CN108365647A - Control charge mode method and relevant apparatus - Google Patents

Control charge mode method and relevant apparatus Download PDF

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Publication number
CN108365647A
CN108365647A CN201810142963.3A CN201810142963A CN108365647A CN 108365647 A CN108365647 A CN 108365647A CN 201810142963 A CN201810142963 A CN 201810142963A CN 108365647 A CN108365647 A CN 108365647A
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brain wave
electronic device
charge mode
controller
electronic devices
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张海平
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Priority to CN201810142963.3A priority Critical patent/CN108365647A/en
Publication of CN108365647A publication Critical patent/CN108365647A/en
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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/007Regulation of charging or discharging current or voltage
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • G06F3/015Input arrangements based on nervous system activity detection, e.g. brain waves [EEG] detection, electromyograms [EMG] detection, electrodermal response detection
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/01Indexing scheme relating to G06F3/01
    • G06F2203/011Emotion or mood input determined on the basis of sensed human body parameters such as pulse, heart rate or beat, temperature of skin, facial expressions, iris, voice pitch, brain activity patterns

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Neurosurgery (AREA)
  • General Health & Medical Sciences (AREA)
  • Neurology (AREA)
  • Health & Medical Sciences (AREA)
  • Dermatology (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Biomedical Technology (AREA)
  • Power Engineering (AREA)
  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

This application discloses a kind of control charge mode method and relevant apparatus, applied to the electronic device for including brain wave sensor and controller, wherein:Brain wave sensor, the first brain wave for acquiring user;Controller is charge electronic devices for starting fast charge mode according to the first brain wave;Brain wave sensor is additionally operable to during it is charge electronic devices to start fast charge mode, acquire the second brain wave of user;Controller is additionally operable to the energy of collected second brain wave be charge electronic devices.It can be realized using the embodiment of the present application and charge mode is controlled by brain wave.

Description

Control charge mode method and relevant apparatus
Technical field
This application involves electronic technology field more particularly to a kind of control charge mode method and relevant apparatus.
Background technology
It is universal with the rapid development of electronic device (such as smart mobile phone) technology, and increasingly, become user Indispensable electronic product in daily life.In actual use, user can use electronic device to carry out video playing, i.e. When chat, game etc..Along with the increase of the frequency of use of electronic device, often charge electronic devices are needed.Currently, in order to It is applicable in different scenes, it is that electronic device charges to provide different charge modes.
Invention content
A kind of control charge mode method of the embodiment of the present application offer and relevant apparatus are realized and are filled using brain wave control Power mode, and promote the charge efficiency of electronic device.
In a first aspect, the embodiment of the present application provides a kind of electronic device, including brain wave sensor and controller, wherein:
The brain wave sensor, the first brain wave for acquiring user;
The controller is the charge electronic devices for starting fast charge mode according to first brain wave;
The brain wave sensor is additionally operable to starting the process that the fast charge mode is the charge electronic devices In, acquire the second brain wave of user;
The controller is additionally operable to the energy of collected second brain wave be the charge electronic devices.
Second aspect, the embodiment of the present application provide a kind of control charge mode method, are applied to include brain wave sensor With the electronic device of controller, the method includes:
The first brain wave of the brain wave sensor acquisition user;
It is the charge electronic devices that the controller starts fast charge mode according to first brain wave;
During it is the charge electronic devices to start the fast charge mode, the brain wave sensor acquisition The second brain wave of user;
The energy of collected second brain wave is the charge electronic devices by the controller.
The third aspect, the embodiment of the present application provide a kind of control charge mode device, are applied to electronic device, the control Charge mode device includes collecting unit and charging process unit, wherein:
The collecting unit, the first brain wave for acquiring user;
The charging process unit is the electronic device for starting fast charge mode according to first brain wave Charging;
The collecting unit is additionally operable to during it is the charge electronic devices to start the fast charge mode, Acquire the second brain wave of user;
The charging process unit is additionally operable to the energy of collected second brain wave be that the electronic device fills Electricity.
Fourth aspect, the embodiment of the present application provide a kind of electronic device, including processor, memory, communication interface and One or more programs, wherein said one or multiple programs are stored in above-mentioned memory, and are configured by above-mentioned It manages device to execute, above procedure includes the instruction for executing the step in the embodiment of the present application second aspect either method.
5th aspect, the embodiment of the present application provide a kind of computer readable storage medium, wherein above computer is readable Computer program of the storage medium storage for electronic data interchange, wherein above computer program makes computer execute such as Step some or all of described in the embodiment of the present application second aspect either method.
6th aspect, the embodiment of the present application provide a kind of computer program product, wherein above computer program product Non-transient computer readable storage medium including storing computer program, above computer program are operable to make calculating Machine executes the step some or all of as described in the embodiment of the present application second aspect either method.The computer program product It can be a software installation packet.
As can be seen that in the embodiment of the present application, electronic device is provided with brain wave sensor, which adopts Collect the first brain wave of user, electronic device starts fast charge mode according to collected first brain wave and filled for electronic device Electricity realizes and controls charge mode using brain wave.In addition, will while starting fast charge mode and being charge electronic devices The energy of the second brain wave of collected user is charge electronic devices, improves charge efficiency.
These aspects or other aspects of the application can more straightforward in the following description.
Description of the drawings
In order to illustrate the technical solutions in the embodiments of the present application or in the prior art more clearly, to embodiment or will show below There is attached drawing needed in technology description to be briefly described, it should be apparent that, the accompanying drawings in the following description is only this Some embodiments of application for those of ordinary skill in the art without creative efforts, can be with Obtain other attached drawings according to these attached drawings.
