WO2015143966A1 - 一种终端显示模式确定方法及装置 - Google Patents

一种终端显示模式确定方法及装置 Download PDF

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Publication number
WO2015143966A1
WO2015143966A1 PCT/CN2015/073077 CN2015073077W WO2015143966A1 WO 2015143966 A1 WO2015143966 A1 WO 2015143966A1 CN 2015073077 W CN2015073077 W CN 2015073077W WO 2015143966 A1 WO2015143966 A1 WO 2015143966A1
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Prior art keywords
display mode
terminal
different
target
application
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PCT/CN2015/073077
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English (en)
French (fr)
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赵军宏
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努比亚技术有限公司
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Publication of WO2015143966A1 publication Critical patent/WO2015143966A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G5/00Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/02Improving the quality of display appearance
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2330/00Aspects of power supply; Aspects of display protection and defect management
    • G09G2330/02Details of power systems and of start or stop of display operation
    • G09G2330/021Power management, e.g. power saving

Definitions

  • the invention belongs to the field of electronics, and in particular relates to a method and a device for determining a terminal display mode.
  • the liquid crystal display (abbreviated LCD) of the mobile terminal has two display modes: VIDEO mode and COMMAND mode; wherein the VIDEO mode is directly and high-frequency refreshed by the CPU module to display data to the display module panel. It shows that the real-time effect is good, but because of its frequent refresh and large amount of data transmission, it consumes a lot of power and is suitable for high-dynamic scenes such as games.
  • VIDEO mode the CPU module first outputs the display data to the cache in the display module.
  • the display module refreshes the data to be updated to the panel.
  • the refresh Since the refresh is relatively slow, the amount of transmitted data is relatively small, so the power consumption is small, and it is suitable for most common (non-high dynamic) use scenarios; the terminal is fixed in VIDEO mode.
  • the power consumption will be too high in the use case; in other words, if the COMMAND mode is fixed, the real-time effect of the high dynamic scene display will be reduced.
  • the central processing unit of the display system should switch to the low power mode (COMMAND mode), and the link between the processor and the display will Activated when needed; due to the need for the host to periodically refresh, some of the central processing unit and memory interface also need to remain active, which will make the system not achieve the best power budget, the power consumption of the whole machine will increase, and finally the mobile The endurance of the terminal, especially the smart terminal, is degraded.
  • the present invention provides a method for determining a display mode of a terminal, so as to solve the problem that a part of the central processing unit and the memory interface also need to remain activated to increase the power consumption of the whole machine due to the need for periodic refresh of the host.
  • the present invention is implemented in this manner, a method for determining a terminal display mode, comprising the steps of: presetting a correspondence between different targets and different terminal display modes, and according to the screen refresh rate or the pixel change rate of the different targets Corresponding to the display mode of the terminal; acquiring the trigger information; matching the trigger information with the corresponding target; determining the display mode of the terminal corresponding to the trigger information according to the corresponding relationship between the preset target and the display mode of the different terminal.
  • the method further includes the step of: correcting the display mode of the terminal according to the pixel conversion rate of the application.
  • the method further includes the step of: correcting the display mode of the terminal according to the obtained action rate of the human-machine interaction information in the running of the application.
  • the method further includes the step of: correcting the correspondence between the preset different application programs and different terminal display modes according to the modified display mode of the terminal.
  • the opening of the application is used as a switching signal between different terminal display modes.
  • the closing of the application is used as a switching signal between different terminal display modes.
  • the present invention also provides a display mode determining apparatus, comprising: a storage module, configured to preset a correspondence between different targets and different terminal display modes, according to the screen refresh rate or the pixel change rate of the different target Corresponding relationship with the terminal display mode; the information acquisition module is configured to acquire trigger information; the information matching module is configured to match the trigger information with its corresponding target; the display mode determining module is set to different targets and different terminals according to the preset The correspondence between the display modes determines the display mode of the terminal corresponding to the trigger information.
  • a correction module is further provided, which is configured to correct the display mode of the terminal according to the pixel conversion rate of the application.
  • the method further includes a correction module configured to correct the display mode of the terminal according to the obtained action rate of the human-machine interaction information in the running of the application.
  • the storage module is further configured to: display, according to the modified display mode of the terminal And correcting the correspondence between the preset different applications and different terminal display modes.
  • the information acquiring module is configured to: open the application as a switching signal between the different terminal display modes or turn off the application as the different terminal display mode Switch the signal.
  • the target includes applications, video files, and other information that requires display of the screen.
  • the display mode includes a VIDEO display mode and a COMMAND display mode
  • the storage module is configured to: associate the VIDEO display mode with a target with a faster screen refresh or a faster pixel change of the screen, and display the COMMAND display mode. Corresponds to a target with a slower picture refresh or a slower picture pixel change.
  • the information obtaining module is configured to: acquire trigger information first acquired from the terminal in the operating system or trigger information added in one or more program tasks.
  • the method and device for determining the terminal display mode provided by the present invention, since the correspondence between different targets and the display mode of the terminal is set in advance, different targets can directly enter their corresponding display modes, which reduces the periodic refresh of the host. Therefore, some of the central processing unit and the memory interface also need to maintain the power consumption caused by the activation state, thereby achieving the purpose of increasing the endurance of the terminal.
  • FIG. 1 is a schematic flow chart of a first embodiment of a method for determining a terminal display mode provided by the present invention.
  • FIG. 2 is a schematic flow chart of a second implementation manner of a terminal display mode determining method provided by the present invention.
