WO2016054942A1 - 应用程序唤醒时间的调节方法及装置 - Google Patents

应用程序唤醒时间的调节方法及装置 Download PDF

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Publication number
WO2016054942A1
WO2016054942A1 PCT/CN2015/085234 CN2015085234W WO2016054942A1 WO 2016054942 A1 WO2016054942 A1 WO 2016054942A1 CN 2015085234 W CN2015085234 W CN 2015085234W WO 2016054942 A1 WO2016054942 A1 WO 2016054942A1
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Prior art keywords
time interval
wake
time
application
terminal
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PCT/CN2015/085234
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English (en)
French (fr)
Inventor
史俊汉
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中兴通讯股份有限公司
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Publication of WO2016054942A1 publication Critical patent/WO2016054942A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • H04M1/73Battery saving arrangements
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

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  • the present invention relates to the field of communications, and in particular to a method and apparatus for adjusting wakeup time of an application.
  • mobile applications are loaded with more and more applications.
  • the designer sets a timer.
  • the timer starts to work.
  • the application wakes up the system and performs actions such as attempting a data connection or refreshing, causing the terminal device to be frequently woken up by the background application while sleeping, thereby wasting the power consumption of the terminal device.
  • the main purpose of the embodiment of the present invention is to provide a method and device for adjusting the wake-up time of an application, which solves the problem that the terminal device wastes power consumption of the terminal device by setting the wake-up time of the application program by the timer.
  • a method for adjusting an application wake-up time including: acquiring a time period corresponding to a specified state of a terminal by a terminal user, where the time period is Determining, by the terminal user, a time period determined by the usage habit of the terminal, the specified state includes: a use state or a non-use state; and applying, in the time period corresponding to the specified state, the terminal to the terminal according to a predetermined rule The preset wake-up time interval of the program is adjusted.
  • the time period corresponding to the specified state is determined according to the usage habit of the terminal user by the following manner: determining the used times of the terminal within a predetermined time period within a preset statistical period Whether it is greater than a predetermined threshold; if yes, the predetermined time period is taken as a time period corresponding to the use state; if not, the predetermined time period is taken as a time period corresponding to the non-use state.
  • the adjusting the preset wake-up time interval of the application in the terminal according to the predetermined rule in the time period corresponding to the use state includes: determining whether the terminal is in the time period a lock screen state; when the lock screen state is set, the preset wake time interval is adjusted.
  • adjusting the preset wake-up time interval includes: acquiring a lock screen time interval in which the terminal is in a lock screen state; determining whether the lock screen time interval is greater than the preset wake-up time interval, When the determination result is YES, the wake-up time interval of the application is delayed by: multiplying the preset wake-up time interval by a weighting coefficient every time the preset wake-up time interval ends, to obtain a first wake-up a time interval until the first wake-up time interval is not less than the lock screen time interval, wherein the wake-up time interval delay number of the application is greater than a predetermined threshold, and the first wake-up time interval is smaller than the lock screen At the time interval, the application is woken up.
  • adjusting the wake-up time of the application of the terminal according to the predetermined rule in the time period corresponding to the non-use state includes: acquiring a lock screen time interval in which the terminal is in a lock screen state; Determining whether the lock screen time interval is greater than the preset wake-up time interval, and when the determination result is yes, delaying the wake-up time interval of the application by: at the end of each preset wake-up time interval, Multiplying the preset wake-up time interval by a weighting coefficient to obtain a second wake-up time interval until the second wake-up time interval is not less than the lock screen time interval, wherein the wake-up time interval delay of the application is When the threshold is greater than the predetermined threshold, and the second wake-up interval is less than the lock screen interval, the application is maintained in a sleep state.
  • an apparatus for adjusting wakeup time of an application comprising: an obtaining module, configured to acquire a time period corresponding to a specified state of the terminal by the terminal user, wherein the time period is based on a time period determined by the terminal user for the usage habit of the terminal, the specified state includes: a use state or a non-use state; and an adjustment module configured to be within a time period corresponding to the specified state, according to a predetermined rule Adjusting the preset wake-up time interval of the application in the terminal.
  • the method further includes: a determining module, configured to determine whether the used number of times of the terminal in the predetermined time period within the preset statistical period is greater than a predetermined threshold; if yes, the predetermined time period is used as the The time period corresponding to the use state; if not, the predetermined time period is taken as the time period corresponding to the non-use state.
  • a determining module configured to determine whether the used number of times of the terminal in the predetermined time period within the preset statistical period is greater than a predetermined threshold; if yes, the predetermined time period is used as the The time period corresponding to the use state; if not, the predetermined time period is taken as the time period corresponding to the non-use state.
  • the adjusting module is further configured to: determine, in a time period corresponding to the use state, whether the terminal is in a lock screen state during the time period; when in the lock screen state , adjusting the wake-up time interval.
  • the adjustment module includes: a first acquiring unit, configured to acquire a lock screen time interval in which the terminal is in a lock screen state; and a first determining unit configured to determine whether the lock screen time interval is greater than The preset wake-up time interval, when the determination result is yes, delaying the wake-up time interval of the application by: multiplying the preset wake-up time interval by each time the preset wake-up time interval ends Weighted a coefficient, the first wake-up time interval is obtained, until the first wake-up time interval is not less than the lock screen time interval, wherein the wake-up time interval delay number of the application is greater than a predetermined threshold, and the first wake-up time When the interval is less than the lock screen time interval, the application is woken up.
