CN104090646A - Power configuration method and system for electronic device - Google Patents

Power configuration method and system for electronic device Download PDF

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Publication number
CN104090646A
CN104090646A CN201410336308.3A CN201410336308A CN104090646A CN 104090646 A CN104090646 A CN 104090646A CN 201410336308 A CN201410336308 A CN 201410336308A CN 104090646 A CN104090646 A CN 104090646A
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China
Prior art keywords
configuration
electronic device
power
electronic installation
configuration status
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CN201410336308.3A
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Chinese (zh)
Inventor
刘晓安
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Inventec Pudong Technology Corp
Inventec Corp
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Inventec Pudong Technology Corp
Inventec Corp
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Priority to CN201410336308.3A priority Critical patent/CN104090646A/en
Publication of CN104090646A publication Critical patent/CN104090646A/en
Pending legal-status Critical Current

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Abstract

The invention provides a power configuration method and system for an electronic device. The method includes the following steps of dividing a display screen of the electronic device into a plurality of different operating areas, recording all touch operations on the display screen within a first preset time period, analyzing distribution of all the touch operations on the multiple different operating areas so as to obtain a current operating mode, and adjusting the dynamic power configuration state of the electronic device according to the current operating mode. Use habits of users can be obtained more accurately through data collection and data analysis, then the power configuration state of the electronic device is adjusted dynamically according to the actual use situation of the electronic device, and therefore the service life of the electronic device is effectively prolonged and use efficiency of the electronic device is effectively improved.

