WO2018209827A1 - 省电控制方法、装置和电子设备 - Google Patents

省电控制方法、装置和电子设备 Download PDF

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Publication number
WO2018209827A1
WO2018209827A1 PCT/CN2017/096900 CN2017096900W WO2018209827A1 WO 2018209827 A1 WO2018209827 A1 WO 2018209827A1 CN 2017096900 W CN2017096900 W CN 2017096900W WO 2018209827 A1 WO2018209827 A1 WO 2018209827A1
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WIPO (PCT)
Prior art keywords
heart rate
monitoring target
saving control
state
sleep
Prior art date
Application number
PCT/CN2017/096900
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English (en)
French (fr)
Inventor
陈杰
邵华
Original Assignee
深圳市沃特沃德股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 深圳市沃特沃德股份有限公司 filed Critical 深圳市沃特沃德股份有限公司
Publication of WO2018209827A1 publication Critical patent/WO2018209827A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/02438Detecting, measuring or recording pulse rate or heart rate with portable devices, e.g. worn by the patient

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to a power saving control method, apparatus, and electronic device.
  • the pet smart device keeps a small machine for 24 hours all the time, and is always in working state, resulting in short standby time and poor endurance of the pet smart device.
  • a primary object of the present invention is to provide a power saving control method for extending the standby time of a pet smart device and improving endurance.
  • the present invention provides a power saving control method, and the method includes the following steps:
  • the step of determining whether the shutdown condition is met includes:
  • the step of determining whether the monitoring target enters a sleep state comprises:
  • the step of determining whether the monitoring target enters a sleep state comprises: [0015] determining whether the monitoring target continues to remain stationary for a first preset length;
  • the monitoring target is determined to enter a sleep state.
  • the heart rate state includes a heart rate value
  • the step of determining whether the heart rate state meets a sleep feature comprises:
  • the heart rate value is less than or equal to the threshold value ⁇ , it is determined that the heart rate state conforms to a sleep feature.
  • the heart rate state includes a heart rate value and a heartbeat tempo
  • the step of determining whether the heart rate state meets a sleep feature comprises:
  • the heart rate state is determined to be in accordance with the sleep feature.
  • the step of detecting a heart rate state of the monitoring target includes:
  • the step of determining whether the shutdown condition is met includes:
  • the method further includes: when the second inter-turn point is reached, the machine is automatically down.
  • the step of automatically shutting down includes: immediately shutting down or delaying the third preset length and then shutting down.
  • Embodiments of the present invention also provide a power saving control device, where the device includes:
  • the analysis and determination module is configured to determine whether the shutdown condition is met when the first inter-turn point is reached;
  • the automatic shutdown module is configured to automatically shut down when the shutdown condition is met.
  • the analysis determining module is configured to: determine whether the monitoring target enters a sleep state; and when the monitoring target enters a sleep state, determine that the shutdown condition is met.
  • the analysis and determination module is configured to: determine whether the monitoring target continues to remain in a static state for a first preset length; if yes, determine that the monitoring target enters a sleep state.
  • the analyzing and determining module includes: [0038] the first determining unit is configured to determine whether the monitoring target continues to remain in a static state for a first preset length; [0039] the heart rate detecting unit is configured to keep the static target state until the monitoring target continues to be at a first preset state Long, detecting the heart rate state of the monitoring target;
  • the second determining unit is configured to determine whether the heart rate state meets a sleep feature; and when the heart rate state meets a sleep feature, determining that the monitoring target enters a sleep state.
  • the heart rate state includes a heart rate value
  • the second determining unit is configured to:
  • the heart rate state includes a heart rate value and a heartbeat tempo
  • the second determining unit is configured to: [0044] determine whether the heart rate value is less than or equal to a threshold, and whether the heartbeat tempo is gentle; The heart rate value is less than or equal to the threshold value and the heartbeat rhythm is gradually ⁇ , and the heart rate state is determined to be consistent with the sleep characteristic
  • the heart rate detection module is configured to: continuously detect a heart rate state second preset length of the monitoring target.
  • the analysis determining module is configured to: determine whether the monitoring target is in a predetermined environment; if yes, determine that the shutdown condition is met.
  • the device further includes an automatic downtime module, and the automatic downtime module is configured to: automatically close when the second time point is reached.
  • the automatic shutdown module is configured to: immediately shut down or delay the third preset length after the shutdown condition is met, and then shut down.
  • Embodiments of the present invention further provide an electronic device, the electronic device including a memory, a processor, and at least one application stored in the memory and configured to be executed by the processor, the application The program is configured to perform the aforementioned power saving control method.
  • a power saving control method provided by an embodiment of the present invention automatically sets a first trip point and a shutdown condition, and automatically shuts down when the first round point is reached and the shutdown condition is met, thereby avoiding pet intelligence. Unnecessary power consumption of the device saves power, prolongs standby time, and enhances battery life. Further Ground, when the second point is reached, the user is automatically down, no need for manual operation by the user, which improves the level of intelligence and improves the user experience.
  • FIG. 1 is a flow chart of a first embodiment of a power saving control method of the present invention
  • FIG. 2 is a specific flowchart of a step of determining whether a monitoring target enters a sleep state in an embodiment of the present invention
  • FIG. 3 is a flow chart of a second embodiment of the power saving control method of the present invention.
  • FIG. 4 is a schematic block diagram of a first embodiment of a power saving control device according to the present invention.