Figure 1A is a kind of structural schematic diagram of electronic device provided by the embodiments of the present application;
Figure 1B is a kind of structural representation of electronic device including wearable signal picker provided by the embodiments of the present application Figure;
Fig. 2A is a kind of flow diagram of control charge mode method provided by the embodiments of the present application;
Fig. 2 B are the waveform example figures of brain wave provided by the embodiments of the present application;
Fig. 2 C are provided by the embodiments of the present application so that the sampling periods of eeg signal is slided with scheduled duration with overlap mode Dynamic exemplary plot;
Fig. 3 is the flow diagram of another control charge mode method provided by the embodiments of the present application;
Fig. 4 is a kind of structural schematic diagram of electronic device provided by the embodiments of the present application;
Fig. 5 is a kind of structural schematic diagram of control charge mode device provided by the embodiments of the present application.
Specific implementation
In order to make those skilled in the art more fully understand application scheme, below in conjunction in the embodiment of the present application Attached drawing, technical solutions in the embodiments of the present application are clearly and completely described, it is clear that described embodiment is only The embodiment of the application part, instead of all the embodiments.Based on the embodiment in the application, ordinary skill people The every other embodiment that member is obtained without making creative work should all belong to the model of the application protection It encloses.
It is described in detail separately below.
Term " first ", " second ", " third " in the description and claims of this application and the attached drawing and " Four " etc. be for distinguishing different objects, rather than for describing particular order.In addition, term " comprising " and " having " and it Any deformation, it is intended that cover and non-exclusive include.Such as it contains the process of series of steps or unit, method, be The step of system, product or equipment are not limited to list or unit, but further include the steps that optionally not listing or list Member, or further include optionally for the intrinsic other steps of these processes, method, product or equipment or unit.
Referenced herein " embodiment " is it is meant that a particular feature, structure, or characteristic described can wrap in conjunction with the embodiments It is contained at least one embodiment of the application.Each position in the description occur the phrase might not each mean it is identical Embodiment, nor the independent or alternative embodiment with other embodiments mutual exclusion.Those skilled in the art explicitly and Implicitly understand, embodiment described herein can be combined with other embodiments.
Electronic device may include various handheld devices with wireless communication function, mobile unit, wearable device, meter It calculates equipment or is connected to other processing equipments of radio modem and various forms of user equipment (User Equipment, UE), mobile station (Mobile Station, MS), terminal device (terminal device) etc..For convenience Description, apparatus mentioned above are referred to as electronic device.
It describes in detail below to the embodiment of the present application.
Please refer to Fig.1 A, Figure 1A is the structural schematic diagram that the embodiment of the present application provides a kind of electronic device 100, electronics dress Setting 100 includes:Shell 10, circuit board 20, brain wave sensor 30, brain wave processing module 40, output precision 50, transceiver 60, control brain wave sensor 30, brain wave processing module 40, output precision 50 and transceiver 60 controller 70;Brain wave Sensor 30, transceiver 60 and controller 70 are arranged on circuit board 20, and output precision 50 is connect with controller 70, output precision 50 include display screen, loud speaker etc., wherein:
Brain wave sensor 30, the first brain wave for acquiring user;
Controller 70 is the charge electronic devices for starting fast charge mode according to first brain wave;
Brain wave sensor 30 is additionally operable to starting the process that the fast charge mode is the charge electronic devices In, acquire the second brain wave of user;
Controller 70 is additionally operable to the energy of collected second brain wave be the charge electronic devices.
Wherein, electronic device 100 further includes at least one functional unit 80, controller 70 and at least one functional unit 80 Connection, at least one functional unit 80 include following at least one:Front camera, face identification device, proximity sensor, ring Border optical sensor etc..
Wherein, display screen 50 includes touch screen and display screen, and display screen includes organic light-emitting diode (OLED) display screen OLED.
Wherein, display screen 50 includes setting regions.Wherein, setting regions can be the lower right field of display screen, lower-left Angular zone, upper right comer region, upper left corner area, intermediate region, etc..
Alternatively, display screen 50 includes first area and second area.Wherein, first area and second area can be adjacent , it can also be non-conterminous, do not limit uniquely herein.
Wherein, brain wave (Electroencephalogram, EEG) is brain in activity, and a large amount of neurons synchronize hair What raw postsynaptic potential was formed after summation.Brain wave is a kind of electromagnetic wave, has certain energy.
Wherein, brain wave sensor 30 is properly termed as brain wave chip, brain wave receiver etc. again.Brain wave sensor 30 It integrates in an electronic.
Wherein, brain wave sensor 30 has following at least one ability:Signal acquisition ability, signal transmitting and receiving ability etc. Deng.Wherein, signal acquisition ability is used to acquire the brain wave of user's generation.Signal transmitting and receiving ability is used to pass through wireline interface or nothing Line interface receives the brain wave that other equipment (such as having other electronic devices, following wearable signal pickers etc.) is sent, And brain wave is sent to other equipment by wired or wireless interface.Wherein, wireless interface is the transceiver 60 of electronic device.
Wherein, brain wave processing module 40 has following at least one ability:Signal storage capacity, signal handling capacity, Energy conversion capability, energy determine ability etc..