  • FIG. 3 is a schematic flowchart diagram of a third implementation manner of a terminal display mode determining method provided by the present invention.
  • FIG. 4 is a schematic flow chart of a fourth implementation manner of a terminal display mode determining method provided by the present invention.
  • FIG. 5 is a schematic flowchart of a fifth implementation manner of a terminal display mode determining method provided by the present invention. Figure.
  • Figure 6 is a schematic diagram of a first display mode determining apparatus provided by the present invention.
  • FIG. 7 is a schematic diagram of a second display mode determining apparatus provided by the present invention.
  • the present invention provides a method for determining a terminal display mode, including the steps of: preset a correspondence between different targets and different terminal display modes; acquiring trigger information; matching the trigger information with a corresponding target; The mapping relationship between the terminal corresponding to the trigger information is determined according to the correspondence between the display modes of the different terminals.
  • FIG. 1 it is a schematic flowchart of a first embodiment of a terminal display mode determining method, and the process starts in step 101 .
  • step 102 preset the correspondence between different targets and different terminal display modes; in this step, the target may be an application, or may be other information such as a video file that needs to be displayed on the screen; and the VIDEO display mode and A target with a fast refresh screen or a fast pixel change (such as an action game), corresponding to a COMMAND display mode (such as a text viewer), and a screen refresh or a screen pixel change speed.
  • Targets in the intermediate state (such as video, etc.) can be arbitrarily attributed to VIDEO display mode or COMMAND display mode.
  • the trigger information is obtained. In this step, it may be first in the operating system.
  • the trigger information obtained from the terminal may also be trigger information added in the running of one or more program tasks, such as starting a word processing program, and triggering other applications after minimizing the word processing program window.
  • the word processor is in a wait state; the new trigger message causes the system to run a new program.
  • step 104 the trigger information is matched with its corresponding target; in this step, the trigger information corresponds to the target it triggers, triggering and starting the target.
  • step 105 the display mode of the terminal corresponding to the trigger information is determined according to the corresponding relationship between the preset different target and the different terminal display modes; in this step, according to the last trigger information in the trigger queue. Match the target to determine whether to use VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves
  • the overhead of the periodic inspection judgment in the prior art achieves the purpose of saving electric energy on the basis of basically satisfying the user's resolution requirements.
  • step 106 ends at step 106.
  • the above object is an application; in the business of the mobile terminal, the picture quality of the game video is a satisfaction indicator of the player, and the game video is preset to the VIDEO display mode, and the user can be left at the first time.
  • the application in addition to the game or movie video is pre-defined as the COMMAND display mode, which makes the product achieve an optimized level of display quality and power saving performance; this is undoubtedly beneficial to the promotion of the product. .
  • FIG. 2 it is a schematic flowchart of a second implementation manner of the terminal display mode determining method. Based on the method shown in FIG. 1 , the pixel conversion rate according to the application program is added to correct the display mode of the terminal. Step; the process begins in step 201.
  • the correspondence between different targets and different terminal display modes is preset; in this step, the target may be an application, or may be other information such as a video file that needs to be displayed on the screen; and the VIDEO display mode is A target with a fast refresh screen or a fast pixel change (such as an action game, etc.) corresponds to a COMMAND display mode that corresponds to a slower refresh target (such as a text viewer), and refreshes or draws a picture.
  • the target pixel change speed is intermediate to the target (such as video), and can be arbitrarily attributed to VIDEO display mode or COMMAND display mode.
  • the trigger information is obtained.
  • the trigger information that is first acquired from the terminal in the operating system may be the trigger information added in the running of one or more tasks, such as starting at Run the word processing program to trigger other applications after minimizing the word processor window.
  • the word processing program is in a wait state; the new trigger information causes the system to run a new program.
  • step 204 the trigger information is matched with its corresponding target; in this step, the trigger information corresponds to the target it triggers, triggering and starting the target.
  • step 205 the display mode of the terminal corresponding to the trigger information is determined according to the corresponding relationship between the preset different target and the display mode of the different terminal; in this step, according to the last trigger information in the trigger queue. Match the target to determine whether to use VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves
  • the overhead of the periodic inspection judgment in the prior art achieves the purpose of saving electric energy on the basis of basically satisfying the user's resolution requirements.
  • step 206 the display mode of the terminal is corrected according to the pixel conversion rate of the application; this is because the correspondence between the preset different target applications and different terminal display modes may be unreasonable, for example, pixels of some games.
  • the rate of change is not fast, such as the game of mines; some videos, such as lecture videos; the resolution of the screen is not high.
  • the display mode is changed to the COMMAND display mode. Power saving for further contributions; obviously, for pictures with faster pixel change rates, it can also be modified to VIDEO display mode.
  • the process ends at step 207.
  • the method further includes the step of: obtaining the person in the running of the application according to the obtained method.
  • the action rate of the machine interaction information is corrected, and the display mode of the terminal is corrected; the process begins in step 301.
  • step 302 preset a correspondence between different targets and different terminal display modes;
  • the target may be an application, or other information that needs to be displayed on the screen, such as a video file;
  • the VIDEO display mode corresponds to a target that refreshes faster or has a faster pixel change (such as an action game).
  • the COMMAND display mode corresponds to a target with a slower picture refresh (such as a text viewer, etc.), and for a picture refresh or a target whose picture pixel change speed is intermediate (such as movie video, etc.), it is firstly attributed to VIDEO display mode or COMMAND display.
  • the mode is fine.
  • the trigger information is obtained.
