WO2018010277A1 - 智能电视设置方法及装置 - Google Patents

智能电视设置方法及装置 Download PDF

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Publication number
WO2018010277A1
WO2018010277A1 PCT/CN2016/097841 CN2016097841W WO2018010277A1 WO 2018010277 A1 WO2018010277 A1 WO 2018010277A1 CN 2016097841 W CN2016097841 W CN 2016097841W WO 2018010277 A1 WO2018010277 A1 WO 2018010277A1
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Prior art keywords
smart
boot
mode
boot mode
power
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Ceased
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PCT/CN2016/097841
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English (en)
French (fr)
Inventor
柯杰燕
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Shenzhen TCL New Technology Co Ltd
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Shenzhen TCL New Technology Co Ltd
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Publication of WO2018010277A1 publication Critical patent/WO2018010277A1/zh
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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • H04N21/4432Powering on the client, e.g. bootstrap loading using setup parameters being stored locally or received from the server
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • H04N21/4438Window management, e.g. event handling following interaction with the user interface

Definitions

  • the present invention relates to the field of smart television technologies, and in particular, to a smart television setting method and apparatus.
  • the smart TV boot mode also has a fast boot mode.
  • the fast boot mode can support the smart TV fast boot function.
  • the smart TV's fast boot mode is mainly STR (Suspend). To RAM, memory standby mode). Since the normal boot mode and the fast boot mode have their own advantages and disadvantages, in some cases, it is suitable to use the normal boot mode, and in some cases, it is suitable to use the fast boot mode, which requires the user to select according to different situations, and set the smart through manual operation by the user.
  • the TV's boot mode is normal boot mode or fast boot mode. In the power-on mode of setting the smart TV, the efficiency of setting the boot mode is low because the user's manual setting operation is required.
  • the main object of the present invention is to provide a smart television setting method and apparatus, which aims to solve the technical problem of low efficiency of setting the boot mode of the smart television in the prior art.
  • the present invention provides a smart television setting method, and the smart television setting method includes:
  • the step of setting the boot mode of the smart TV includes:
  • the preset period includes one week or one month.
  • the calculation formula of the preset threshold is:
  • T P_on(T1-T2)/(P2_off-P1_off);
  • T is the preset threshold
  • T1 is the time required to boot in normal boot mode
  • T2 is the time required to boot in fast boot mode
  • P_on is the boot power
  • P1_off is the standby power in normal boot mode
  • P2_off is fast Standby power in power-on mode.
  • the present invention further provides a smart television setting method, where the smart television setting method includes:
  • the boot mode includes a normal boot mode and a fast boot mode.
  • the historical usage record of the smart TV includes: a shutdown time point of each shutdown of the smart TV, and a standby time length after each shutdown at the shutdown time point.
  • the step of setting the boot mode of the smart TV according to the comparison result comprises:
  • the preset period includes one week or one month.
  • the calculation formula of the preset threshold is:
  • T P_on(T1-T2)/(P2_off-P1_off);
  • T is the preset threshold
  • T1 is the time required to boot in normal boot mode
  • T2 is the time required to boot in fast boot mode
  • P_on is the boot power
  • P1_off is the standby power in normal boot mode
  • P2_off is fast Standby power in power-on mode.
  • the present invention further provides a smart television setting apparatus, where the smart television setting apparatus includes:
  • a calculation module configured to: according to a historical usage record of the smart television, receive an average standby time after the smart TV is turned off at the same time point in the preset period;
  • a processing module configured to compare the average standby duration with a preset threshold, and set a boot mode of the smart TV according to the comparison result, where the boot mode includes a normal boot mode and a fast boot mode.
  • the historical usage record of the smart TV includes: a shutdown time point of each shutdown of the smart TV, and a standby time length after each shutdown at the shutdown time point.
  • the processing module is configured to:
  • the preset period includes one week or one month.
  • the calculation formula of the preset threshold is:
  • T P_on(T1-T2)/(P2_off-P1_off);
  • T is the preset threshold
  • T1 is the time required to boot in normal boot mode
  • T2 is the time required to boot in fast boot mode
  • P_on is the boot power
  • P1_off is the standby power in normal boot mode
  • P2_off is fast Standby power in power-on mode.
  • the smart TV setting method and device provided by the present invention firstly counts the average standby time after the smart TV is turned off at the same time point in the preset period according to the historical usage record of the smart TV when receiving the shutdown command, and then averages the average
  • the standby duration is compared with the preset threshold, and the boot mode of the smart TV is set to the normal boot mode or the fast boot mode according to the comparison result, thereby realizing the smart TV automatic setting boot mode, thereby avoiding the manual setting operation of the user, thereby improving the setting.
  • the efficiency of the smart TV's boot mode is compared with the preset threshold, and the boot mode of the smart TV is set to the normal boot mode or the fast boot mode according to the comparison result, thereby realizing the smart TV automatic setting boot mode, thereby avoiding the manual setting operation of the user, thereby improving the setting.
  • FIG. 1 is a schematic flow chart of a first embodiment of a smart television setting method according to the present invention
  • FIG. 2 is a schematic diagram of a refinement process of setting a boot mode of the smart TV according to a comparison result in a first embodiment of a smart television setting method according to the present invention
  • FIG. 3 is a schematic diagram of functional modules of a first embodiment of a smart television setting apparatus according to the present invention.
  • the invention provides a smart TV setting method.
  • the smart television setting method includes:
  • Step S10 when receiving the shutdown command, according to the historical usage record of the smart TV, statistics the average standby duration after the smart TV is turned off at the same time point in the preset period;
  • the smart TV set boot mode also has a fast boot mode.
  • the fast boot mode supports the smart TV quick boot function.
  • the fast boot mode is mainly STR (Suspend). To RAM, memory standby mode).
  • the normal boot mode and the fast boot mode have their own advantages and disadvantages.
  • the normal boot mode corresponds to a longer boot time, but the standby power consumption is lower; and the fast boot mode corresponds to a boot time corresponding to the normal boot mode. Time to save more than 20s, but because of the need to maintain RAM during standby (random Access Memory, random access memory), so standby power consumption is higher.
  • the smart TV automatically sets the boot mode according to the standby duration in order to balance the boot time and standby power consumption.
  • the usage information of the smart TV is recorded to generate a historical usage record of the smart television.
  • the historical usage record of the smart TV includes information such as the shutdown time point of each time the smart TV is turned off, and the standby time of each time the smart TV is turned off at the shutdown time point.
  • the smart TV operation when the user performs the shutdown operation to trigger the shutdown command, the smart TV receives the shutdown command, according to the historical usage record of the smart TV, and counts the average after the smart TV is turned off at the same time point in the preset period. Standby time.