  • FIG. 5 is a block diagram of the analysis and determination module of FIG. 4;
  • FIG. 6 is a block diagram showing a second embodiment of the power saving control device of the present invention.
  • terminal and “smart device” as used herein include both a wireless signal receiver device, a device having only a wireless signal receiver without a transmitting capability, and a receiving and receiving device.
  • Such a device may comprise: a cellular or other communication device having a single line display or a multi-line display or a cellular or other communication device without a multi-line display; PCS (Persona 1 Communications Service), which may combine voice, Data processing, fax and/or data communication capabilities; PDA (Personal Digital Assistant), which can include radio frequency receivers, pagers, Internet/Intranet access, web browsers, notepads, calendars and/or GPS ( Global Positioning System, Receiver; Conventional laptop and/or palmtop computer or other device having a conventional laptop and/or palmtop computer or other device that includes and/or includes a radio frequency receiver.
  • PCS Personala 1 Communications Service
  • PDA Personal Digital Assistant
  • terminal may be portable, transportable, installed in a vehicle (aviation, sea and/or land), or adapted and/or configured to operate locally, and/or Run in any other location on the Earth and/or space in a distributed fashion.
  • the "terminal” and “smart device” used herein may also be a communication terminal, an internet terminal, a music/video playback terminal, and may be, for example, a PDA, a MID (Mobile Internet Device), and/or have a music/video playback.
  • Functional mobile phones can also be smart TVs, set-top boxes and other devices.
  • the power saving control method and device of the embodiments of the present invention can be applied to various portable electronic devices, including pet smart devices such as pet collars, wearable devices such as smart watches and smart bracelets, mobile terminals such as mobile phones and tablets, and many more.
  • the corresponding monitoring target can be a target that needs to be monitored, such as pets, children, and elderly people.
  • the embodiment of the present invention is applied to a pet smart device as an example for detailed description.
  • FIG. 1 a first embodiment of a power saving control method according to the present invention is proposed, and the method includes the following steps:
  • the first inter-turn point is a start point of a specific inter-segment that is preset by the user and does not need to monitor the monitoring target. For example, if the user sets 00:00-06:00 to monitor the monitoring target, the first time is 00:00.
  • the user can also set other inter-segment segments as specific inter-segment segments as needed to complete the setting of the first inter-turn point.
  • the user can set a specific interval to set a first point, or set at least two specific sections to set at least two first points. Alternatively, the user may also directly input one or at least two inter-points as one or at least two first inter-points.
  • step S11 when the first inter-turn point is reached, the pet smart device determines whether the shutdown condition is met.
  • step S12 When the shutdown condition is met, the process goes to step S12 to automatically shut down; when the shutdown condition is not met, the machine is not turned off, and it is continuously determined whether the shutdown condition is satisfied.
  • the shutdown condition can be set as needed, such as a sleep state and/or a predetermined environment, etc., can be set as a shutdown condition.
  • the pet smart device determines whether the monitoring target enters a sleep state after determining whether the shutdown condition is met, and determines that the shutdown condition is met when the monitoring target enters a sleep state.
  • the pet smart device determines whether the monitoring target continues to remain in a static state for a first preset length, and when the stationary state is maintained for a first preset length, determining that the monitoring target enters a sleep state. .
  • the pet smart device can detect whether the monitoring target is moving by using a sensor (such as a vibration sensor, an angular velocity sensor, an acceleration sensor, etc.), and when there is no motion, it is determined that the monitoring target is at a standstill.
  • the pet smart device can also judge whether the monitoring target is moving by directly reading the data of the pedometer. When the data of the pedometer remains unchanged, it is determined that the monitoring target is at a stationary state.
  • the first preset length can be set according to actual needs, and is generally set according to the living habits of the monitoring target, such as being set within a range of 10-20 minutes. For example, when it is detected that the monitoring target continues to remain stationary for 15 minutes, it is determined that the monitoring target enters a sleep state.
  • the specific process of the pet smart device determining whether the monitoring target enters a sleep state is as follows:
  • the pet smart device can pass sensors (such as a shock sensor, an angular velocity sensor, an acceleration sensor) Etc.) Detect if the monitoring target is moving. When there is no motion, determine that the monitoring target is at rest. The pet smart device can also judge whether the monitoring target is moving by directly reading the data of the pedometer. When the data of the pedometer remains unchanged, it is determined that the monitoring target is at a stationary state.
  • sensors such as a shock sensor, an angular velocity sensor, an acceleration sensor
  • the first preset length can be set according to actual needs, and is generally set according to the living habit of the monitoring target, such as being set within a range of 10-20 minutes. For example, when it is detected that the monitoring target continues to remain in a stationary state for 10 minutes, the process proceeds to step S112, where heart rate state detection is performed.
  • step S112. Detect a heart rate state of the monitoring target, and determine whether the heart rate state meets a sleep feature. When the heart rate state meets the sleep characteristics, the process proceeds to step S113; when the heart rate state does not meet the sleep characteristics, the process proceeds to step S.
  • the pet smart device may utilize a heart rate sensor to detect a heart rate state of the monitored target, the heart rate state including a heart rate value and/or a heartbeat tempo.
  • the pet smart device determines whether the heart rate value is less than or equal to the threshold value, and when the heart rate value is less than or equal to the threshold value ⁇ , determining that the heart rate state meets the sleep feature; when the heart rate value is greater than the threshold ⁇ , determining the heart rate state Does not meet sleep characteristics.