Wherein, signal storage capacity is for storing brain wave.Signal handling capacity is used to brain wave carrying out denoising, filtering Deng processing, ultimately forms benchmark brain wave and be sent to controller and handled.Energy conversion capability is used for former using electromagnetic induction Reason converts brain wave to electric current.Energy determines the size of energy of the ability for determining collected brain wave, and is used for Determine the size of the energy of the brain wave of storage.
Wherein, brain wave processing module 40 can be integrated in brain wave sensor 30, can also be integrated in controller 70.
In one embodiment, as shown in Figure 1B, which may include wearable signal picker. In Figure 1B, which is arranged in the rear shell of electronic device, which can fill from electronics It is dismantled in the rear shell set, wearable signal picker and electronic device local terminal wired connection or wireless connection (wireless connection pair The wearable signal picker answered is integrated with wireless communication module and is communicated to connect with electronic device local terminal).When in use, Yong Huke Wearable signal picker is dismantled from the rear shell of electronic device, wearable signal picker is then close to user's head.
It should be noted that example shown in Figure 1B is used only for explaining, restriction should not be constituted.
In other embodiments, wearable signal picker can be different from form shown in Figure 1B, for example brain is electric Wave head helmet, brain wave earrings, brain wave hearing aid, brain wave hair clip, brain wave earphone etc..
In one embodiment, which may include electrod-array and signal processing module, wherein should Electronic array is embedded to the electric signal that neuron is captured in scalp, and the structure of electrode section is needle-shaped permutation, the signal processing circuit Part may include instrument amplifier, low-pass filter circuit, high-pass filtering circuit, modulus A/D conversion circuits and interface circuit Deng.
Wherein, controller 70 may include processor and memory, which is the control centre of electronic device, utilize The various pieces of various interfaces and the entire electronic device of connection, by running or executing the software journey being stored in memory Sequence and/or module, and the data being stored in memory are called, the various functions and processing data of electronic device are executed, from And integral monitoring is carried out to electronic device.Optionally, processor can integrate application processor and modem processor, wherein The main processing operation system of application processor, user interface and application program etc., modem processor mainly handles channel radio Letter.It is understood that above-mentioned modem processor can not also be integrated into processor.
Wherein, memory can be used for storing software program and module, and processor is stored in the soft of memory by operation Part program and module, to execute various function application and the data processing of electronic device.Memory can include mainly depositing Store up program area and storage data field, wherein storing program area can storage program area, the application program needed at least one function Deng;Storage data field can be stored uses created data etc. according to electronic device.In addition, memory may include high speed with Machine access memory, can also include nonvolatile memory, a for example, at least disk memory, flush memory device or its His volatile solid-state part.
As can be seen that in the embodiment of the present application, electronic device is provided with brain wave sensor, which adopts Collect the first brain wave of user, electronic device starts fast charge mode according to collected first brain wave and filled for electronic device Electricity realizes and controls charge mode using brain wave.In addition, will while starting fast charge mode and being charge electronic devices The energy of the second brain wave of collected user is charge electronic devices, improves charge efficiency.
In the embodiment of the application, filled for the electronics starting fast charge mode according to first brain wave In terms of setting charging, controller 70 is specifically used for:
First brain wave is parsed by brain wave processing module 40, to obtain the characteristic value of first brain wave; According to the mapping relations of characteristic value and keyword, determine in setting keyword set with the associated target critical of the characteristic value Word;According to the mapping relations of keyword and control instruction, the corresponding target control instruction of the target keyword is determined;Described Target control instruction includes starting the fast charge mode in the case of starting the fast charge mode and being filled for the electronics Set charging.
In the embodiment of the application, output precision 50, for exporting prompt message, the prompt message is for prompting Whether the fast charge mode is started, and the prompt message is for guiding whether user's meditation starts the fast charge mode Corresponding keyword.
In the embodiment of the application, controller 70 is additionally operable to be less than or wait in the current electricity of the electronic device In the case of first threshold, determine whether the intended application of the electronic device front stage operation is setting application, the setting The power consumption rate of application is greater than or equal to second threshold;It is greater than or equal to second threshold in the power consumption rate of the intended application In the case of value, determine that the intended application is applied for the setting.
In the embodiment of the application, the electronic device further includes brain wave control model start button,
Controller 70 is additionally operable in the case where the electronic device is in charged state, opens brain wave control model, The brain wave control model is for controlling brain wave charge mode.
It should be noted that the specific implementation process of the present embodiment can be found in the specific implementation process described in following methods, It no longer describes herein.
Fig. 2A is please referred to, Fig. 2A is a kind of flow diagram of control charge mode method provided by the embodiments of the present application, Applied to electronic device as shown in Figure 1A, this method includes:
Step 201:Brain wave sensor acquires the first brain wave of user.
Wherein, the first brain wave is the brain wave of the one of authorized user of electronic device.
Step 202:It is the charge electronic devices that controller starts fast charge mode according to first brain wave.
In the embodiment of the application, it is the electricity that controller starts fast charge mode according to first brain wave Sub-device charging specific implementation has:
The controller parses first brain wave by the brain wave processing module, to obtain the first brain electricity The characteristic value of wave;The controller according to the mapping relations of characteristic value and keyword, determine in setting keyword set with it is described The associated target keyword of characteristic value;The controller determines the target according to the mapping relations of keyword and control instruction The corresponding target control instruction of keyword;In the case where target control instruction includes starting the fast charge mode, It is the charge electronic devices that the controller, which starts the fast charge mode,.