  • the preset period can be flexibly set according to actual conditions, for example, one week or one month, and the user can also change the preset period in different situations.
  • the average waiting time of the statistics is taken as the standby time after the smart TV is turned off.
  • the smart TV is shut down according to the historical usage record of the smart TV at the time point (22 o'clock) in the preset period.
  • the statistical user shuts down the smart TV to the standby time between the smart TVs again at 22 o'clock in the week, and then waits for the smart TV to shut down every day after 22 o'clock.
  • the time calculates the average standby time after shutdown at 22 o'clock.
  • step S20 the average standby duration is compared with a preset threshold, and the boot mode of the smart TV is set according to the comparison result, wherein the boot mode includes a normal boot mode and a fast boot mode.
  • the standby power consumption Due to the shorter standby time, the standby power consumption is lower. At this time, the fast boot mode can achieve fast booting under low power consumption, that is, the shorter the standby duration, the more suitable for the fast boot mode; the longer the standby duration
  • the standby power consumption corresponding to the fast boot mode is higher than the standby power consumption corresponding to the normal boot mode. At this time, the longer the standby duration, the more suitable for the normal boot mode.
  • a preset threshold is set in advance. After the smart TV counts the average standby duration after the smart TV is turned off at the same time point in the preset period, the average standby duration is compared with the preset threshold, and the average standby duration and the preset threshold are compared.
  • the step S20 includes:
  • Step S21 when the average standby duration is greater than the preset threshold, setting a boot mode of the smart TV to a normal boot mode;
  • step S22 when the average standby duration is less than or equal to the preset threshold, the boot mode of the smart TV is set to a fast boot mode.
  • the smart TV standby mode since the smart TV's boot mode is set to the normal boot mode, and the normal boot mode corresponds to the lower standby power consumption, the power consumption of the smart TV is reduced compared to the fast boot mode.
  • the smart TV When the average standby duration of the smart TV statistics is less than or equal to the preset threshold, it means that the standby time of the smart TV is short. At this time, the smart TV is more suitable for the fast boot mode. Therefore, setting the boot mode of the smart TV to the fast boot mode And save the settings.
  • the smart TV is in standby mode, because the standby time of the smart TV is short, the standby power consumption corresponding to the fast boot mode is similar to the standby power consumption corresponding to the normal boot mode, and the fast boot mode is used to reduce the boot time of the smart TV. .
  • the average standby duration after the smart TV is turned off at the same time point in the preset period is counted, and then the average standby duration and the pre-predetermined time are The threshold is compared for comparison, and the boot mode of the smart TV is set to the normal boot mode or the fast boot mode according to the comparison result, thereby realizing the smart TV automatic setting boot mode, thereby avoiding the manual setting operation of the user, thereby improving the efficiency of setting the boot mode.
  • a second embodiment of the smart television setting method of the present invention is provided based on the first embodiment.
  • the smart TV normal boot mode and the fast boot mode respectively correspond.
  • Parameters such as power-on time, standby power, and power-on power are used to calculate a preset threshold. Specifically, the calculation formula is as follows:
  • T P_on(T1-T2)/(P2_off-P1_off);
  • T is the preset threshold
  • T1 is the time required to boot in normal boot mode
  • T2 is the time required to boot in fast boot mode
  • P_on is the boot power
  • P1_off is the standby power in normal boot mode
  • P2_off is fast Standby power in power-on mode.
  • the related information of the smart TV such as the boot power P_on, the first standby power P1_off corresponding to the normal boot mode, and the second standby power P2_off corresponding to the fast boot mode is stored in the smart TV.
  • the time T1 required for the smart TV to be turned on in the normal boot mode or the time T2 required to be turned on in the fast boot mode is recorded and saved.
  • the smart TV receives the shutdown command, the smart TV acquires the time T1 required to turn it on in the normal boot mode, the time T2 required to boot in the fast boot mode, the standby power P1_off in the normal boot mode, and the fast boot mode. Standby power P2_off and the power-on power P_on of the smart TV.
  • the power consumption of the smart TV includes two aspects of power-on power consumption and standby power consumption, the time required for power-on according to the obtained normal power-on mode, the time required for power-on in the fast power-on mode, and the standby power P1_off in the normal power-on mode.
  • the standby power P2_off in the fast boot mode and the boot power P_on of the smart TV assume that the smart TV calculates the standby duration in the normal boot mode and the standby duration corresponding to the fast boot mode is the preset threshold T.
  • the smart TV can be preferably set.
  • the mode is the fast boot mode.
  • the corresponding power consumption W1 of the smart TV in the normal power-on mode is greater than the power consumption W2 of the smart TV in the fast power-on mode.
  • the smart TV is set.
  • the boot mode is the fast boot mode.
  • the corresponding power consumption W1 of the smart TV in the normal boot mode is smaller than the corresponding power consumption W2 of the smart TV in the fast boot mode, and at this time, the smart TV is set.
  • the boot mode is the normal boot mode.
  • the power-on power P_on of the smart TV is 100 watts
  • the standby power P1_off in the normal boot mode is 0.4 watts
  • the standby power P2_off in the fast boot mode is 0.6 watts
  • the time T1 required to boot in the normal boot mode is 24 watts.
  • the smart TV boot mode is set to the fast boot mode
  • the smart TV statistics average standby duration is greater than 2.5 hours
  • the smart TV boot mode is set to the normal boot mode. .
  • the boot time of the smart TV is not uniform, that is, whether it is the time T1 required to boot in the normal boot mode, or the boot in the fast boot mode.
  • the required time T2 is inconsistent each time it is turned on. Therefore, in order to ensure the accuracy of the calculated preset threshold T, the time T1 required for the smart TV to be turned on in the normal boot mode or the fast boot mode is not required.
  • the time T2 required to perform the power-on is used as the reference value for calculation, but firstly, the plurality of boot times corresponding to the smart TV in the normal boot mode, and the plurality of boot times corresponding to the fast boot mode, and then the calculated
  • the first average value of the plurality of boot times corresponding to the normal boot mode, the first average value is taken as the time T1 required for the smart TV to be powered on in the normal boot mode, and the obtained multiple boot times corresponding to the fast boot mode are calculated.
  • the second average, the second average is used as the smart TV in the fast boot mode Power required time T2.
  • the preset threshold T is obtained according to the calculated T1 and T2 calculations.
  • the smart TV records the corresponding startup time point, shutdown time point and the like every time the power is turned on and off.
  • the smart TV calculates the difference between the two according to the shutdown time point corresponding to each operation and the corresponding startup time point of the next operation, and the difference is an actual standby time of the smart television, and is calculated in turn.
