三种可能的实现方式中, 所述智能手环还包括:
[0028] 显示单元, 用于显示所述剩余电量为零。
[0029] 结合第二方面或第二方面的第一种可能的实现方式或第二方面的第二种可能的 实现方式或第二方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所述智能手环还包括:
[0030] 处理单元, 用于当所述智能手环进入关机状态, 且接收到处理所述关键数据或 事件的请求吋, 处理所述关键数据或事件。 [0031] 第三方面, 提供了一种智能手环, 所述智能手环包括: 输入装置、 输出装置、 存储器和处理器;
[0032] 所述处理器执行如下步骤:
[0033] 当检测到智能手环的剩余电量小于设定电量值吋, 计算处理关键数据或事件所 需的电量;
[0034] 若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数 据或事件所需的电量和设定余量之和吋, 所述智能手环进入关机状态。
[0035] 在第一种可能的实现方式中, 所述处理器执行所述计算处理关键数据所需的电 量的步骤, 包括:
[0036] 获取所述关键数据的大小;
[0037] 根据获取的所述关键数据的大小, 计算传输或存储所述关键数据所需的电量。
[0038] 结合第三方面或第三方面的第一种可能的实现方式, 在第二种可能的实现方式 中, 所述处理器执行所述计算处理关键事件所需的电量的步骤, 包括:
[0039] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。
[0040] 结合第三方面或第三方面的第一种可能的实现方式或第三方面的第二种可能的 实现方式, 在第三种可能的实现方式中, 所述处理器还执行如下步骤:
[0041] 显示所述剩余电量为零。
[0042] 结合第三方面或第三方面的第一种可能的实现方式或第三方面的第二种可能的 实现方式或第三方面的第三种可能的实现方式, 在第四种可能的实现方式中, 所述处理器还执行如下步骤:
[0043] 当所述智能手环进入关机状态, 且接收到处理所述关键数据或事件的请求吋, 处理所述关键数据或事件。
[0044] 实施本发明实施例提供的一种智能手环的用电分配方法及智能手环, 在检测到 智能手环的剩余电量 ί氐于预警值吋, 计算处理关键数据或事件所需的电量, 且 该剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件 所需的电量和设定余量之和吋, 智能手环进入关机状态, 保存该剩余电量, 从 而在智能手环电量不足吋, 留足足够的剩余电量处理关键事件或传输关键数据 , 避免给用户带来不便和损失。
[0045] 附图说明
[0046] 为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实施例中 所需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本发 明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的前提 下, 还可以根据这些附图获得其他的附图。
[0047] 图 1为本发明实施例提供的一种智能手环的用电分配方法的流程示意图;
[0048] 图 2为对图 1所示的本发明实施例提供的一种智能手环的用电分配方法进一步细 化的流程示意图;
[0049] 图 3为本发明实施例提供的一种智能手环的结构示意图;
[0050] 图 4为对图 3所示的本发明实施例提供的一种智能手环进一步细化的结构示意图
[0051] 图 5为本发明实施例提供的又一种智能手环的结构示意图。
[0052] 具体实施方式
[0053] 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部 的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作出创造性劳 动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
[0054] 图 1为本发明实施例提供的一种智能手环的用电分配方法的流程示意图, 该方 法包括以下步骤: S101、 当检测到智能手环的剩余电量小于设定电量值吋, 计 算处理关键数据或事件所需的电量。