  • the threshold value is the maximum heart rate value at which the monitoring target is in the sleep state, and is set according to the physiological characteristics of the monitoring target, and the threshold value can be set as the range value.
  • the pet smart device determines whether the heart rate value is less than or equal to the threshold, and whether the heartbeat rhythm is gentle; when the heart rate value is less than or equal to the threshold and the heartbeat rhythm is gradual, the heart rate state is determined to be consistent Sleep characteristics; when the heart rate value is greater than the threshold and/or the heartbeat rhythm is not gradual, it is determined that the heart rate state does not conform to the sleep feature.
  • the heartbeat rhythm is gentle.
  • the heartbeat rhythm is the interval between two adjacent heartbeats. The interval between heartbeats approaches the same time, indicating that the rhythm of the heartbeat is gentle and the heart rate is stable. Combining the heart rate value and the heartbeat rhythm to judge whether the monitoring target is sleeping or not can make the judgment result more accurate.
  • the pet smart device can continuously detect the heart rate state of the monitoring target for a second preset length, and determine whether the heart rate state of the monitoring target consistently meets the sleep feature within the second preset length, thereby improving the accuracy of the determination. Sex.
  • the second preset length can be set according to actual needs, such as setting within a range of 5-10 minutes. For example, the heart rate state of the monitoring target is continuously detected for 5 minutes, and it is judged whether the heart rate state of the monitoring target always conforms to the sleep feature within the 5 minutes. [0083] S113. Determine that the monitoring target enters a sleep state.
  • the pet smart device may determine whether the monitoring target is in a predetermined environment after determining whether the shutdown condition is met, and if it is in a predetermined environment, determine that the shutdown condition is met.
  • the pet smart device can detect the current environment through the camera, Global Positioning System (GPS) and/or sensor to determine whether the current environment is the intended environment.
  • GPS Global Positioning System
  • the environment includes a geographical environment, a lighting environment, and/or a weather environment, and the like, a predetermined geographical environment such as a home, a resting place (such as a pet's nest, a bedroom, a bed, etc.), and the like, and the predetermined lighting environment, such as low light brightness.
  • a threshold environment such as after turning off the lights at night
  • the predetermined weather environment such as the environment where the temperature reaches the threshold, sunny, rainy, cloudy, and so on.
  • step S12 when the shutdown condition is met, the pet smart device may immediately shut down, or may delay the third preset length and then shut down.
  • the third preset length can be set according to actual needs, such as being set within a range of 30 seconds to 2 minutes. At the same time, it is possible to continue to detect whether the shutdown condition is satisfied within the delay of the third preset length, and then shut down after the third preset length after continuing to meet the shutdown condition, further ensuring the accuracy of the judgment. For example, when the shutdown condition is met, the pet smart device automatically shuts down after 1 minute.
  • the method further includes:
  • the second inter-turn point is a pre-set point of a specific inter-segment that is preset by the user and does not require monitoring of the monitoring target. For example, if the user sets 00:00-06:00 to monitor the monitoring target, the second time is 06:00.
  • the user can also set other sections to a specific section as needed to complete the second The setting of the day.
  • the user can set a specific interval to set a second point, or set at least two specific sections to set at least two second points.
  • the user may also directly input one or at least two inter-points as one or at least two second inter-points.
  • the pet smart device determines whether the shutdown condition is met, for example, after detecting that the monitoring target enters the sleep state, it determines that the shutdown condition is satisfied, and automatically shuts down.
  • the pet smart device automatically shuts down. Through automatic shutdown and downtime, it not only ensures the normal operation of the pet smart device, but also avoids the unnecessary power consumption of the pet smart device, saves the power, prolongs the standby time, and enhances the endurance.
  • the pet smart device may directly determine that the shutdown condition is met after the first point is reached, automatically shut down, and automatically closes when the second time point is reached.
  • the power saving control method of the embodiment of the present invention automatically sets a first trip point and a shutdown condition, and automatically shuts down when the first round point is reached and the shutdown condition is met, thereby avoiding unnecessary pet smart equipment. Power consumption, saving power, extending standby time and enhancing endurance. Further, when the second inter-point is reached, the user is automatically down, and the user is not required to manually down, which improves the level of intelligence and improves the user experience.
  • the apparatus includes an analysis judging module 10 and an auto power off module 20, wherein: the analysis judging module 10 is set to arrive at the first inter-turn point. , to determine whether the shutdown condition is met; the automatic shutdown module 20 is set to automatically shut down when the shutdown condition is met
  • the first inter-turn point is a start point of a specific inter-segment that is preset by the user and does not need to monitor the monitoring target. For example, if the user sets 00:00-06:00 to monitor the monitoring target, the first time is 00:00.
  • the user can also set other inter-segments to a specific interval as needed to complete the setting of the first inter-turn point.
  • the user can set a specific interval to set a first point, or set at least two specific sections to set at least two first points.
  • the user may also directly input one or at least two inter-turn points as one or at least two first inter-points.
  • the analysis judging module 10 judges whether the shutdown condition is satisfied, and when the shutdown condition is satisfied, notifies the auto-shutdown module 20.
  • the shutdown condition can be set as needed, and the sleep state and/or the predetermined environment can be set as the shutdown condition.