  • the trigger information that is first acquired from the terminal in the operating system may be the trigger information added in the running of one or more tasks, such as starting at Run the word processing program to trigger other applications after minimizing the word processor window.
  • the word processing program is in a wait state; the new trigger information causes the system to run a new program.
  • step 304 the trigger information is matched with its corresponding target; in this step, the trigger information corresponds to the target it triggers, triggering and starting the target.
  • step 305 the display mode of the terminal corresponding to the trigger information is determined according to the corresponding relationship between the preset different target and the display mode of the different terminal; in this step, according to the last trigger information in the trigger queue. Match the target to determine whether to use VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves
  • the overhead of the periodic inspection judgment in the prior art achieves the purpose of saving electric energy on the basis of basically satisfying the user's resolution requirements.
  • step 306 the display mode of the terminal is corrected according to the obtained action rate of the human-machine interaction information in the running of the application; this is because the correspondence between the preset different target applications and different terminal display modes may be Unreasonable, for example: some games have faster pixel change rates and higher resolution requirements for the screen, but are corresponding to the COMMAND display mode.
  • the detection rate of the human-computer interaction information in the running of the application is detected. For example, the user's action on the touch screen is more intense; or because the user cannot see clearly, the user has the action of quickly wiping the screen by hand; at this time, the display mode is changed to the VIDEO display mode, which further contributes to the improvement of the image quality.
  • FIG. 4 it is a schematic flowchart of a fourth implementation manner of the terminal display mode determining method. Based on the method shown in FIG. 2, the method further includes the step of: correcting the preset according to the modified display mode of the terminal. Correspondence between different applications and different terminal display modes; the process begins in step 401.
  • the correspondence between different targets and different terminal display modes is preset; in this step, the target may be an application, or may be other information such as a video file that needs to be displayed on the screen; and the VIDEO display mode is A target with a fast refresh screen or a fast pixel change (such as an action game), corresponding to a COMMAND display mode (such as a text viewer), and a screen refresh or a screen pixel change speed.
  • Targets in the intermediate state (such as movie videos, etc.) can be arbitrarily attributed to VIDEO display mode or COMMAND display mode.
  • the trigger information is obtained.
  • the trigger information that is first acquired from the terminal in the operating system may be the trigger information added in the running of one or more tasks, such as starting at Run the word processing program to trigger other applications after minimizing the word processor window.
  • the word processing program is in a wait state; the new trigger information causes the system to run a new program.
  • step 404 the trigger information is matched with its corresponding target; in this step, the trigger information corresponds to the target it triggers, triggering and starting the target.
  • step 405 the display mode of the terminal corresponding to the trigger information is determined according to the corresponding relationship between the preset different target and the display mode of the different terminal; in this step, according to the last trigger information in the trigger queue. Match the target to determine whether to use VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves
  • the overhead of the periodic inspection judgment in the prior art achieves the purpose of saving electric energy on the basis of basically satisfying the user's resolution requirements.
  • step 406 the display mode of the terminal is corrected according to the pixel conversion rate of the application; this is because the correspondence between the preset different target applications and different terminal display modes may be unreasonable, for example, pixels of some games.
  • the rate of change is not fast (such as mines, etc.), the resolution of the picture The rate requirement is not high.
  • the display mode is changed to the COMMAND display mode, which further contributes to power saving.
  • step 407 according to the modified display mode of the terminal, correct the corresponding relationship between the preset different application programs and different terminal display modes; thus, by displaying the preset different application and different terminal display modes; The corresponding relationship is modified so that the next time the application is triggered, the optimal quality of the image quality and power saving functions can be achieved.
  • FIG. 5 it is a schematic flowchart of a fifth implementation manner of the terminal display mode determining method. Based on the method shown in FIG. 3, the method further includes the step of: correcting the preset according to the modified display mode of the terminal. Correspondence between different applications and different terminal display modes; the process begins in step 501.
  • the correspondence between different targets and different terminal display modes is preset; in this step, the target may be an application, or may be other information such as a video file that needs to be displayed on the screen; and the VIDEO display mode is A target with a fast refresh screen or a fast pixel change (such as an action game), corresponding to a COMMAND display mode (such as a text viewer), and a screen refresh or a screen pixel change speed.
  • Targets in the intermediate state (such as movie videos, etc.) can be arbitrarily attributed to VIDEO display mode or COMMAND display mode.
  • the trigger information is obtained.
  • the trigger information that is first acquired from the terminal in the operating system may be the trigger information added in the running of one or more tasks, such as starting at Run the word processing program to trigger other applications after minimizing the word processor window.
  • the word processing program is in a wait state; the new trigger information causes the system to run a new program.
  • step 504 the trigger information is matched with its corresponding target; in this step, the trigger information corresponds to the target it triggers, triggering and starting the target.
  • step 505 the display mode of the terminal corresponding to the trigger information is determined according to the corresponding relationship between the preset different target and the display mode of the different terminal; in this step, according to the last trigger information in the trigger queue, Match the target to determine whether to use the VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves the overhead of the regular inspection judgment in the prior art. It achieves the purpose of saving power on the basis of basically satisfying the user's resolution requirements.
  • step 506 the display mode of the terminal is corrected according to the obtained action rate of the human-machine interaction information in the running of the application; this is because the correspondence between the preset different target applications and different terminal display modes may be Unreasonable, for example: some games have faster pixel change rates and higher resolution requirements for the screen, but are corresponding to the COMMAND display mode.
  • the detection rate of the human-computer interaction information in the running of the application is detected. For example, the user's action on the touch screen is more intense; or because the user cannot see clearly, the user has the action of quickly wiping the screen by hand; at this time, the display mode is changed to the VIDEO display mode, which further contributes to the improvement of the image quality.