  • the actual duration of the smart TV over a period of time. For example, if the time when the user currently performs the shutdown operation is Monday night, the smart TV calculates the actual standby duration corresponding to the previous Monday night of several m weeks, or calculates the actual standby duration corresponding to the latest k days of the night, or calculates the acquisition.
  • the actual standby durations obtained are T_last1, T_last2, T_last3, ... T_lastn.
  • the weighted algorithm is used to budget the standby duration T_next corresponding to the current shutdown of the smart TV.
  • the actual standby durations T_last1, T_last2, T_last3, ... T_lastn correspond to weight ratios of Q1, Q2, and Q3, respectively.
  • the standby duration T_next is compared with the preset threshold T.
  • the standby duration T_next is greater than the preset threshold T
  • the startup mode of the smart TV is set to the normal startup mode.
  • the smart TV boot mode is set to the fast boot mode, and the settings are saved, and the related processing operations are performed according to the set boot mode.
  • T1 is the time required for booting in the normal boot mode
  • T2 is the fast boot mode.
  • P_on is the power on
  • P1_off is the standby power in the normal power-on mode
  • P2_off is the standby power in the fast power-on mode, which improves the accuracy of the preset threshold T setting, thereby further improving the smart TV.
  • the invention further provides a smart television setting device.
  • FIG. 3 is a schematic diagram of functional modules of a first embodiment of a smart television setting apparatus according to the present invention.
  • the functional module diagram shown in FIG. 3 is merely an exemplary diagram of a preferred embodiment, and those skilled in the art will surround the functional modules of the smart television setting apparatus shown in FIG.
  • the function modules of the present invention can be easily supplemented by the new function modules;
  • the core is the function that each functional module of the defined name has to achieve.
  • the smart TV setting apparatus includes:
  • the calculating module 10 is configured to: when receiving the shutdown command, calculate an average standby duration after the smart TV is turned off according to the historical usage record of the smart television at the same time point in the preset period;
  • the smart TV set boot mode also has a fast boot mode.
  • the fast boot mode supports the smart TV quick boot function.
  • the fast boot mode is mainly STR (Suspend). To RAM, memory standby mode).
  • the normal boot mode and the fast boot mode have their own advantages and disadvantages.
  • the normal boot mode corresponds to a longer boot time, but the standby power consumption is lower; and the fast boot mode corresponds to a boot time corresponding to the normal boot mode. Time to save more than 20s, but because of the need to maintain RAM during standby (random Access Memory, random access memory), so standby power consumption is higher.
  • the smart TV automatically sets the boot mode according to the standby duration in order to balance the boot time and standby power consumption.
  • the usage information of the smart TV is recorded to generate a historical usage record of the smart television.
  • the historical usage record of the smart TV includes information such as the shutdown time point of each time the smart TV is turned off, and the standby time of each time the smart TV is turned off at the shutdown time point.
  • the calculation module 10 records the smart TV shutdown according to the historical usage record of the smart television at the same time point in the preset period.
  • the preset period can be flexibly set according to actual conditions, for example, one week or one month, and the user can also change the preset period in different situations.
  • the average waiting time of the statistics is taken as the standby time after the smart TV is turned off.
  • the calculation module 10 records the historical usage record of the smart TV, and counts the time point (22 o'clock) in the preset period.
  • the average standby time after the smart TV is turned off, such as counting the standby time between the smart TV and the re-opening of the smart TV at 22 o'clock every night during the week, and then according to the smart TV at 22 o'clock after the week
  • the daily standby time calculates the average standby time after shutdown at 22 o'clock.
  • the processing module 20 is configured to compare the average standby duration with a preset threshold, and set a boot mode of the smart TV according to the comparison result, where the boot mode includes a normal boot mode and a fast boot mode.
  • the standby power consumption Due to the shorter standby time, the standby power consumption is lower. At this time, the fast boot mode can achieve fast booting under low power consumption, that is, the shorter the standby duration, the more suitable for the fast boot mode; the longer the standby duration
  • the standby power consumption corresponding to the fast boot mode is higher than the standby power consumption corresponding to the normal boot mode. At this time, the longer the standby duration, the more suitable for the normal boot mode.
  • a preset threshold is set in advance.
  • the processing module 20 compares the average standby duration with a preset threshold, and compares the average standby duration with a preset threshold. the size of.
  • the processing module 20 sets the current boot mode of the smart TV according to the comparison result.
  • the processing module 20 is configured to:
  • the processing module 20 sets the boot mode of the smart TV to be normal. Power on mode and save this setting.
  • the smart TV standby mode since the smart TV's boot mode is set to the normal boot mode, and the normal boot mode corresponds to the lower standby power consumption, the power consumption of the smart TV is reduced compared to the fast boot mode.
  • the processing module 20 sets the boot mode of the smart TV. For the quick boot mode, save this setting.
  • the smart TV is in standby mode, because the standby time of the smart TV is short, the standby power consumption corresponding to the fast boot mode is similar to the standby power consumption corresponding to the normal boot mode, and the fast boot mode is used to reduce the boot time of the smart TV. .
  • the calculation module 10 when receiving the shutdown command, the calculation module 10 counts the average standby duration after the smart TV is turned off at the same time point in the preset period according to the historical usage record of the smart TV, and then the processing module 20 The average standby duration is compared with the preset threshold, and the boot mode of the smart TV is set to the normal boot mode or the fast boot mode according to the comparison result, thereby realizing the smart TV automatic setting boot mode, thereby avoiding the manual setting operation of the user, thereby improving the Set the efficiency of the boot mode.
  • a second embodiment of the smart television setting device of the present invention is proposed based on the first embodiment.
  • the computing module 10 in order to make the specific value of the preset threshold more accurate, is configured according to the smart TV normal boot mode and the fast boot mode.
  • Pre-set thresholds are calculated by parameters such as power-on time, standby power, and power-on power. Specifically, the calculation formula is as follows:
  • T P_on(T1-T2)/(P2_off-P1_off);
  • T is the preset threshold
  • T1 is the time required to boot in normal boot mode
  • T2 is the time required to boot in fast boot mode
  • P_on is the boot power
  • P1_off is the standby power in normal boot mode
  • P2_off is fast Standby power in power-on mode.
  • the related information of the smart TV such as the boot power P_on, the first standby power P1_off corresponding to the normal boot mode, and the second standby power P2_off corresponding to the fast boot mode is stored in the smart TV.
  • the time T1 required for the smart TV to be turned on in the normal boot mode or the time T2 required to be turned on in the fast boot mode is recorded and saved.
  • the calculation module 10 first obtains the time T1 required for the power-on in the normal power-on mode, the time T2 required for the power-on mode in the fast power-on mode, the standby power P1_off in the normal power-on mode, and the fast power-on mode. The standby power P2_off and the power-on power P_on of the smart TV.