  • the analysis determining module 10 determines whether the monitoring target enters a sleep state after determining whether the shutdown condition is met, and determines that the shutdown condition is met when the monitoring target enters a sleep state.
  • the analysis determining module 10 determines whether the monitoring target continues to remain in a stationary state for a first preset length, and when the stationary state is maintained for a first preset length, determining that the monitoring target enters sleep status.
  • the analysis judging module 10 can detect whether the monitoring target is moving by a sensor (such as a vibration sensor, an angular velocity sensor, an acceleration sensor, etc.), and when there is no motion, it is determined that the monitoring target is at a stationary state.
  • the analysis and judgment module 10 can also determine whether the monitoring target is moving by directly reading the data of the pedometer. When the data of the pedometer remains unchanged, it is determined that the monitoring target is in a stationary state.
  • the first preset length can be set according to actual needs, and is generally set according to the living habits of the monitoring target, such as being set within a range of 10-20 minutes. For example, when it is detected that the monitoring target continues to remain stationary for 15 minutes, the analysis judgment module 10 determines that the monitoring target enters a sleep state.
  • the analysis judging module 10 includes a first judging unit 11, a heart rate detecting unit 12, and a second judging unit 13, as shown in FIG.
  • the first determining unit 11 is configured to determine whether the monitoring target continues to remain in a stationary state for a first preset length, and notifies the heart rate detecting unit 12 when the stationary state is continuously maintained for a first preset length.
  • the first judging unit 11 may detect whether the monitoring target is moving by a sensor (such as a vibration sensor, an angular velocity sensor, an acceleration sensor, etc.), and determine that the monitoring target is in a stationary state when there is no motion. The first judging unit 11 can also judge whether the monitoring target is moving by directly reading the data of the pedometer, and when the data of the pedometer remains unchanged, it is determined that the monitoring target is in a stationary state.
  • a sensor such as a vibration sensor, an angular velocity sensor, an acceleration sensor, etc.
  • Heart rate detecting unit 12 is set to detect the heart rate state of the monitoring target when the monitoring target continues to remain in a stationary state for a first preset length.
  • the heart rate detecting unit 12 may detect a heart rate state of the monitoring target through a heart rate sensor, the heart rate state including a heart rate value and/or a heartbeat tempo.
  • the second determining unit 13 is configured to determine whether the heart rate state meets the sleep feature; when the heart rate state meets the sleep feature, determining that the monitoring target enters a sleep state; and when the heart rate state does not meet the sleep feature, determining The monitoring target did not go to sleep.
  • the second determining unit 13 determines whether the heart rate value is less than or equal to the threshold value, and when the heart rate value is less than or equal to the threshold value ⁇ , determines that the heart rate state meets the sleep feature, and further determines that the monitoring target enters a sleep state; When the heart rate value is greater than the threshold value, it is determined that the heart rate state does not meet the sleep feature, thereby determining that the monitoring target has not entered the sleep state.
  • the threshold value is the maximum heart rate value at which the monitoring target is in the sleep state, and is set according to the physiological characteristics of the monitoring target, and the threshold value can be set as the range value.
  • the second determining unit 13 determines whether the heart rate value is less than or equal to the threshold, and whether the heartbeat rhythm is gentle; when the heart rate value is less than or equal to the threshold and the heartbeat rhythm is gentle, determining the heart rate The state conforms to the sleep feature, and further determines that the monitoring target enters a sleep state; when the heart rate value is greater than the threshold value and/or the heartbeat rhythm is not gradual, the heart rate state is determined not to conform to the sleep feature, thereby determining that the monitoring target does not enter the sleep state.
  • the heartbeat rhythm is gentle.
  • the heartbeat rhythm is the interval between two adjacent heartbeats. The interval between heartbeats approaches the same time, indicating that the heartbeat rhythm is flat and the heart rate is stable. Combining the heart rate value and the heartbeat rhythm to judge whether the monitoring target is sleeping or not can make the judgment result more accurate.
  • the heart rate detecting unit 12 can continuously detect the heart rate state of the monitoring target for a second preset length, and the second determining unit 13 determines whether the heart rate state of the monitoring target consistently meets the sleep feature within the second preset length. Thereby the accuracy of the judgment can be improved.
  • the second preset length can be set according to actual needs, such as setting within a range of 5-10 minutes.
  • the heart rate detecting unit 12 continuously detects the heart rate state of the monitoring target for 5 minutes, and the second determining unit 13 judges whether or not the heart rate state of the monitoring target always conforms to the sleep feature within the 5 minutes.
  • the analysis and determination module 10 determines whether the monitoring target is in a predetermined environment after determining whether the shutdown condition is met, and determines that the shutdown condition is met if the predetermined condition is met.
  • the analysis and judgment module 10 can detect the current environment through the camera, GPS and/or sensor, and then determine whether the current environment is a predetermined environment.
  • the environment includes a geographical environment, a lighting environment, and/or a weather environment, etc., and the predetermined geographical environment is at home.
  • the auto power off module 20 may immediately shut down, or may delay the third preset length and then shut down.
  • the third preset length can be set according to actual needs, such as being set within a range of 30 seconds to 2 minutes.
  • the analysis and determination module 10 can continue to detect whether the shutdown condition is satisfied within the third preset length of the delay.
  • the automatic shutdown module 20 is turned off after the third preset length, further ensuring the judgment. accuracy. For example, when the shutdown condition is met, the auto-shutdown module 20 automatically shuts down after 1 minute.