Specifically, Hilbert-Huang transform (Hibert-Huang Transform, HHT) calculation may be used in electronic device Brain wave is identified in method.First, extreme point all in the collected brain wave x (t) of brain wave sensor is found out;Then Data envelopment fitting is carried out to maximum point and minimum point using cubic spline function;Then the average value m of envelope is calculated (t), and by h (t)=x (t)-m (t) judge whether to meet essential mode function (intrisic mode function, IMF) Condition;Hibert variations, and tectonic knot function are carried out after meeting IMF conditions, then seeks instantaneous frequency, obtain Hilbert Instantaneous energy spectrum finally uses the characteristic value of Bayesian decision classifying and selecting brain wave.
Specifically, electronic device is also based on the brain wave X being made of data of short-time series1(t)、X2(t)、X3(t)、X4 (t)、X5(t), characteristic value f is continuously calculated by common space pattern CSP methodsp.As shown in Figure 2 B, electronic device exists first Each brain wave Xn(t) setting and interval T in (n=1~5)1Corresponding frame, and each brain wave is calculated in interval T1Interior fs ×T1(fs:Sample frequency) value (brain data) D at a pointn(1) to Dn(fs×T1).As described above, electronic device is respectively from letter Number X1(t)、X2(t)、X3(t)、X4(t)、X5(t) extraction brain data D1(1) to D1(fs×T1)、D2(1) to D2(fs×T1)、D3(1) To D3(fs×T1)、D4(1) to D4(fs×T1)、D5(1) to D5(fs×T1).Then, brain data production of the electronic device based on extraction Raw 5 (number of electrodes) × fs×T1(sampling periods T1Interior brain data item number) matrix E.
In addition, the filtering W that electronic device is obtained based on generated matrix E and by known CSP methods1And W1Pass through Following formula (1) calculates characteristic value fp
fp=var (Zp) Σ i=12var (Zt)=var (WpE) Σ i=12var (WiE)]] formula (1)
Pay attention to above-mentioned " var (Zp) " indicate data sequence ZpVariance.
In addition, electronic device is successively calculated in each scheduled short time T2(for example, T2=125ms) at characteristic value fp.Specifically, as shown in Figure 2 C, by each brain wave Xn(t) sampling periods T is made with overlap mode in1With each predetermined short Time (predetermined space) T2Sliding, electronic device successively generates matrix E, and continuously calculates characteristic value fp
Electronic device is based on the characteristic value f being calculatedpLetter is executed with the learning functionality of such as linear SVM SVM Number processing, and generates control signal.
As can be seen that in this application, since in the case where meditating different keyword states, brain wave has differences user, to There is also differences for brain wave feature, therefore electronic device can determine brain wave feature, can be fast further according to the brain wave feature Speed determines that user wishes that electronic device executes the corresponding target keyword of control charge mode operation, is conducive to improve electronics dress Set accuracy and the real-time that semantic parsing is carried out to brain wave.
Wherein, the mapping relations of keyword and control instruction are as shown in table 1:
Table 1
Step 203:During it is the charge electronic devices to start the fast charge mode, brain wave sensor Acquire the second brain wave of user.
Step 204:The energy of collected second brain wave is the charge electronic devices by the controller.
Wherein, the second brain wave can be the brain wave of a user, can also be the brain wave of multiple users, herein not It is construed as limiting.
Wherein, in the case where the second brain wave is the brain wave of a user, the corresponding user of the first brain wave can be with And the corresponding user of the second brain wave is identical or the corresponding user of the first brain wave can user corresponding with the second brain wave It differs.
Wherein, in the case where the second brain wave is the brain wave of multiple users, the corresponding multiple users of the second brain wave May include the corresponding user of the first brain wave or the corresponding multiple users of the second brain wave can not include the first brain wave Corresponding user.
Specifically, in the case where the second brain wave is the brain wave of a user, the acquisition of the second brain wave passes through electricity The brain wave sensor of sub-device acquires.
Specifically, in the case where the second brain wave is the brain wave of multiple users, brain wave sensor acquires user's Second brain wave, including:
Brain wave sensor acquires the brain wave of the user corresponding to electronic device, and parallel brain wave sensor passes through receipts Hair device sends brain wave acquisition instruction to other electronic devices bound with electronic device, and brain wave acquisition instruction is used to indicate it His electronic device sends the brain wave of the user corresponding to other electronic devices to electronic device;Brain wave sensor passes through transmitting-receiving Device receives the brain wave for the user that other electronic devices are sent for brain wave acquisition instruction.
Specifically, the energy of collected second brain wave is the specific implementation of charge electronic devices by controller Have:Controller converts the energy of collected brain wave to electric current by brain wave processing module using electromagnetic induction principle, Then the electric current of conversion is charge electronic devices by controller.
As can be seen that in the embodiment of the present application, electronic device is provided with brain wave sensor, which adopts Collect the first brain wave of user, electronic device starts fast charge mode according to collected first brain wave and filled for electronic device Electricity realizes and controls charge mode using brain wave.In addition, will while starting fast charge mode and being charge electronic devices The energy of the second brain wave of collected user is charge electronic devices, improves charge efficiency.
In the embodiment of the application, before output precision exports prompt message, the method further includes:
In the case where the electronic device is in charged state, controller opens brain wave control model, the brain electricity Wave control model is for controlling brain wave charge mode.
In the embodiment of the application, on the basis of Figure 1A electronic device further include brain wave control model start by Key, the specific implementation that controller opens brain wave control model have:It is set in the brain wave control model start button In the case of open state, controller opens brain wave control model.