  • the power consumption of the smart TV includes two aspects of power-on power consumption and standby power consumption, the time required for power-on according to the obtained normal power-on mode, the time required for power-on in the fast power-on mode, and the standby power P1_off in the normal power-on mode.
  • the processing module 20 sets The boot mode of the smart TV is the fast boot mode.
  • the processing module 20 sets The boot mode of the smart TV is the normal boot mode.
  • the processing module 20 sets the startup mode of the smart TV to the fast startup mode; when the average standby duration of the calculation module 10 is greater than 2.5 hours, the processing module 20 sets the smart The TV's boot mode is the normal boot mode.
  • the boot time of the smart TV is not uniform, that is, whether it is the time T1 required to boot in the normal boot mode, or the boot in the fast boot mode.
  • the required time T2 is inconsistent each time it is turned on. Therefore, in order to ensure the accuracy of the calculated preset threshold T, the time T1 required for the smart TV to be turned on in the normal boot mode or the fast boot mode is not required.
  • the time T2 required for starting the power-on is used as the reference value for calculation, but firstly, a plurality of boot times corresponding to the smart TV in the normal boot mode, and a plurality of boot times corresponding to the fast boot mode, and then the calculation module 10 calculates Obtaining a first average value of the plurality of boot times corresponding to the normal boot mode, using the first average value as the time T1 required for the smart TV to be powered on in the normal boot mode, and calculating the obtained multiple corresponding in the fast boot mode
  • the second average of the boot time, the second average as the smart TV is fast
  • the time T2 required to power on in the power-on mode is used as the reference value for calculation, but firstly, a plurality of boot times corresponding to the smart TV in the normal boot mode, and a plurality of boot times corresponding to the fast boot mode, and then the calculation module 10 calculates Obtaining a first average value of the plurality of boot times corresponding to the normal boot mode, using the first average value as the time T1 required for
  • the smart TV records the corresponding startup time point, shutdown time point and the like every time the power is turned on and off.
  • the calculation module 10 calculates the difference between the two according to the corresponding shutdown time point of the smart TV and the corresponding startup time point of the next operation, and the difference is an actual standby duration of the smart television.
  • the actual standby duration of the smart TV over a period of time is calculated in turn.
  • the calculation module 10 calculates the actual standby duration corresponding to the Monday night of several m weeks before the acquisition, or calculates the actual standby duration corresponding to the latest k days of the night, or calculates The actual standby duration corresponding to the previous Monday night of several m weeks and the actual standby duration corresponding to the most recent k nights are obtained, and the specific form is not limited herein.
  • the calculation module 10 calculates the actual standby durations obtained as T_last1, T_last2, T_last3, ... T_lastn.
  • the calculation module 10 uses the weighting algorithm to calculate the standby duration T_next corresponding to the current shutdown of the smart TV according to the obtained actual standby durations.
  • the standby time T_next T_last1*Q1+T_last2*Q2+...+T_lastn*Qn corresponding to the current shutdown of the smart TV is calculated.