  • step 507 according to the modified display mode of the terminal, the corresponding relationship between the preset different application programs and different terminal display modes is corrected; thus, the correspondence between the preset different application programs and different terminal display modes is adopted.
  • the modification of the relationship enables the optimization of the image quality and power saving functions to be achieved the next time the application is triggered.
  • COMMAND mode that switches the display mode from VIDEO mode immediately after the game is turned off; this can quickly switch the display mode to the power saving mode, so that The user feels that the battery has a long standby time.
  • FIG. 6 it is a schematic diagram of a display mode determining apparatus provided by the present invention.
  • the method includes: a storage module 602 configured to preset a correspondence between different targets and different terminal display modes; and an information acquiring module 601 configured to acquire a trigger.
  • the information matching module 603 is configured to match the trigger information with its corresponding target; the display mode determining module 604 is configured to set different targets according to the preset target
  • the display mode of the terminal corresponding to the trigger information is determined by the correspondence relationship with the terminal display mode.
  • the target may be an application program, or other information that needs to be displayed on the screen, such as a video file; and the VIDEO display mode and the screen refresh faster or
  • a target with a fast pixel change corresponds to a COMMAND display mode corresponding to a target whose screen refresh is slow (such as a text viewer), and a target whose image refresh rate or screen pixel change speed is intermediate. (such as movie video, etc.), you can arbitrarily return to VIDEO display mode or COMMAND display mode.
  • the trigger information is obtained, which may be trigger information first acquired from the terminal in the operating system, or may be triggered information added in one or more tasks, such as starting a word processing program. After minimizing the word processor window, other applications are triggered, and the word processing program is in a wait state; the new trigger information causes the system to run a new program.
  • the trigger information is matched with its corresponding target; the trigger information corresponds to the target it triggers, and the target is triggered and started.
  • the display mode determining module 604 determining a display mode of the terminal corresponding to the trigger information according to the corresponding relationship between the preset different target and the display mode of the different terminal; thus, the matching may be matched according to the last trigger information in the trigger queue.
  • Target to determine whether to use VIDEO display mode or COMMAND display mode; in this way, the display mode can be quickly determined, and the display mode can achieve a certain satisfactory effect for the corresponding application or video file, which saves the existing
  • the overhead of regular inspection and judgment in the technology achieves the purpose of saving electric energy on the basis of basically satisfying the user's resolution requirements.
  • the above target is an application.
  • the picture quality of the game is the satisfaction indicator of the player, and the game is preset to the VIDEO display mode, which can give the user a good impression on the product at the first time;
  • the application program other than game or video is preset to the COMMAND display mode, and the power can be saved in actual use, so that the product achieves a good level in display quality and power saving performance; Very beneficial.
  • FIG. 7 it is a schematic diagram of a second display mode determining apparatus provided by the present invention. Also includes The correction module 705 is configured to correct the display mode of the terminal according to the pixel conversion rate of the application; this is because the correspondence between the preset different target applications and different terminal display modes may be unreasonable, for example: some games Pixel change rate is not fast, such as mine-drilling games; some videos, such as lecture videos; the resolution of the screen is not high, at this time, by detecting the pixel change rate, its display mode is changed to COMMAND display mode, so Further contribution to power saving; obviously, the picture with faster pixel change rate can also be modified to VIDEO display mode.
  • some games Pixel change rate is not fast, such as mine-drilling games
  • some videos such as lecture videos
  • the resolution of the screen is not high, at this time, by detecting the pixel change rate, its display mode is changed to COMMAND display mode, so Further contribution to power saving; obviously, the picture with faster pixel change rate can also be modified to V
  • the correction module 705 in FIG. 7 may also be configured to correct the display mode of the terminal according to the obtained action rate of the human-machine interaction information in the running of the application; this is because the preset different target applications and different terminals are preset.
  • the correspondence of display modes may not be reasonable. For example, some games have faster pixel change rates and higher resolution requirements for the screen, but are corresponding to the COMMAND display mode.
  • the human machine is running through the application.
  • the detection of the action rate of the interactive information, such as the user's action on the touch screen is more intense; or because the user cannot see clearly, the user has the action of quickly wiping the screen by hand; at this time, the display mode is changed to the VIDEO display mode, so as to improve the image quality. Further contributions.
  • the technical idea of the present invention is to first classify various application programs or video information, and to specify a high resolution (that is, a frame refresh rate), which is classified into a VIDEO display mode; That is, the frame refresh rate is low, and is classified into the COMMAND display mode; then the preset value is corrected by the actually displayed pixel conversion rate or the user human interaction speed, so that the preset value is optimal, thereby Achieve both quality and power saving; a predetermined adaptive system equivalent to the display mode, after the correction, the system can eliminate the need for repeated inspections to save energy costs; this function can be integrated into the display driver chip, and the power consumption can be Further reduction.
  • a high resolution that is, a frame refresh rate
  • the preset value is corrected by the actually displayed pixel conversion rate or the user human interaction speed, so that the preset value is optimal, thereby Achieve both quality and power saving
  • a predetermined adaptive system equivalent to the display mode after the correction, the system can eliminate the need for repeated inspections to save energy costs; this function can
  • the terminal display mode determining method of the present invention by setting the correspondence between different targets and the terminal display mode in advance, so that different targets can directly enter their corresponding display modes, thereby reducing the periodic refresh of the host and causing part of the central processing unit and
  • the memory interface also needs to maintain the power consumption caused by the activation state, thereby achieving the purpose of increasing the endurance of the terminal, saving energy overhead, and integrating this function into the display driver chip, thereby further reducing power consumption.