Description

A kind of electronic device power collocation method and system
Technical field
The present invention relates to electronic device power administrative skill field, relate in particular to a kind of electronic device power collocation method and system.
Background technology
Along with advancing by leaps and bounds of technology, intelligent electronic device (for example, mobile phone, PAD etc.) be tending towards to miniaturization, multi-functional future development, and due to the improving constantly of energy-conservation demand, to relying on the mobile electronic device of battery supply, carry out power management and become most important.Power management refers to the different assemblies of power supply effectively being distributed to system, the energy consumption while leaving unused by reducing assembly, effectively extending battery life.
In actual use, the life-span of the intelligent electronic devices such as mobile phone, PAD and power consumption situation are relevant with use habit.And these intelligent electronic devices are open platforms, after its manufacturer's there is no telling user, which program extended meeting is installed, is often used which program.Therefore, manufacturer only can be by inferring user's use habit in advance, and accordingly these intelligent electronic devices are carried out to power configuration in advance, and the power configuration that cannot mate most according to the actual service condition of intelligent electronic device, effectively to extend serviceable life, the efficiency of intelligent electronic device.
Summary of the invention
For the power configuration that cannot mate most according to the actual service condition of electronic installation in prior art, effectively extending the serviceable life of intelligent electronic device, the technical matters of efficiency, the object of the invention is to provide a kind of electronic device power collocation method and system, the Mobile state adjustment of going forward side by side of the power configuration that can mate most according to the actual service condition of intelligent electronic device.
For achieving the above object, the invention provides a kind of electronic device power collocation method, said method comprising the steps of: the display screen of dividing electronic installation is a plurality of different operatings regions; Record all touch control operations on described display screen in one first Preset Time section; Analyze the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern; According to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.
In an embodiment of the present invention, described electronic device power collocation method further comprises the step that the power configuration file matching with different operation modes is set.In the present embodiment, further comprise: obtain the power configuration file matching with described current operation pattern, then according to the power configuration file obtaining, adjust the dynamic power supplies configuration status of described electronic installation.
In an embodiment of the present invention, described electronic device power collocation method further comprises the dynamic power supplies configuration status of all described electronic installations in record one second Preset Time section, and according to recorded dynamic power supplies configuration status, determine the step of the static power source configuration status of described electronic installation, wherein said the second Preset Time section is greater than described the first Preset Time section.Power configuration state while in the present embodiment, determining that according to recorded dynamic power supplies configuration status the step of the static power source configuration status of described electronic installation further comprises that adjusting described electronic installation starts is the step of described static power source configuration status.
For achieving the above object, the present invention also provides a kind of electronic device power configuration-system, and described system comprises: stroke sub-module is a plurality of different operatings regions for dividing the display screen of electronic installation; One first logging modle, for recording all touch control operations on described display screen in one first Preset Time section; One analysis module, for analyzing the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern; One first configuration module, for according to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.
In an embodiment of the present invention, described electronic device power configuration-system further comprises that one arranges module, for the power configuration file matching with different operation modes is set.In the present embodiment, described the first configuration module further comprises: an acquiring unit, for obtaining the power configuration file matching with described current operation pattern; One adjustment unit, for adjusting the dynamic power supplies configuration status of described electronic installation according to the power configuration file obtaining.
In an embodiment of the present invention, described electronic device power configuration-system further comprises: one second logging modle, for recording the dynamic power supplies configuration status of all described electronic installations in one second Preset Time section, wherein said the second Preset Time section is greater than described the first Preset Time section; One second configuration module, for determining the static power source configuration status of described electronic installation according to recorded dynamic power supplies configuration status.Power configuration state when in the present embodiment, described the second configuration module is further used for adjusting described electronic installation startup is described static power source configuration status.
The invention has the advantages that: by collection and the analysis of data, can obtain more accurately user's use habit, thereby according to the actual service condition of electronic installation, dynamically adjust the power configuration state of electronic installation, thereby effectively extend serviceable life and the service efficiency of electronic installation.
Accompanying drawing explanation
Fig. 1, the schematic flow sheet of electronic device power collocation method of the present invention;
Fig. 2, display screen operating area is divided schematic diagram described in one embodiment of the invention;
Fig. 3, the distribution schematic diagram of touch control operation on different operating region described in one embodiment of the invention;
Fig. 4, the configuration diagram of electronic device power configuration-system one embodiment of the present invention.
Embodiment
Below in conjunction with accompanying drawing, a kind of electronic device power collocation method provided by the invention and system are elaborated.
With reference to figure 1, the schematic flow sheet of electronic device power collocation method of the present invention.Said method comprising the steps of: S12: the display screen of dividing electronic installation is a plurality of different operatings regions; S14: all touch control operations in record one first Preset Time section on described display screen; S16: analyze the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern; S18: according to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.Below in conjunction with accompanying drawing, above-mentioned steps is elaborated.
S12: the display screen of dividing electronic installation is a plurality of different operatings regions.
Can, according to the operational attribute of the display screen of electronic installation (such as smart mobile phone, PAD etc.) itself, the operable area on display screen be subdivided into a plurality of dissimilar operating areas.Such as, top and the bottom section of smart mobile phone are generally control area, and between two control areas, part is display screen main operation region; When operation loading routine, input area is generally shown at the part near control area, bottom; Therefore can carry out operating area division to display screen.With reference to figure 2, display screen operating area is divided schematic diagram described in one embodiment of the invention.The present embodiment is divided into the first operating area 21, the second operating area 22, body region 23 and input area 24 by display screen, and wherein input area 24 and the second operating area 22 and body region 23 partly overlap.By dividing display screen operating area, distribution situation that can refinement user touch control operation, so that the service condition of analytical electron device is obtained current operation pattern.
