WO2018072494A1 - 移动终端、移动终端自动解锁或点亮屏幕的方法及系统 - Google Patents
移动终端、移动终端自动解锁或点亮屏幕的方法及系统 Download PDFInfo
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- WO2018072494A1 WO2018072494A1 PCT/CN2017/093099 CN2017093099W WO2018072494A1 WO 2018072494 A1 WO2018072494 A1 WO 2018072494A1 CN 2017093099 W CN2017093099 W CN 2017093099W WO 2018072494 A1 WO2018072494 A1 WO 2018072494A1
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- brain wave
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72403—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
- H04M1/72409—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/66—Substation equipment, e.g. for use by subscribers with means for preventing unauthorised or fraudulent calling
- H04M1/667—Preventing unauthorised calls from a telephone set
- H04M1/67—Preventing unauthorised calls from a telephone set by electronic means
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72403—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
- H04M1/72409—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
- H04M1/72412—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories using two-way short-range wireless interfaces
Definitions
- the embodiments of the present invention relate to the field of communications technologies, and in particular, to a method and system for automatically unlocking or lighting a screen of a mobile terminal and a mobile terminal.
- Bluetooth headsets are becoming more and more popular. Using Bluetooth headsets to listen to music and answering calls has become the choice of users, but when it is necessary to check time, weather or news. When waiting for information, you need to manually press the power button or fingerprint to light the screen or unlock it to display, which will undoubtedly bring inconvenience to the user.
- a mobile terminal includes: a brain wave signal receiving module, a processor, a lighting screen module, and an automatic unlocking module; wherein the brain wave signal receiving module is configured to receive a brain wave signal; And determining whether the frequency range of the brain wave signal is within a preset frequency range of the lighting screen or automatically unlocking, when the frequency range of the brain wave signal is within a lighting range or automatically unlocking a preset frequency range
- the processor triggers the lighting screen module to light up the screen or triggers the automatic unlocking module to automatically unlock.
- the brain wave signal receiving module receives the brain wave signal by wire or wirelessly.
- the wireless mode includes a Bluetooth mode, a ZigBee mode, a WiFi mode, or a LiFi mode.
- the frequency range of the lighting screen or the automatic unlocking preset is ⁇ (14-30 Hz).
- An embodiment of the present invention provides a method for automatically unlocking or lighting a screen of a mobile terminal, including: receiving a brain wave signal; and identifying whether a frequency range of the brain wave signal is within a preset frequency range of the lighting screen or automatically unlocking The frequency range of the brain wave signal is within the range of the lighting screen or automatically unlocking the preset frequency, triggering the lighting screen or automatically unlocking.
- An embodiment of the present invention provides a system for automatically unlocking or lighting a screen of a mobile terminal, including: a mobile terminal and a brain wave transmission device, where
- the brain wave transmitting device includes: a brain wave sensor, a microcontroller, and a brain wave signal transmitting module; wherein the brain wave sensor is configured to acquire a brain wave signal and send the signal to the microcontroller, the microcontroller And for controlling the brain wave signal sending module to send the brain wave signal to the mobile terminal;
- the mobile terminal includes: a brain wave signal receiving module, a processor, a lighting screen module, and an automatic unlocking module; wherein the brain wave signal receiving module is configured to receive a brain wave signal; and the processor is configured to identify the Whether the frequency range of the brain wave signal is within the preset frequency range of the lighting screen or the automatic unlocking, and the processor triggers when the frequency range of the brain wave signal is within the lighting range or automatically unlocking the preset frequency range
- the lighting screen module lights up the screen or triggers the automatic unlocking module to automatically unlock.
- the embodiment of the present invention receives the brain wave signal through the mobile terminal, and determines whether the frequency of the brain wave signal is on the lighting screen or automatically unlocks the preset frequency range.
- the mobile terminal is automatically triggered to light up the screen or unlocked, thereby improving the speed of the screen display of the mobile terminal, simplifying the user operation, and facilitating the user to view the screen display of the mobile terminal.
- FIG. 1 is a schematic diagram of a system architecture of a mobile terminal and an electroencephalogram transmitting apparatus according to Embodiment 1 of the present invention.