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Abstract

一种终端显示模式确定方法,包括:预设不同的目标与不同的终端显示模式的对应关系(S102);获取触发信息(S103);将触发信息与其相应的目标匹配(S104);根据预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式(S105)。该终端显示模式确定方法在保证显示质量的基础上,进一步节约电能,使显示质量和电能消耗进一步优化。还公开了一种终端显示模式确定装置,包括:存储模块、信息获取模块、信息匹配模块、显示模式确定模块。

Description

一种终端显示模式确定方法及装置 技术领域
本发明属于电子领域,尤其涉及一种终端显示模式确定方法及装置。
背景技术
目前的移动终端的液晶显示屏(Liquid Crystal Display,缩写LCD)的显示模式有两种:VIDEO模式和COMMAND模式;其中VIDEO模式由CPU模块直接实时高频刷新显示数据到显示模组面板上,特点是显示实时效果佳,,但由于其刷新频繁,传送数据量大,因此功耗大,适合高动态场景如游戏;而COMMAND模式则由CPU模块先输出显示数据到显示模组内的缓存,再由显示模组刷新需更新的数据到面板上,由于其刷新相对慢些,传送数据量相对小些,因此功耗小,适合绝大多普通(非高动态)使用场景;终端如固定采用VIDEO模式会造成绝大数使用场景下功耗过高;反过来,如固定采用COMMAND模式,会造成高动态场景显示实时效果降低。
现有技术的情况是当显示内容不改变时(或不经常改变时),显示系统的中央处理器就应该切换到低功耗模式(COMMAND模式),而处理器和显示器之间的链路会在需要的时候激活;由于主机定期刷新的需要,部分中央处理器和存储器接口也需要保持激活状态,这就使系统不会达到最好的功率预算,整机的功耗会增加,最终使移动终端尤其是智能终端的续航能力下降。
发明内容
有鉴于此,本发明提供一种终端显示模式确定方法,以解决现有的由于主机定期刷新的需要,部分中央处理器和存储器接口也需要保持激活状态而增加整机功耗的问题。
本发明是这样实现的,一种终端显示模式确定方法,包括以下步骤:预设不同的目标与不同的终端显示模式的对应关系,根据所述不同的目标的画面刷新速率或像素变化速率将其与终端显示模式建立对应关系;获取触发信息;将触发信息与其相应的目标匹配;根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式。
进一步地,上述目标是应用程序。
进一步地,还包括步骤:根据应用程序的像素变换速率,修正终端的显示模式。
进一步地,还包括步骤:根据获取的在应用程序运行中的人机交互信息的动作速率,修正终端的显示模式。
进一步地,还包括步骤:根据修正后的终端的显示模式,修正预设的不同的应用程序与不同的终端显示模式的对应关系。
优选地,将应用程序的打开作为不同的终端显示模式之间的切换信号。
优选地,将应用程序的关闭作为不同的终端显示模式之间的切换信号。
本发明还提供了一种显示模式确定装置,包括:存储模块,设置为预设不同的目标与不同的终端显示模式的对应关系,根据所述不同的目标的画面刷新速率或像素变化速率将其与终端显示模式建立对应关系;信息获取模块,设置为获取触发信息;信息匹配模块,设置为将触发信息与其相应的目标匹配;显示模式确定模块,设置为根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式。
进一步地,上述目标是应用程序。
进一步地,还包括修正模块,设置为根据应用程序的像素变换速率,修正终端的显示模式。
进一步地,还包括修正模块,设置为根据获取的在应用程序运行中的人机交互信息的动作速率,修正终端的显示模式。
进一步地,所述存储模块还设置为:根据所述修正后的所述终端的显示模 式,修正所述预设的不同的应用程序与不同的终端显示模式的对应关系。
进一步地,所述信息获取模块设置为:将所述应用程序的打开作为所述不同的终端显示模式之间的切换信号或将所述应用程序的关闭作为所述不同的终端显示模式之间的切换信号。
进一步地,所述目标包括应用程序、视频文件和其他需要画面显示的信息。
进一步地,所述显示模式包括VIDEO显示模式和COMMAND显示模式,所述存储模块设置为:将所述VIDEO显示模式与画面刷新较快或画面像素变化较快的目标对应,将所述COMMAND显示模式与画面刷新较慢或画面像素变化较慢的目标对应。
进一步地,所述信息获取模块设置为:获取在操作系统中首先从终端获取的触发信息或者在一个或多个程序任务运行中新增的触发信息。
在本发明提供的终端显示模式确定方法和装置中,由于预先设置好了不同的目标与终端显示模式的对应关系,因此不同的目标可以直接进入其对应的显示模式,这就减少了主机定期刷新而使部分中央处理器和存储器接口也需要保持激活状态而带来的功耗,达到增加终端续航能力的目的。
附图说明
图1是本发明提供的终端显示模式确定方法的第一种实施方式的流程示意图。
图2是本发明提供的终端显示模式确定方法的第二种实施方式的流程示意图。
图3是本发明提供的终端显示模式确定方法的第三种实施方式的流程示意图。
图4是本发明提供的终端显示模式确定方法的第四种实施方式的流程示意图。
图5是本发明提供的终端显示模式确定方法的第五种实施方式的流程示意 图。
图6本发明提供的第一种显示模式确定装置的示意图。
图7本发明提供的第二种显示模式确定装置的示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施方式,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施方式仅仅用以解释本发明,并不设置为限定本发明。
本发明提供一种终端显示模式确定方法,包括以下步骤:预设不同的目标与不同的终端显示模式的对应关系;获取触发信息;将触发信息与其相应的目标匹配;根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式。
由于预先设置好了不同的目标与终端显示模式的对应关系,因此不同的目标可以直接进入其对应的显示模式,这就减少了主机定期刷新而使部分中央处理器和存储器接口也需要保持激活状态而带来的功耗,达到增加终端续航能力的目的。
以下结合具体实施方式对本发明的实现进行详细的描述。