  • the adjustment module includes:
  • a second acquiring unit configured to acquire a lock screen time interval in which the terminal is in a lock screen state in a time period corresponding to the non-use state; and a second determining unit, configured to determine whether the lock screen time interval is greater than Determining the preset wake-up time interval, when the determination result is yes, delaying the preset wake-up time interval of the application by: at the end of each preset wake-up time interval, the preset wake-up time interval Multiplying the weighting coefficient to obtain a second wake-up time interval until the second wake-up time interval is not less than the lock screen time interval, wherein the number of delays in the wake-up interval of the application is greater than a predetermined threshold, and the When the second wake-up time interval is less than the lock screen time interval, the application is maintained in a sleep state.
  • the time period corresponding to the specified state of the terminal for the terminal is obtained, wherein the time period is a time period determined according to the usage habit of the terminal user, and the specified state includes: a use state or a non-use state.
  • the preset wake-up time interval of the application in the terminal is adjusted according to a predetermined rule, which solves the problem that the terminal device works in the prior art by setting the wake-up time of the application by the timer. The problem of wasting waste, which in turn saves power consumption of the terminal.
  • FIG. 1 is a flowchart of a method for adjusting an application wake-up time according to an embodiment of the present invention
  • FIG. 2 is a structural block diagram of an apparatus for adjusting wakeup time of an application according to an embodiment of the present invention
  • FIG. 3 is a block diagram 1 of a preferred structure of an apparatus for adjusting wakeup time of an application according to an embodiment of the present invention
  • FIG. 4 is a block diagram 2 of a preferred structure of an apparatus for adjusting wakeup time of an application according to an embodiment of the present invention
  • FIG. 5 is a block diagram 3 of a preferred structure of an apparatus for adjusting wakeup time of an application according to an embodiment of the present invention
  • FIG. 6 is a flow chart of a method for intelligently adjusting an application wake-up time in accordance with a preferred embodiment of the present invention
  • FIG. 7 is a schematic diagram of performing statistics according to user usage habits according to a preferred embodiment of the present invention.
  • FIG. 8 is a diagram showing statistics of application wake-up time according to a preferred embodiment of the present invention.
  • FIG. 9 is a flowchart of a method for adjusting a wake-up time interval when a terminal is in use time according to a preferred embodiment of the present invention.
  • FIG. 10 is a flow chart of a method for adjusting a wake-up time interval by a terminal during non-use time, in accordance with a preferred embodiment of the present invention.
  • FIG. 1 is a flowchart of a method for adjusting wakeup time of an application according to an embodiment of the present invention. As shown in FIG. 1, the flow includes the following steps:
  • Step S102 Obtain a time period corresponding to the specified state of the terminal by the terminal user, where the time period is a time period determined according to the usage habit of the terminal user, and the specified state includes: a use state or a non-use state;
  • Step S104 Adjust the preset wake-up time interval of the application in the terminal according to a predetermined rule in a time period corresponding to the specified state.
  • the usage state time period and the non-use state time period of the terminal are determined according to the usage habits of the user, and the preset wake-up time interval of the application is intelligent according to the time period corresponding to the user in different states and the reservation rule.
  • the adjustment solves the problem that the terminal device wastes power consumption of the terminal device by setting the wake-up time of the application program by the timer in the prior art, thereby saving power consumption of the terminal.
  • the time period corresponding to the specified state is determined according to the usage habit of the terminal user.
  • the time period corresponding to the specified state is determined by the following method: Whether the used number of times of the terminal in the predetermined period of time in the statistical period is greater than a predetermined threshold; if yes, the predetermined time period is taken as the time period corresponding to the use state; if not, the predetermined time period is corresponding to the non-use state Time period.
  • the user's usage habits it may be a click on the screen frequency, a bright screen time, an application open count, a call count, a short message count, etc., and the user frequently uses the mobile phone during the statistical period and the infrequent time is divided into the user use status period and Non-user usage status time period.
  • step S104 is further implemented by: in the embodiment of the present invention, determining whether the terminal is in a lock screen state during the time period; and adjusting the preset wake time interval when in the lock screen state;
  • the invention is not limited, but is only a preferred mode of step S104.
  • the adjustment is performed by: obtaining the lock screen time interval in which the terminal is in the lock screen state; determining whether the lock screen time interval is greater than the preset wake-up time. Time interval, when the judgment result is yes, delay the wake-up time interval of the application by: at the end of each preset wake-up time interval, multiplying the preset wake-up time interval by the weighting coefficient to obtain the first wake-up time interval, Until the first wake-up time interval is not less than the lock screen time interval, wherein the application wakes up when the application wake-up time interval delay number is greater than a predetermined threshold and the first wake-up time interval is less than the lock screen time interval.
  • the application wake-up time interval is not modified. If the terminal is in the lock screen state, determine the lock screen time interval. If the lock screen time is greater than the wake-up time interval, the application wake-up time is multiplied by the weighting coefficient, and the wake-up times in this time are counted, when the wake-up delay time is met and After the number of times, the application is uniformly awakened.
  • the method is as follows: acquiring the lock in which the terminal is in the lock screen state Screen time interval; determine whether the lock screen time interval is greater than the preset wake-up time interval.
