WO2016145836A1 - 一种动态控制电子设备的方法及电子设备、存储介质 - Google Patents
一种动态控制电子设备的方法及电子设备、存储介质 Download PDFInfo
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
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- the present invention relates to smart device technology, and in particular, to a method for dynamically controlling an electronic device, an electronic device, and a storage medium.
- smart devices play an increasingly important role in daily life, and smart devices and wearable devices are becoming more and more popular.
- smart devices have more and more input methods, such as touch screen input, voice input, face recognition input and so on.
- These input function modules generally consume a relatively large amount of power, and in the prior art, in order to ensure that the smart device can respond to the user's input operations in time, it is often necessary to keep these input modules in a working state, thus The impact of power consumption will be large, and the function of the input module in the prior art solution is also susceptible to the external environment.
- the invention provides a method for dynamically controlling an electronic device, an electronic device and a storage medium, so as to solve the problem that the power consumption of the electronic device is large due to the long-term working state of various input modules in the prior art.
- an embodiment of the present invention provides a method for dynamically controlling an electronic device, including:
- the opening or closing of the input module corresponding to the part of the object is dynamically controlled.
- the electronic device further includes a wireless module, where the location of the object that is close to the electronic device is determined, specifically:
- a portion of the object approaching the electronic device is determined based on the absorption ratio.
- the determining a distance value between the part and the electronic device is specifically:
- a distance value of the portion from the electronic device is determined according to a standing wave ratio of an electromagnetic field of the wireless module.
- the dynamically controlling the opening or closing of the input module corresponding to the part of the object according to the distance value includes:
- the input module corresponding to the portion is closed when the distance value is greater than a predetermined distance threshold.
- the wireless module is a wireless local area network communication module or a wireless wide area network communication module.
- an embodiment of the present invention further provides an electronic device, including:
- a location determining module configured to determine a location of an object proximate to the device
- a distance determining module configured to determine a distance value between the part and the device
- the execution module is configured to dynamically control the opening or closing of the input module corresponding to the part of the object according to the distance value.
- the device further includes a wireless module, and the part determining module is further configured to:
- a portion of the object approaching the device is determined based on the absorption ratio.
- the distance determining module is further configured to:
- a distance value of the portion from the device is determined according to a standing wave ratio of an electromagnetic field of the wireless module.
- the execution module is further configured to:
- the input module corresponding to the part When the distance value is less than or equal to the predetermined distance threshold, the input module corresponding to the part is turned on, and when the distance value is greater than the predetermined distance threshold, the input module corresponding to the part is turned off.
- the wireless module is a wireless local area network communication module or a wireless wide area network communication module.
- a storage medium having stored therein a computer program configured to perform the aforementioned method of dynamically controlling an electronic device.
- the distance value of the part and the electronic device is determined by determining a location of the object close to the electronic device, and the opening or closing of the input module corresponding to the part of the object is dynamically controlled according to the distance value.
- the input module of the electronic device does not have to be in the working state all the time, thereby greatly reducing the power loss of the electronic device and avoiding the false triggering of the input module due to external factors.
- FIG. 1 is a schematic flow chart of a method for dynamically controlling an electronic device according to an embodiment of the present invention
- FIG. 2 is another schematic flowchart of a method for dynamically controlling an electronic device according to an embodiment of the present invention
- FIG. 3 is a structural diagram of an electronic device according to an embodiment of the present invention.
- the present invention is directed to the problem that the control method of the input function module of the electronic device in the prior art consumes a large amount of power and is susceptible to interference from the external environment.
- the embodiment of the present invention provides a method and an electronic device for dynamically controlling an electronic device.
- the method for dynamically controlling an electronic device includes:
- Step 11 determining a location of an object that is close to the electronic device
- the part described in step 11 may be the hand of the human body or the head of the human body or the like.
- the electronic device may be a smart phone or a smart watch, and may be other intelligent electronic devices.
- the electronic device includes an input module such as a touch screen input module, a voice input module, and a face recognition input module.
- the existing biometric identification technology can be used to distinguish the location of the object close to the electronic device, for example, by detecting the absorption ratio of the electromagnetic field by the location of the object close to the electronic device, and of course, the invention can be realized by other means.
- the specific implementation is not limited.