如图1所示,是终端显示模式确定方法的第一实施方式的流程示意图,该流程开始于步骤101。然后,在步骤102,预设不同的目标与不同的终端显示模式的对应关系;在此步骤中,目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画面像素变化速度介于中间状态的目标(如视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在步骤103中,获取触发信息,在这一步骤中,可以是在操作系统中首先 从终端获取的触发信息,也可以是在某个或多个程序任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在步骤104中,将触发信息与其相应的目标匹配;在这一步骤中,触发信息与其触发的目标对应,触发并启动目标。
在步骤105中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;在这一步骤中,就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
流程结束于步骤106。
在本发明中,上述目标是应用程序;在移动终端的业务中,游戏视频的画面质量是玩家的满意指标,把游戏视频预先设定为VIDEO显示模式,可以在第一时间给用户对产品留下较为好的印象;而把除游戏或电影视频以外地应用程序预先定为COMMAND显示模式,这样就使产品在显示质量和节电的性能上达到优化的水平;这无疑对产品的推广十分有利。
如图2所示,是终端显示模式确定方法的第二种实施方式的流程示意图,是在图1所示的方法的基础上,增加了根据应用程序的像素变换速率,修正终端的显示模式的步骤;该流程开始于步骤201。然后,在步骤202,预设不同的目标与不同的终端显示模式的对应关系;在此步骤中,目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画 面像素变化速度介于中间状态的目标(如视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在步骤203中,获取触发信息,在这一步骤中,可以是在操作系统中首先从终端获取的触发信息,也可以是在某个或多个任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在步骤204中,将触发信息与其相应的目标匹配;在这一步骤中,触发信息与其触发的目标对应,触发并启动目标。
在步骤205中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;在这一步骤中,就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
在步骤206中,根据应用程序的像素变换速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率并不快,例如挖地雷的游戏;有些视频如讲课视频;对画面的分辨率要求并不高,这时,通过对像素变化速率的检测,将其显示模式修改为COMMAND显示模式,这样对省电作进一步的贡献;显然,对于像素变化速率较快的画面,也可修改为VIDEO显示模式。
流程结束于步骤207。
如图3所示,是终端显示模式确定方法的第三种实施方式的流程示意图,是在图1所示的方法的基础上,还包括步骤:根据获取的在所述应用程序运行中的人机交互信息的动作速率,修正所述终端的显示模式;该流程开始于步骤301。然后,在步骤302,预设不同的目标与不同的终端显示模式的对应关系; 在此步骤中,目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画面像素变化速度介于中间状态的目标(如电影视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在步骤303中,获取触发信息,在这一步骤中,可以是在操作系统中首先从终端获取的触发信息,也可以是在某个或多个任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在步骤304中,将触发信息与其相应的目标匹配;在这一步骤中,触发信息与其触发的目标对应,触发并启动目标。
在步骤305中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;在这一步骤中,就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
在步骤306中,根据获取的在应用程序运行中的人机交互信息的动作速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率较快,对画面的分辨率要求较高,但被对应到COMMAND显示模式,这时,通过对应用程序运行中的人机交互信息的动作速率的检测,比如用户在触摸屏的动作较为激烈;或者由于看不清,用户有用手快速擦屏的动作;这时将其显示模式修改为VIDEO显示模式,这样对提高画质作进一步的贡献。
流程结束于步骤307。
如图4所示,是终端显示模式确定方法的第四种实施方式的流程示意图,是在图2所示的方法的基础上,还包括步骤:根据修正后的终端的显示模式,修正预设的不同的应用程序与不同的终端显示模式的对应关系;该流程开始于步骤401。然后,在步骤402,预设不同的目标与不同的终端显示模式的对应关系;在此步骤中,目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画面像素变化速度介于中间状态的目标(如电影视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在步骤403中,获取触发信息,在这一步骤中,可以是在操作系统中首先从终端获取的触发信息,也可以是在某个或多个任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在步骤404中,将触发信息与其相应的目标匹配;在这一步骤中,触发信息与其触发的目标对应,触发并启动目标。
在步骤405中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;在这一步骤中,就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