  • delay the application wake-up time interval by: at the end of each preset wake-up time interval, the preset wake-up The time interval is multiplied by the weighting coefficient to obtain a second wake-up time interval until the second wake-up time interval is not less than a lock screen time interval, wherein the number of delays in the wake-up interval of the application is greater than a predetermined threshold, and the second wake-up interval is less than the lock
  • the screen time interval is on, the application is kept in a sleep state.
  • the terminal locks the screen. If the lock screen time is greater than the wake-up time interval, the application wake-up time is weighted, and as the screen-off time increases, the weighted delay time increases.
  • the operating device of the mobile terminal is also provided in the embodiment, and the device is used to implement the foregoing embodiments and preferred embodiments, and details are not described herein.
  • the term "module” may implement a combination of software and/or hardware of a predetermined function.
  • the apparatus described in the following embodiments is preferably implemented in software, hardware, or a combination of software and hardware, is also possible and contemplated.
  • the apparatus includes: an obtaining module 22 configured to acquire a time period corresponding to a specified state of a terminal by a terminal user, The time period is a time period determined according to the usage habit of the terminal user to the terminal, and the status package is specified.
  • the adjustment module 24 is coupled to the acquisition module 22, and is configured to adjust the preset wake-up time interval of the application in the terminal according to a predetermined rule within a time period corresponding to the specified state.
  • the apparatus further includes a determining module 32 coupled to the obtaining module 22, and configured to determine that it is within a preset statistical period. Whether the number of times the terminal is used in the predetermined time period is greater than a predetermined threshold; if yes, the predetermined time period is taken as the time period corresponding to the use state; if not, the predetermined time period is taken as the time period corresponding to the non-use state .
  • the adjustment module 24 is further configured to: determine whether the terminal is in a lock screen state during the time period corresponding to the use state; and adjust the preset wake-up time interval when the lock screen state is .
  • the adjustment module 24 includes: a first acquisition unit 42 configured to acquire a lock screen in which the terminal is in a lock screen state.
  • the first determining unit 44 is coupled to the first obtaining unit 42 and configured to determine whether the lock screen time interval is greater than the preset wake time interval.
  • the application is delayed by: Wake-up time interval: each time the preset wake-up time interval ends, the preset wake-up time interval is multiplied by a weighting coefficient to obtain a first wake-up time interval until the first wake-up time interval is not less than the a lock screen time interval, wherein the application wakes up when the application wake-up time interval delay number is greater than a predetermined threshold and the first wake-up time interval is less than the lock screen time interval.
  • FIG. 5 is a block diagram 3 of a preferred structure of an apparatus for adjusting wakeup time of an application according to an embodiment of the present invention.
  • the adjustment module 24 includes: a second obtaining unit 52 coupled with the first determining unit 44, and configured. Obtaining a lock screen time interval in which the terminal is in a lock screen state in a time period corresponding to the non-use state; the second determining unit 54 is coupled to the second obtaining unit 52, and is configured to determine whether the lock screen time interval is greater than a preset wake-up time interval.
  • the preset wake-up time interval of the application is delayed by: at the end of each preset wake-up time interval, the preset wake-up time interval is multiplied by the weighting coefficient to obtain a second wake-up time interval. Until the second wake-up time interval is not less than the lock screen time interval, wherein the application is in a sleep state when the application wake-up time interval delay number is greater than a predetermined threshold and the second wake-up time interval is less than the lock screen time interval.
  • the handheld terminal device performs 48H learning, counts the user's usage habits, and then establishes a database, and divides the user usage time into user usage time and non-user usage time.
  • the handheld terminal device can establish a wake-up time database for the application by counting the wake-up time interval of each application, and intelligently adjust the application wake-up time when the condition is met, otherwise no adjustment is made.
  • the user may be at rest for the purpose of saving energy and reducing consumption. At this time, the application wake-up time is delayed to reduce the number of wake-ups.
  • the method of the preferred embodiment of the invention comprises the steps of:
  • Step A The handheld terminal device performs a 48H learning and statistical activity, and collects user usage habits to distinguish between user usage time and non-user usage time;
  • Step B statistics the wake-up interval applied in the handheld terminal device, and establish a database
  • Step C Adjust the application wake-up time interval by determining whether the handheld device is on and off and the application is enabled.
  • Step D During the non-user use time, the application wake-up time interval is adjusted by judging whether the handheld device is turned on and off and the application is turned on.
  • the handheld terminal device in step A can be any type of smart phone, which can be 24H for one cycle, according to user usage habits, such as tapping screen frequency, bright screen time, application opening times, number of calls, number of short messages, etc., in the statistical period
  • user usage habits such as tapping screen frequency, bright screen time, application opening times, number of calls, number of short messages, etc.
  • the user uses the mobile phone frequently and infrequently, and is divided into user usage time H1 and non-user usage time H2.
  • step B the application in the current handheld terminal device is counted, and the database is established for the wake-up time of each application. Subsequently, according to the increase of the installed application, the mobile phone automatically enriches the database.
  • step C during the user usage time H1, it is determined whether the application is turned on and whether the mobile phone is on the screen. If the screen is in the bright screen state, the application wake-up time is not modified. If the phone is off, the time interval is determined. If the time is greater than the specified time, the application wake-up time is multiplied by the weighting factor, and the number of wake-ups in this time is counted. When the wake-up delay time and a certain number of times are met, the unified Wake up.