In the embodiment of the application, the specific implementation that controller opens brain wave control model has:Described In the case that the movement locus of electronic device is setting movement locus, controller opens brain wave control model.Wherein, in Figure 1A On the basis of electronic device further include gyroscope, the movement locus of electronic device can be obtained by gyroscope.For example, electronic device Current movement locus is Z, if setting movement locus is also Z, controller starts brain wave control model.
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting To in the case of the long press operation of display screen and/or HOME keys, controller starts brain wave control model.
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting In the case of the clicking operation for display screen or setting regions, controller starts brain wave control model.Wherein, the point Hit operation can be single-click operation, double click operation, three hit operation, etc..
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting To brain wave sensor acquire brain wave electroencephalogram with setting electroencephalogram it is matched in the case of, controller start brain wave control Molding formula.
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting To the collected voice messaging of speech recognition equipment with setting voice messaging it is matched in the case of, controller start brain wave control Pattern.
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting To the collected facial image of face identification device with setting facial image it is matched in the case of, controller start brain wave control Pattern.
In the embodiment of the application, electronic device further includes fingerprint sensor on the basis of Figure 1A, and controller opens The specific implementation for the electric wave control model that beats one's brains has:Detecting the collected finger print information of fingerprint sensor and setting fingerprint In the case of information matches, controller starts brain wave control model.
In the embodiment of the application, the specific implementation that controller starts brain wave control model has:It is detecting To the first clicking operation for first area, and in the case of detecting the second clicking operation for second area, control Device processed starts brain wave control model.Wherein, the first clicking operation is different from the second clicking operation, the first clicking operation and second Clicking operation can be single-click operation, double click operation, three hit operation, etc..
Specifically, if electronic device is in uncharged state, controller opens brain wave and controls charge mode, even if electric Sub-device determines that control instruction is startup fast charge mode or startup normal charging mode can not be charge electronic devices, this Kind situation is meaningless, therefore when electronic device is in charged state, and controller opens brain wave control model.
In the embodiment of the application, electronic device further includes output precision, and brain wave sensor acquires the of user Before one brain wave, the method further includes:
Output precision exports prompt message, and the prompt message is for prompting whether start the fast charge mode, institute Prompt message is stated for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
Specifically, when prompt message includes starting fast charge mode, start the corresponding keyword of fast charge mode Such as can be thought as, start fast charge mode, fast charge, start quick charge, quickly fill, etc.;When prompt message includes opening When dynamic normal charging mode, starting the corresponding keyword of normal charging mode can for example be no, start normal charging mode, is general Fill, start common charging, normally fill, etc..
Specifically, the specific implementation embodiment of output precision output prompt message has:Output precision is in display screen Between in region, top left region, lower left region, right regions, lower right area one of region pop up a prompting frame, prompting frame packet Suggestion content is included, suggestion content is for prompting whether start fast charge mode;Wherein, different system times corresponds to different Display screen area, for example, 9:00-10:00, prompting frame is popped up in the top left region of display screen, 14:00-15:00, it is showing Pop up prompting frame in the intermediate region of screen.
Alternatively, output precision is by picture static status display prompt message, when prompt message includes starting fast charge mode When, for output precision by the first picture display reminding information, the content of the first picture can be people, cartoon character, animal progress The action quickly run;When prompt message includes starting normal charging mode, output precision passes through second picture display reminding Information, the content of second picture can be the action of people, cartoon character, animal progress normal walking.
Alternatively, output precision is by short-sighted frequency Dynamic Announce prompt message, when prompt message includes starting quick charge mould When formula, for output precision by the first video display reminding information, the content of the first video may include people, cartoon character, animal The scene quickly run;When prompt message includes starting normal charging mode, output precision is shown by the second video Prompt message, the content of the second video may include that people, cartoon character, animal carry out the scene of normal walking.
As an example it is assumed that electronic device is mobile terminal, output precision is display screen, and mobile terminal is in display screen Between region pop up a prompting frame, include prompt message " it is mobile terminal charging whether to start fast charge mode " in prompting frame.
In the embodiment of the application, before output precision exports prompt message, the method further includes:
In the case where the current electricity of the electronic device is less than or equal to first threshold, described in the controller determination Whether the intended application of electronic device front stage operation is setting application, and the power consumption rate of the setting application is greater than or equal to second Threshold value;
In the case where the power consumption rate of the intended application is greater than or equal to the second threshold, the controller determines The intended application is applied for the setting.
Wherein, first threshold for example can be 45%, 40%, 35%, 30% or other values.
Wherein, second threshold characterizes a certain application satisfaction setting and applies the corresponding required minimum value of power consumption rate.
Specifically, controller determines that the specific implementation mode of the power consumption rate of intended application has:It is target in foreground application In the case of, controller obtains the first electricity of the first moment electronic device, and controller obtains the second moment electronic device The second electricity, controller according to the first moment, the second moment, the first electricity and the second electricity determine electronic device power consumption speed Rate.For example, in the case of front stage operation application A, controller obtains 9:The electricity of 00 mobile terminal is 80%, and controller obtains 10:The electricity of 00 mobile terminal is 50%, controller determine the power consumption rate of mobile terminal be 30 percent per hour, In, it is 100% when electronic device electricity is full of.