- FIG. 2 is a schematic flowchart of a method for automatically unlocking or lighting a screen of a mobile terminal according to Embodiment 2 of the present invention.
- FIG. 3 is a schematic flowchart of a method for automatically unlocking or lighting a screen of a mobile terminal according to Embodiment 3 of the present invention.
- FIG. 1 is a system architecture diagram of a mobile terminal 20 and an electroencephalogram transmitting apparatus 10 according to a first embodiment of the present invention.
- the system mainly includes an electroencephalogram transmitting apparatus 10 and a mobile terminal 20.
- the invention mainly utilizes brain waves generated by the human brain in different states, and realizes automatic control of automatically unlocking or lighting the screen function of the mobile terminal.
- Brain waves are spontaneous rhythmic nerve electrical activities whose frequency varies from 1 to 30 times per second and can be divided into four bands, namely ⁇ (1-3 Hz) and ⁇ (4-7 Hz). ⁇ (8-13 Hz), ⁇ (14-30 Hz).
- ⁇ 1-3 Hz
- ⁇ (14-30 Hz) the frequency is 30-80 Hz
- the amplitude range is uncertain; while other waveforms may appear during sleep.
- Special normal brain waves such as hump wave, ⁇ wave, ⁇ wave, ⁇ -complex wave, ⁇ wave, etc. It can be seen that each brain wave band corresponds to different emotional states of people. When the emotion of the person changes, the detected brain wave frequency is also different. Through the brain wave detection chip, the brain wave signal of the human brain can be accurately collected. .
- the brain wave transmitting device 10 can realize the acquisition of the brain wave signal of the human brain, and transmit the brain wave to the mobile terminal 20 based on the wired or wireless transmission mode, and the mobile terminal 20 is automatically unlocked or identified by the recognition.
- the bright brainwave frequency control mobile terminal 20 enables the mobile terminal to automatically unlock or light up the screen.
- the brain wave transmitting device 10 includes a brain wave sensor 11, a microcontroller 12, and a brain wave signal transmitting module 13.
- the brain wave sensor 11 is used to sense the brain wave signal of the human brain and send it to the microcontroller. 12.
- the brain wave sensor 11 can be realized by a ThinkGear AM chip developed by Neurosky Corporation of the United States.
- the chip adopts a dry electrode sensor and a noise canceling function, and can be applied to various electronic products that need to acquire brain wave signals. in.
- the microcontroller 12 is configured to acquire a brain wave signal sensed by the brain wave sensor 11, and control the brain wave signal transmitting module 13 to transmit the sensed brain wave signal to a corresponding mobile terminal.
- the microcontroller 12 can also control the brain wave sensor 11 to sense the brain wave signal of the human brain in real time, or control the brain wave sensor 11 to sense the brain wave signal of the human brain according to the setting of the user, or control the brain wave sensor 11 to be scheduled. The time or place of sensing the brainwave signal of the human brain.
- the brain wave signal transmitting module 13 receives the brain wave signal transmitted by the microcontroller 12 and transmits it to the corresponding mobile terminal.
- the brain wave signal may be sent based on a wired manner, for example, a wired earphone; or may be transmitted based on a wireless mode, such as a Bluetooth mode, a ZigBee mode, a WiFi mode, or a LiFi mode.
- the brain wave transmitting device 10 provided in the first embodiment of the present invention may be disposed on an existing Bluetooth headset or may be disposed on an existing smart glasses. Wherein, the brain wave transmitting device 10 can also be disposed in other accessories that are often carried on the head.
- the mobile terminal 20 of the first embodiment of the present invention is configured to receive a brain wave signal, and control the mobile terminal to light the screen or quickly unlock through the brain wave signal.
- the mobile terminal 20 includes a brain wave signal receiving module 21, a processor 22, a lighting screen module 23, and an automatic unlocking module 24.
- the brain wave signal receiving module 21 is configured to receive a brain wave signal transmitted by the brain wave transmitting device 10.