  • Step D During the non-user usage time H2, it is determined whether the mobile phone is off. If the screen-off time is greater than h1, the wake-up time is applied to perform a weighted delay. As the screen-off time increases, the weighted delay time increases.
  • FIG. 6 is a flow chart of a method for intelligently adjusting an application wake-up time according to a preferred embodiment of the present invention. As shown in FIG. 6, the method includes:
  • Step S602 When the mobile phone is powered on, obtain time of the mobile phone network side, start timing and perform 48H intelligent learning.
  • Step S604 Statistics of user usage habits, and the specific statistical library is shown in FIG. 2
  • Step S606 According to the user usage habit, the user usage time H1 and the non-user usage time H2, that is, the active period and the inactive period
  • Step S608 Adjust the application wake-up timer using the smart adjustment algorithm 1 at the user use time H1, referring to FIG.
  • Step S610 At the user usage time H2, the application wake-up timer is adjusted using the smart adjustment algorithm 2, referring to FIG.
  • FIG. 7 is a schematic diagram of statistics based on user usage habits in accordance with a preferred embodiment of the present invention.
  • the user's usage habit is mainly based on the user's use of short messages, telephones, games, audio and video, Internet access, photographing, etc., to distinguish the time and idle time that the user uses in a concentrated manner, thereby dividing the user's use time H1 and non-user use. Time H2.
  • FIG. 8 is a schematic diagram of application wake-up time statistics in accordance with a preferred embodiment of the present invention. As shown in Figure 8, the alarm timer (Alarm timer) of all APPs installed on the current mobile phone is counted.
  • Alarm timer the alarm timer of all APPs installed on the current mobile phone is counted.
  • FIG. 9 is a flowchart of a method for adjusting a wake-up time interval when a terminal uses time according to a preferred embodiment of the present invention. As shown in FIG. 9, the method includes the following steps:
  • Step S902 The mobile phone uses the 48H intelligent learning to statistically store the user habit database
  • Step S904 Obtaining the time of the mobile phone network side, matching with the learning library data, determining whether the user is currently using the time H1, and if yes, proceeding to step S906, otherwise proceeding to step S916;
  • Step S906 determining how many applications are currently open, and whether in the background, if it is in the background, proceeds to step S908, otherwise proceeds to step S916;
  • Step S908 determining whether the current screen is off and the screen is off, if it is off screen and meets the set threshold time threshold, then proceeds to step S910, otherwise proceeds to step S916;
  • Step S910 determining whether there is currently an Alarm timer, if it arrives to match the timer database, then proceeds to step S912, otherwise proceeds to step S916;
  • Step 912 After the above conditions are met, the system multiplies the alarm timer by the delay coefficient 1 and determines whether the time interval of the timer*delay1 (that is, the number of times the alarm timer is multiplied by the delay 1) is greater than a specified threshold. If the threshold is greater than the specified threshold, the process proceeds to step S914; otherwise, the process proceeds to step S918;
  • Step S914 If greater than timer*delay1 is greater than the specified threshold, it is equal to the specified threshold, and does not excessively affect the user experience;
  • Step S916 the background, the screen is not satisfied, and the conditions are not met, and no modification is made to the timer;
  • Step S918 The process ends.
  • FIG. 10 is a flowchart of a method for adjusting a wake-up time interval by a terminal during non-use time according to a preferred embodiment of the present invention, including the following steps:
  • Step S1002 The mobile phone uses the 48H intelligent learning to statistically store the user habit database
  • Step S1004 Obtaining the time of the mobile phone network side, matching with the learning library data, determining whether the user is currently using the time H2, and if yes, proceeding to step S1006, otherwise entering the flow of FIG. 9;
  • Step S1006 The non-user uses the mobile phone in a sleep state to determine the time when the mobile phone is off.
  • Step S1008 If the time when the mobile phone is off is at (0, h21), the Alarm timer is multiplied by the weighting coefficient delay2 (that is, the current timing of the Alarm timer is multiplied by the weighting coefficient delay2); if the blanking time is at (h21, h22), then Multiply by the weighting factor delay3; otherwise multiply by the weighting factor delay4;
  • Step S1010 The process ends.
  • the time interval of wake-up by the application is divided into user working time and non-user working time, and the algorithm is used for intelligent adjustment, so as to achieve the user experience without affecting the user experience, non-user working time and
  • the purpose of saving power for a long time to disable the screen state is to calculate the frequent time and idle time of the user to use the mobile phone according to the usage habits of different users.
  • the technical solution provided by the embodiment of the present invention can be applied to the process of adjusting the wake-up time of the application, and the time period corresponding to the specified state of the terminal for the terminal is obtained, wherein the time period is determined according to the usage habit of the terminal user.
  • the specified time period includes: a use state or a non-use state; and within a time period corresponding to the specified state, the preset wake-up time interval of the application in the terminal is adjusted according to a predetermined rule, The problem that the power consumption of the terminal device is wasted by the terminal device setting the wake-up time of the application by the timer is solved, thereby saving the power consumption of the terminal.