  • the processing module 20 After the calculation module 10 calculates the standby duration T_next corresponding to the current shutdown of the smart TV, the processing module 20 compares the standby duration T_next with the preset threshold T. When the standby duration T_next is greater than the preset threshold T, the processing module 20 sets the smart The boot mode of the TV is the normal boot mode; when the standby duration T_next is less than the preset threshold T, the processing module 20 sets the boot mode of the smart TV to the fast boot mode. And, the processing module 20 saves the settings and performs related processing operations according to the set boot mode.

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Abstract

提供了一种智能电视设置方法和设置装置,设置方法包括步骤:在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长(S10);将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式(S20)。

Description

智能电视设置方法及装置
技术领域
本发明涉及智能电视技术领域,尤其涉及一种智能电视设置方法及装置。
背景技术
现今,智能电视的开机模式除了有正常开机模式以外,还有快速开机模式,快速开机模式可支持智能电视快速开机的功能,目前智能电视的快速开机模式主要是以STR(Suspend to RAM,内存待机模式)为主。由于正常开机模式和快速开机模式分别有各自的优缺点,有些情况下适合使用正常开机模式,有些情况下又适合使用快速开机模式,需要用户根据不同的情况进行选择,通过用户手动操作来设置智能电视的开机模式为正常开机模式或者快速开机模式。在设置智能电视的开机模式中,由于需要用户的人工设置操作,使得设置开机模式的效率较低。
发明内容
本发明的主要目的在于提出一种智能电视设置方法及装置,旨在解决现有技术中设置智能电视的开机模式的效率较低的技术问题。
为实现上述目的,本发明提供的一种智能电视设置方法,所述智能电视设置方法包括:
在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;及
将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式,所述智能电视的历史使用记录包括所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长;
所述根据比较结果,设置所述智能电视的开机模式的步骤包括:
在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
优选地,所述预设周期包括一周或一月。
优选地,所述预设阈值的计算公式为:
T=P_on(T1-T2)/(P2_off-P1_off);
其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
此外,为实现上述目的,本发明还提出一种智能电视设置方法,所述智能电视设置方法包括:
在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;及
将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
优选地,所述智能电视的历史使用记录包括:所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长。
优选地,所述根据比较结果,设置所述智能电视的开机模式的步骤包括:
在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
优选地,所述预设周期包括一周或一月。
优选地,所述预设阈值的计算公式为:
T=P_on(T1-T2)/(P2_off-P1_off);
其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
此外,为实现上述目的,本发明还提出一种智能电视设置装置,所述智能电视设置装置包括:
计算模块,用于在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;
处理模块,用于将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
优选地,所述智能电视的历史使用记录包括:所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长。
优选地,所述处理模块用于:
在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
优选地,所述预设周期包括一周或一月。
优选地,所述预设阈值的计算公式为:
T=P_on(T1-T2)/(P2_off-P1_off);
其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
本发明提出的智能电视设置方法及装置,在接收到关机指令时,首先根据智能电视的历史使用记录,统计在预设周期内的相同时间点智能电视关机后的平均待机时长,然后将该平均待机时长与预设阈值进行比较,根据比较结果设置智能电视的开机模式为正常开机模式或快速开机模式,从而实现了智能电视自动设置开机模式,避免了用户的人工设置操作,因此,提高了设置智能电视的开机模式的效率。
附图说明
图1为本发明智能电视设置方法第一实施例的流程示意图;
图2为本发明智能电视设置方法第一实施例中根据比较结果,设置所述智能电视的开机模式的细化流程示意图;
图3为本发明智能电视设置装置第一实施例的功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种智能电视设置方法。
参照图1,图1为本发明智能电视设置方法第一实施例的流程示意图。在本实施例中,所述智能电视设置方法包括:
步骤S10,在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;
现今,智能电视设置的开机模式除了有正常开机模式以外,还有快速开机模式,快速开机模式支持智能电视快速开机的功能,目前,快速开机模式主要是以STR(Suspend to RAM,内存待机模式)为主。正常开机模式和快速开机模式分别有各自的优缺点,例如,正常开机模式对应的开机时间较长,但在待机时功耗较低;而快速开机模式对应的开机时间比正常开机模式对应的开机时间要节省20s以上,但由于待机时还需要保持RAM(random access memory,随机存取存储器)的运行,因此待机的功耗较高。为了能够兼顾开机时长和待机功耗,本实施例中,实现智能电视根据待机时长自动设置开机模式。具体地,当智能电视每次使用时,将智能电视的使用信息进行记录,生成智能电视的历史使用记录。其中,智能电视的历史使用记录包括智能电视每一次关机的关机时间点、智能电视每一次在关机时间点关机后的待机时长等信息。在智能电视运行中,当用户执行关机操作触发关机指令,智能电视在接收到该关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点该智能电视关机后的平均待机时长。该预设周期可根据实际情况进行灵活设置,比如为一周或一个月,用户也可在不同的情况下更改该预设周期。将统计的平均待机时长作为智能电视此次关机后的待机时长。
例如,当用户在工作日晚上22点执行关机操作,智能电视接收到关机指令时,就根据智能电视的历史使用记录,统计在预设周期内的该时间点(晚上22点)该智能电视关机后的平均待机时长,比如统计用户在一周内的每天晚上22点,将智能电视关机到再次重新开启该智能电视之间的待机时长,然后根据一周之内智能电视在22点关机后的每天待机时间计算出在22点关机后的平均待机时长。
步骤S20,将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
由于待机时长越短,待机功耗就越低,此时,采用快速开机模式就能在功耗较低的情况下实现快速开机,也即待机时长越短越适合快速开机模式;待机时长越长,快速开机模式对应的待机功耗就越高于正常开机模式对应的待机功耗,此时,待机时长越长越适合正常开机模式。为了能够兼顾待机功耗和开机时长,在本实施例中,预先设置有一预设阈值。当智能电视统计出在预设周期内的相同时间点该智能电视关机后的平均待机时长后,将该平均待机时长与预设阈值进行比较,比较该平均待机时长与预设阈值的大小。
然后,根据比较的结果,设置智能电视当前的开机模式。具体地,如图2所示,所述步骤S20包括:
步骤S21,在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
步骤S22,在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
当智能电视统计的平均待机时长大于预设阈值时,也即说明智能电视的待机时长较长,此时,智能电视更合适正常开机模式,因此,设置智能电视的开机模式为正常开机模式,并将该设置进行保存。在智能电视待机时,由于智能电视的开机模式设置成了正常开机模式,而正常开机模式对应的待机功耗较低,因此,相比于采用快速开机模式,降低了智能电视的功耗。