- the brain wave signal can be received based on a wired manner, for example, a wired earphone; or can be received based on a wireless mode, such as a Bluetooth mode, a ZigBee mode, a WiFi mode, or a LiFi mode.
- the processor 22 is configured to receive the brain wave signal sent by the brain wave signal receiving module 21, and identify whether the frequency range of the brain wave signal is within a preset range of the lighting screen or the automatic unlocking.
- the light is turned on.
- the frequency range of the screen or the automatic unlock preset is ⁇ (14-30 Hz), and if the frequency range of the brain wave signal is within the range of ⁇ (14-30 Hz), the lighting screen module 23 of the mobile terminal 20 is triggered or automatically unlocked.
- Module 24 lights up the screen or automatically unlocks. In other embodiments of the invention, lighting the screen or automatically unlocking the preset frequency
- the range can be set more accurately based on an in-depth study of brain waves.
- the lighting screen module 23 is coupled to the processor 22 for receiving a trigger command from the processor 22 to trigger the mobile terminal to illuminate the screen.
- the automatic unlocking module 24 is connected to the processor 22 for receiving a triggering instruction of the processor 22 to trigger the mobile terminal to automatically unlock.
- the brain wave transmitting device 10 provided by the first embodiment of the present invention can accurately acquire the brain wave signal of the human brain and transmit it to the corresponding mobile terminal 20, thereby adding a way for the existing mobile terminal to realize automatic control through brain waves.
- the mobile terminal 20 provided in the first embodiment of the present invention can acquire the brain wave signal of the human brain, and determine the frequency of the brain wave signal through the processor 22, thereby triggering the mobile terminal to trigger the screen to be illuminated or automatically unlocked by the brain wave. .
- Embodiment 2 is a flowchart of a method for automatically unlocking or lighting a screen of a mobile terminal according to Embodiment 2 of the present invention, including the following steps:
- the embodiment will be described in conjunction with the system architecture diagram shown in FIG. It can be seen that the mobile terminal 20 and the brain wave transmitting device 10 shown in FIG. 1 can implement the method flow described in this embodiment, but the implementation of this embodiment is not limited to the mobile terminal 20 and the brain wave transmitting device 10 shown in FIG. 1.
- Step S1001 receiving a brain wave signal
- the brain wave signal receiving module 21 of the mobile terminal 20 receives the brain wave signal transmitted by the brain wave transmitting device 10; wherein the brain wave signal can be received based on a wired manner, for example, a wired earphone; or can be received based on a wireless manner, for example, a Bluetooth mode , ZigBee mode, WiFi mode or LiFi mode.
- Step S1002 it is determined whether the frequency of the brain wave signal is within the preset frequency range of the lighting screen or the automatic unlocking; if not, the process ends; if yes, step S1003 is performed;
- the processor 22 of the mobile terminal 20 receives the brain wave signal sent by the brain wave signal receiving module 21, and identifies whether the frequency range of the brain wave signal is within the preset frequency range of the lighting screen or the automatic unlocking.
- Light up the screen or automatically unlock the preset frequency range If ⁇ (14-30 Hz), if the frequency range of the brain wave signal is in the range of ⁇ (14-30 Hz), the lighting screen module 23 of the mobile terminal 20 is triggered to light the screen, or the automatic unlocking module 24 is automatically unlocked. .
- illuminating the screen or automatically unlocking the preset frequency range may be more precise based on an in-depth study of brain waves. If the frequency range of the brain wave signal is not within the range of ⁇ (14-30 Hz), the lighting screen or the automatic unlocking function is not triggered, and the method flow of the embodiment ends.
- Step S1003 triggering to light up the screen or automatically unlocking
- the processor 22 of the mobile terminal 20 triggers the lighting screen module 23 to light the screen, or triggers the automatic unlocking module 24 to automatically unlock.
- the mobile terminal performs the function of automatically unlocking the mobile terminal or lighting the screen by acquiring the brain wave of the human brain and recognizing the frequency range of the brain wave.
- the automatic control improves the speed of the screen display of the mobile terminal, simplifies the user operation, and facilitates the user to view the screen display of the mobile terminal.