- Step 12 determining a distance value between the part and the electronic device
- the manner of determining the distance between the location of the object close to the electronic device and the electronic device is determined by detecting the standing wave ratio of the electromagnetic field when the portion of the object is close, or may be determined by a distance sensor or an infrared sensor. Of course, it can also be determined by other means, and the present invention does not limit the specific implementation manner.
- Step 13 Dynamically control whether the input module corresponding to the part of the object is turned on or off according to the distance value.
- the input module corresponding to the part of the object described in step 13 may be that the hand of the human body corresponds to the touch screen input module of the electronic device, and the head of the human body is The voice recognition input module and the face recognition input module of the electronic device should be.
- the location of the object close to the electronic device is determined; the distance value of the part and the electronic device is determined; and the opening of the input module corresponding to the part of the object is dynamically controlled according to the distance value Or close.
- the input module does not have to be in the working state all the time, so that the power consumption of the electronic device is reduced, and the false triggering of the input module is effectively avoided, thereby reducing the influence of the external environment on the input module.
- a method for dynamically controlling an electronic device includes:
- Step 21 Determine, in a process in which the object is close to the electronic device, an absorption ratio of the object to an electromagnetic field of the wireless module;
- the electronic device may be a smart phone or a smart watch, and may of course be other smart electronic devices.
- the electronic device includes an input module such as a touch screen input module, a voice recognition input module, and a face recognition input module.
- Step 22 Determine a location of an object close to the electronic device according to the absorption ratio.
- step 22 the principle of step 22 is that the human body is actually a large conductor, and each part of the body has different electrical conductivity.
- the electromagnetic wave emitted by the electronic device When the electromagnetic wave emitted by the electronic device is close to the human body, the human body absorbs a part of the radiation. The other part is returned to the electronic device, and the electronic device can calculate the proportion of radiation absorbed by the human body based on the received and transmitted electromagnetic waves, that is, the absorption ratio.
- the absorption ratio is different.
- the absorption ratio of the head and the hand is different, but for the same person, the ratio does not change. Therefore, the user can preset the absorption ratio of each part, for example, when the head is close, the electronic device is automatically calibrated to obtain a threshold of the absorption ratio of the head, and the absorption ratio of the same hand also obtains a threshold.
- the electronic device will The resulting absorption ratio is compared to the threshold of each part of the previous calibration. If the absorption ratio is close to the threshold of the previously calibrated head, it is judged that the head is close to the electronic device if the absorption ratio is compared with the previously calibrated hand. When the threshold of the department is close, it is judged that the hand is close to the electronic device.
- Step 23 determining a distance value between the part and the electronic device according to a standing wave ratio of an electromagnetic field of the wireless module in a process in which the object is close to the electronic device.
- the principle of determining the distance value between the part and the electronic device according to the standing wave ratio of the electromagnetic field of the wireless module in step 23 is that the standing wave ratio is another electromagnetic field technology, and the standing wave ratio is The distance is very sensitive and the distance value can be derived from the standing wave ratio.
- the user can preset the trigger threshold. For example, the user can set the trigger threshold of the head to 20 cm. Then, during use, when the head of the object is close to the electronic device, the distance value of the electronic device will be The set trigger threshold of the head is compared.
- Step 24 When the distance value is less than or equal to the predetermined distance threshold, the input module corresponding to the part is turned on; when the distance value is greater than the predetermined distance threshold, the input module corresponding to the part is closed.
- the electronic device in the above embodiment includes an input module such as a touch screen input module, a voice input module, and a face recognition input module.
- the wireless module in the electronic device is a wireless local area network communication module or a wireless wide area network communication module, such as a GPS (Global Positioning System) module, a WiFi (Wireless Fidelity) module, a Bluetooth module, and an LTE (Long Term Evolution). ) Modules, etc.
- the input module corresponding to the human body part described in step 24 is specifically that the hand of the human body corresponds to the touch screen input module, and the head of the human body corresponds to the voice recognition input module and the face recognition input module.
- the principle of the step 22 in the above embodiment is that different parts of the human body have different absorption ratios to the electromagnetic field produced by the wireless module, such as the hand or the head, and the electromagnetic fields have different absorption ratios. Therefore, according to different parts of the human body, the electromagnetic field has different absorption ratios. A portion close to the electronic device is determined by detecting an absorption ratio of an electromagnetic field emitted by the wireless module.