当智能电视统计的平均待机时长小于或等于预设阈值时,也即说明智能电视的待机时长较短,此时,智能电视更合适快速开机模式,因此,设置智能电视的开机模式为快速开机模式,并将该设置进行保存。在智能电视待机时,由于智能电视的待机时长较短,快速开机模式对应的待机功耗与正常开机模式对应的待机功耗是差不多的,而采用快速开机模式,还降低了智能电视的开机时间。
本实施例提出的方案,在接收到关机指令时,首先根据智能电视的历史使用记录,统计在预设周期内的相同时间点智能电视关机后的平均待机时长,然后将该平均待机时长与预设阈值进行比较,根据比较结果设置智能电视的开机模式为正常开机模式或快速开机模式,从而实现了智能电视自动设置开机模式,避免了用户的人工设置操作,因此,提高了设置开机模式的效率。
进一步地,基于第一实施例提出本发明智能电视设置方法第二实施例,在本实施例中,为了使预设阈值的具体值更加精确,根据智能电视正常开机模式和快速开机模式分别对应的开机时间、待机功率以及开机功率等参数来计算出预设阈值。具体地,计算公式如下:
T=P_on(T1-T2)/(P2_off-P1_off);
其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
智能电视在出厂时,会将开机功率P_on、正常开机模式对应的第一待机功率P1_off、快速开机模式对应的第二待机功率P2_off等智能电视的相关信息保存在智能电视当中。并且,在本实施例中,在智能电视每次开机时,都将智能电视在正常开机模式下开机所需要的时间T1或者在快速开机模式下开机所需要的时间T2进行记录保存。智能电视在接收到关机指令时,智能电视获取其在正常开机模式下开机所需要的时间T1、快速开机模式下开机所需要的时间T2、正常开机模式下的待机功率P1_off、快速开机模式下的待机功率P2_off以及智能电视的开机功率P_on。
由于智能电视的功耗包括开机功耗和待机功耗两方面,根据获取的正常开机模式下开机所需要的时间T1、快速开机模式下开机所需要的时间T2、正常开机模式下的待机功率P1_off、快速开机模式下的待机功率P2_off以及智能电视的开机功率P_on,假设智能电视在正常开机模式下对应的待机时长和在快速开机模式对应的待机时长均为预设阈值T时,智能电视计算出在正常开机模式下智能电视的功耗为W1=P_on*T1+P1_off*T,计算出在快速开机模式下智能电视的功耗为W2=P_on*T2+P2_off*T。
若智能电视在正常开机模式下对应的功耗与在快速开机模式对应的功耗相等,也即W1=W2,也就是说P_on*T1+P1_off*T=P_on*T2+P2_off*T,则可计算出预设阈值T=P_on(T1-T2)/(P2_off-P1_off)。
当智能电视统计的平均待机时长刚好为预设阈值T时,则智能电视在正常开机模式下对应的功耗与在快速开机模式下对应的功耗相等,此时,可优选设置智能电视的开机模式为快速开机模式。当智能电视统计的平均待机时长小于预设阈值T时,则智能电视在正常开机模式下对应的功耗W1大于智能电视在快速开机模式下对应的功耗W2,此时,就设置智能电视的开机模式为快速开机模式。当智能电视统计的平均待机时长大于预设阈值T时,则智能电视在正常开机模式下对应的功耗W1小于智能电视在快速开机模式下对应的功耗W2,此时,就设置智能电视的开机模式为正常开机模式。
例如,若获取智能电视的开机功率P_on为100瓦,正常开机模式下的待机功率P1_off为0.4瓦,快速开机模式下的待机功率P2_off为0.6瓦,正常开机模式下开机所需要的时间T1为24秒,快速开机模式下开机所需要的时间T2为8秒,则根据上述公式可计算出预设阈值T为T=P_on(T1-T2)/(P2_off-P1_off)=100*(24/3600-8/3600)/(0.6-0.4)=2.5小时。则当智能电视统计的平均待机时长小于2.5小时的时候,设置智能电视的开机模式为快速开机模式;当智能电视统计的平均待机时长大于2.5小时的时候,设置智能电视的开机模式为正常开机模式。
进一步地,由于用户的操作系统可能会安装一些用户特定的软件、数据等,导致智能电视的开机时间不统一,也即不论是正常开机模式下开机所需要的时间T1,还是快速开机模式下开机所需要的时间T2,在每次开机时都会不一致,因此,为了确保计算的预设阈值T的准确性,不用智能电视在正常开机模式下进行一次开机所需要的时间T1或是在快速开机模式下进行一次开机所需要的时间T2作为计算的参考值,而是首先获取智能电视在正常开机模式对应的多个开机时间,以及在快速开机模式对应的多个开机时间,然后,计算获取的在正常开机模式对应的多个开机时间的第一平均值,将第一平均值作为智能电视在正常开机模式下开机所需要的时间T1,并计算获取的在快速开机模式对应的多个开机时间的第二平均值,将第二平均值作为智能电视在快速开机模式下开机所需要的时间T2。再根据计算出的T1和T2计算获得预设阈值T。
进一步地,本实施例中,智能电视在每次开机和关机时,将相应的开机时间点、关机时间点等信息进行记录。在接收到关机指令时,智能电视根据每次运行对应的关机时间点和下一次运行对应的开机时间点,计算两者之差,该差值即为智能电视的一个实际待机时长,依次计算出智能电视在一段期间内的多个实际待机时长。例如,若用户当前执行关机操作的时间为周一晚,则智能电视计算获取之前若干m个星期的周一晚对应的实际待机时长,或者计算获取最近若干k天晚上对应的实际待机时长,或者计算获取之前若干m个星期的周一晚对应的实际待机时长以及最近若干k天晚上对应的实际待机时长。比如,获取到的实际待机时长为T_last1、T_last2、T_last3、……T_lastn。然后根据获取的这多个实际待机时长,采用加权算法预算智能电视当前关机对应的待机时长T_next,比如若实际待机时长T_last1、T_last2、T_last3、……T_lastn对应的权重比值分别为Q1、Q2、Q3、……Qn,其中,Q1+Q2+Q3+……+Qn=1。则采用加权算法,计算出智能电视当前关机对应的待机时长T_next=T_last1*Q1+T_last2*Q2+……+T_lastn*Qn。可选地,越是接近当前时间的实际待机时长对应的权重比值越高。
当计算出智能电视当前关机对应的待机时长T_next后,再将该待机时长T_next与预设阈值T进行比较,当待机时长T_next大于预设阈值T时,则设置智能电视的开机模式为正常开机模式;当待机时长T_next小于预设阈值T时,则设置智能电视的开机模式为快速开机模式,并保存设置,根据设置的开机模式执行相关处理操作。
本实施例提出的方案,通过计算公式T=P_on(T1-T2)/(P2_off-P1_off)计算出预设阈值T,其中,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率,提高了预设阈值T设置的精确性,从而更进一步提高了智能电视设置开机模式的效率。
本发明进一步提供一种智能电视设置装置。
参照图3,图3为本发明智能电视设置装置第一实施例的功能模块示意图。
需要强调的是,对本领域的技术人员来说,图3所示功能模块图仅仅是一个较佳实施例的示例图,本领域的技术人员围绕图3所示的智能电视设置装置的功能模块,可轻易进行新的功能模块的补充;各功能模块的名称是自定义名称,仅用于辅助理解该智能电视设置装置的各个程序功能块,不用于限定本发明的技术方案,本发明技术方案的核心是,各自定义名称的功能模块所要达成的功能。
在本实施例中,所述智能电视设置装置包括:
计算模块10,用于在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;
现今,智能电视设置的开机模式除了有正常开机模式以外,还有快速开机模式,快速开机模式支持智能电视快速开机的功能,目前,快速开机模式主要是以STR(Suspend to RAM,内存待机模式)为主。正常开机模式和快速开机模式分别有各自的优缺点,例如,正常开机模式对应的开机时间较长,但在待机时功耗较低;而快速开机模式对应的开机时间比正常开机模式对应的开机时间要节省20s以上,但由于待机时还需要保持RAM(random access memory,随机存取存储器)的运行,因此待机的功耗较高。为了能够兼顾开机时长和待机功耗,本实施例中,实现智能电视根据待机时长自动设置开机模式。具体地,当智能电视每次使用时,将智能电视的使用信息进行记录,生成智能电视的历史使用记录。其中,智能电视的历史使用记录包括智能电视每一次关机的关机时间点、智能电视每一次在关机时间点关机后的待机时长等信息。在智能电视运行中,当用户执行关机操作触发关机指令,智能电视在接收到该关机指令时,计算模块10根据智能电视的历史使用记录,统计在预设周期内的相同时间点该智能电视关机后的平均待机时长。该预设周期可根据实际情况进行灵活设置,比如为一周或一个月,用户也可在不同的情况下更改该预设周期。将统计的平均待机时长作为智能电视此次关机后的待机时长。
例如,当用户在工作日晚上22点执行关机操作,智能电视接收到关机指令时,计算模块10就根据智能电视的历史使用记录,统计在预设周期内的该时间点(晚上22点)该智能电视关机后的平均待机时长,比如统计用户在一周内的每天晚上22点,将智能电视关机到再次重新开启该智能电视之间的待机时长,然后根据一周之内智能电视在22点关机后的每天待机时间计算出在22点关机后的平均待机时长。