- a flow of a method for automatically unlocking or lighting a screen of a mobile terminal according to Embodiment 3 of the present invention includes the following steps:
- this embodiment will be described in conjunction with the system architecture diagram shown in FIG. It can be seen that the mobile terminal 20 and the brain wave transmitting device 10 shown in FIG. 1 can implement the method flow described in this embodiment, but the implementation of this embodiment is not limited to the mobile terminal 20 and the brain wave transmitting device 10 shown in FIG. 1.
- Step S2000 determining whether the intelligent unlocking switch based on the brain wave is turned on; if not, the process ends; if yes, executing step S2001;
- the processor 22 of the mobile terminal 20 first determines whether the intelligent unlocking switch based on the brain wave is turned on, and if it is turned on, performs the subsequent steps, and if it is turned off, the flow ends.
- Step S2001 receiving a brain wave signal
- the brain wave signal receiving module 21 of the mobile terminal 20 receives the brain wave signal transmitted by the brain wave transmitting device 10; wherein the brain wave signal can be received based on a wired manner, for example, a wired earphone; or can be received based on a wireless manner, for example, a Bluetooth mode , ZigBee mode, WiFi mode or LiFi mode.
- Step S2002 it is determined whether the frequency of the brain wave signal is within the preset frequency range of the lighting screen or the automatic unlocking; if not, the process ends; if yes, step S2003 is performed;
- the processor 22 of the mobile terminal 20 receives the brain wave signal sent by the brain wave signal receiving module 21, and identifies whether the frequency range of the brain wave signal is within the preset frequency range of the lighting screen or the automatic unlocking.
- the frequency range of lighting the screen or automatically unlocking the preset is ⁇ (14-30 Hz)
- the lighting screen module 23 of the mobile terminal 20 is triggered or
- the automatic unlocking module 24 lights up the screen or automatically unlocks.
- illuminating the screen or automatically unlocking the preset frequency range may be more precise based on an in-depth study of brain waves. If the frequency range of the brain wave signal is not within the range of ⁇ (14-30 Hz), the lighting screen or the automatic unlocking function is not triggered, and the method flow of the embodiment ends.
