WO2014101488A1 - 一种防止开关误触发的方法及装置 - Google Patents

一种防止开关误触发的方法及装置 Download PDF

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Publication number
WO2014101488A1
WO2014101488A1 PCT/CN2013/083832 CN2013083832W WO2014101488A1 WO 2014101488 A1 WO2014101488 A1 WO 2014101488A1 CN 2013083832 W CN2013083832 W CN 2013083832W WO 2014101488 A1 WO2014101488 A1 WO 2014101488A1
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Prior art keywords
handheld device
operating state
trigger event
real time
status information
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PCT/CN2013/083832
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English (en)
French (fr)
Inventor
王力刚
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中兴通讯股份有限公司
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Publication of WO2014101488A1 publication Critical patent/WO2014101488A1/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
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3206Monitoring of events, devices or parameters that trigger a change in power modality
    • 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
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken

Definitions

  • the invention relates to a sensor environment detecting technology and a power source control technology, and particularly relates to a method and a related device for detecting a switch false trigger by using a sensor, controlling power consumption of a handheld device, and improving user experience.
  • Background technique
  • handheld devices are widely used, and the energy-saving problems of handheld devices and user experience are highly valued.
  • handheld devices rely on the power button to wake up the device and power on and off. Since the user of the handheld device is accustomed to placing the handheld device in a pocket or a bag, if the power button of the handheld device is placed down, it is very susceptible to gravity, being touched by the foreign object below, causing unnecessary wake-up or switching. action. This false trigger not only consumes power, but also causes poor user experience. Summary of the invention
  • the main purpose of the embodiments of the present invention is to provide a method and apparatus for preventing false triggering of a switch, which can better solve the problem that the handheld device is improperly placed, causing a false wake-up or a false switch.
  • the embodiment of the invention provides a method for preventing false triggering of a switch, the method comprising: monitoring, by a handheld device, a trigger event of a power-on button in real time;
  • the trigger event is Determined to be a false trigger event, the handheld maintains the current system state.
  • the handheld device collects the placement status information in real time, and the placement status information includes distance data between the handheld device and the surrounding object, and the handheld device uses the distance detecting sensor to collect the distance data in real time.
  • the placement state information further includes a force direction of the side where the handheld device is powered on, and the handheld device uses the motion/direction detection sensor to collect the force direction in real time.
  • the distance data of the current handheld device and the direction of the force are detected.
  • the handheld device is determined to be in an abnormal operating state. And determining that the handheld device is in a normal operating state.
  • the method further includes:
  • the trigger event is determined to be a non-false triggering event, and the handheld device performs a system wake-up or performs a power-on/off operation.
  • the embodiment of the invention further provides a device for preventing false triggering of a switch, the device comprising: a monitoring module configured to monitor a trigger event of a power-on button in real time;
  • the determining module is configured to: when the triggering event is detected, detect the placement state information of the current handheld device, and determine, according to the placement state information, whether the handheld device is in an abnormal operating state;
  • the execution module is configured to determine the trigger event as a false trigger event when the judgment result is that the handheld device is in an abnormal operation state, and the handheld device maintains the current system state.
  • the device further includes:
  • the collection module is configured to collect the placement status information in real time, where the placement status information includes distance data between the handheld device and the surrounding object, and a direction of the force on the side where the handheld device is powered on.
  • the collecting module comprises:
  • a distance detecting sensor configured to collect the distance data in real time
  • a motion/direction detection sensor configured to acquire the direction of force in real time.
  • the determining module includes:
  • a detecting submodule configured to detect the distance data of the current handheld device and the force direction
  • the determining submodule is configured to determine that the handheld device is in an abnormal operating state when the distance data is less than a predetermined distance threshold and the force direction is downward, otherwise, the handheld device is determined to be in a normal operating state.
  • the execution module is further configured to determine the trigger event as a false trigger event when the result of the determination is that the handheld device is in an abnormal operating state, and the handheld device maintains the current system state.
  • the beneficial effects of the embodiments of the present invention are:
  • the standby power consumption can be reduced, and the user experience is improved.