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Abstract

一种应用程序唤醒时间的调节方法及装置,其中,该方法包括:获取终端用户针对终端的指定状态所对应的时间段,其中,时间段为根据终端用户对终端的使用习惯所确定的时间段,指定状态包括:使用状态或非使用状态(S102);在指定状态所对应的时间段内,根据预定规则对终端中应用程序的预设唤醒时间间隔进行调节(S104),解决了现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题,进而节省了终端的功耗。

Description

应用程序唤醒时间的调节方法及装置 技术领域
本发明涉及通信领域,具体而言,涉及一种应用程序唤醒时间的调节方法及装置。
背景技术
目前移动终端设备装载的应用越来越多,每个应用在设计之初,设计者会设置定时器,当应用程序打开或在后台偷偷启动时,定时器开始工作。当定时器到达设定的时间时,应用程序会唤醒系统,进行诸如尝试数据连接或刷新的动作,导致终端设备在休眠时仍然会被后台应用频繁唤醒,从而使得终端设备的功耗浪费。
针对现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题,目前尚未提出有效的解决方案。
发明内容
本发明实施例的主要目的在于提供一种应用程序唤醒时间的调节方法及装置,解决了现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题。
为了实现上述目的,根据本发明的一个实施例,提供了一种应用程序唤醒时间的调节方法,包括:获取终端用户针对终端的指定状态所对应的时间段,其中,所述时间段为根据所述终端用户对所述终端的使用习惯所确定的时间段,所述指定状态包括:使用状态或非使用状态;在所述指定状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节。
在本发明实施例中,根据所述终端用户对所述终端的使用习惯通过以下方式确定所述指定状态所对应的时间段:判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将所述预定时间段作为所述使用状态所对应的时间段内;如果不是,则将所述预定时间段作为所述非使用状态所对应的时间段。
在本发明实施例中,在所述使用状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节包括:判断所述时间段内所述终端是否为锁屏状态;在为所述锁屏状态时,对所述预设唤醒时间间隔进行调节。
在本发明实施例中,对所述预设唤醒时间间隔进行调节包括:获取所述终端处于锁屏状态的锁屏时间间隔;判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第一唤醒时间间隔,直至所述第一唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第一唤醒时间间隔小于所述锁屏时间间隔时,则对所述应用程序进行唤醒。
在本发明实施例中,在所述非使用状态对应的时间段内,根据预定规则对所述终端的应用程序的唤醒时间进行调节包括:获取所述终端处于锁屏状态的锁屏时间间隔;判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至所述第二唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第二唤醒时间间隔小于所述锁屏时间间隔时,则维持所述应用程序处于休眠状态。
根据本发明的另一个实施例,提供了一种应用程序唤醒时间的调节装置,包括:获取模块,设置为获取终端用户针对终端的指定状态所对应的时间段,其中,所述时间段为根据所述终端用户对所述终端的使用习惯所确定的时间段,所述指定状态包括:使用状态或非使用状态;调节模块,设置为在所述指定状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节。
在本发明实施例中,还包括:判断模块,设置为判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将所述预定时间段作为所述使用状态所对应的时间段内;如果不是,则将所述预定时间段作为所述非使用状态所对应的时间段。
在本发明实施例中,所述调节模块还设置为,在所述使用状态所对应的时间段内,判断所述时间段内所述终端是否为锁屏状态;在为所述锁屏状态时,对所述唤醒时间间隔进行调节。
在本发明实施例中,所述调节模块包括:第一获取单元,设置为获取所述终端处于锁屏状态的锁屏时间间隔;第一判断单元,设置为判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权 系数,得到第一唤醒时间间隔,直至所述第一唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第一唤醒时间间隔小于所述锁屏时间间隔时,则对所述应用程序进行唤醒。
在本发明实施例中,所述调节模块包括:
第二获取单元,设置为在所述非使用状态对应的时间段内,获取所述终端处于锁屏状态的锁屏时间间隔;第二判断单元,设置为判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的预设唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至所述第二唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第二唤醒时间间隔小于所述锁屏时间间隔时,则维持所述应用程序处于休眠状态。
通过本发明实施例,采用获取终端用户针对终端的指定状态所对应的时间段,其中,时间段为根据终端用户对终端的使用习惯所确定的时间段,指定状态包括:使用状态或非使用状态;在指定状态所对应的时间段内,根据预定规则对终端中应用程序的预设唤醒时间间隔进行调节,解决了现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题,进而节省了终端的功耗。