- Step S2003 triggering to light up the screen or automatically unlocking
- the processor 22 of the mobile terminal 20 triggers the lighting screen module 23 to light the screen, or triggers the automatic unlocking module 24 to automatically unlock.
- the mobile terminal performs the function of automatically unlocking the mobile terminal or lighting the screen by acquiring the brain wave of the human brain and recognizing the frequency range of the brain wave.
- the automatic control improves the speed of the screen display of the mobile terminal, simplifies the user operation, and facilitates the user to view the screen display of the mobile terminal.
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Abstract
一种移动终端、移动终端自动解锁或点亮屏幕的方法及系统,涉及通讯技术领域。所述方法包括接收脑电波信号;识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,触发点亮屏幕或者自动解锁。这种方法能够提高移动终端屏幕显示的速度,简化用户操作,方便用户查看移动终端屏幕显示。
Description
本发明实施例涉及通讯技术领域,尤其涉及一种移动终端、移动终端自动解锁或点亮屏幕的方法及系统。
随着通讯技术的高速发展,智能移动终端成为现代人的必须品,并且蓝牙耳机越来越普及,采用蓝牙耳机进行听音乐和接听电话成为广大用户的选择,但当需要查看时间,天气或新闻等信息时,需要手动按电源键或者指纹进行点亮屏幕或者解锁方能显示,这无疑给用户带来不便。
发明内容
针对现有技术的不足,为了方便用户快速查看移动终端屏幕显示的信息,本发明实施例提供了以下的技术方案。
本发明实施例提供的一种移动终端包括:脑电波信号接收模块、处理器、点亮屏幕模块和自动解锁模块;其中,所述脑电波信号接收模块,用于接收脑电波信号;所述处理器,用于识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,所述处理器触发所述点亮屏幕模块点亮屏幕或者触发自动解锁模块自动解锁。
其中,所述脑电波信号接收模块通过有线方式或无线方式接收脑电波信号。
其中,所述无线方式包括蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
其中,所述点亮屏幕或自动解锁预设的频率范围为β(14-30Hz)。
本发明实施例提供一种移动终端自动解锁或点亮屏幕的方法包括:接收脑电波信号;识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,触发点亮屏幕或者自动解锁。
本发明实施例提供一种移动终端自动解锁或点亮屏幕的系统包括:移动终端和脑电波传输装置,其中,
所述脑电波传输装置包括:脑电波传感器、微控制器和脑电波信号发送模块;其中,所述脑电波传感器,用于获取脑电波信号并发送给所述微控制器,所述微控制器,用于控制所述脑电波信号发送模块将所述脑电波信号发送给所述移动终端;以及
所述移动终端包括:脑电波信号接收模块、处理器、点亮屏幕模块和自动解锁模块;其中,所述脑电波信号接收模块,用于接收脑电波信号;所述处理器,用于识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,所述处理器触发所述点亮屏幕模块点亮屏幕或者触发自动解锁模块自动解锁。
与现有技术相比,本发明实施例有以下有益效果:本发明实施例通过移动终端接收脑电波信号,通过判断脑电波信号的频率是否在点亮屏幕或自动解锁预设的频率范围内,自动触发移动终端点亮屏幕或解锁,从而提高了移动终端屏幕显示的速度,简化用户操作,方便用户查看移动终端屏幕显示。
图1是本发明实施例一所述移动终端及脑电波传输装置的系统架构示意图。
图2是本发明实施例二所述移动终端自动解锁或点亮屏幕方法的流程示意图。
图3是本发明实施例三所述移动终端自动解锁或点亮屏幕方法的流程示意图。
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳实施例。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本发明。