  • FIG. 1 is a flowchart of a method for preventing false triggering of a switch according to an embodiment of the present invention
  • FIG. 2 is a block diagram of a device for preventing false triggering of a switch according to an embodiment of the present invention
  • FIG. 3 is a connection diagram of a device according to an embodiment of the present invention
  • FIG. 4 is a workflow diagram provided by an embodiment of the present invention. detailed description
  • the present invention provides a method for detecting a placement environment of a handheld device by using a sensor to prevent false triggering and controlling power saving of the handheld device.
  • FIG. 1 is a flowchart of a method for preventing false triggering of a switch according to an embodiment of the present invention. As shown in FIG. 1, the method includes the following steps:
  • Step 101 The handheld device monitors the trigger event of the power button in real time.
  • Step 102 When the trigger event is detected, detecting the placement state information of the current handheld device, and determining, according to the placement state information, whether the handheld device is in a normal operating state.
  • the handheld device collects the placement status information in real time, and the placement status information includes distance data between the handheld device and the surrounding object and a direction of the force on the side where the handheld device is powered on, and the handheld device uses the distance detecting sensor to collect the distance data in real time. And using its motion/direction detection sensor, the direction of the force is collected in real time. Determining whether the handheld device is in an abnormal operating state by detecting the distance data of the current handheld device and the direction of the force, and determining that the handheld device is when the distance data is less than a predetermined distance threshold and the force direction is downward. The device is in an abnormal operating state, otherwise, it is determined that the handheld device is in a normal operating state.
  • the normal operating state refers to the state in which the user operates the handheld device.
  • Step 103 If the judgment result is that the handheld device is in an abnormal operating state, the trigger event is determined as a false trigger event, and the handheld device maintains the current system state.
  • the triggering event is determined to be a non-false triggering event, and the handheld device performs a system wake-up or performs a power-on/off operation.
  • the present invention also provides a device for detecting a placement environment of a handheld device by using a sensor to prevent false triggering and controlling power saving of the handheld device.
  • FIG. 2 is a structural block diagram of an apparatus for preventing false triggering of a switch according to an embodiment of the present invention.
  • the monitoring module 21, the acquisition module 22, the determination module 23, and the execution module 24 are provided, wherein: the monitoring module 21 is configured. To trigger the trigger event of the power button in real time.
  • the collection module 22 is configured to collect the placement status information in real time, where the placement status information includes distance data between the handheld device and the surrounding object, and a direction of stress on the side where the handheld device is powered on.
  • the collecting module uses the distance detecting sensor to collect the distance data in real time, and uses the motion/direction detecting sensor to collect the force direction in real time.
  • the determining module 23 is configured to: when the trigger event is detected, detect the placement state information of the current handheld device, and determine, according to the placement state information, whether the handheld device is in the Normal operating status.
  • the determining module detects the distance data and the direction of the force of the current handheld device by using the detecting sub-module, and determining, by the determining sub-module, that the distance data is less than a predetermined distance threshold and the force direction is downward
  • the handheld device is in an abnormal operating state, otherwise, the handheld device is judged to be in a normal operating state.
  • the execution module 24 is configured to determine the trigger event as a false trigger event when the determination result is that the handheld device is in an abnormal operating state, and the handheld device maintains the current system state, and the determination result is the handheld device. In an abnormal operating state, the trigger event is determined to be a false trigger event, and the handheld device maintains the current system state.
  • the monitoring module 21, the acquisition module 22, the determination module 23, and the execution module 24 may all be controlled by a central processing unit (CPU), a digital signal processor (DSP) or a digital signal processor (DSP).
  • CPU central processing unit
  • DSP digital signal processor
  • DSP digital signal processor
  • DSP digital signal processor
  • FPGA Field Programmable Gate Array
  • FIG. 3 is a connection diagram of a device according to an embodiment of the present invention, as shown in FIG. 3, wherein: the handheld device host provides upper management software, and the upper management software includes a monitoring module, a judging module, and an execution module, which are used for monitoring and booting.
  • the trigger event of the button determines whether the trigger event is a false trigger event, and controls the power of the handheld device according to the judgment result, so that the system maintains the original state or wakes up/on/off.
  • the distance detecting sensor detects whether an object is close to the handheld device, and reports the status to the upper management software or waits for the upper management software to query.
  • the motion/direction detection sensor detects the position and movement direction of the handheld device, reports the status to the upper management software or waits for the upper management software to query.
  • the boot button of the handheld device detects whether the boot button of the handheld device is triggered, and reports the status to the upper management software or waits for the upper management software to query.