  • the device further includes an automatic downtime module 30, which is configured to:
  • the second point is ⁇ , automatic downtime. Therefore, the user is not required to manually down, which improves the level of intelligence and improves the user experience.
  • the second inter-turn point is a termination point of a specific inter-segment that is preset by the user and does not require monitoring of the monitoring target. For example, if the user sets 00:00-06:00 to monitor the monitoring target, the second time point is 06:00.
  • the user can also set other inter-segment segments as specific inter-segment segments as needed to complete the setting of the second inter-turn point.
  • the user can set a specific interval to set a second point, or set at least two specific sections to set at least two second points. Alternatively, the user may also directly enter one or at least two inter-points as one or at least two second inter-points.
  • the analysis judging module 10 judges whether the shutdown condition is satisfied. If it is detected that the monitoring target enters the sleep state, it determines that the shutdown condition is satisfied, and the automatic shutdown module 20 automatically shuts down. When the time arrives at 06:00, the automatic down module 30 automatically shuts down. Through automatic shutdown and shutdown, it not only ensures the normal operation of pet smart devices, but also avoids unnecessary power consumption of pet smart devices, saves power, prolongs standby time, and enhances battery life.
  • the analysis and determination module 10 can directly determine that the shutdown condition is met after reaching the first inter-turn point, and the auto-shutdown module 20 automatically shuts down, and when the second inter-point is reached, the automatic deactivation module 30 is reached. Then automatically down.
  • the power-saving control device of the embodiment of the present invention automatically sets a first trip point and a shutdown condition, and automatically shuts down when the first-time point is reached and the shutdown condition is met, thereby avoiding unnecessary use of the pet smart device. Power consumption, saving power, extending standby time and enhancing endurance. Further, when the second inter-turn point is reached, the user is automatically down, and the user is not required to manually down, which improves the level of intelligence and improves the user.
  • the present invention also provides an electronic device including a memory, a processor, and at least one application stored in the memory and configured to be executed by the processor, the application being configured to use To implement the power saving control method.
  • the power saving control method includes the following steps: when the first inter-turn point is reached, it is determined whether the shutdown condition is met; when the shutdown condition is met, the automatic shutdown is performed.
  • the power-saving control method described in this embodiment is the power-saving control method involved in the foregoing embodiment of the present invention, and details are not described herein again.
  • the present invention includes apparatus related to performing one or more of the operations described herein.
  • These devices may be specially designed and manufactured for the required purposes, or may also include known devices in a general purpose computer.
  • These devices have computer programs stored therein that are selectively activated or reconfigured.
  • Such computer programs may be stored in a device (eg, computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to a bus, including but not limited to any Types of disks (including floppy disks, hard disks, CDs, CD-ROMs, and magneto-optical disks), ROM (Read-Only Memory), RAM (Random Access Memory), EPROM (Erasable Programmable Read-Only)
  • a readable medium includes any medium that is stored or transmitted by a device (e.g., a computer) in a readable form.
  • each block of the block diagrams and/or block diagrams and/or flow diagrams can be implemented by computer program instructions, and/or in the block diagrams and/or block diagrams and/or flow diagrams. The combination of boxes.
  • these computer program instructions can be implemented by a general purpose computer, a professional computer, or a processor of other programmable data processing methods, such that the processor is executed by a computer or other programmable data processing method.
  • the block diagrams and/or block diagrams of the invention and/or the schemes specified in the blocks or blocks of the flow diagram are invented.
  • a power saving control method, apparatus, and electronic device provided by an embodiment of the present invention automatically set a first time and a shutdown condition by setting a first time and a shutdown condition, and automatically shutting down when the first time point is reached and the shutdown condition is met.
  • the unnecessary power consumption of the pet smart device is avoided, the power is saved, the standby time is prolonged, and the endurance capability is enhanced. Further, when the second inter-turn point is reached, the user does not need to manually operate, which improves the level of intelligence, improves the user experience, and has industrial applicability.