在步骤406中,根据应用程序的像素变换速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率并不快(如挖地雷等),对画面的分辨 率要求并不高,这时,通过对像素变化速率的检测,将其显示模式修改为COMMAND显示模式,这样对省电作进一步的贡献。
在步骤407中,根据所述修正后的终端的显示模式,修正预设的不同的应用程序与不同的终端显示模式的对应关系;这样通过对预设的不同的应用程序与不同的终端显示模式的对应关系的修改,使下一次触发该应用程序时,就可以达到画质和节电功能的最优化的效果。
流程结束于步骤408。
如图5所示,是终端显示模式确定方法的第五种实施方式的流程示意图,是在图3所示的方法的基础上,还包括步骤:根据修正后的终端的显示模式,修正预设的不同的应用程序与不同的终端显示模式的对应关系;该流程开始于步骤501。然后,在步骤502,预设不同的目标与不同的终端显示模式的对应关系;在此步骤中,目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画面像素变化速度介于中间状态的目标(如电影视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在步骤503中,获取触发信息,在这一步骤中,可以是在操作系统中首先从终端获取的触发信息,也可以是在某个或多个任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在步骤504中,将触发信息与其相应的目标匹配;在这一步骤中,触发信息与其触发的目标对应,触发并启动目标。
在步骤505中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;在这一步骤中,就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是 COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
在步骤506中,根据获取的在应用程序运行中的人机交互信息的动作速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率较快,对画面的分辨率要求较高,但被对应到COMMAND显示模式,这时,通过对应用程序运行中的人机交互信息的动作速率的检测,比如用户在触摸屏的动作较为激烈;或者由于看不清,用户有用手快速擦屏的动作;这时将其显示模式修改为VIDEO显示模式,这样对提高画质作进一步的贡献。
在步骤507中,根据修正后的终端的显示模式,修正预设的不同的应用程序与不同的终端显示模式的对应关系;这样通过对预设的不同的应用程序与不同的终端显示模式的对应关系的修改,使下一次触发该应用程序时,就可以达到画质和节电功能的最优化的效果。
流程结束于步骤508。
将应用程序的打开作为不同的终端显示模式之间的切换信号,例如:当打开游戏时,立即将显示模式从COMMAND模式切换到VIDEO模式;这样可以快速把显示模式切换到动态画质及分辨率较好的模式,使用户感觉打游戏不卡。
将应用程序的关闭作为不同的终端显示模式之间的切换信号,例如:在游戏关闭后,立即将显示模式从VIDEO模式切换的COMMAND模式;这样可以快速把显示模式切换到省电的模式,使用户感觉电池待机时间长。
如图6所示,是本发明提供的显示模式确定装置的示意图;包括:存储模块602,设置为预设不同的目标与不同的终端显示模式的对应关系;信息获取模块601,设置为获取触发信息;信息匹配模块603,设置为将触发信息与其相应的目标匹配;显示模式确定模块604,设置为根据上述预设的不同目标与不 同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式。
在存储模块602中,预设不同的目标与不同的终端显示模式的对应关系;目标可以是应用程序,也可以是视频文件等其他需要画面显示的信息;将VIDEO显示模式与画面刷新较快或画面像素变化较快的目标(如动作游戏等)对应,将COMMAND显示模式与画面刷新较慢的目标(如文字阅览器等)对应,而对于画面刷新或画面像素变化速度介于中间状态的目标(如电影视频等),先随意归于VIDEO显示模式或COMMAND显示模式都可以。
在信息获取模块601中,获取触发信息,可以是在操作系统中首先从终端获取的触发信息,也可以是在某个或多个任务运行中新增的触发信息,比如开始在运行文字处理程序,在把文字处理程序窗口最小化后,触发其他应用程序,这时文字处理程序处于等待状态;新的触发信息使系统运行新的程序。
在信息匹配模块603中,将触发信息与其相应的目标匹配;触发信息与其触发的目标对应,触发并启动目标。
在显示模式确定模块604中,根据上述预设的不同目标与不同终端显示模式的对应关系,确定触发信息所对应的终端的显示模式;这样就可以根据触发队列中最后一次的触发信息所匹配的目标,来确定是采用VIDEO显示模式还是COMMAND显示模式;采用这样的方式就可以迅速确定显示模式,并且显示模式对于相应的应用程序或视频文件能大致达到一定的满意效果,这就节省了现有技术中的定期巡检判断的开销,达到在基本满足用户对分辨率要求的基础上,节省电能的目的。
上述目标是应用程序,在移动终端的业务中,游戏的画面质量是玩家的满意指标,把游戏预先设定为VIDEO显示模式,可以在第一时间给用户对产品留下较为好的印象;而把除游戏或视频以外地应用程序预先定为COMMAND显示模式,又可以在实际使用中节省电能,这样就使产品在显示质量和节电的性能上达到都好的水平;这无疑对产品的推广十分有利。
如图7所示,是本发明提供的第二种显示模式确定装置的示意图。还包括 修正模块705,设置为根据应用程序的像素变换速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率并不快,例如挖地雷的游戏;有些视频如讲课视频;对画面的分辨率要求并不高,这时,通过对像素变化速率的检测,将其显示模式修改为COMMAND显示模式,这样对省电作进一步的贡献;显然,对于像素变化速率较快的画面,也可修改为VIDEO显示模式。