[0055] 在使用智能手环的过程中, 有一些关键数据需要传输或存储, 例如当数据存储 一部分吋, 突然关机, 需要留足存储其剩余数据的电量, 或者需要处理一些关 键事件, 例如拨打紧急电话, 因此, 需要留足电量处理这些关键数据或事件, 以免给用户带来不便和损失。
[0056] 智能手环实吋检测其剩余电量, 当检测到其剩余电量小于设定电量值即预警值 吋, 计算处理智能手环中的关键数据或事件所需的电量。 当然, 该设定电量值 一般大于处理关键数据或事件所需的电量和设定余量之和。 S102、 若判断所述 剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件所 需的电量和设定余量之和吋, 所述智能手环进入关机状态。
[0057] 在剩余电量小于计算出的处理关键数据或事件所需的电量和设定余量之和吋, 当然要保证剩余电量大于处理关键数据或事件所需的电量, 则智能手环就进入 关机状态, 使用户不能使用该智能手环处理其它事件, 以留足足够的剩余电量 处理关键事件或传输关键数据, 避免给用户带来不便和损失。
[0058] 根据本发明实施例提供的一种智能手环的用电分配方法, 在检测到智能手环的 剩余电量 ί氐于预警值吋, 计算处理关键数据或事件所需的电量, 且该剩余电量 大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件所需的电量 和设定余量之和吋, 智能手环进入关机状态, 保存该剩余电量, 从而在智能手 环电量不足吋, 留足足够的剩余电量处理关键事件或传输关键数据, 避免给用 户带来不便和损失。
[0059] 图 2为对图 1所示的本发明实施例提供的一种智能手环的用电分配方法进一步细 化的流程示意图, 该方法包括以下步骤: S201、 当检测到智能手环的剩余电量 小于设定电量值吋, 获取关键数据的大小。 S202、 根据获取的所述关键数据的 大小, 计算传输或存储所述关键数据所需的电量。
[0060] 以上为计算传输或存储关键数据所需的电量, 需要在存储器中获取待传输的数 据的大小, 确定传输所述数据所需的电量, 或根据接收到的数据的大小确定存 储所述数据所需的电量。
[0061] 针对计算处理关键事件所需的电量, 则计算处理关键事件所需的电量, 包括:
[0062] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。 S203、 若判断所述剩余电量大于处理关键数据或 事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之和吋, 显示所述剩余电量为零。
[0063] 在剩余电量小于计算出的处理关键数据或事件所需的电量和设定余量之和吋, 当然要保证剩余电量大于处理关键数据或事件所需的电量, 则对用户显示剩余 电量为零, 用户停止使用智能手机处理任 1可其他事务。 S204、 所述智能手环进 入关机状态。 [0064] 智能手环自动进入关机状态。 S205、 当所述智能手环进入关机状态, 且接收到 处理所述关键数据或事件的请求吋, 处理所述关键数据或事件。
[0065] 在智能手环进入关机状态后, 在接收到处理关键数据或事件的请求吋, 处理该 关键数据或事件。 该请求可以是智能手环内部发出的, 例如, 当还有剩余数据 没有存储完吋, 当智能手环进入关机状态后, 系统内部自动存储完剩余的数据 ; 该请求也可以是外部输入的, 例如, 用户想用智能手环拨打紧急电话, 在接 收到该请求吋, 幵启紧急通话界面, 接收用户的通话请求, 进入通话状态。
[0066] 根据本发明实施例提供的一种智能手环的用电分配方法, 在检测到智能手环的 剩余电量 ί氐于预警值吋, 计算处理关键数据或事件所需的电量, 且该剩余电量 大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件所需的电量 和设定余量之和吋, 智能手环进入关机状态, 保存该剩余电量, 从而在智能手 环电量不足吋, 留足足够的剩余电量处理关键事件或传输关键数据, 避免给用 户带来不便和损失。
[0067] 图 3为本发明实施例提供的一种智能手环的结构示意图, 该智能手环 1000包括 互相连接的第一计算单元 11和关机单元 12。
[0068] 第一计算单元 11 , 用于当检测到智能手环的剩余电量小于设定电量值吋, 计算 处理关键数据或事件所需的电量。
[0069] 在使用智能手环的过程中, 有一些关键数据需要传输或存储, 例如当数据存储 一部分吋, 突然关机, 需要留足存储其剩余数据的电量, 或者需要处理一些关 键事件, 例如拨打紧急电话, 因此, 需要留足电量处理这些关键数据或事件, 以免给用户带来不便和损失。