参考图1,为本发明实施例一所述的移动终端20和脑电波传输装置10的系统架构图,该系统中主要包括脑电波传输装置10和移动终端20。本发明主要利用人脑在不同状态下产生的脑电波,实现对移动终端自动解锁或点亮屏幕功能的自动控制。
人脑在休息时、工作时或娱乐时会产生自己的脑电波。脑电波是一些自发的有节律的神经电活动,其频率变动范围在每秒1-30次之间的,可划分为四个波段,即δ(1-3Hz)、θ(4-7Hz)、α(8-13Hz)、β(14-30Hz)。除此之外,在觉醒并专注于某一事时,常可见一种频率较β波更高的γ波,其频率为30~80Hz,波幅范围不定;而在睡眠时还可出现另一些波形较为特殊的正常脑电波,如驼峰波、σ波、λ波、κ-复合波、μ波等。可见,每个脑电波波段对应着人不同情绪状态,当人的情绪发生变化时,检测到的脑电波频率也不相同,通过脑电波检测芯片,人脑的脑电波信号可以准确的被收集到。
本发明实施例一所述脑电波传输装置10即可实现获取人脑的脑电波信号,并且基于有线或无线的传输方式将脑电波传输给移动终端20,移动终端20通过识别处于自动解锁或点亮屏幕的脑电波频率控制移动终端20实现移动终端自动解锁或点亮屏幕。所述脑电波传输装置10包括脑电波传感器11、微控制器12和脑电波信号发送模块13。
脑电波传感器11用于感测人脑的脑电波信号,并发送给微控制器
12。在具体产品实现中,脑电波传感器11可以通过美国Neurosky公司研发的一款ThinkGear AM芯片实现,该芯片采用了干电极传感器和消噪功能,可以被应用在需要获取脑电波信号的各种电子产品中。
微控制器12用于获取脑电波传感器11感测到的脑电波信号,并且控制脑电波信号发送模块13向对应的移动终端发送所述感测到的脑电波信号。其中,微控制器12还可以控制脑电波传感器11实时感测人脑的脑电波信号,或者控制脑电波传感器11根据用户的设置感测人脑的脑电波信号,或者控制脑电波传感器11在预定的时间或地点感测人脑的脑电波信号。
脑电波信号发送模块13接收微控制器12发送的脑电波信号,并向对应的移动终端发送。其中脑电波信号可以基于有线方式被发送,例如:有线耳机;也可以基于无线方式被发送,例如:蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
根据上述描述,本发明实施例一提供的脑电波传输装置10,可以设置于现有的蓝牙耳机上,也可以设置于现有的智能眼镜上。其中,所述脑电波传输装置10还可以设置于其他经常带在头上的各种饰品中。
本发明实施例一所述移动终端20用于接收脑电波信号,并通过脑电波信号控制移动终端点亮屏幕或快速解锁。所述移动终端20包括脑电波信号接收模块21、处理器22、点亮屏幕模块23和自动解锁模块24。
脑电波信号接收模块21用于接收脑电波传输装置10发送的脑电波信号。其中脑电波信号可以基于有线方式被接收,例如:有线耳机;也可以基于无线方式被接收,例如:蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
处理器22用于接收脑电波信号接收模块21发送的脑电波信号,识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,在本实施例中,点亮屏幕或自动解锁预设的频率范围为β(14-30Hz),若所述脑电波信号的频率范围在β(14-30Hz)范围内,则触发移动终端20的点亮屏幕模块23或自动解锁模块24点亮屏幕或自动解锁。在本发明的其他实施例中,点亮屏幕或自动解锁预设的频率
范围可以根据对脑电波的深入研究设定更为精确。
点亮屏幕模块23与处理器22相连用于接收处理器22的触发指令触发移动终端点亮屏幕。
自动解锁模块24与处理器22相连用于接收处理器22的触发指令触发移动终端自动解锁。
在本发明后续的实施例中将进一步结合说明移动终端20和脑电波传输装置10各个模块的功能及作用。
采用本发明实施例一提供的脑电波传输装置10可以准确的获取人脑的脑电波信号并发送给对应的移动终端20,为现有移动终端增加了一种可以通过脑电波实现自动控制的方式。同时,采用本发明实施例一提供的移动终端20,可以获取人脑的脑电波信号,并且通过处理器22判断脑电波信号所在的频率,从而实现通过脑电波触发移动终端点亮屏幕或自动解锁。
参考图2,为本发明实施例二所述移动终端自动解锁或点亮屏幕方法的流程,包括如下步骤:
为了清楚介绍该方法的实现,所述实施例将结合图1所示的系统架构图进行介绍。可见,图1所示的移动终端20和脑电波传输装置10可以实现该实施例描述的方法流程,然而该实施例的实现不局限于图1所示的移动终端20和脑电波传输装置10。
步骤S1001,接收脑电波信号;
移动终端20的脑电波信号接收模块21接收脑电波传输装置10发送的脑电波信号;其中脑电波信号可以基于有线方式被接收,例如:有线耳机;也可以基于无线方式被接收,例如:蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
步骤S1002,识别所述脑电波信号的频率是否在点亮屏幕或自动解锁的预设频率范围内;若否,该流程结束;若是,执行步骤S1003;
移动终端20的处理器22接收脑电波信号接收模块21发送的脑电波信号,识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,在本实施例中,点亮屏幕或自动解锁预设的频率范围