- the principle of determining the distance between the part of the object and the electronic device may be that the electromagnetic field emitted by the wireless module in the electronic device is different when the distance between the part of the object and the electronic device is different.
- the standing wave ratio is different, so the distance between the portion of the object and the electronic device can be determined according to the standing wave ratio of the electromagnetic field emitted by the wireless module.
- the input module corresponding to the part can be dynamically turned on or off according to the distance.
- the system activates an input module corresponding to the portion of the object. For example, when it is detected that the head is close, and the proximity distance is less than or equal to the predetermined distance threshold, the voice recognition input module is enabled, the face recognition input module; and when the hand is detected to be close, and the proximity distance is less than or equal to the predetermined
- the touch screen input module is enabled when the threshold is reached.
- the input module corresponding to the part of the object is closed.
- the voice recognition input module and the face recognition input module are turned off.
- the touch screen input module is turned off when it is detected that the distance between the hand and the electronic device is greater than a predetermined distance threshold.
- various input devices such as a touch screen
- a touch screen are enabled by a bright screen, but the user may only use the time to look at the time and not want to touch the input.
- the touch screen input function is not activated by mistake, because the touch function is turned off because the hand is not detected. Thereby reducing the power of the electronic device The loss of quantity also improves the user's operating experience.
- an embodiment of the present invention further provides an electronic device, which may be a smart phone.
- the smart watch may of course be other smart electronic devices, and the electronic device includes:
- a location determining module 31 configured to determine a location of an object proximate to the device
- the distance determining module 32 is configured to determine a distance value between the part and the device
- the execution module 33 is configured to dynamically control the opening or closing of the input module corresponding to the part of the object according to the distance value.
- the device further includes one or more input modules and a wireless module.
- the input module is used to implement input functions of the device, such as a touch screen input module, a voice input module, and a face recognition input module.
- the wireless module is a wireless local area network communication module or a wireless wide area network communication module, such as a GPS (Global Positioning System) module, a WiFi (Wireless Fidelity) module, a Bluetooth (Bluetooth) module, an LTE (Long Term Evolution) module, and the like.
- the above wireless module generates an electromagnetic field, and different parts of the human body have different absorption ratios to the electromagnetic field produced by the wireless module, such as the hand, the head, and the electromagnetic field have different absorption ratios. Therefore, the electromagnetic field may have different absorption ratios according to different parts of the human body.
- the part determining module 31 of the electronic device determines the absorption ratio of the object to the electromagnetic field of the wireless module. And determining a portion of the object close to the electronic device based on the absorption ratio.
- the distance determining module 32 in the device determines a distance value of the portion from the electronic device according to a standing wave ratio of an electromagnetic field of the wireless module.
- the execution module 33 in the device dynamically controls the opening or closing of the input module corresponding to the part of the object according to the distance value. Specifically, when the distance between the part and the device is less than or equal to a predetermined distance threshold, the execution module 33 triggers an input module corresponding to the part where the object is enabled by the system.
- the executing module 33 enables the voice recognition input module.
- the face recognition input module when the part determining module 31 detects that the hand is close, and the distance determining module 32 detects that the close distance is less than or equal to the predetermined distance threshold, the execution module 33 enables the touch screen input module .
- the execution module 33 closes the input module corresponding to the part of the object.
- the execution module 33 turns off the voice recognition input module and the face recognition input module.
- the execution module 33 turns off the touch screen input module.
- the device embodiment of the present invention also determines the location of the object close to the electronic device, determines the distance value of the location from the electronic device, and dynamically controls the opening of the input module corresponding to the location of the object according to the distance value. Or close.
- the input module does not have to be in the working state all the time, so that the power consumption of the electronic device is reduced, and the false triggering of the input module is effectively avoided, thereby reducing the influence of the external environment on the input module.
- Embodiments of the present invention also describe a storage medium in which a computer program is stored, the computer program being configured to perform the method of dynamically controlling an electronic device of the foregoing embodiments.
- the invention determines a distance value of the part from the electronic device by determining a location of the object close to the electronic device, and dynamically controls opening or closing of the input module corresponding to the part of the object according to the distance value.