附图说明
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例的应用程序唤醒时间的调节方法的流程图;
图2是根据本发明实施例的应用程序唤醒时间的调节装置的结构框图;
图3是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图一;
图4是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图二;
图5是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图三;
图6是根据本发明优选实施例的智能调节应用程序唤醒时间的方法流程图;
图7是根据本发明优选实施例的根据用户使用习惯进行统计的示意图;
图8是根据本发明优选实施例应用程序唤醒时间进行统计的示意图;
图9是根据本发明优选实施例的终端在使用时间时对唤醒时间间隔进行调节的方法流程图;
图10是根据本发明优选实施例的终端在非使用时间时对唤醒时间间隔进行调节的方法流程图。
具体实施方式
下文中将参考附图并结合实施例来详细说明本发明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
在本实施例中提供了一种应用程序唤醒时间的调节方法,图1是根据本发明实施例的应用程序唤醒时间的调节方法的流程图,如图1所示,该流程包括如下步骤:
步骤S102:获取终端用户针对终端的指定状态所对应的时间段,其中,时间段为根据终端用户对终端的使用习惯所确定的时间段,指定状态包括:使用状态或非使用状态;
步骤S104:在指定状态所对应的时间段内,根据预定规则对终端中应用程序的预设唤醒时间间隔进行调节。
通过本发明实施例,根据用户的使用习惯确定终端的使用状态时间段和非使用状态的时间段,根据用户在不同状态对应的时间段以及预订规则对应用程序的预设唤醒时间间隔进行智能的调节,解决了现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题,进而节省了终端的功耗。
本发明中根据终端用户对终端的使用习惯确定指定状态所对应的时间段的方式有多种,而在本发明实施例中优选的通过以下方式确定指定状态所对应的时间段:判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将预定时间段作为使用状态所对应的时间段内;如果不是,则将预定时间段作为非使用状态所对应的时间段。例如,根据用户使用习惯,可以是点击屏幕频率、亮屏时间、应用开启次数,通话次数,短信次数等,统计周期内用户使用手机频繁的时间和非频繁的时间,分为用户使用状态时段和非用户使用状态时间段。
上述步骤S104中进一步的还可以通过以下方式实现:在本发明实施例中,判断时间段内终端是否为锁屏状态;在为锁屏状态时,对预设唤醒时间间隔进行调节;但上述方式并不对本发明进行限定,仅仅是步骤S104的优选方式。
对预设唤醒时间间隔进行调节的方式有多种,在本发明实施例中优选的通过以下方式进行调节:获取终端处于锁屏状态的锁屏时间间隔;判断锁屏时间间隔是否大于预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟应用程序的唤醒时间间隔:在每次预设唤醒时间间隔结束时,将预设唤醒时间间隔乘以加权系数,得到第一唤醒时间间隔,直至第一唤醒时间间隔不小于锁屏时间间隔,其中,在应用程序的唤醒时间间隔延迟次数大于预定阈值,且第一唤醒时间间隔小于锁屏时间间隔时,则对应用程序进行唤醒。
在用户使用状态的时间段内,判断应用是否开启以及手机是否锁屏状态,如果不是锁屏状态,则应用程序的唤醒时间间隔不做任何修改。如果终端为锁屏状态,判断锁屏时间间隔,如果锁屏时间大于唤醒时间间隔,则会对应用程序唤醒时间乘以加权系数,并统计此时间内的唤醒次数,当满足唤醒延迟时间和一定次数后,对应用程序统一进行唤醒。
在非使用状态对应的时间段内,根据预定规则对终端的应用程序的唤醒时间进行调节的方式有多种,在本发明实施例中优选的通过以下方式实现:获取终端处于锁屏状态的锁屏时间间隔;判断锁屏时间间隔是否大于预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟应用程序的唤醒时间间隔:在每次预设唤醒时间间隔结束时,将预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至第二唤醒时间间隔不小于锁屏时间间隔,其中,在应用程序的唤醒时间间隔延迟次数大于预定阈值,且第二唤醒时间间隔小于锁屏时间间隔时,则维持应用程序处于休眠状态。
在非用户使用状态时间段内,判断终端是否锁屏,如果锁屏时间大于唤醒时间间隔,则应用程序唤醒时间进行加权延迟,随着灭屏时间增加,加权延迟时间随之增加。
在本实施例中还提供了一种移动终端的操作装置,该装置用于实现上述实施例及优选实施方式,已经进行过说明的不再赘述。如以下所使用的,术语“模块”可以实现预定功能的软件和/或硬件的组合。尽管以下实施例所描述的装置较佳地以软件来实现,但是硬件,或者软件和硬件的组合的实现也是可能并被构想的。
图2是根据本发明实施例的应用程序唤醒时间的调节装置的结构框图,如图2所示,该装置包括:获取模块22,设置为获取终端用户针对终端的指定状态所对应的时间段,其中,时间段为根据终端用户对终端的使用习惯所确定的时间段,指定状态包 括:使用状态或非使用状态;调节模块24耦合至获取模块22,设置为在指定状态所对应的时间段内,根据预定规则对终端中应用程序的预设唤醒时间间隔进行调节。
图3是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图一,如图3所示,该装置还包括判断模块32耦合至获取模块22,设置为判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将预定时间段作为使用状态所对应的时间段内;如果不是,则将预定时间段作为非使用状态所对应的时间段。