  • the above device works as follows: The handheld device monitors or queries the handheld device's power button, distance detection sensor, motion/direction detection sensor, and controls the power state of the handheld device.
  • the upper management software determines whether the handheld device is in a small space such as a pocket or a bag by monitoring or querying the status of the distance detecting sensor and the motion/direction detecting sensor, and whether the power-on button side is stressed, if If the state is abnormal, the triggering event is a false triggering event, ignoring the current wake-up or power-on and power-off, and notifying the user to adjust the position of the handheld device. Otherwise, in the normal operating state, the trigger event is a non-false trigger event, and wake-up or power-on/off is performed.
  • FIG. 4 is a flow chart of the embodiment of the present invention.
  • the mobile device shown in FIG. 3 in the sleep state is erroneously triggered as an example.
  • the steps of the workflow include:
  • Step 401 System sleep state.
  • Step 402 The trigger event of the power button triggers the upper management software.
  • Step 403 The upper management software queries the status of the distance detecting sensor and the motion/direction detecting sensor.
  • Step 404 The upper management software determines whether the handheld device is falsely triggered in a small space such as a pocket or a bag by using the state of the distance detecting sensor and the motion/direction detecting sensor (a reference use case is that the distance detecting sensor finds an object within 1 cm of the mobile phone) And the motion/direction detecting sensor detects that the button side of the mobile phone receives a downward force), if it is a false trigger, continues the current sleep state, and proceeds to step 401, otherwise proceeds to step 405.
  • a reference use case is that the distance detecting sensor finds an object within 1 cm of the mobile phone
  • the motion/direction detecting sensor detects that the button side of the mobile phone receives a downward force
  • Step 405 The system wakes up or powers on and off.