- the input module of the electronic device does not have to be in the working state all the time, thereby greatly reducing the power loss of the electronic device and avoiding the false triggering of the input module due to external factors.
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Abstract
一种动态控制电子设备的方法及电子设备、存储介质,所述方法包括:确定靠近电子设备的对象的部位(11);确定所述部位与所述电子设备的距离值(12);根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭(13)。该方法通过动态的控制电子设备使得电子设备的输入模块不必一直处于工作状态,从而极大地减少了电子设备的电量损耗。
Description
本发明涉及智能设备技术,特别涉及一种动态控制电子设备的方法及电子设备、存储介质。
随着智能设备行业的快速发展,智能设备在日常生活中发挥的作用越来越大,智能设备和可穿戴设备越来越普及。而智能设备的输入方式也越来越多,比如触摸屏输入,语音输入,人脸识别输入等。这些输入功能模块一般耗电量都比较大,而现有技术中,为了保证智能设备能够及时对用户的输入操作做出反应,常常都是使这些输入模块一直处于工作状态,这样对于智能设备的功耗的影响就会很大,而且现有技术方案中输入模块的功能也容易受到外界环境的影响。
发明内容
本发明提供一种动态控制电子设备的方法及电子设备、存储介质,以解决现有技术中各种输入模块长期处于工作状态造成电子设备耗电量较大的问题。
为解决上述技术问题,本发明的实施例提供一种动态控制电子设备的方法,包括:
确定靠近电子设备的对象的部位;
确定所述部位与所述电子设备的距离值;
根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
作为一种实现方式,所述电子设备还包括无线模块,所述确定靠近电子设备的对象的部位,具体为:
在对象靠近所述电子设备的过程中,确定所述对象对所述无线模块的电磁场的吸收比;
根据所述吸收比确定靠近电子设备的对象的部位。
作为一种实现方式,所述确定所述部位与所述电子设备的距离值,具体为:
在对象靠近所述电子设备的过程中,根据所述无线模块的电磁场的驻波比确定所述部位与所述电子设备的距离值。
作为一种实现方式,所述根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭,具体包括:
当所述距离值小于或等于预定距离阀值时开启所述部位对应的输入模块;
当所述距离值大于预定距离阀值时关闭所述部位对应的输入模块。
作为一种实现方式,所述无线模块为无线局域网通信模块或者无线广域网通信模块。
为解决上述技术问题,本发明的实施例还提供一种电子设备,包括:
部位确定模块,配置为确定靠近设备的对象的部位;
距离确定模块,配置为确定所述部位与所述设备的距离值;
执行模块,配置为根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
作为一种实现方式,所述设备还包括无线模块,所述部位确定模块还配置为:
在对象靠近所述设备的过程中,确定所述对象对所述无线模块的电磁场的吸收比;
根据所述吸收比确定靠近设备的对象的部位。
作为一种实现方式,所述距离确定模块还配置为:
在对象靠近所述设备的过程中,根据所述无线模块的电磁场的驻波比确定所述部位与所述设备的距离值。
作为一种实现方式,所述执行模块还配置为:
当所述距离值小于或等于预定距离阀值时开启所述部位对应的输入模块,当所述距离值大于预定距离阀值时关闭所述部位对应的输入模块。
作为一种实现方式,所述无线模块为无线局域网通信模块或者无线广域网通信模块。
一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行前述的动态控制电子设备的方法。
本发明的上述技术方案的有益效果如下:
上述方案中,通过确定靠近电子设备的对象的部位,确定所述部位与所述电子设备的距离值,根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。使得电子设备的输入模块不必一直处于工作状态,从而极大地减少了电子设备的电量损耗也避免了由于外界因素所造成的对输入模块的误触发。