处理模块20,用于将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
由于待机时长越短,待机功耗就越低,此时,采用快速开机模式就能在功耗较低的情况下实现快速开机,也即待机时长越短越适合快速开机模式;待机时长越长,快速开机模式对应的待机功耗就越高于正常开机模式对应的待机功耗,此时,待机时长越长越适合正常开机模式。为了能够兼顾待机功耗和开机时长,在本实施例中,预先设置有一预设阈值。当计算模块10统计出在预设周期内的相同时间点该智能电视关机后的平均待机时长后,处理模块20将该平均待机时长与预设阈值进行比较,比较该平均待机时长与预设阈值的大小。
然后,处理模块20根据比较结果,设置智能电视当前的开机模式。具体地,所述处理模块20用于:
在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
当计算模块10统计的平均待机时长大于预设阈值时,也即说明智能电视的待机时长较长,此时,智能电视更合适正常开机模式,因此,处理模块20设置智能电视的开机模式为正常开机模式,并将该设置进行保存。在智能电视待机时,由于智能电视的开机模式设置成了正常开机模式,而正常开机模式对应的待机功耗较低,因此,相比于采用快速开机模式,降低了智能电视的功耗。
当计算模块10统计的平均待机时长小于或等于预设阈值时,也即说明智能电视的待机时长较短,此时,智能电视更合适快速开机模式,因此,处理模块20设置智能电视的开机模式为快速开机模式,并将该设置进行保存。在智能电视待机时,由于智能电视的待机时长较短,快速开机模式对应的待机功耗与正常开机模式对应的待机功耗是差不多的,而采用快速开机模式,还降低了智能电视的开机时间。
本实施例提出的方案,在接收到关机指令时,计算模块10根据智能电视的历史使用记录,统计在预设周期内的相同时间点智能电视关机后的平均待机时长,然后处理模块20将该平均待机时长与预设阈值进行比较,根据比较结果设置智能电视的开机模式为正常开机模式或快速开机模式,从而实现了智能电视自动设置开机模式,避免了用户的人工设置操作,因此,提高了设置开机模式的效率。
进一步地,基于第一实施例提出本发明智能电视设置装置第二实施例,在本实施例中,为了使预设阈值的具体值更加精确,计算模块10根据智能电视正常开机模式和快速开机模式分别对应的开机时间、待机功率以及开机功率等参数来计算出预设阈值。具体地,计算公式如下:
T=P_on(T1-T2)/(P2_off-P1_off);
其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
智能电视在出厂时,会将开机功率P_on、正常开机模式对应的第一待机功率P1_off、快速开机模式对应的第二待机功率P2_off等智能电视的相关信息保存在智能电视当中。并且,在本实施例中,在智能电视每次开机时,都将智能电视在正常开机模式下开机所需要的时间T1或者在快速开机模式下开机所需要的时间T2进行记录保存。智能电视在接收到关机指令时,计算模块10首先获取其在正常开机模式下开机所需要的时间T1、快速开机模式下开机所需要的时间T2、正常开机模式下的待机功率P1_off、快速开机模式下的待机功率P2_off以及智能电视的开机功率P_on。
由于智能电视的功耗包括开机功耗和待机功耗两方面,根据获取的正常开机模式下开机所需要的时间T1、快速开机模式下开机所需要的时间T2、正常开机模式下的待机功率P1_off、快速开机模式下的待机功率P2_off以及智能电视的开机功率P_on,假设智能电视在正常开机模式下对应的待机时长和在快速开机模式对应的待机时长均为预设阈值T时,计算模块10计算出在正常开机模式下智能电视的功耗为W1=P_on*T1+P1_off*T,计算出在快速开机模式下智能电视的功耗为W2=P_on*T2+P2_off*T。
若智能电视在正常开机模式下对应的功耗与在快速开机模式对应的功耗相等,也即W1=W2,也就是说P_on*T1+P1_off*T=P_on*T2+P2_off*T,则可计算出预设阈值T=P_on(T1-T2)/(P2_off-P1_off)。
当计算模块10统计的平均待机时长刚好为预设阈值T时,则智能电视在正常开机模式下对应的功耗与在快速开机模式下对应的功耗相等,此时,可优选设置智能电视的开机模式为快速开机模式。当计算模块10统计的平均待机时长小于预设阈值T时,则智能电视在正常开机模式下对应的功耗W1大于智能电视在快速开机模式下对应的功耗W2,此时,处理模块20设置智能电视的开机模式为快速开机模式。当计算模块10统计的平均待机时长大于预设阈值T时,则智能电视在正常开机模式下对应的功耗W1小于智能电视在快速开机模式下对应的功耗W2,此时,处理模块20设置智能电视的开机模式为正常开机模式。
例如,若获取智能电视的开机功率P_on为100瓦,正常开机模式下的待机功率P1_off为0.4瓦,快速开机模式下的待机功率P2_off为0.6瓦,正常开机模式下开机所需要的时间T1为24秒,快速开机模式下开机所需要的时间T2为8秒,则计算模块10根据上述公式可计算出预设阈值T为T=P_on(T1-T2)/(P2_off-P1_off)=100*(24/3600-8/3600)/(0.6-0.4)=2.5小时。则当计算模块10统计的平均待机时长小于2.5小时的时候,处理模块20设置智能电视的开机模式为快速开机模式;当计算模块10统计的平均待机时长大于2.5小时的时候,处理模块20设置智能电视的开机模式为正常开机模式。
进一步地,由于用户的操作系统可能会安装一些用户特定的软件、数据等,导致智能电视的开机时间不统一,也即不论是正常开机模式下开机所需要的时间T1,还是快速开机模式下开机所需要的时间T2,在每次开机时都会不一致,因此,为了确保计算的预设阈值T的准确性,不用智能电视在正常开机模式下进行一次开机所需要的时间T1或是在快速开机模式下进行一次开机所需要的时间T2作为计算的参考值,而是首先获取智能电视在正常开机模式对应的多个开机时间,以及在快速开机模式对应的多个开机时间,然后,计算模块10计算获取的在正常开机模式对应的多个开机时间的第一平均值,将第一平均值作为智能电视在正常开机模式下开机所需要的时间T1,并计算获取的在快速开机模式对应的多个开机时间的第二平均值,将第二平均值作为智能电视在快速开机模式下开机所需要的时间T2。计算模块10再根据计算出的T1和T2计算获得预设阈值T。
进一步地,本实施例中,智能电视在每次开机和关机时,将相应的开机时间点、关机时间点等信息进行记录。在接收到关机指令时,计算模块10根据智能电视每次运行对应的关机时间点和下一次运行对应的开机时间点,计算两者之差,该差值即为智能电视的一个实际待机时长,依次计算出智能电视在一段期间内的多个实际待机时长。例如,若用户当前执行关机操作的时间为周一晚,则计算模块10计算获取之前若干m个星期的周一晚对应的实际待机时长,或者计算获取最近若干k天晚上对应的实际待机时长,或者计算获取之前若干m个星期的周一晚对应的实际待机时长以及最近若干k天晚上对应的实际待机时长,具体形式在此不作限制。比如,计算模块10计算获取到的实际待机时长为T_last1、T_last2、T_last3、……T_lastn。然后计算模块10根据获取的这多个实际待机时长,采用加权算法预算智能电视当前关机对应的待机时长T_next,比如若实际待机时长T_last1、T_last2、T_last3、……T_lastn对应的权重比值分别为Q1、Q2、Q3、……Qn,其中,Q1+Q2+Q3+……+Qn=1。则采用加权算法,计算出智能电视当前关机对应的待机时长T_next=T_last1*Q1+T_last2*Q2+……+T_lastn*Qn。可选地,越是接近当前时间的实际待机时长对应的权重比值越高。
当计算模块10计算出智能电视当前关机对应的待机时长T_next后,处理模块20再将该待机时长T_next与预设阈值T进行比较,当待机时长T_next大于预设阈值T时,处理模块20设置智能电视的开机模式为正常开机模式;当待机时长T_next小于预设阈值T时,处理模块20设置智能电视的开机模式为快速开机模式。并且,处理模块20保存设置,根据设置的开机模式执行相关处理操作。
本实施例提出的方案,计算模块10通过计算公式T=P_on(T1-T2)/(P2_off-P1_off)计算出预设阈值T,其中,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率,提高了预设阈值T设置的精确性,从而更进一步提高了智能电视设置开机模式的效率。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其它变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其它要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得智能电视执行本发明各个实施例所述的方法。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (19)

  1. 一种智能电视设置方法,其特征在于,所述智能电视设置方法包括以下步骤:
    在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;及
    将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式,所述智能电视的历史使用记录包括所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长;