为β(14-30Hz),若所述脑电波信号的频率范围在β(14-30Hz)范围内,则触发移动终端20的点亮屏幕模块23点亮屏幕,或者触发自动解锁模块24自动解锁。在本发明的其他实施例中,点亮屏幕或自动解锁预设的频率范围可以根据对脑电波的深入研究设定更为精确。若所述脑电波信号的频率范围不在β(14-30Hz)范围内,则不触发点亮屏幕或自动解锁功能,本实施例的方法流程结束。
步骤S1003,触发点亮屏幕或自动解锁;
当识别所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,移动终端20的处理器22触发点亮屏幕模块23点亮屏幕,或者触发自动解锁模块24自动解锁。
采用本发明实施例二提供的移动终端自动解锁或点亮屏幕的方法,移动终端通过获取人脑的脑电波,以及对脑电波频率范围的识别,对移动终端自动解锁功能或点亮屏幕功能进行自动控制,提高了移动终端屏幕显示的速度,简化用户操作,方便用户查看移动终端屏幕显示。
参考图3,为本发明实施例三所述移动终端自动解锁或点亮屏幕方法的流程,包括如下步骤:
为了清楚介绍该方法的实现,该实施例将结合图1所示的系统架构图进行介绍。可见,图1所示的移动终端20和脑电波传输装置10可以实现该实施例描述的方法流程,然而该实施例的实现不局限于图1所示的移动终端20和脑电波传输装置10。
步骤S2000,判断基于脑电波智能解锁开关是否打开;若否,该流程结束;若是,执行步骤S2001;
移动终端20的处理器22首先判断基于脑电波智能解锁开关是否打开,若打开,则执行后续步骤,若关闭,则该流程结束。
步骤S2001,接收脑电波信号;
移动终端20的脑电波信号接收模块21接收脑电波传输装置10发送的脑电波信号;其中脑电波信号可以基于有线方式被接收,例如:有线耳机;也可以基于无线方式被接收,例如:蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
步骤S2002,识别所述脑电波信号的频率是否在点亮屏幕或自动解锁的预设频率范围内;若否,该流程结束;若是,执行步骤S2003;
移动终端20的处理器22接收脑电波信号接收模块21发送的脑电波信号,识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,在本实施例中,点亮屏幕或自动解锁预设的频率范围为β(14-30Hz),若所述脑电波信号的频率范围在β(14-30Hz)范围内,则触发移动终端20的点亮屏幕模块23或自动解锁模块24点亮屏幕或自动解锁。在本发明的其他实施例中,点亮屏幕或自动解锁预设的频率范围可以根据对脑电波的深入研究设定更为精确。若所述脑电波信号的频率范围不在β(14-30Hz)范围内,则不触发点亮屏幕或自动解锁功能,本实施例的方法流程结束。
步骤S2003,触发点亮屏幕或自动解锁;
当识别所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,移动终端20的处理器22触发点亮屏幕模块23点亮屏幕,或者触发自动解锁模块24自动解锁。
采用本发明实施例三提供的移动终端自动解锁或点亮屏幕的方法,移动终端通过获取人脑的脑电波,以及对脑电波频率范围的识别,对移动终端自动解锁功能或点亮屏幕功能进行自动控制,提高了移动终端屏幕显示的速度,简化用户操作,方便用户查看移动终端屏幕显示。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到各实施方式可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件。基于这样的理解,上述技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行各个实施例或者实施例的某些部分所述的方法。
上述实施例为本发明较佳的实施方式,但本发明的实施方式并不受上述实施例的限制,其他的任何未背离本发明的精神实质与原理下所作的改变、修饰、替代、组合、简化,均应为等效的置换方式,都包含在
本发明的保护范围之内。
Claims (6)
- 一种移动终端,其特征在于,所述移动终端包括:脑电波信号接收模块、处理器、点亮屏幕模块和自动解锁模块;其中,所述脑电波信号接收模块,用于接收脑电波信号;所述处理器,用于识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,所述处理器触发所述点亮屏幕模块点亮屏幕或者触发自动解锁模块自动解锁。
- 根据权利要求1所述的移动终端,其特征在于,所述脑电波信号接收模块通过有线方式或无线方式接收脑电波信号。
- 根据权利要求2所述的移动终端,其特征在于,所述无线方式包括蓝牙方式、ZigBee方式、WiFi方式或LiFi方式。
- 根据权利要求1所述的移动终端,其特征在于,所述点亮屏幕或自动解锁预设的频率范围为β(14-30Hz)。
- 一种移动终端自动解锁或点亮屏幕的方法,其特征在于,所述方法包括:接收脑电波信号;识别所述脑电波信号的频率范围是否在点亮屏幕或自动解锁预设的频率范围内,当所述脑电波信号的频率范围在点亮屏幕或自动解锁预设的频率范围内,触发点亮屏幕或者自动解锁。
- 根据权利要求5所述的方法,其特征在于,所述接收脑电波信号通过有线方式或无线方式接收。
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| CN107669267B (zh) * | 2017-10-17 | 2020-06-19 | 山东大学 | 一种基于深度学习的脑电信号开锁系统及方法 |
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