图1为本发明的实施例动态控制电子设备的方法的流程示意图;
图2为本发明的实施例动态控制电子设备的方法的另一流程示意图;
图3为本发明的实施例电子设备的结构图。
下面将参照附图更详细地描述本公开的示例性实施例。虽然附图中显示了本公开的示例性实施例,然而应当理解,可以以各种形式实现本公开
而不应被这里阐述的实施例所限制。相反,提供这些实施例是为了能够更透彻地理解本公开,并且能够将本公开的范围完整的传达给本领域的技术人员。
本发明针对现有技术中电子设备的输入功能模块的控制方法功耗较大且易受外界环境干扰的问题,本发明的实施例提供一种动态控制电子设备的方法及电子设备。
第一实施例
请参阅图1,该动态控制电子设备的方法包括:
步骤11,确定靠近电子设备的对象的部位;
需要说明的是,步骤11中所述的部位可以是人体的手部或人体的头部等。而所述的电子设备可以是智能手机或智能手表,当然也可以是其它智能电子设备,其中,电子设备包括触摸屏输入模块、语音输入模块、人脸识别输入模块等输入模块。上述步骤11中可以采用现有的生物识别技术来分辨靠近电子设备的对象的部位,例如通过检测靠近电子设备的对象的部位对电磁场的吸收比来确定,当然也可以通过其他方式实现,本发明不限定具体的实现方式。
步骤12,确定所述部位与所述电子设备的距离值;
需要说明的是,确定靠近电子设备的对象的部位与电子设备之间距离的方式为通过检测对象的部位靠近时的电磁场的驻波比来确定,或者也可以通过距离传感器或红外线传感器来确定,当然也可以通过其他方式确定,本发明不限定具体的实现方式。
步骤13,根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
需要说明的是,步骤13中所述的所述对象的部位对应的输入模块,可以是,人体的手部对应所述电子设备的触摸屏输入模块,而人体的头部对
应所述电子设备的语音识别输入模块和人脸识别输入模块。
本发明的上述实施例,通过确定靠近电子设备的对象的部位;确定所述部位与所述电子设备的距离值;根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。使得输入模块不必一直处于工作状态,从而使得电子设备的功耗得以降低,同时也有效避免了对输入模块的误触发,减少了外界环境对输入模块的影响。
第二实施例
请参阅图2,本发明的实施例动态控制电子设备的方法包括:
步骤21,在对象靠近所述电子设备的过程中,确定所述对象对所述无线模块的电磁场的吸收比;
需要说明的是,步骤21中所述的部位可以是人体的手部或人体的头部等。而所述的电子设备可以是智能手机或智能手表,当然也可以是其它智能电子设备。所述电子设备包括触摸屏输入模块、语音识别输入模块、人脸识别输入模块等输入模块。
步骤22,根据所述吸收比确定靠近电子设备的对象的部位。
需要说明的是,步骤22的原理是,人体其实就是一个大的导体,而且身体的每个部位导电性各不相同,当电子设备所发出的电磁波靠近人体的时候,人体就会吸收一部分辐射,另外一部分又会返回给电子设备,电子设备可以根据收到的和发送的电磁波计算出被人体吸收的辐射比例,也就是吸收比。
由于人体各个部位的导电性不同,吸收比也不同,比如,头部和手部的吸收比就不同,但是对于同一个人来讲,这个比例是不会变化的。因此用户可以预先设定各个部位的吸收比,比如在头部靠近时,让电子设备自动校准得到一个头部的吸收比的阈值,同理手部的吸收比也得到一个阈值。
之后在使用过程中,当对象的部位靠近电子设备时,电子设备就会将
得出的吸收比和之前校准的每个部位的阈值进行比较,如果吸收比与之前校准的头部的阀值接近,就判断出是头部接近了电子设备,如果吸收比与之前校准的手部的阀值接近,就判断出是手部接近了电子设备。
步骤23在对象靠近所述电子设备的过程中,根据所述无线模块的电磁场的驻波比确定所述部位与所述电子设备的距离值。
需要说明的是,步骤23中的根据所述无线模块的电磁场的驻波比确定所述部位与所述电子设备的距离值的原理是,驻波比是另一种电磁场技术,驻波比对距离非常敏感,可以根据驻波比得出距离值。用户可以预先设定触发阈值,比如用户可以将头部的触发阀值设定为20cm,之后在使用过程中,当对象的头部靠近电子设备时,电子设备就会将得出的距离值与设定的头部的触发阀值进行比较。
步骤24,当所述距离值小于或等于预定距离阀值时,开启所述部位对应的输入模块;当所述距离值大于预定距离阀值时,关闭所述部位对应的输入模块。