S14: all touch control operations in record one first Preset Time section on described display screen.
Described the first Preset Time section can be 1 minute, 5 minutes, 10 minutes etc.Described touch control operation includes but not limited to user's clicking on display screen, double-clicks, long by touch control operations such as, slips.
S16: analyze the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern.
With reference to figure 3, the distribution schematic diagram of touch control operation on different operating region described in one embodiment of the invention.In the present embodiment, in 5 minutes, all touch control operations of record comprise single-click operation and slide, analyze the touch point coordinate of these single-click operation and the initial touch point of these slides and the coordinate that finishes touch point, can draw in the concentrated input area that is distributed in display screen of these single-click operation, can judge the current instant messenger that using of user, thereby obtain current operation pattern, be chat pattern.
In another embodiment, in 10 minutes, all touch control operations of record are single-click operation (correspondence is clicked the reading model skipping), analyze the touch point coordinate of these single-click operation, can draw in the concentrated same operating area that is distributed in display screen of these single-click operation; Or, in 10 minutes, all touch control operations of record are slide (reading model of the corresponding line feed of sliding), analyze the initial touch point and the coordinate that finishes touch point of these slides, can draw in the concentrated same operating area that is distributed in display screen of these slides; Can judge that user is current and read, thereby obtain current operation pattern, be reading model.
In an embodiment again, all touch control operations of record comprise single-click operation and slide in 5 minutes; Analyze the touch point coordinate of these single-click operation and the initial touch point of these slides and the coordinate that finishes touch point, can draw in each operating area that is distributed in display screen of these touch control operations dispersions, can judge that user is current and play games, thereby obtain current operation pattern, be game mode.
S18: according to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.
After obtaining current operation pattern, can adopt software program mode to adjust the dynamic power supplies configuration status of described electronic installation, make described electronic installation to be beneficial to most the configuration status operation of current operation pattern.Described dynamic power supplies configuration status, for being applicable to the short-term configuration status of current operation pattern, comprising and adopts software program mode to adjust the current operation pattern that power distribution, CPU running status, buffer memory rate etc. are obtained to adapt to; Described dynamic power supplies configuration status can dynamically be adjusted according to the change of user's current operation pattern.For example current operation pattern is chat pattern, adjusts the dynamic power supplies configuration status of described electronic installation for being beneficial to most the configuration status of chat pattern; And when the current operation pattern of obtaining is game mode, adjust the dynamic power supplies configuration status of described electronic installation for being beneficial to most the configuration status of game mode.Can by reduce described electronic installation screen intensity, turn off running background application, close some nextport hardware component NextPorts and operating software, reduce Data Update etc. and realize the dynamic power supplies configuration status of adjusting described electronic installations.
In the present embodiment, before step S18, further comprise step S17: the power configuration file matching with different operation modes is set.In order to simplify the adjusting operation program of power configuration state, can preset the corresponding power configuration file of different operation modes.Power configuration file configuration has the optimum allocation plan of respective operations pattern, comprises power distribution, CPU running status, buffer memory rate etc.Thereby after obtaining current operation pattern, can directly match corresponding power configuration file; According to the power configuration file according to matching, directly adjust the dynamic power supplies configuration status of described electronic installation again.
In the present embodiment, after step S18, further comprise step S19: record the dynamic power supplies configuration status of all described electronic installations in one second Preset Time section, and according to recorded dynamic power supplies configuration status, determine the static power source configuration status of described electronic installation.Described static power source configuration status, for being accustomed to the default configuration state of definite electronic installation according to user's long-time operation, is also electronic installation starting up, or from standby mode, is converted to enable mode and adopts described static power source configuration status.Wherein said the second Preset Time section is greater than described the first Preset Time section, and described the second Preset Time section can be one day, two days, one week etc.The power configuration state that the static power source configuration status of determining described electronic installation may further include when described electronic installation is started is adjusted into described static power source configuration status; Thereby make the power configuration state of described electronic installation offer user to be beneficial to most the operator scheme of user habit mode of operation.Described startup can be described electronic installation again starting up, or from standby mode, is converted to the startup of enable mode for described electronic installation.
When described electronic installation is adjusted into after described static power source configuration status, the current operation pattern of obtaining by the step S12-S16 operator scheme corresponding with described static power source configuration status is not inconsistent, be that operator scheme is freeed while changing, further adopt step S18 to adjust in time the dynamic power supplies configuration status of described electronic installation.
Also,, according to user's long-time operation custom, determine the default configuration state (being static power source configuration status) of electronic installation.For example, recording all dynamic power supplies configuration statuses equal (or surpassing a predetermined threshold value scope) in a day is the configuration status that is beneficial to chat pattern most; Determine that the static power source configuration status of described electronic installation is for being beneficial to most the configuration status of chat pattern, power configuration state when described electronic installation is started is adjusted into the static power source configuration status that is beneficial to chat pattern most.And when user is under the default configuration of chat pattern, when current operation is game mode, the method for the invention can be adjusted the dynamic power supplies configuration status of described electronic installation automatically for being beneficial to most the configuration status of game mode.Also being about to current configuration status and being adjusted into currently, is also that dynamic power supplies configuration status is beneficial to game mode most; And restart at electronic installation, or while being again converted to enable mode from standby mode, configuration status is still static power source configuration status, is also beneficial to most chat pattern.