In the embodiment of the application, the method further includes:
In the case where target control instruction includes starting normal charging mode, controller starts the common charging Pattern is the third brain wave that the charge electronic devices and the brain wave sensor acquire user, at the brain wave Reason module stores the collected third brain wave;
It is greater than or equal to third threshold value in the energy of the third brain wave, and the electronic device is commonly filled using described In the case that power mode is the charge electronic devices, the energy of the third brain wave is that the electronic device fills by controller Electricity.
Wherein, when brain wave dress is turned to electric current by electronic device once consumes 10J, third threshold value for example can be 100J, 110J, 120J, 130J, 150J either other values.
Wherein, the specific implementation mode of the third brain wave of brain wave sensor acquisition user and above-mentioned brain wave sensor The specific implementation mode for acquiring the second brain wave of user is identical.
Wherein, the energy of third brain wave is the specific implementation mode and above controller of charge electronic devices by controller Collected second brain wave is identical for the specific implementation mode of charge electronic devices.
Specifically, brain wave processing module can consume the power consumption of electronic device during converting brain wave to electric current. In this application, brain wave processing module first stores collected brain wave, when the energy of the brain wave of storage reaches When certain value, the brain wave of storage is carried out energy conversion by brain wave processing module, can avoid brain wave processing module frequency in this way Numerous progress energy conversion and the problem of excessively consume the power consumption of electronic device, further decrease the power consumption of electronic device.
The embodiment of the present application also provides another more detailed method flows, as shown in figure 3, applied to as shown in Figure 1A Electronic device, this method includes:
Step 301:The controller determines that the electronic device is in charged state.
Step 302:The controller opens brain wave control model, and the brain wave control model is for controlling brain wave Charge mode.
Step 303:The controller judges whether the current electricity of the electronic device is less than or equal to first threshold;
If so, thening follow the steps 304.
If it is not, not executing any operation then.
Step 304:The controller judges whether the power consumption rate of the intended application of the electronic device front stage operation is big In or equal to second threshold;
If so, thening follow the steps 305.
If it is not, thening follow the steps 303.
Step 305:The controller determines that the intended application of the electronic device front stage operation is that the setting is answered With.
Step 306:The output precision exports prompt message, and whether the prompt message is described quick for prompting to start Charge mode, the prompt message is for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
Step 307:The first brain wave of the brain wave sensor acquisition user.
Step 308:The brain wave processing module parses first brain wave, to obtain the spy of first brain wave Value indicative.
Step 309:The brain wave processing module determines setting keyword according to the mapping relations of characteristic value and keyword In set with the associated target keyword of the characteristic value.
Step 310:The brain wave processing module determines the target according to the mapping relations of keyword and control instruction The corresponding target control instruction of keyword.
Step 311:In the case where target control instruction includes starting fast charge mode, the controller starts The fast charge mode is the charge electronic devices.
Step 312:During it is the charge electronic devices to start the fast charge mode, the brain wave passes Sensor acquires the second brain wave of user.
Step 313:The energy of collected second brain wave is the charge electronic devices by the controller.
It should be noted that the specific implementation process of each step of method shown in Fig. 3 can be found in described in the method Specific implementation process, no longer describe herein.
It is consistent with above-mentioned Fig. 2A and embodiment shown in Fig. 3, referring to Fig. 4, Fig. 4 is provided by the embodiments of the present application one The structural schematic diagram of kind of electronic device, as shown in figure 4, the electronic device includes processor, memory, communication interface and one Or multiple programs, wherein said one or multiple programs are stored in above-mentioned memory, and are configured by above-mentioned processor It executes, above procedure includes the instruction for executing following steps:
Acquire the first brain wave of user;
It is the charge electronic devices to start fast charge mode according to first brain wave;
During it is the charge electronic devices to start the fast charge mode, the second brain electricity of user is acquired Wave;
It is the charge electronic devices by the energy of collected second brain wave.
In the embodiment of the application, filled for the electronics starting fast charge mode according to first brain wave In terms of setting charging, above procedure includes the instruction for being specifically used for executing following steps:
First brain wave is parsed, to obtain the characteristic value of first brain wave;
According to the mapping relations of characteristic value and keyword, determine in setting keyword set with the associated mesh of the characteristic value Mark keyword;
According to the mapping relations of keyword and control instruction, the corresponding target control instruction of the target keyword is determined;
In the case where target control instruction includes starting the fast charge mode, described in the controller startup Fast charge mode is the charge electronic devices.
In the embodiment of the application, above procedure includes the instruction for being additionally operable to execute following steps:
Prompt message is exported, whether the prompt message starts the fast charge mode, the prompt letter for prompting Breath is for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
In the embodiment of the application, above procedure includes the instruction for being additionally operable to execute following steps:
In the case where the current electricity of the electronic device is less than or equal to first threshold, before determining the electronic device Whether the intended application of platform operation is setting application, and the power consumption rate of the setting application is greater than or equal to second threshold;
In the case where the power consumption rate of the intended application is greater than or equal to the second threshold, determine that the target is answered It is applied with for the setting.
In the embodiment of the application, above procedure includes the instruction for being additionally operable to execute following steps:
In the case where the electronic device is in charged state, brain wave control model, the brain wave control are opened Pattern is for controlling brain wave charge mode.
It should be noted that the specific implementation process of the present embodiment can be found in the specific implementation described in above method embodiment Process no longer describes herein.