上述实施例中所述电子设备包括触摸屏输入模块、语音输入模块、人脸识别输入模块等输入模块。而所述电子设备中的无线模块为无线局域网通信模块或者无线广域网通信模块,比如GPS(全球定位系统)模块、WiFi(Wireless Fidelity,无线保真)模块、Bluetooth(蓝牙)模块、LTE(长期演进)模块等。
步骤24中所述的所述人体部位对应的输入模块,具体的为,人体的手部对应触摸屏输入模块,人体的头部对应语音识别输入模块和人脸识别输入模块。
上述实施例中步骤22的原理是,人体的各个不同的部位对所述无线模块所产的电磁场有着不同的吸收比,比如手部或头部等,对电磁场都有着不同的吸收比。因此可以根据人体不同部位对电磁场有着不同的吸收比,
通过检测所述无线模块所发出的电磁场的吸收比来确定靠近电子设备的部位。
当确定了靠近电子设备的对象的部位后,还需要进一步确定所述对象的部位与所述电子设备之间的距离才能确定具体需要开启或关闭的输入模块。
例如:确定所述对象的部位与所述电子设备之间的距离的原理可以是,所述对象的部位与所述电子设备的距离值不同时,所述电子设备中的无线模块所发出的电磁场的驻波比不同,因此可以根据所述无线模块所发出的电磁场的驻波比来确定所述对象的部位与所述电子设备之间的距离。
在确定了所述对象的部位与所述电子设备之间的距离后,就可以根据所述距离动态的开启或关闭所述部位对应的输入模块。例如:
当所述部位与所述电子设备的距离小于或等于预定距离阀值的时候,就触发系统使能所述对象的部位所对应的输入模块。比如当检测到头部靠近过来,且靠近距离小于或等于预定距离阀值的时候就使能语音识别输入模块,人脸识别输入模块;而当检测到手部靠近过来,且靠近距离小于或等于预定距离阀值时就使能触摸屏输入模块。
而当所述对象的部位和所述电子设备之间的距离大于预定阀值的时候,就关闭所述对象的部位所对应的输入模块。例如:当检测到头部与电子设备之间的距离大于预定距离阀值时,关闭语音识别输入模块,人脸识别输入模块。当检测到手部与电子设备之间的距离大于预定距离阀值时,关闭触摸屏输入模块。
现有技术方案中,各种输入设备,比如触摸屏,只要一亮屏,触摸功能就使能了,其实用户可能只是用来看下时间并不是想要触摸输入。而本实施例中即使屏幕在包里被误触发点亮,仍然不会误启动触摸屏输入功能,因为检测不到手部的靠近,触摸功能是关闭的。从而减小了电子设备的电
量损耗,也提升了用户的操作体验。
第三实施例
请参阅图3,本发明实施例还提供一种电子设备,所述电子设备可以是智能手机,智能手表当然也可以是其它智能电子设备,所述电子设备包括:
部位确定模块31,配置为确定靠近设备的对象的部位;
距离确定模块32,配置为确定所述部位与所述设备的距离值;
执行模块33,配置为根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
其中所述设备还包括一个或多个输入模块以及无线模块。所述输入模块用来实现设备的输入功能,比如触摸屏输入模块、语音输入模块以及人脸识别输入模块等。所述无线模块为无线局域网通信模块或者无线广域网通信模块,比如GPS(全球定位系统)模块、WiFi(Wireless Fidelity,无线保真)模块、Bluetooth(蓝牙)模块、LTE(长期演进)模块等。
上述无线模块都会产生电磁场,而人体的各个不同的部位对所述无线模块所产的电磁场有着不同的吸收比,比如手部,头部,对电磁场都有着不同的吸收比。因此可以根据人体不同部位对电磁场有着不同的吸收比,在所述对象靠近所述设备的过程中,利用所述电子设备的部位确定模块31确定所述对象对所述无线模块的电磁场的吸收比;然后根据所述吸收比确定靠近电子设备的对象的部位。
当确定了靠近电子设备的对象的部位后还需要进一步确定所述对象的部位与所述电子设备之间的距离才能确定具体需要开启或关闭的输入模块。而由于所述对象的部位与所述电子设备的距离值不同时,所述电子设备中的无线模块所发出的电磁场的驻波比不同,因此可以在所述对象靠近所述设备的过程中,利用所述设备中的距离确定模块32根据所述无线模块的电磁场的驻波比确定所述部位与所述电子设备的距离值。
而所述设备中的执行模块33会根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。具体来说就是当所述部位与设备的距离小于或等于预定距离阀值的时候,所述执行模块33就触发系统使能所述对象的部位所对应的输入模块。
比如,当所述部位确定模块31检测到头部靠近过来,且所述距离确定模块32检测到靠近距离小于或等于预定距离阀值的时候,所述执行模块33就使能语音识别输入模块,人脸识别输入模块;而当所述部位确定模块31检测到手部靠近过来,且所述距离确定模块32检测到靠近距离小于或等于预定距离阀值时所述执行模块33就使能触摸屏输入模块。