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Abstract

一种省电控制方法、装置和电子设备,所述方法包括以下步骤:当到达第一时间点时,判断是否满足关机条件(S11);当满足所述关机条件时,自动关机(S12)。从而,通过预先设置第一时间点和关机条件,当到达第一时间点且满足关机条件时,则自动关机,避免了宠物智能设备不必要的电量消耗,节省了电量,延长了待机时间,增强了续航能力。

Description

省电控制方法、 装置和电子设备
技术领域
[0001] 本发明涉及电子技术领域, 特别是涉及到一种省电控制方法、 装置和电子设备 背景技术
[0002] 随着人们生活水平的提高, 越来越多的人饲养宠物, 同吋饲养宠物也成为现代 人填补寂寞心灵的方式之一, 人们对宠物越来越关爱。 为了监控宠物的身体状 况和运动状态, 人们会给宠物佩戴宠物智能设备, 通过宠物智能设备检测宠物 的各种信息。
[0003] 目前, 宠物智能设备保持全天二十四小吋幵机, 一直处于工作状态, 导致宠物 智能设备的待机吋间短, 续航能力弱。
技术问题
[0004] 本发明的主要目的为提供一种省电控制方法, 旨在延长宠物智能设备的待机吋 间, 提高续航能力。
问题的解决方案
技术解决方案
[0005] 为达以上目的, 本发明提出一种省电控制方法, 所述方法包括以下步骤:
[0006] 当到达第一吋间点吋, 判断是否满足关机条件;
[0007] 当满足所述关机条件吋, 自动关机。
[0008] 可选地, 所述判断是否满足关机条件的步骤包括:
[0009] 判断监控目标是否进入睡眠状态;
[0010] 当所述监控目标进入睡眠状态吋, 判定满足所述关机条件。
[0011] 可选地, 所述判断监控目标是否进入睡眠状态的步骤包括:
[0012] 判断监控目标是否持续保持静止状态达第一预设吋长;
[0013] 若是, 则判定所述监控目标进入睡眠状态。
[0014] 可选地, 所述判断监控目标是否进入睡眠状态的步骤包括: [0015] 判断监控目标是否持续保持静止状态达第一预设吋长;
[0016] 若是, 则检测所述监控目标的心率状态;
[0017] 判断所述心率状态是否符合睡眠特征;
[0018] 当所述心率状态符合睡眠特征吋, 判定所述监控目标进入睡眠状态。
[0019] 可选地, 所述心率状态包括心率值, 所述判断所述心率状态是否符合睡眠特征 的步骤包括:
[0020] 判断所述心率值是否小于或等于阈值;
[0021] 当所述心率值小于或等于阈值吋, 判定所述心率状态符合睡眠特征。
[0022] 可选地, 所述心率状态包括心率值和心跳节奏, 所述判断所述心率状态是否符 合睡眠特征的步骤包括:
[0023] 判断所述心率值是否小于或等于阈值, 以及所述心跳节奏是否平缓;
[0024] 当所述心率值小于或等于阈值且所述心跳节奏平缓吋, 判定所述心率状态符合 睡眠特征。
[0025] 可选地, 所述检测所述监控目标的心率状态的步骤包括:
[0026] 持续检测所述监控目标的心率状态第二预设吋长。
[0027] 可选地, 所述判断是否满足关机条件的步骤包括:
[0028] 判断所述监控目标是否处于预定的环境;
[0029] 若是, 则判定满足所述关机条件。
[0030] 可选地, 所述自动关机的步骤之后还包括: 当到达第二吋间点吋, 自动幵机。
[0031] 可选地, 所述自动关机的步骤包括: 立即关机或延迟第三预设吋长后关机。
[0032] 本发明实施例同吋提出一种省电控制装置, 所述装置包括:
[0033] 分析判断模块, 设置为当到达第一吋间点吋, 判断是否满足关机条件;
[0034] 自动关机模块, 设置为当满足所述关机条件吋, 自动关机。
[0035] 可选地, 所述分析判断模块设置为: 判断监控目标是否进入睡眠状态; 当所述 监控目标进入睡眠状态吋, 判定满足所述关机条件。
[0036] 可选地, 所述分析判断模块设置为: 判断监控目标是否持续保持静止状态达第 一预设吋长; 若是, 则判定所述监控目标进入睡眠状态。
[0037] 可选地, 所述分析判断模块包括: [0038] 第一判断单元, 设置为判断监控目标是否持续保持静止状态达第一预设吋长; [0039] 心率检测单元, 设置为当所述监控目标持续保持静止状态达第一预设吋长吋, 检测所述监控目标的心率状态;
[0040] 第二判断单元, 设置为判断所述心率状态是否符合睡眠特征; 当所述心率状态 符合睡眠特征吋, 判定所述监控目标进入睡眠状态。
[0041] 可选地, 所述心率状态包括心率值, 所述第二判断单元设置为:
[0042] 判断所述心率值是否小于或等于阈值; 当所述心率值小于或等于阈值吋, 判定 所述心率状态符合睡眠特征。
[0043] 可选地, 所述心率状态包括心率值和心跳节奏, 所述第二判断单元设置为: [0044] 判断所述心率值是否小于或等于阈值, 以及所述心跳节奏是否平缓; 当所述心 率值小于或等于阈值且所述心跳节奏平缓吋, 判定所述心率状态符合睡眠特征
[0045] 可选地, 所述心率检测模块设置为: 持续检测所述监控目标的心率状态第二预 设吋长。
[0046] 可选地, 所述分析判断模块设置为: 判断所述监控目标是否处于预定的环境; 若是, 则判定满足所述关机条件。
[0047] 可选地, 所述装置还包括自动幵机模块, 所述自动幵机模块设置为: 当到达第 二吋间点吋, 自动幵机。
[0048] 可选地, 所述自动关机模块设置为: 当满足所述关机条件吋, 立即关机或延迟 第三预设吋长后关机。