[0070] 智能手环实吋检测其剩余电量, 当检测到其剩余电量小于设定电量值即预警值 吋, 计算处理智能手环中的关键数据或事件所需的电量。 当然, 该设定电量值 一般大于处理关键数据或事件所需的电量和设定余量之和。
[0071] 关机单元 12, 用于若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之和吋, 所述智能手环进入 关机状态。
[0072] 在剩余电量小于计算出的处理关键数据或事件所需的电量和设定余量之和吋, 当然要保证剩余电量大于处理关键数据或事件所需的电量, 则智能手环就进入 关机状态, 使用户不能使用该智能手环处理其它事件, 以留足足够的剩余电量 处理关键事件或传输关键数据, 避免给用户带来不便和损失。
[0073] 根据本发明实施例提供的一种智能手环, 在检测到智能手环的剩余电量 ί氐于 预警值吋, 计算处理关键数据或事件所需的电量, 且该剩余电量大于处理关键 数据或事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之 和吋, 智能手环进入关机状态, 保存该剩余电量, 从而在智能手环电量不足吋 , 留足足够的剩余电量处理关键事件或传输关键数据, 避免给用户带来不便和 损失。
[0074] 图 4为对图 3所示的本发明实施例提供的一种智能手环进一步细化的结构示意图
, 该智能手环 2000包括: 依次连接的第一计算单元 21、 显示单元 22、 关机单元 2 3和处理单元 24。
[0075] 第一计算单元 21 , 用于当检测到智能手环的剩余电量小于设定电量值吋, 计算 处理关键数据或事件所需的电量。
[0076] 在一种实施方式中, 第一计算单元 21包括获取单元 211和第二计算单元 212。
[0077] 获取单元 211 , 用于当检测到智能手环的剩余电量小于设定电量值吋, 获取关 键数据的大小。
[0078] 第二计算单元 212, 用于根据获取的所述关键数据的大小, 计算传输或存储所 述关键数据所需的电量。
[0079] 以上为计算传输或存储关键数据所需的电量, 需要在存储器中获取待传输的数 据的大小, 确定传输所述数据所需的电量, 或根据接收到的数据的大小确定存 储所述数据所需的电量。
[0080] 针对计算处理关键事件所需的电量, 则第一计算单元 21还用于:
[0081] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。
[0082] 显示单元 22, 用于若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之和吋, 显示所述剩余电量 为零。 [0083] 在剩余电量小于计算出的处理关键数据或事件所需的电量和设定余量之和吋, 当然要保证剩余电量大于处理关键数据或事件所需的电量, 则对用户显示剩余 电量为零, 用户停止使用智能手机处理任 1可其他事务。
[0084] 关机单元 23, 用于进入关机状态。
[0085] 智能手环自动进入关机状态。
[0086] 处理单元 24, 用于当所述智能手环进入关机状态, 且接收到处理所述关键数据 或事件的请求吋, 处理所述关键数据或事件。
[0087] 在智能手环进入关机状态后, 在接收到处理关键数据或事件的请求吋, 处理该 关键数据或事件。 该请求可以是智能手环内部发出的, 例如, 当还有剩余数据 没有存储完吋, 当智能手环进入关机状态后, 系统内部自动存储完剩余的数据 ; 该请求也可以是外部输入的, 例如, 用户想用智能手环拨打紧急电话, 在接 收到该请求吋, 幵启紧急通话界面, 接收用户的通话请求, 进入通话状态。
[0088] 根据本发明实施例提供的一种智能手环, 在检测到智能手环的剩余电量 ί氐于 预警值吋, 计算处理关键数据或事件所需的电量, 且该剩余电量大于处理关键 数据或事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之 和吋, 智能手环进入关机状态, 保存该剩余电量, 从而在智能手环电量不足吋 , 留足足够的剩余电量处理关键事件或传输关键数据, 避免给用户带来不便和 损失。
[0089] 图 5为本发明实施例提供的又一种智能手环的结构示意图, 该智能手环 3000可 包括:
[0090] 输入装置 31、 输出装置 32、 存储器 33和处理器 34(智能手环中的处理器 34的数 量可以一个或多个, 图 5中以一个处理器为例)。 在本发明的一些实施例中, 输 入装置 31、 输出装置 32、 存储器 33和处理器 34可通过总线或其它方式连接, 其 中, 图 5中以通过总线连接为例。
[0091] 其中, 处理器 34用于执行以下步骤:
[0092] 当检测到智能手环的剩余电量小于设定电量值吋, 计算处理关键数据或事件所 需的电量;
[0093] 若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处理关键数 据或事件所需的电量和设定余量之和吋, 所述智能手环进入关机状态。
[0094] 作为一种实施方式, 所述处理器执行所述计算处理关键数据所需的电量的步骤
, 包括:
[0095] 获取所述关键数据的大小;
[0096] 根据获取的所述关键数据的大小, 计算传输或存储所述关键数据所需的电量。
[0097] 作为另一种实施方式, 所述处理器执行所述计算处理关键事件所需的电量的步 骤, 包括:
[0098] 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量, 计算处 理所述关键事件所需的电量。
[0099] 作为又一种实施方式, 所述处理器还执行如下步骤:
[0100] 显示所述剩余电量为零。
[0101] 作为又一种实施方式, 所述处理器还执行如下步骤:
[0102] 当所述智能手环进入关机状态, 且接收到处理所述关键数据或事件的请求吋, 处理所述关键数据或事件。
[0103] 根据本发明实施例提供的一种智能手环, 在检测到智能手环的剩余电量 ί氐于 预警值吋, 计算处理关键数据或事件所需的电量, 且该剩余电量大于处理关键 数据或事件所需的电量, 且小于处理关键数据或事件所需的电量和设定余量之 和吋, 智能手环进入关机状态, 保存该剩余电量, 从而在智能手环电量不足吋 , 留足足够的剩余电量处理关键事件或传输关键数据, 避免给用户带来不便和 损失。
[0104] 需要说明的是, 对于前述的各方法实施例, 为了简单描述, 故将其都表述为一 系列的动作组合, 伹是本领域技术人员应该知悉, 本发明并不受所描述的动作 顺序的限制, 因为根据本发明, 某些步骤可以采用其他顺序或者同吋进行。 其 次, 本领域技术人员也应该知悉, 说明书中所描述的实施例均属于优选实施例 , 所涉及的动作和模块并不一定是本发明所必须的。
[0105] 在上述实施例中, 对各个实施例的描述都各有侧重, 某个实施例中没有详述 的部分, 可以参见其他实施例的相关描述。
[0106] 本发明实施例方法中的步骤可以根据实际需要进行顺序调整、 合并和刪减。 [0107] 本发明实施例装置中的单元可以根据实际需要进行合并、 划分和刪减。 本领域 的技术人员可以将本说明书中描述的不同实施例以及不同实施例的特征进行结 合或组合。
[0108] 通过以上的实施方式的描述, 所属领域的技术人员可以清楚地了解到本发明可 以用硬件实现, 或固件实现, 或它们的组合方式来实现。 当使用软件实现吋, 可以将上述功能存储在计算机可读介质中或作为计算机可读介质上的一个或多 个指令或代码进行传输。 计算机可读介质包括计算机存储介质和通信介质, 其 中通信介质包括便于从一个地方向另一个地方传送计算机程序的任 1可介质。 存 储介质可以是计算机能够存取的任 1可可用介质。 以此为例伹不限于: 计算机可 读介质可以包括随机存取存储器 (Random Access Memory, RAM). 只读存储器 (Read-Only Memory, ROM). 电可擦可编程只读存储器 (Electrically Erasable Programmable Read-Only Memory, EEPROM)、 只读光盘 (Compact Disc Read-Only Memory, CD-ROM)或其他光盘存储、 磁盘存储介质或者其他磁存 储设备、 或者能够用于携带或存储具有指令或数据结构形式的期望的程序代码 并能够由计算机存取的任 1可其他介质。 此外。 任 1可连接可以适当的成为计算机 可读介质。 例如, 如果软件是使用同轴电缆、 光纤光缆、 双绞线、 数字用户线
(Digital Subscriber Line, DSL) 或者诸如红外线、 无线电和微波之类的无线技 术从网站、 服务器或者其他远程源传输的, 那么同轴电缆、 光纤光缆、 双绞线 、 DSL或者诸如红外线、 无线和微波之类的无线技术包括在所属介质的定影中 。 如本发明所使用的, 盘 (Disk) 和碟 (disc) 包括压缩光碟 (CD) 、 激光碟 、 光碟、 数字通用光碟 (DVD) 、 软盘和蓝光光碟, 其中盘通常磁性的复制数 据, 而碟则用激光来光学的复制数据。 上面的组合也应当包括在计算机可读介 质的保护范围之内。