在本发明实施例中,调节模块24还设置为,在使用状态所对应的时间段内,判断时间段内终端是否为锁屏状态;在为锁屏状态时,对预设唤醒时间间隔进行调节。
图4是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图二,如图4所示,调节模块24包括:第一获取单元42,设置为获取终端处于锁屏状态的锁屏时间间隔;第一判断单元44耦合至第一获取单元42,设置为判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第一唤醒时间间隔,直至所述第一唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第一唤醒时间间隔小于所述锁屏时间间隔时,则对所述应用程序进行唤醒。
图5是根据本发明实施例的应用程序唤醒时间的调节装置的优选结构框图三,如图5所示,所述调节模块24包括:第二获取单元52,与第一判断单元44耦合,设置为在非使用状态对应的时间段内,获取终端处于锁屏状态的锁屏时间间隔;第二判断单元54耦合至第二获取单元52,设置为判断锁屏时间间隔是否大于预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟应用程序的预设唤醒时间间隔:在每次预设唤醒时间间隔结束时,将预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至第二唤醒时间间隔不小于锁屏时间间隔,其中,在应用程序的唤醒时间间隔延迟次数大于预定阈值,且第二唤醒时间间隔小于锁屏时间间隔时,则维持应用程序处于休眠状态。
为了更好的对本发明进行说明,下面结合本发明的优选实施例进行说明。
在本发明优选实施例中对手持终端设备会进行48H的学习,统计用户的使用习惯,然后建立数据库,将用户使用时间分成用户使用时间和非用户使用时间。在用户使用时间段内,手持终端设备可通过统计每个应用程序唤醒时间间隔,对应用程序建立唤醒时间数据库,当满足条件时就会智能调节应用唤醒的时间,否则就不做调整。而在 非用户使用时间段内,由于用户此时可能处于休息状态,以节能降耗为目的,此时会将应用唤醒时间进行延迟,减少唤醒次数。
具体的,该本发明优选实施例的方法包括以下列步骤:
步骤A:手持终端设备进行48H学习统计活动,统计用户使用习惯,区分用户使用时间和非用户使用时间;
步骤B:统计手持终端设备中应用的唤醒时间间隔,建立数据库;
步骤C:用户使用时间内,通过判断手持设备亮灭屏及应用是否可开启,来调节应用唤醒时间间隔;
步骤D:非用户使用时间内,通过判断手持设备亮灭屏及应用是否开启,来调节应用唤醒时间间隔;
在步骤A中的手持终端设备可以是任意型号的智能手机,可以24H为一周期,根据用户使用习惯,诸如点击屏幕频率、亮屏时间、应用开启次数,通话次数,短信次数等,统计周期内用户使用手机频繁的时间和非频繁的时间,分为用户使用时间H1和非用户使用时间H2。
在步骤B中,对当前手持终端设备中的应用进行统计,并对每个应用的唤醒时间进行数据库建立,后续根据安装应用的增多,手机自动丰富完善数据库。
在步骤C中,在用户使用时间H1内,判断应用是否开启以及手机是否亮屏,如果在亮屏状态,应用唤醒时间不做任何修改。如果手机灭屏,判断灭屏时间间隔,如果灭屏时间大于指定时间,则会对应用唤醒时间乘以加权系数,并统计此时间内的唤醒次数,当满足唤醒延迟时间和一定次数后,统一进行唤醒。
步骤D在非用户使用时间H2内,判断手机是否灭屏,如果灭屏时间大于h1,则应用唤醒时间进行加权延迟,随着灭屏时间增加,加权延迟时间随之增加。
下面结合附图对上述本发明优选实施例中的方法步骤进行进一步的说明。
图6是根据本发明优选实施例的智能调节应用程序唤醒时间的方法流程图,如图6所示,该方法包括:
步骤S602:手机开机时,获取手机网络侧时间,开始计时进行48H智能学习
步骤S604:统计用户使用习惯,具体统计库见图2
步骤S606:根据用户使用习惯,分为用户使用时间H1和非用户使用时间H2,即活跃期和非活跃期
步骤S608:在用户使用时间H1,使用智能调节算法1,参照图9,对应用唤醒定时器进行调节。
步骤S610:在用户使用时间H2,使用智能调节算法2,参照图10,对应用唤醒定时器进行调节。
图7是根据本发明优选实施例的根据用户使用习惯进行统计的示意图。如图7所示,用户使用习惯主要根据用户使用短信、电话、游戏、音视频、上网、拍照等,区分用户使用比较集中的时间和空闲时间,以此分为用户使用时间H1和非用户使用时间H2。
图8是根据本发明优选实施例应用程序唤醒时间统计的示意图。如图8所示,统计当前手机安装所有APP的告警定时器(Alarm timer)。
图9是根据本发明优选实施例的终端在使用时间时对唤醒时间间隔进行调节的方法流程图,如图9所示,该方法包括下列步骤:
步骤S902:手机通过48H智能学习,统计存储用户习惯数据库;
步骤S904:获取手机网络侧时间,与学习库数据进行匹配,判断当前是否为用户使用时间H1,如果是,则进入步骤S906,否则进入步骤S916;
步骤S906:判断当前有多少应用开启,以及是否在后台,如果是在后台的话,进入步骤S908,否则进入步骤S916;
步骤S908:判断当前是否处于灭屏状态以及灭屏时间,如果是灭屏且满足设定的灭屏时间阈值,则进入步骤S910,否则进入步骤S916;
步骤S910:判断当前是否有Alarm timer到来,如果到来与timer数据库进行匹配,则进入步骤S912,否则进入步骤S916;
步骤912:满足上述条件后,系统会将alarm timer乘以加权系数延迟(delay)1,并且判断timer*delay1时间间隔(即告警定时器的计时数与delay 1相乘)是否大于指定阈值,如果大于指定阈值则进入步骤S914,否则结束,进入步骤S918;
步骤S914:如果大于timer*delay1大于指定阈值,则等于指定阈值,不会过度影响用户体验;
步骤S916:后台、灭屏等条件不满足会进入,不对timer做任何修改;
步骤S918:流程结束.