  • the technical solution provided by the embodiment of the present invention has the following technical effects: detecting, by the sensor device, whether the handheld device is placed in a small space such as a pocket or a bag, and whether the side of the power-on button is placed downward, when handheld After the device's power-on button is triggered, the upper-layer management software will check or update the phone's placement status to prevent the phone from being accidentally woken up or shut down. At the same time, the user can be reminded to change the placement position of the handheld device, which not only reduces the standby power consumption, but also improves the user experience.
  • the handheld device monitors the trigger event of the power-on button in real time; when the trigger event is detected, detects the current state of the handheld device, and determines whether the handheld device is abnormal according to the placement state information.
  • the operating state if the result of the determination is that the handheld device is in an abnormal operating state, the triggering event is determined as a false triggering event, and the handheld device maintains the current system state.
  • the invention can prevent false wake-up and mis-switching action caused by improper placement of the handheld device, reduce standby power consumption and improve user experience.

Abstract

一种防止开关误触发的方法及装置,涉及传感器环境侦测技术和电源控制技术。该方法包括:手持设备实时监测开机按键的触发事件(101);当监测到所述触发事件时,检测当前手持设备的放置状态信息,并根据所述放置状态信息判断所述手持设备是否处于非正常操作状态(102);若判断结果为所述手持设备处于非正常操作状态,则将所述触发事件确定为误触发事件,手持设备保持当前系统状态(103)。该方法能够防止手持设备放置不当导致的误唤醒和误开关机动作,降低了待机功耗,提高了用户体验。

Description

一种防止开关误触发的方法及装置 技术领域
本发明涉及传感器环境侦测技术和电源控制技术, 特别涉及一种利用 传感器侦测开关误触发, 控制手持设备电源节能并提高用户体验的方法及 相关装置。 背景技术
目前手持设备应用广泛, 手持设备的节能问题以及用户体验效果倍受 重视。 一般, 手持设备都是靠开机按键来唤醒设备和开关机。 由于手持设 备的使用者大都习惯把手持设备放置在口袋或包中, 如果手持设备的开机 按键向下放置的话, 非常容易受重力影响, 被下面的异物触碰, 引起不必 要的唤醒或开关机动作。 这种误触发不仅消耗电能, 也会造成用户体验效 果差。 发明内容
有鉴于此, 本发明实施例的主要目的在于提供一种防止开关误触发的 方法及装置, 能更好地解决手持设备放置不当导致误唤醒或误开关机的问 题。
为达到上述目的, 本发明实施例的技术方案是这样实现的:
本发明实施例提供了一种防止开关误触发的方法, 所述方法包括: 手持设备实时监测开机按键的触发事件;
当监测到所述触发事件时, 检测当前手持设备的放置状态信息, 并根 据所述放置状态信息判断所述手持设备是否处于非正常操作状态;
若判断结果为所述手持设备处于非正常操作状态, 则将所述触发事件 确定为误触发事件, 手持设备保持当前系统状态。
优选地, 手持设备实时采集所述放置状态信息, 所述放置状态信息包 括手持设备与周围物体的距离数据, 手持设备利用其距离探测传感器, 实 时采集所述距离数据。
优选地, 所述放置状态信息还包括手持设备开机按键所在侧的受力方 向, 手持设备利用其运动 /方向探测传感器, 实时采集所述受力方向。
优选地, 检测当前手持设备的所述距离数据和所述受力方向, 当所述 距离数据小于预定距离阈值且所述受力方向向下时, 判断所述手持设备处 于非正常操作状态, 否则, 判断所述手持设备处于正常操作状态。
优选地, 所述方法还包括:
若判断结果为所述手持设备处于正常操作状态, 则将所述触发事件确 定为非误触发事件, 手持设备进行系统唤醒或执行开关机操作。
本发明实施例还提供了一种防止开关误触发的装置, 所述装置包括: 监测模块, 配置为实时监测开机按键的触发事件;