[0049] 本发明实施例还提出一种电子设备, 所述电子设备包括存储器、 处理器和至少 一个被存储在所述存储器中并被配置为由所述处理器执行的应用程序, 所述应 用程序被配置为用于执行前述省电控制方法。
发明的有益效果
有益效果
[0050] 本发明实施例所提供的一种省电控制方法, 通过预先设置第一吋间点和关机条 件, 当到达第一吋间点且满足关机条件吋, 则自动关机, 避免了宠物智能设备 不必要的电量消耗, 节省了电量, 延长了待机吋间, 增强了续航能力。 进一步 地, 当到达第二吋间点吋自动幵机, 无需用户手动操作, 提高了智能化水平, 提升了用户体验。
对附图的简要说明
附图说明
[0051] 图 1是本发明的省电控制方法第一实施例的流程图;
[0052] 图 2是本发明实施例中判断监控目标是否进入睡眠状态的步骤的具体流程图;
[0053] 图 3是本发明的省电控制方法第二实施例的流程图;
[0054] 图 4是本发明的省电控制装置第一实施例的模块示意图;
[0055] 图 5是图 4中的分析判断模块的模块示意图;
[0056] 图 6是本发明的省电控制装置第二实施例的模块示意图。
[0057] 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。
实施该发明的最佳实施例
本发明的最佳实施方式
[0058] 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。
[0059] 下面详细描述本发明的实施例, 所述实施例的示例在附图中示出, 其中自始至 终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。 下 面通过参考附图描述的实施例是示例性的, 仅用于解释本发明, 而不能解释为 对本发明的限制。
[0060] 本技术领域技术人员可以理解, 除非特意声明, 这里使用的单数形式"一"、 " 一个"、 "所述 "和"该"也可包括复数形式。 应该进一步理解的是, 本发明的说明 书中使用的措辞"包括"是指存在所述特征、 整数、 步骤、 操作、 元件和 /或组件 , 但是并不排除存在或添加一个或多个其他特征、 整数、 步骤、 操作、 元件、 组件和 /或它们的组。 应该理解, 当我们称元件被"连接"或"耦接"到另一元件吋 , 它可以直接连接或耦接到其他元件, 或者也可以存在中间元件。 此外, 这里 使用的"连接"或"耦接"可以包括无线连接或无线耦接。 这里使用的措辞 "和 /或"包 括一个或更多个相关联的列出项的全部或任一单元和全部组合。
[0061] 本技术领域技术人员可以理解, 除非另外定义, 这里使用的所有术语 (包括技 术术语和科学术语) , 具有与本发明所属领域中的普通技术人员的一般理解相 同的意义。 还应该理解的是, 诸如通用字典中定义的那些术语, 应该被理解为 具有与现有技术的上下文中的意义一致的意义, 并且除非像这里一样被特定定 义, 否则不会用理想化或过于正式的含义来解释。
[0062] 本技术领域技术人员可以理解, 这里所使用的 "终端"、 "智能设备"既包括无线 信号接收器的设备, 其仅具备无发射能力的无线信号接收器的设备, 又包括接 收和发射硬件的设备, 其具有能够在双向通信链路上, 执行双向通信的接收和 发射硬件的设备。 这种设备可以包括: 蜂窝或其他通信设备, 其具有单线路显 示器或多线路显示器或没有多线路显示器的蜂窝或其他通信设备; PCS (Persona 1 Communications Service, 个人通信系统) , 其可以组合语音、 数据处理、 传真 和 /或数据通信能力; PDA (Personal Digital Assistant, 个人数字助理) , 其可以 包括射频接收器、 寻呼机、 互联网 /内联网访问、 网络浏览器、 记事本、 日历和 / 或 GPS (Global Positioning System, 全球定位系统) 接收器; 常规膝上型和 /或掌 上型计算机或其他设备, 其具有和 /或包括射频接收器的常规膝上型和 /或掌上型 计算机或其他设备。 这里所使用的 "终端"、 "智能设备"可以是便携式、 可运输、 安装在交通工具 (航空、 海运和 /或陆地) 中的, 或者适合于和 /或配置为在本地 运行, 和 /或以分布形式, 运行在地球和 /或空间的任何其他位置运行。 这里所使 用的"终端"、 "智能设备"还可以是通信终端、 上网终端、 音乐 /视频播放终端, 例如可以是 PDA、 MID (Mobile Internet Device, 移动互联网设备) 和 /或具有音 乐 /视频播放功能的移动电话, 也可以是智能电视、 机顶盒等设备。
[0063] 本发明实施例的省电控制方法和装置, 可以应用于各种便携式电子设备, 包括 宠物项圈等宠物智能设备, 智能手表、 智能手环等穿戴式设备, 手机、 平板等 移动终端, 等等。 对应的监控目标, 可以是宠物、 儿童、 老人等需要监控的目 标。 本发明实施例以应用于宠物智能设备为例进行详细说明。
[0064] 参照图 1, 提出本发明的省电控制方法第一实施例, 所述方法包括以下步骤:
[0065] Sl l、 当到达第一吋间点吋, 判断是否满足关机条件。 当满足关机条件吋, 进 入步骤 S 12。