Referring to Fig. 5, Fig. 5 is a kind of control charge mode device provided by the embodiments of the present application, it is applied to such as Figure 1A Electronic device, control charge mode device 500 include processing unit 501, communication unit 502 and storage unit 503, processing unit 501 include collecting unit and charging process unit, wherein:
The collecting unit, the first brain wave for acquiring user;
The charging process unit is the electronic device for starting fast charge mode according to first brain wave Charging;
The collecting unit is additionally operable to during it is the charge electronic devices to start the fast charge mode, Acquire the second brain wave of user;
The charging process unit is additionally operable to the energy of collected second brain wave be that the electronic device fills Electricity.
In the embodiment of the application, filled for the electronics starting fast charge mode according to first brain wave In terms of setting charging, above-mentioned charging process unit is specifically used for:
First brain wave is parsed, to obtain the characteristic value of first brain wave;
According to the mapping relations of characteristic value and keyword, determine in setting keyword set with the associated mesh of the characteristic value Mark keyword;
According to the mapping relations of keyword and control instruction, the corresponding target control instruction of the target keyword is determined;
In the case where target control instruction includes starting the fast charge mode, described in the controller startup Fast charge mode is the charge electronic devices.
In the embodiment of the application, the processing unit 601 further includes:
Prompt unit, for exporting prompt message, the prompt message is for prompting whether start the quick charge mould Formula, the prompt message is for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
In the embodiment of the application, the processing unit 601 further includes:
Determination unit, in the case where the current electricity of the electronic device is less than or equal to first threshold, determining Whether the intended application of the electronic device front stage operation is setting application, and the power consumption rate of the setting application is greater than or equal to Second threshold;In the case where the power consumption rate of the intended application is greater than or equal to the second threshold, the target is determined It is applied using for the setting.
In the embodiment of the application, the processing unit 601 further includes:
Start unit, in the case where the electronic device is in charged state, opening brain wave control model, institute Brain wave control model is stated for controlling brain wave charge mode.
Wherein, processing unit 501 can be processor or controller, (such as can be central processing unit (Central Processing Unit, CPU), general processor, digital signal processor (Digital Signal Processor, DSP), Special integrated manipulator (Application-Specific Integrated Circuit, ASIC), field programmable gate array It is (Field Programmable Gate Array, FPGA) or other programmable logic device, transistor logic, hard Part component or its arbitrary combination.Communication unit 503 can be transceiver, transceiver controller, radio frequency chip, communication interface etc., Storage unit 502 can be memory.
When processing unit 501 is processor, communication unit 503 is communication interface, when storage unit 502 is memory, this Apply for that the device for promoting dropping involved by embodiment can be electronic device shown in Fig. 4.
The embodiment of the present application also provides a kind of computer storage media, wherein computer storage media storage is for electricity The computer program that subdata exchanges, the computer program make computer execute any as described in above method embodiment Some or all of method step, above computer include electronic device.
The embodiment of the present application also provides a kind of computer program product, and above computer program product includes storing calculating The non-transient computer readable storage medium of machine program, above computer program are operable to that computer is made to execute such as above-mentioned side Some or all of either method described in method embodiment step.The computer program product can be a software installation Packet, above computer includes electronic device.
It should be noted that for each method embodiment above-mentioned, for simple description, therefore it is all expressed as a series of Combination of actions, but those skilled in the art should understand that, the application is not limited by the described action sequence because According to the application, certain steps can be performed in other orders or simultaneously.Secondly, those skilled in the art should also know It knows, embodiment described in this description belongs to preferred embodiment, involved action and module not necessarily the application It is necessary.
In the above-described embodiments, it all emphasizes particularly on different fields to the description of each embodiment, there is no the portion being described in detail in some embodiment Point, it may refer to the associated description of other embodiment.
In several embodiments provided herein, it should be understood that disclosed device, it can be by another way It realizes.For example, the apparatus embodiments described above are merely exemplary, for example, said units division, it is only a kind of Division of logic function, formula that in actual implementation, there may be another division manner, such as multiple units or component can combine or can To be integrated into another system, or some features can be ignored or not executed.Another point, shown or discussed is mutual Coupling, direct-coupling or communication connection can be by some interfaces, the INDIRECT COUPLING or communication connection of device or unit, Can be electrical or other forms.
The above-mentioned unit illustrated as separating component may or may not be physically separated, aobvious as unit The component shown may or may not be physical unit, you can be located at a place, or may be distributed over multiple In network element.Some or all of unit therein can be selected according to the actual needs to realize the mesh of this embodiment scheme 's.
In addition, each functional unit in each embodiment of the application can be integrated in a processing unit, it can also It is that each unit physically exists alone, it can also be during two or more units be integrated in one unit.Above-mentioned integrated list The form that hardware had both may be used in member is realized, can also be realized in the form of SFU software functional unit.
If above-mentioned integrated unit is realized in the form of SFU software functional unit and sells or use as independent product When, it can be stored in a computer-readable access to memory.Based on this understanding, the technical solution of the application substantially or Person says that all or part of the part that contributes to existing technology or the technical solution can body in the form of software products Reveal and, which is stored in a memory, including some instructions are used so that a computer equipment (can be personal computer, server or network equipment etc.) executes all or part of each embodiment above method of the application Step.And memory above-mentioned includes:USB flash disk, read-only memory (ROM, Read-Only Memory), random access memory The various media that can store program code such as (RAM, Random Access Memory), mobile hard disk, magnetic disc or CD.
One of ordinary skill in the art will appreciate that all or part of step in the various methods of above-described embodiment is can It is completed with instructing relevant hardware by program, which can be stored in a computer-readable memory, memory May include:Flash disk, read-only memory (English:Read-Only Memory, referred to as:ROM), random access device (English: Random Access Memory, referred to as:RAM), disk or CD etc..