图7中的修正模块705,还可设置为根据获取的在应用程序运行中的人机交互信息的动作速率,修正终端的显示模式;这是因为预设的不同的目标应用程序与不同的终端显示模式的对应关系可能并不合理,例如:有些游戏的像素变化速率较快,对画面的分辨率要求较高,但被对应到COMMAND显示模式,这时,通过对应用程序运行中的人机交互信息的动作速率的检测,比如用户在触摸屏的动作较为激烈;或者由于看不清,用户有用手快速擦屏的动作;这时将其显示模式修改为VIDEO显示模式,这样对提高画质作进一步的贡献。
总的来讲,本发明的技术方案的设计思路是先将各种应用程序或视频信息分级,对分辨率(也就是帧刷新率)要求高的,归为VIDEO显示模式;对分辨率(也就是帧刷新率)要求低的,归为COMMAND显示模式;然后再通过实际显示的像素变换速率或用户人机交互的动作速率来对预设值进行修正,以使预设值达到最佳,从而达到兼顾画质和省电的目的;相当于显示模式的预定自适应系统,在修正后系统就可以不用反复巡检,以节省能量开销;可将此功能集成到显示驱动芯片中,功耗可进一步减少。
本领域普通技术人员可以理解实现上述实施方式中的全部或部分步骤是可以通过程序来控制相关的硬件完成,所述的程序可以在存储于一计算机可读取存储介质中,所述的存储介质,如ROM/RAM、磁盘、光盘等。
以上所述仅为本发明的较佳实施方式而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
工业实用性
本发明的终端显示模式确定方法,通过预先设置好不同的目标与终端显示模式的对应关系,使得不同的目标可以直接进入其对应的显示模式,从而减少了主机定期刷新而使部分中央处理器和存储器接口也需要保持激活状态而带来的功耗,达到了增加终端续航能力的目的,节省了能量开销,可将此功能集成到显示驱动芯片中,可进一步减少功耗。

Claims (20)

  1. 一种终端显示模式确定方法,包括以下步骤:
    预设不同的目标与不同的终端显示模式的对应关系,包括:根据所述不同的目标的画面刷新速率或像素变化速率将其与终端显示模式建立对应关系;
    获取触发信息;
    将所述触发信息与其相应的目标匹配;
    根据所述预设的不同的目标与不同的终端显示模式的对应关系,确定所述触发信息所对应的所述终端的显示模式。
  2. 如权利要求1所述的终端显示模式确定方法,其中,所述显示模式包括VIDEO显示模式和COMMAND显示模式,所述根据所述不同的目标的画面刷新速率或像素变化速率将其与终端显示模式建立对应关系包括:
    将所述VIDEO显示模式与画面刷新较快或画面像素变化较快的目标对应,将所述COMMAND显示模式与画面刷新较慢或画面像素变化较慢的目标对应。
  3. 如权利要求1所述的终端显示模式确定方法,其中,所述获取触发信息包括:获取在操作系统中首先从终端获取的触发信息或者在一个或多个程序任务运行中新增的触发信息。
  4. 如权利要求1所述的终端显示模式确定方法,其中,所述目标是应用程序。
  5. 如权利要求4所述的终端显示模式确定方法,其中,还包括步骤:根据所述应用程序的像素变换速率,修正所述终端的显示模式。
  6. 如权利要求5所述的终端显示模式确定方法,其中,还包括步骤:根据所述修正后的所述终端的显示模式,修正所述预设的不同的应用程序与不同的终端显示模式的对应关系。
  7. 如权利要求4所述的终端显示模式确定方法,其中,还包括步骤:根据 获取的在所述应用程序运行中的人机交互信息的动作速率,修正所述终端的显示模式。
  8. 如权利要求7所述的终端显示模式确定方法,其中,还包括步骤:根据所述修正后的所述终端的显示模式,修正所述预设的不同的应用程序与不同的终端显示模式的对应关系。
  9. 如权利要求4所述的终端显示模式确定方法,其中,将所述应用程序的打开作为所述不同的终端显示模式之间的切换信号或将所述应用程序的关闭作为所述不同的终端显示模式之间的切换信号。
  10. 如权利要求1所述的终端显示模式确定方法,其中,所述目标包括应用程序、视频文件和其他需要画面显示的信息。
  11. 一种显示模式确定装置,包括:
    存储模块,设置为预设不同的目标与不同的终端显示模式的对应关系,包括根据所述不同的目标的画面刷新速率或像素变化速率将其与终端显示模式建立对应关系;
    信息获取模块,设置为获取触发信息;
    信息匹配模块,设置为将所述触发信息与其相应的目标匹配;
    显示模式确定模块,设置为根据上述预设的不同目标与不同终端显示模式的对应关系,确定所述触发信息所对应的所述终端的显示模式。
  12. 如权利要求11所述的显示模式确定装置,其中,所述显示模式包括VIDEO显示模式和COMMAND显示模式,所述存储模块设置为:将所述VIDEO显示模式与画面刷新较快或画面像素变化较快的目标对应,将所述COMMAND显示模式与画面刷新较慢或画面像素变化较慢的目标对应。
  13. 如权利要求11所述的显示模式确定装置,其中,所述信息获取模块设置为:获取在操作系统中首先从终端获取的触发信息或者在一个或多个程序任务运行中新增的触发信息。
  14. 如权利要求11所述的显示模式确定装置,其中,所述目标是应用程序。
  15. 如权利要求14所述的显示模式确定装置,其中,还包括修正模块,所述修正模块设置为:根据所述应用程序的像素变换速率,修正所述终端的显示模式。
  16. 如权利要求15所述的显示模式确定装置,其中,所述存储模块还设置为:根据所述修正后的所述终端的显示模式,修正所述预设的不同的应用程序与不同的终端显示模式的对应关系。
  17. 如权利要求14所述的显示模式确定装置,其中,还包括修正模块,所述修正模块设置为:根据获取的在所述应用程序运行中的人机交互信息的动作速率,修正所述终端的显示模式。
  18. 如权利要求17所述的显示模式确定装置,其中,所述存储模块还设置为:根据所述修正后的所述终端的显示模式,修正所述预设的不同的应用程序与不同的终端显示模式的对应关系。
  19. 如权利要求14所述的显示模式确定装置,其中,所述信息获取模块设置为:将所述应用程序的打开作为所述不同的终端显示模式之间的切换信号或将所述应用程序的关闭作为所述不同的终端显示模式之间的切换信号。
  20. 如权利要求11所述的显示模式确定装置,其中,所述目标包括应用程序、视频文件和其他需要画面显示的信息。
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