而当所述对象的部位和所述电子设备之间的距离大于预定阀值的时候,所述执行模块33就关闭所述对象的部位所对应的输入模块。
例如,当通过所述部位确定模块31,距离确定模块32检测到头部与电子设备之间的距离大于预定距离阀值时所述执行模块33就关闭语音识别输入模块和人脸识别输入模块。当通过所述部位确定模块31,距离确定模块32检测到手部与电子设备之间的距离大于预定距离阀值时所述执行模块33就关闭触摸屏输入模块。
本发明的设备实施例同样通过确定靠近电子设备的对象的部位;确定所述部位与所述电子设备的距离值;根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。使得输入模块不必一直处于工作状态,从而使得电子设备的功耗得以降低,同时也有效避免了对输入模块的误触发,减少了外界环境对输入模块的影响。
本发明实施例还记载了一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行前述各实施例的动态控制电子设备的方法。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普
通技术人员来说,在不脱离本发明所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。
本发明通过确定靠近电子设备的对象的部位,确定所述部位与所述电子设备的距离值,根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。使得电子设备的输入模块不必一直处于工作状态,从而极大地减少了电子设备的电量损耗也避免了由于外界因素所造成的对输入模块的误触发。
Claims (11)
- 一种动态控制电子设备的方法,所述电子设备包括一个或多个输入模块,所述方法包括:确定靠近电子设备的对象的部位;确定所述部位与所述电子设备的距离值;根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
- 根据权利要求1所述的方法,其中,所述电子设备还包括无线模块,所述确定靠近电子设备的对象的部位,包括:在对象靠近所述电子设备的过程中,确定所述对象对所述无线模块的电磁场的吸收比;根据所述吸收比确定靠近电子设备的对象的部位。
- 根据权利要求1所述的方法,其中,所述确定所述部位与所述电子设备的距离值,包括:在对象靠近所述电子设备的过程中,根据所述无线模块的电磁场的驻波比确定所述部位与所述电子设备的距离值。
- 根据权利要求1所述的方法,其中,所述根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭,包括:当所述距离值小于或等于预定距离阀值时开启所述部位对应的输入模块;当所述距离值大于预定距离阀值时关闭所述部位对应的输入模块。
- 根据权利要求2-4任一项所述的方法,其中,所述无线模块为无线局域网通信模块或者无线广域网通信模块。
- 一种电子设备,所述电子设备包括一个或多个输入模块,所述电子设备还包括:部位确定模块,配置为确定靠近设备的对象的部位;距离确定模块,配置为确定所述部位与所述设备的距离值;执行模块,配置为根据所述距离值,动态控制与所述对象的部位对应的输入模块的开启或关闭。
- 根据权利要求6所述的电子设备,其中,所述设备还包括无线模块,所述部位确定模块还配置为:在对象靠近所述设备的过程中,确定所述对象对所述无线模块的电磁场的吸收比;根据所述吸收比确定靠近设备的对象的部位。
- 根据权利要求6所述的电子设备,其中,所述距离确定模块还配置为:在对象靠近所述设备的过程中,根据所述无线模块的电磁场的驻波比确定所述部位与所述设备的距离值。
- 根据权利要求6所述的电子设备,其中,所述执行模块还配置为:当所述距离值小于或等于预定距离阀值时开启所述部位对应的输入模块,当所述距离值大于预定距离阀值时关闭所述部位对应的输入模块。
- 根据权利要求7-9任一项所述的电子设备,其中,所述无线模块为无线局域网通信模块或者无线广域网通信模块。
- 一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行权利要求1至5任一项所述的动态控制电子设备的方法。
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