The embodiment of the present application is described in detail above, specific case used herein to the principle of the application and Embodiment is expounded, the description of the example is only used to help understand the method for the present application and its core ideas; Meanwhile for those of ordinary skill in the art, according to the thought of the application, can in specific implementation and application range There is change place, to sum up above-mentioned, the contents of this specification should not be construed as limiting the present application.

Claims (13)

1. a kind of electronic device, which is characterized in that including brain wave sensor and controller, wherein:
The brain wave sensor, the first brain wave for acquiring user;
The controller is the charge electronic devices for starting fast charge mode according to first brain wave;
The brain wave sensor is additionally operable to during it is the charge electronic devices to start the fast charge mode, Acquire the second brain wave of user;
The controller is additionally operable to the energy of collected second brain wave be the charge electronic devices.
2. electronic device according to claim 1, which is characterized in that the electronic device further includes brain wave processing mould Block, in terms of starting fast charge mode according to first brain wave and being the charge electronic devices, the control implement body For:
First brain wave is parsed by the brain wave processing module, to obtain the characteristic value of first brain wave;Root According to the mapping relations of characteristic value and keyword, determine in setting keyword set with the associated target keyword of the characteristic value; According to the mapping relations of keyword and control instruction, the corresponding target control instruction of the target keyword is determined;In the mesh It includes in the case of starting the fast charge mode to mark control instruction, and it is the electronic device to start the fast charge mode Charging.
3. electronic device according to claim 2, which is characterized in that the electronic device further includes output precision,
The output precision, for exporting prompt message, the prompt message is for prompting whether start the quick charge mould Formula, the prompt message is for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
4. electronic device according to claim 3, which is characterized in that
The controller is additionally operable to, in the case where the current electricity of the electronic device is less than or equal to first threshold, determine Whether the intended application of the electronic device front stage operation is setting application, and the power consumption rate of the setting application is greater than or equal to Second threshold;In the case where the power consumption rate of the intended application is greater than or equal to the second threshold, the target is determined It is applied using for the setting.
5. electronic device according to claim 3 or 4, which is characterized in that the controller is additionally operable to fill in the electronics It sets in the case of being in charged state, opens brain wave control model, the brain wave control model is filled for controlling brain wave Power mode.
6. a kind of control charge mode method, which is characterized in that applied to the electronics dress for including brain wave sensor and controller It sets, the method includes:
The first brain wave of the brain wave sensor acquisition user;
It is the charge electronic devices that the controller starts fast charge mode according to first brain wave;
During it is the charge electronic devices to start the fast charge mode, the brain wave sensor acquires user The second brain wave;
The energy of collected second brain wave is the charge electronic devices by the controller.
7. according to the method described in claim 6, it is characterized in that, the electronic device further includes brain wave processing module, institute It is the charge electronic devices to state controller to start fast charge mode according to first brain wave, including:
The controller parses first brain wave by the brain wave processing module, to obtain first brain wave Characteristic value;
The controller is determined in setting keyword set and is closed with the characteristic value according to the mapping relations of characteristic value and keyword The target keyword of connection;
The controller determines the corresponding target control of the target keyword according to the mapping relations of keyword and control instruction Instruction;
In the case where target control instruction includes starting the fast charge mode, the controller starts described quick Charge mode is the charge electronic devices.
8. the method according to the description of claim 7 is characterized in that the electronic device further includes output precision, the brain is electric Before wave sensor acquires the first brain wave of user, the method further includes:
The output precision exports prompt message, and the prompt message is for prompting whether start the fast charge mode, institute Prompt message is stated for guiding whether user's meditation starts the corresponding keyword of the fast charge mode.
9. according to the method described in claim 8, it is characterized in that, the output precision output prompt message before, the side Method further includes:
In the case where the current electricity of the electronic device is less than or equal to first threshold, the controller determines the electronics Whether the intended application of device front stage operation is setting application, and the power consumption rate of the setting application is greater than or equal to the second threshold Value;
In the case where the power consumption rate of the intended application is greater than or equal to the second threshold, described in the controller determination Intended application is applied for the setting.
10. method according to claim 8 or claim 9, which is characterized in that the electronic device further includes brain wave control model Start button, before the output precision exports prompt message, the method further includes:
In the case where the electronic device is in charged state, the controller opens brain wave control model, the brain electricity Wave control model is for controlling brain wave charge mode.
11. a kind of control charge mode device, which is characterized in that be applied to electronic device, the control charge mode device packet Collecting unit and charging process unit are included, wherein:
The collecting unit, the first brain wave for acquiring user;
The charging process unit is that the electronic device fills for starting fast charge mode according to first brain wave Electricity;
The collecting unit is additionally operable to during it is the charge electronic devices to start the fast charge mode, acquisition The second brain wave of user;
The charging process unit is additionally operable to the energy of collected second brain wave be the charge electronic devices.
12. a kind of electronic device, which is characterized in that including processor, memory, communication interface, and one or more programs, One or more of programs are stored in the memory, and are configured to be executed by the processor, described program packet It includes for executing the instruction such as the step in claim 6-10 any one of them methods.
13. a kind of computer readable storage medium, which is characterized in that computer program of the storage for electronic data interchange, In, the computer program makes computer execute such as claim 6-10 any one of them methods.
CN201810142963.3A 2018-02-11 2018-02-11 Control charge mode method and relevant apparatus Pending CN108365647A (en)

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Application publication date: 20180803