判断模块, 配置为当监测到所述触发事件时, 检测当前手持设备的放 置状态信息, 并根据所述放置状态信息判断所述手持设备是否处于非正常 操作状态;
执行模块, 配置为在判断结果为所述手持设备处于非正常操作状态, 则将所述触发事件确定为误触发事件, 手持设备保持当前系统状态。
优选地, 所述装置还包括:
采集模块, 配置为实时采集所述放置状态信息, 所述放置状态信息包 括手持设备与周围物体的距离数据、 手持设备开机按键所在侧的受力方向。
优选地, 所述采集模块包括:
距离探测传感器, 配置为实时采集所述距离数据;
运动 /方向探测传感器, 配置为实时采集所述受力方向。 优选地, 所述判断模块包括:
检测子模块, 配置为检测当前手持设备的所述距离数据和所述受力方 向;
判断子模块, 配置为当所述距离数据小于预定距离阈值且所述受力方 向向下时, 判断所述手持设备处于非正常操作状态, 否则, 判断所述手持 设备处于正常操作状态。
优选地, 所述执行模块还配置为在判断结果为所述手持设备处于非正 常操作状态, 则将所述触发事件确定为误触发事件, 手持设备保持当前系 统状态。
与现有技术相比较, 本发明实施例的有益效果在于: 能够降低待机功 耗, 提高用户体验。 附图说明
图 1是本发明实施例提供的防止开关误触发的方法流程图;
图 2是本发明实施例提供的防止开关误触发的装置结构框图; 图 3是本发明实施例提供的装置连接图;
图 4是本发明实施例提供的工作流程。 具体实施方式
以下结合附图对本发明的优选实施例进行详细说明, 应当理解, 以下 所说明的优选实施例仅用于说明和解释本发明, 并不用于限定本发明。
本发明提供了一种方法, 利用传感器侦测手持设备放置环境, 防止误 触发, 控制手持设备电源节能。
图 1是本发明实施例提供的防止开关误触发的方法流程图, 如图 1所 示, 所述方法包括以下步骤:
步骤 101 : 手持设备实时监测开机按键的触发事件。 步骤 102: 当监测到所述触发事件时,检测当前手持设备的放置状态信 息, 并根据所述放置状态信息判断所述手持设备是否处于正常操作状态。
手持设备实时采集所述放置状态信息, 所述放置状态信息包括手持设 备与周围物体的距离数据和手持设备开机按键所在侧的受力方向, 手持设 备利用其距离探测传感器实时采集所述距离数据, 并利用其运动 /方向探测 传感器, 实时采集所述受力方向。 通过检测当前手持设备的所述距离数据 和所述受力方向, 判断手持设备是否处于非正常操作状态, 当所述距离数 据小于预定距离阈值且所述受力方向向下时, 判断所述手持设备处于非正 常操作状态, 否则, 判断所述手持设备处于正常操作状态。 所述正常操作 状态是指用户操作手持设备的状态。
步骤 103: 若判断结果为所述手持设备处于非正常操作状态, 则将所述 触发事件确定为误触发事件, 手持设备保持当前系统状态。
进一步地, 若判断结果为所述手持设备处于正常操作状态, 则将所述 触发事件确定为非误触发事件, 手持设备进行系统唤醒或执行开关机操作。
本发明还提供了一种装置, 利用传感器侦测手持设备放置环境, 防止 误触发, 控制手持设备电源节能。
图 2是本发明实施例提供的防止开关误触发的装置结构框图, 如图 2 所示, 包括监测模块 21、 采集模块 22、 判断模块 23和执行模块 24, 其中: 所述监测模块 21, 配置为实时监测开机按键的触发事件。
所述采集模块 22, 配置为实时采集所述放置状态信息, 所述放置状态 信息包括手持设备与周围物体的距离数据、 手持设备开机按键所在侧的受 力方向。 所述采集模块利用距离探测传感器实时采集所述距离数据, 利用 运动 /方向探测传感器实时采集所述受力方向。
所述判断模块 23, 配置为当监测到所述触发事件时, 检测当前手持设 备的放置状态信息, 并根据所述放置状态信息判断所述手持设备是否处于 正常操作状态。 所述判断模块利用检测子模块检测当前手持设备的所述距 离数据和所述受力方向, 利用判断子模块在所述距离数据小于预定距离阈 值且所述受力方向向下时, 判断所述手持设备处于非正常操作状态, 否则, 判断所述手持设备处于正常操作状态。
所述执行模块 24, 配置为在判断结果为所述手持设备处于非正常操作 状态, 则将所述触发事件确定为误触发事件, 手持设备保持当前系统状态, 并在判断结果为所述手持设备处于非正常操作状态, 则将所述触发事件确 定为误触发事件, 手持设备保持当前系统状态。
上述监测模块 21、 采集模块 22、 判断模块 23和执行模块 24均可由防 止开关误触发的装置中的中央处理器 (CPU, Central Processing Unit ), 数 字信号处理器(DSP, Digital Signal Processor )或可编程门阵列 ( FPGA, Field Programmable Gate Array )实现; 所述防止开关误触发的装置可设置于 手持设备中。
图 3是本发明实施例提供的装置连接图, 如图 3所示, 其中: 所述手持设备主机提供上层管理软件, 所述上层管理软件包括监测模 块、 判断模块和执行模块, 用于监听开机按键的触发事件, 判断所述触发 事件是否为误触发事件, 并根据判断结果控制手持设备的电源, 使系统保 持原状态或唤醒 /开关机。
距离探测传感器侦测手持设备周围是否有物体接近, 并将状态上报给 上层管理软件或等待上层管理软件来查询。
运动 /方向探测传感器侦测手持设备放置的位置和移动方向, 将状态上 报给上层管理软件或等待上层管理软件来查询。