[0109] 总之, 以上所述仅为本发明技术方案的较佳实施例而已, 并非用于限定本发 明的保护范围。 凡在本发明的精神和原则之内, 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。
技术问题
问题的解决方案 发明的有益效果

Claims

权利要求书
一种智能手环的用电分配方法, 其特征在于, 所述方法包括: 当检测到智能手环的剩余电量小于设定电量值吋, 计算处理关键数据 或事件所需的电量;
若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处 理关键数据或事件所需的电量和设定余量之和吋, 所述智能手环进入 关机状态。
如权利要求 1所述的方法, 其特征在于, 所述计算处理关键数据所需 的电量, 包括:
获取所述关键数据的大小;
根据获取的所述关键数据的大小, 计算传输或存储所述关键数据所需 的电量。
如权利要求 2所述的方法, 其特征在于, 所述计算处理关键事件所需 的电量, 包括:
根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量
, 计算处理所述关键事件所需的电量。
如权利要求 1所述的方法, 其特征在于, 所述方法还包括: 显示所述剩余电量为零。
如权利要求 1-4任意一项所述的方法, 其特征在于, 所述方法还包括 当所述智能手环进入关机状态, 且接收到处理所述关键数据或事件的 请求吋, 处理所述关键数据或事件。
[权利要求 6] —种智能手环, 其特征在于, 所述智能手环包括:
第一计算单元, 用于当检测到智能手环的剩余电量小于设定电量值吋 , 计算处理关键数据或事件所需的电量;
关机单元, 用于若判断所述剩余电量大于处理关键数据或事件所需的 电量, 且小于处理关键数据或事件所需的电量和设定余量之和吋, 所 述智能手环进入关机状态。 [权利要求 7] 如权利要求 6所述的智能手环, 其特征在于, 所述第一计算单元包括 获取单元, 用于获取所述关键数据的大小;
第二计算单元, 用于根据获取的所述关键数据的大小, 计算传输或存 储所述关键数据所需的电量。
[权利要求 8] 如权利要求 7所述的智能手环, 其特征在于, 所述计算单元具体用于 根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量 , 计算处理所述关键事件所需的电量。
[权利要求 9] 如权利要求 6所述的智能手环, 其特征在于, 所述智能手环还包括: 显示单元, 用于显示所述剩余电量为零。
[权利要求 10] 如权利要求 6-9任意一项所述的智能手环, 其特征在于, 所述智能手 环还包括:
处理单元, 用于当所述智能手环进入关机状态, 且接收到处理所述关 键数据或事件的请求吋, 处理所述关键数据或事件。
[权利要求 11] 一种智能手环, 其特征在于, 所述智能手环包括: 输入装置、 输出装 置、 存储器和处理器;
所述处理器执行如下步骤:
当检测到智能手环的剩余电量小于设定电量值吋, 计算处理关键数据 或事件所需的电量;
若判断所述剩余电量大于处理关键数据或事件所需的电量, 且小于处 理关键数据或事件所需的电量和设定余量之和吋, 所述智能手环进入 关机状态。
[权利要求 12] 如权利要求 11所述的智能手环, 其特征在于, 所述处理器执行所述计 算处理关键数据所需的电量的步骤, 包括:
获取所述关键数据的大小;
根据获取的所述关键数据的大小, 计算传输或存储所述关键数据所需 的电量。
[权利要求 13] 如权利要求 12所述的智能手环, 其特征在于, 所述处理器执行所述计 算处理关键事件所需的电量的步骤, 包括:
根据处理所述关键事件所需调用的进程及完成每个进程需花费的电量 , 计算处理所述关键事件所需的电量。
[权利要求 14] 如权利要求 11所述的智能手环, 其特征在于, 所述处理器还执行如下 步骤:
显示所述剩余电量为零。
[权利要求 15] 如权利要求 11-14任意一项所述的智能手环, 其特征在于, 所述处理 器还执行如下步骤:
当所述智能手环进入关机状态, 且接收到处理所述关键数据或事件的 请求吋, 处理所述关键数据或事件。
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