    所述根据比较结果,设置所述智能电视的开机模式的步骤包括:
    在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
    在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
  2. 如权利要求1所述的智能电视设置方法,其特征在于,所述预设周期包括一周或一月。
  3. 如权利要求1所述的智能电视设置方法,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  4. 一种智能电视设置方法,其特征在于,所述智能电视设置方法包括以下步骤:
    在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;及
    将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
  5. 如权利要求4所述的智能电视设置方法,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  6. 如权利要求4所述的智能电视设置方法,其特征在于,所述智能电视的历史使用记录包括:所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长。
  7. 如权利要求6所述的智能电视设置方法,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  8. 如权利要求4所述的智能电视设置方法,其特征在于,所述根据比较结果,设置所述智能电视的开机模式的步骤包括:
    在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
    在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
  9. 如权利要求8所述的智能电视设置方法,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  10. 如权利要求4所述的智能电视设置方法,其特征在于,所述预设周期包括一周或一月。
  11. 如权利要求10所述的智能电视设置方法,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  12. 一种智能电视设置装置,其特征在于,所述智能电视设置装置包括:
    计算模块,用于在接收到关机指令时,根据智能电视的历史使用记录,统计在预设周期内的相同时间点所述智能电视关机后的平均待机时长;
    处理模块,用于将所述平均待机时长与预设阈值进行比较,并根据比较结果,设置所述智能电视的开机模式,其中,所述开机模式包括正常开机模式和快速开机模式。
  13. 如权利要求12所述的智能电视设置装置,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  14. 如权利要求12所述的智能电视设置装置,其特征在于,所述智能电视的历史使用记录包括:所述智能电视每一次关机的关机时间点、每一次在所述关机时间点关机后的待机时长。
  15. 如权利要求14所述的智能电视设置装置,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  16. 如权利要求12所述的智能电视设置装置,其特征在于,所述处理模块用于:
    在所述平均待机时长大于所述预设阈值时,设置所述智能电视的开机模式为正常开机模式;
    在所述平均待机时长小于或等于所述预设阈值时,设置所述智能电视的开机模式为快速开机模式。
  17. 如权利要求16所述的智能电视设置装置,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
  18. 如权利要求12所述的智能电视设置装置,其特征在于,所述预设周期包括一周或一月。
  19. 如权利要求18所述的智能电视设置装置,其特征在于,所述预设阈值的计算公式为:
    T=P_on(T1-T2)/(P2_off-P1_off);
    其中,T是预设阈值,T1是正常开机模式下开机所需要的时间,T2是快速开机模式下开机所需要的时间,P_on是开机功率,P1_off是正常开机模式下的待机功率,P2_off是快速开机模式下的待机功率。
PCT/CN2016/097841 2016-07-12 2016-09-02 智能电视设置方法及装置 Ceased WO2018010277A1 (zh)

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106604131A (zh) * 2016-12-08 2017-04-26 微鲸科技有限公司 一种基于用户待机习惯的智能待机方法
CN110012210B (zh) * 2018-01-05 2020-09-22 Oppo广东移动通信有限公司 拍照方法、装置、存储介质及电子设备
CN112617665B (zh) * 2020-12-14 2021-09-28 珠海格力电器股份有限公司 吸尘设备控制方法、装置、计算机设备和存储介质

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6470290B1 (en) * 1999-08-31 2002-10-22 Lg Electronics, Inc. Device having an improved apparatus and method for setting power management mode
CN101188719A (zh) * 2007-12-20 2008-05-28 康佳集团股份有限公司 一种电视机智能关机的装置和方法
CN101222735A (zh) * 2008-01-23 2008-07-16 深圳华为通信技术有限公司 测试移动终端待机时间的方法、装置
CN101493776A (zh) * 2009-02-18 2009-07-29 宇龙计算机通信科技(深圳)有限公司 一种移动终端及其开机方法和系统
US20090327772A1 (en) * 2008-06-26 2009-12-31 Sdc Micro Inc. Power management system of terminal
CN103150247A (zh) * 2013-03-15 2013-06-12 腾讯科技(深圳)有限公司 一种关机耗时的获取方法及装置

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20070079732A (ko) * 2006-02-03 2007-08-08 삼성전자주식회사 디스플레이 장치 및 그 제어 방법
CN102339118B (zh) * 2011-09-14 2015-02-18 奇智软件(北京)有限公司 一种终端关闭控制方法及系统
US9026826B2 (en) * 2012-02-29 2015-05-05 Time Warner Cable Enterprises Llc System for reducing energy consumption of a device and a method therefor
CN103327161B (zh) * 2012-03-21 2016-06-08 宇龙计算机通信科技(深圳)有限公司 终端和快速开机方法
CN103425506B (zh) * 2013-05-20 2016-12-07 华为技术有限公司 关机方法及开机方法及通信终端
CN103648000B (zh) * 2013-11-25 2017-03-15 小米科技有限责任公司 控制电视的方法、装置和系统

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6470290B1 (en) * 1999-08-31 2002-10-22 Lg Electronics, Inc. Device having an improved apparatus and method for setting power management mode
CN101188719A (zh) * 2007-12-20 2008-05-28 康佳集团股份有限公司 一种电视机智能关机的装置和方法
CN101222735A (zh) * 2008-01-23 2008-07-16 深圳华为通信技术有限公司 测试移动终端待机时间的方法、装置
US20090327772A1 (en) * 2008-06-26 2009-12-31 Sdc Micro Inc. Power management system of terminal
CN101493776A (zh) * 2009-02-18 2009-07-29 宇龙计算机通信科技(深圳)有限公司 一种移动终端及其开机方法和系统
CN103150247A (zh) * 2013-03-15 2013-06-12 腾讯科技(深圳)有限公司 一种关机耗时的获取方法及装置

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