图10是根据本发明优选实施例的终端在非使用时间时对唤醒时间间隔进行调节的方法流程图,包括下列步骤:
步骤S1002:手机通过48H智能学习,统计存储用户习惯数据库;
步骤S1004:获取手机网络侧时间,与学习库数据进行匹配,判断当前是否为用户使用时间H2,如果是,则进入步骤S1006,否则进入图9流程;
步骤S1006:非用户使用时间手机在休眠状态,判断手机灭屏时间。
步骤S1008:如果手机灭屏时间处于(0,h21),则Alarm timer乘以加权系数delay2(即Alarm timer的当前计时数乘以加权系数delay2);如果灭屏时间处于(h21,h22),则乘以加权系数delay3;否则乘以加权系数delay4;
步骤S1010:流程结束。
通过本发明优选实施例,通过统计应用唤醒的时间间隔,以此分为用户工作时间和非用户工作时间,运用算法进行智能调节,以达到在用户工作时间不影响用户体验,非用户工作时间和长时间灭屏状态节省功耗的目的,实现了可以根据不同用户的使用习惯统计用户使用手机频繁的时间和空闲时间。
以上仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
工业实用性
本发明实施例提供的技术方案,可以应用于应用程序唤醒时间的调节过程,采用获取终端用户针对终端的指定状态所对应的时间段,其中,时间段为根据终端用户对终端的使用习惯所确定的时间段,指定状态包括:使用状态或非使用状态;在指定状态所对应的时间段内,根据预定规则对终端中应用程序的预设唤醒时间间隔进行调节, 解决了现有技术中终端设备通过定时器设置应用程序的唤醒时间而导致终端设备功耗浪费的问题,进而节省了终端的功耗。

Claims (10)

  1. 一种应用程序唤醒时间的调节方法,包括:
    获取终端用户针对终端的指定状态所对应的时间段,其中,所述时间段为根据所述终端用户对所述终端的使用习惯所确定的时间段,所述指定状态包括:使用状态或非使用状态;
    在所述指定状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节。
  2. 根据权利要求1所述的方法,其中,根据所述终端用户对所述终端的使用习惯通过以下方式确定所述指定状态所对应的时间段:
    判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将所述预定时间段作为所述使用状态所对应的时间段;如果不是,则将所述预定时间段作为所述非使用状态所对应的时间段。
  3. 根据权利要求1所述的方法,其中,在所述使用状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节包括:
    判断所述时间段内所述终端是否为锁屏状态;在为所述锁屏状态时,对所述预设唤醒时间间隔进行调节。
  4. 根据权利要求3所述的方法,其中,对所述预设唤醒时间间隔进行调节包括:
    获取所述终端处于锁屏状态的锁屏时间间隔;
    判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第一唤醒时间间隔,直至所述第一唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第一唤醒时间间隔小于所述锁屏时间间隔时,则对所述应用程序进行唤醒。
  5. 根据权利要求1所述的方法,其中,在所述非使用状态对应的时间段内,根据预定规则对所述终端的应用程序的预设唤醒时间间隔进行调节包括:
    获取所述终端处于锁屏状态的锁屏时间间隔;
    判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至所述第二唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第二唤醒时间间隔小于所述锁屏时间间隔时,则维持所述应用程序处于休眠状态。
  6. 一种应用程序唤醒时间的调节装置,包括:
    获取模块,设置为获取终端用户针对终端的指定状态所对应的时间段,其中,所述时间段为根据所述终端用户对所述终端的使用习惯所确定的时间段,所述指定状态包括:使用状态或非使用状态;
    调节模块,设置为在所述指定状态所对应的时间段内,根据预定规则对所述终端中应用程序的预设唤醒时间间隔进行调节。
  7. 根据权利要求6所述的装置,其中,还包括:
    判断模块,设置为判断在预设统计周期内的预定时间段内终端的被使用次数是否大于预定阈值;如果是,则将所述预定时间段作为所述使用状态所对应的时间段;如果不是,则将所述预定时间段作为所述非使用状态所对应的时间段。
  8. 根据权利要求6所述的装置,其中,所述调节模块还设置为,在所述使用状态所对应的时间段内,判断所述时间段内所述终端是否为锁屏状态;在为所述锁屏状态时,对所述预设唤醒时间间隔进行调节。
  9. 根据权利要求8所述的装置,其中,所述调节模块包括:
    第一获取单元,设置为获取所述终端处于锁屏状态的锁屏时间间隔;
    第一判断单元,设置为判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第一唤醒时间间隔,直至所述第一唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第一唤醒时间间隔小于所述锁屏时间间隔时,则对所述应用程序进行唤醒。
  10. 根据权利要求6所述的装置,其中,所述调节模块包括:
    第二获取单元,设置为在所述非使用状态对应的时间段内,获取所述终端处于锁屏状态的锁屏时间间隔;
    第二判断单元,设置为判断所述锁屏时间间隔是否大于所述预设唤醒时间间隔,当判断结果为是时,通过以下方式延迟所述应用程序的预设唤醒时间间隔:在每次所述预设唤醒时间间隔结束时,将所述预设唤醒时间间隔乘以加权系数,得到第二唤醒时间间隔,直至所述第二唤醒时间间隔不小于所述锁屏时间间隔,其中,在所述应用程序的唤醒时间间隔延迟次数大于预定阈值,且所述第二唤醒时间间隔小于所述锁屏时间间隔时,则维持所述应用程序处于休眠状态。
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