The present invention is by collection and the analysis of data, can obtain more accurately user's use habit, thereby according to the actual service condition of electronic installation, dynamically adjust the power configuration state of electronic installation, thereby effectively extend serviceable life and the service efficiency of electronic installation.
With reference to figure 4, the configuration diagram of electronic device power configuration-system one embodiment of the present invention; Described electronic device power configuration-system comprises stroke sub-module 42, one first logging modle 44, an analysis module 46 and one first configuration module 48 in the present embodiment.
Described division module 42 is a plurality of different operatings regions for dividing the display screen of electronic installation.Can, according to the operational attribute of the display screen of electronic installation (such as smart mobile phone, PAD etc.) itself, the operable area on display screen be subdivided into a plurality of dissimilar operating areas.Such as, top and the bottom section of smart mobile phone are generally control area, and between two control areas, part is display screen main operation region; When operation loading routine, input area is generally shown at the part near control area, bottom; Therefore can carry out operating area division to display screen.By dividing display screen operating area, distribution situation that can refinement user touch control operation, so that the service condition of analytical electron device is obtained current operation pattern.Described display screen operating area is divided and can and be described with reference to figure 2, repeats no more herein.
Described the first logging modle 44, for recording all touch control operations on described display screen in one first Preset Time section.Described the first Preset Time section can be 1 minute, 5 minutes, 10 minutes etc.Described touch control operation includes but not limited to user's clicking on display screen, double-clicks, long by touch control operations such as, slips.
Described analysis module 46, for analyzing the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern.
In one embodiment, in 5 minutes, all touch control operations of record comprise single-click operation and slide, analyze the touch point coordinate of these single-click operation and the initial touch point of these slides and the coordinate that finishes touch point, can draw in the concentrated input area that is distributed in display screen of these single-click operation, can judge the current instant messenger that using of user, thereby obtain current operation pattern, be chat pattern.
In another embodiment, in 10 minutes, all touch control operations of record are single-click operation (correspondence is clicked the reading model skipping), analyze the touch point coordinate of these single-click operation, can draw in the concentrated same operating area that is distributed in display screen of these single-click operation; Or, in 10 minutes, all touch control operations of record are slide (reading model of the corresponding line feed of sliding), analyze the initial touch point and the coordinate that finishes touch point of these slides, can draw in the concentrated same operating area that is distributed in display screen of these slides; Can judge that user is current and read, thereby obtain current operation pattern, be reading model.
In an embodiment again, all touch control operations of record comprise single-click operation and slide in 5 minutes; Analyze the touch point coordinate of these single-click operation and the initial touch point of these slides and the coordinate that finishes touch point, can draw in each operating area that is distributed in display screen of these touch control operations dispersions, can judge that user is current and play games, thereby obtain current operation pattern, be game mode.
Described the first configuration module 48, for according to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.After obtaining current operation pattern, can adopt software program mode to adjust the dynamic power supplies configuration status of described electronic installation (power distribution, CPU running status, buffer memory rate etc.), make described electronic installation to be beneficial to most the configuration status operation of current operation pattern.For example current operation pattern is chat pattern, adjusts the dynamic power supplies configuration status of described electronic installation for being beneficial to most the configuration status of chat pattern.Can by reduce described electronic installation screen intensity, turn off running background application, close some nextport hardware component NextPorts and operating software, reduce Data Update etc. and realize the dynamic power supplies configuration status of adjusting described electronic installations.
In the present embodiment, described electronic device power configuration-system further comprises that one arranges module 47, and the described module 47 that arranges is for arranging the power configuration file matching with operator scheme.In order to simplify the adjusting operation program of power configuration state, can preset the corresponding power configuration file of different operation modes.Power configuration file configuration has the optimum allocation plan of respective operations pattern, comprises power distribution, CPU running status, buffer memory rate etc.Thereby after obtaining current operation pattern, can directly match corresponding power configuration file; According to the power configuration file according to matching, directly adjust the dynamic power supplies configuration status of described electronic installation again.As preferred embodiment, in the present embodiment, described the first configuration module 48 further comprises: an acquiring unit 482 and an adjustment unit 484.Described acquiring unit 482, for obtaining the power configuration file matching with described current operation pattern; Described adjustment unit 484, for adjusting the dynamic power supplies configuration status of described electronic installation according to the power configuration file obtaining.
In the present embodiment, described electronic device power configuration-system further comprises one second logging modle 492 and one second configuration module 494.Described the second logging modle 492, for recording the dynamic power supplies configuration status of all described electronic installations in one second Preset Time section, wherein said the second Preset Time section is greater than described the first Preset Time section; Described the second configuration module, for determining the static power source configuration status of described electronic installation according to recorded dynamic power supplies configuration status.Power configuration state when described the second configuration module 494 is further used for adjusting described electronic installation startup is described static power source configuration status.Described the second Preset Time section can be one day, two days, one week etc.The power configuration state that the static power source configuration status of determining described electronic installation may further include when described electronic installation is started is adjusted into described static power source configuration status; Thereby make the power configuration state of described electronic installation to utilize most the operator scheme of user habit mode of operation to offer user.Described startup can be described electronic installation again starting up, or from standby mode, is converted to the startup of enable mode for described electronic installation.Also,, according to user's long-time use habit, determine the default configuration type of electronic installation.
The above is only the preferred embodiment of the present invention; it should be pointed out that for those skilled in the art, under the premise without departing from the principles of the invention; can also make some improvements and modifications, these improvements and modifications also should be considered as protection scope of the present invention.