手持设备的开机按键侦测手持设备开机按键是否被触发, 并将状态上 报给上层管理软件或等待上层管理软件来查询。
上述装置的工作原理为: 手持设备主机监听或查询手持设备的开机按键、 距离探测传感器、 运 动 /方向探测传感器, 并控制手持设备的电源状态。 当有开机按键触发事件 发生时, 上层管理软件通过监听或查询距离探测传感器和运动 /方向探测传 感器的状态, 判断手持设备是否在口袋或包等狭小空间, 且开机按键一侧 是否受力, 如果是这种状态, 则为非正常操作状态, 所述触发事件为误触 发事件, 忽略本次唤醒或开关机动作, 并可通知用户调整手持设备摆放位 置。 否则, 为正常操作状态, 所述触发事件为非误触发事件, 进行唤醒或 开关机动作。
图 4是本发明实施例提供的工作流程,本实施例以处于休眠状态的图 3 所示手持设备受到误触发为例进行说明, 如图 4所示, 所述工作流程的步 骤包括:
步骤 401 : 系统休眠状态。
步骤 402: 开机按键的触发事件触发上层管理软件。
步骤 403 : 上层管理软件查询距离探测传感器和运动 /方向探测传感器 的状态。
步骤 404: 上层管理软件通过距离探测传感器和运动 /方向探测传感器 的状态, 判别手持设备是否是在口袋或包等狭小空间内的误触发(一个可 参考用例是距离探测传感器发现手机 1cm内有物体且运动 /方向探测传感器 发现手机按键一侧收到向下的力), 如果是误触发, 则继续当前休眠状态, 转到步骤 401, 否则进入步骤 405。
步骤 405: 系统唤醒或开关机流程。
综上所述, 本发明实施例所提供的技术方案具有以下技术效果: 通过传感器设备侦测出手持设备是否被放置在口袋或包等狭小空间, 且开机按键一侧是否向下放置, 当手持设备的开机按键被触发后, 上层管 理软件会去查看或更新手机放置状态, 从而避免手机被误唤醒或误关机, 同时可以提醒用户更换手持设备的放置位置, 不仅降低了待机功耗, 同时 也提高了用户体验。
尽管上文对本发明进行了详细说明, 但是本发明不限于此, 本技术领 域技术人员可以根据本发明的原理进行各种修改。 因此, 凡按照本发明原 理所作的修改, 都应当理解为落入本发明的保护范围。 工业实用性
本发明实施例中, 手持设备实时监测开机按键的触发事件; 当监测到 所述触发事件时, 检测当前手持设备的放置状态信息, 并根据所述放置状 态信息判断所述手持设备是否处于非正常操作状态; 若判断结果为所述手 持设备处于非正常操作状态, 则将所述触发事件确定为误触发事件, 手持 设备保持当前系统状态。 本发明能够防止手持设备放置不当导致的误唤醒 和误开关机动作, 降低了待机功耗, 提高了用户体验。

Claims

权利要求书
1、 一种防止开关误触发的方法, 所述方法包括:
手持设备实时监测开机按键的触发事件;
当监测到所述触发事件时, 检测当前手持设备的放置状态信息, 并根 据所述放置状态信息判断所述手持设备是否处于非正常操作状态;
若判断结果为所述手持设备处于非正常操作状态, 则将所述触发事件 确定为误触发事件, 手持设备保持当前系统状态。
2、 根据权利要求 1所述的方法, 其中, 手持设备实时采集所述放置状 态信息, 所述放置状态信息包括手持设备与周围物体的距离数据, 手持设 备利用其距离探测传感器, 实时采集所述距离数据。
3、 根据权利要求 2所述的方法, 其中, 所述放置状态信息还包括手持 设备开机按键所在侧的受力方向, 手持设备利用其运动 /方向探测传感器, 实时采集所述受力方向。
4、 根据权利要求 3所述的方法, 其中, 检测当前手持设备的所述距离 数据和所述受力方向, 当所述距离数据小于预定距离阈值且所述受力方向 向下时, 判断所述手持设备处于非正常操作状态, 否则, 判断所述手持设 备处于正常操作状态。
5、 根据权利要求 4所述的方法, 其中, 所述方法还包括:
若判断结果为所述手持设备处于正常操作状态, 则将所述触发事件确 定为非误触发事件, 手持设备进行系统唤醒或执行开关机操作。
6、 一种防止开关误触发的装置, 其中, 所述装置包括:
监测模块, 配置为实时监测开机按键的触发事件;
判断模块, 配置为当监测到所述触发事件时, 检测当前手持设备的放 置状态信息, 并根据所述放置状态信息判断所述手持设备是否处于非正常 操作状态; 执行模块, 配置为在判断结果为所述手持设备处于非正常操作状态, 则将所述触发事件确定为误触发事件, 手持设备保持当前系统状态。
7、 根据权利要求 6所述的装置, 其中, 所述装置还包括:
采集模块, 配置为实时采集所述放置状态信息, 所述放置状态信息包 括手持设备与周围物体的距离数据、 手持设备开机按键所在侧的受力方向。
8、 根据权利要求 7所述的装置, 其中, 所述采集模块包括:
距离探测传感器, 配置为实时采集所述距离数据;
运动 /方向探测传感器, 配置为实时采集所述受力方向。
9、 根据权利要求 8所述的装置, 其中, 所述判断模块包括:
检测子模块, 配置为检测当前手持设备的所述距离数据和所述受力方 向;
判断子模块, 配置为当所述距离数据小于预定距离阈值且所述受力方 向向下时, 判断所述手持设备处于非正常操作状态, 否则, 判断所述手持 设备处于正常操作状态。
10、 根据权利要求 9所述的装置, 其中, 所述执行模块还配置为在判 断结果为所述手持设备处于非正常操作状态, 则将所述触发事件确定为误 触发事件, 手持设备保持当前系统状态。
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