Claims (10)

1. an electronic device power collocation method, is characterized in that, said method comprising the steps of:
The display screen of dividing electronic installation is a plurality of different operatings regions;
Record all touch control operations on described display screen in one first Preset Time section;
Analyze the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern;
According to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.
2. electronic device power collocation method according to claim 1, is characterized in that, further comprises the step that the power configuration file matching with different operation modes is set.
3. electronic device power collocation method according to claim 2, it is characterized in that, further comprise and obtain the power configuration file matching with described current operation pattern, then according to the power configuration file obtaining, adjust the dynamic power supplies configuration status of described electronic installation.
4. electronic device power collocation method according to claim 1, it is characterized in that, further comprise record one second Preset Time section in all described electronic installations dynamic power supplies configuration status, and according to recorded dynamic power supplies configuration status, determine the step of the static power source configuration status of described electronic installation, wherein said the second Preset Time section is greater than described the first Preset Time section.
5. electronic device power collocation method according to claim 4, it is characterized in that, the power configuration state while determining that according to recorded dynamic power supplies configuration status the step of the static power source configuration status of described electronic installation further comprises that adjusting described electronic installation starts is the step of described static power source configuration status.
6. an electronic device power configuration-system, is characterized in that, described system comprises:
Stroke sub-module is a plurality of different operatings regions for dividing the display screen of electronic installation;
One first logging modle, for recording all touch control operations on described display screen in one first Preset Time section;
One analysis module, for analyzing the distribution of all described touch control operations on described a plurality of different operatings region, to obtain a current operation pattern;
One first configuration module, for according to the dynamic power supplies configuration status of electronic installation described in described current operation mode adjustment.
7. electronic device power configuration-system according to claim 6, is characterized in that, further comprises that one arranges module, for the power configuration file matching with different operation modes is set.
8. electronic device power configuration-system according to claim 7, is characterized in that, described the first configuration module further comprises:
One acquiring unit, for obtaining the power configuration file matching with described current operation pattern;
One adjustment unit, for adjusting the dynamic power supplies configuration status of described electronic installation according to the power configuration file obtaining.
9. electronic device power configuration-system according to claim 6, is characterized in that, further comprises:
One second logging modle, for recording the dynamic power supplies configuration status of all described electronic installations in one second Preset Time section,
Wherein said the second Preset Time section is greater than described the first Preset Time section;
One second configuration module, for determining the static power source configuration status of described electronic installation according to recorded dynamic power supplies configuration status.
10. electronic device power configuration-system according to claim 9, is characterized in that, power configuration state when described the second configuration module is further used for adjusting described electronic installation startup is described static power source configuration status.
CN201410336308.3A 2014-07-15 2014-07-15 Power configuration method and system for electronic device Pending CN104090646A (en)

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Application publication date: 20141008