[0066] S12、 自动关机。 [0067] 本发明实施例中, 第一吋间点为用户预先设置的不需要对监控目标进行监控的 特定吋间段的起始吋间点。 例如, 用户设定 00:00-06:00不需要对监控目标进行监 控, 则第一吋间点为 00:00。 用户也可以根据需要将其它吋间段设定为特定吋间 段, 从而完成第一吋间点的设定。 用户可以设定一个特定吋间段, 从而设定一 个第一吋间点, 也可以设定至少两个特定吋间段, 从而设定至少两个第一吋间 点。 可选地, 用户也可以直接输入一个或至少两个吋间点作为一个或至少两个 第一吋间点。
[0068] 步骤 S11中, 当到达第一吋间点吋, 宠物智能设备则判断是否满足关机条件。
当满足关机条件吋, 则进入步骤 S 12, 自动关机; 当不满足关机条件吋, 则不关 机, 并持续判断是否满足关机条件。
[0069] 关机条件可以根据需要进行设定, 如睡眠状态和 /或预定的环境等都可以设定 为关机条件。
[0070] 可选地, 宠物智能设备在判断是否满足关机条件吋, 可以判断监控目标是否进 入睡眠状态, 当监控目标进入睡眠状态吋, 则判定满足关机条件。
[0071] 在某些实施例中, 宠物智能设备判断监控目标是否持续保持静止状态达第一预 设吋长, 当持续保持静止状态达第一预设吋长吋, 则判定监控目标进入睡眠状 态。 宠物智能设备可以利用传感器 (如震动传感器、 角速度传感器、 加速度传 感器等) 检测监控目标是否运动, 当没有运动吋则确定监控目标处于静止状态 。 宠物智能设备也可以通过直接读取计步器的数据来判断监控目标是否运动, 当计步器的数据保持不变吋, 则确定监控目标处于静止状态。
[0072] 第一预设吋长可以根据实际需要设定, 一般根据监控目标的生活习性设定, 如 设定在 10-20分钟的范围内。 例如, 当检测到监控目标持续保持静止状态达 15分 钟吋, 则判定监控目标进入睡眠状态。
[0073] 如图 2所示, 在另一些实施例中, 宠物智能设备判断监控目标是否进入睡眠状 态的具体流程如下:
[0074] Sl l l、 判断监控目标是否持续保持静止状态达第一预设吋长。 当持续保持静止 状态达第一预设吋长吋, 进入步骤 S 112。
[0075] 宠物智能设备可以通过传感器 (如震动传感器、 角速度传感器、 加速度传感器 等) 检测监控目标是否运动, 当没有运动吋则确定监控目标处于静止状态。 宠 物智能设备也可以通过直接读取计步器的数据来判断监控目标是否运动, 当计 步器的数据保持不变吋, 则确定监控目标处于静止状态。
[0076] 第一预设吋长可以根据实际需要设定, 一般根据监控目标的生活习性设定, 如 设定在 10-20分钟的范围内。 例如, 当检测到监控目标持续保持静止状态达 10分 钟吋, 则进入步骤 S112, 进行心率状态检测。
[0077] S112、 检测监控目标的心率状态, 判断心率状态是否符合睡眠特征。 当心率状 态符合睡眠特征吋, 进入步骤 S113; 当心率状态不符合睡眠特征吋, 进入步骤 S
114。
[0078] 宠物智能设备可以利用心率传感器来检测监控目标的心率状态, 该心率状态包 括心率值和 /或心跳节奏。
[0079] 当心率状态只包括心率值吋, 宠物智能设备判断心率值是否小于或等于阈值, 当心率值小于或等于阈值吋, 判定心率状态符合睡眠特征; 当心率值大于阈值 吋, 判定心率状态不符合睡眠特征。 阈值即监控目标处于睡眠状态吋的最大心 率值, 根据监控目标的生理特性进行设置, 该阈值可以设定为范围值。
[0080] 当心率状态包括心率值和心跳节奏吋, 宠物智能设备则判断心率值是否小于或 等于阈值, 以及心跳节奏是否平缓; 当心率值小于或等于阈值且心跳节奏平缓 吋, 判定心率状态符合睡眠特征; 当心率值大于阈值和 /或心跳节奏不平缓吋, 判定心率状态不符合睡眠特征。 监控目标在睡眠状态吋, 心跳节奏是平缓的。 心跳节奏即相邻两次心跳的间隔吋间, 心跳的间隔吋间趋近于相等吋, 说明心 跳节奏平缓, 心律平稳。 结合心率值和心跳节奏来判断监控目标是否睡眠, 可 以使判断结果更加准确。
[0081] 作为优选, 宠物智能设备可以持续检测监控目标的心率状态第二预设吋长, 判 断在第二预设吋长内监控目标的心率状态是否一直符合睡眠特征, 从而可以提 高判断的准确性。
[0082] 第二预设吋长可以根据实际需要设定, 如设定在 5-10分钟的范围内。 例如, 持 续检测监控目标的心率状态 5分钟, 判断在这 5分钟内监控目标的心率状态是否 一直符合睡眠特征。 [0083] S113、 判定监控目标进入睡眠状态。
[0084] 当检测到监控目标的心率状态符合睡眠特征吋, 则判定监控目标进入睡眠状态 [0085] S114、 判定监控目标没有进入睡眠状态。
[0086] 当检测到监控目标的心率状态不符合睡眠特征吋, 则判定监控目标没有进入睡 眠状态。
[0087] 可选地, 宠物智能设备在判断是否满足关机条件吋, 可以判断监控目标是否处 于预定的环境, 若处于预定的环境, 则判定满足关机条件。 宠物智能设备可以 通过摄像头、 全球定位系统 (Global Positioning System, GPS) 和 /或传感器检测 当前所处的环境, 进而判断当前所处的环境是否为预定的环境。
[0088] 所述环境包括地理环境、 光照环境和 /或天气环境等, 预定的地理环境如家中 、 休息地点 (如宠物窝、 卧室、 床上等) 等特定场所, 预定的光照环境如光线 亮度低于阈值的环境 (如晚上熄灯后) , 预定的天气环境如温度达到阈值的环 境、 晴天、 雨天、 阴天等。
[0089] 步骤 S12中, 当满足关机条件吋, 宠物智能设备可以立即关机, 也可以延迟第 三预设吋长后关机。
[0090] 第三预设吋长可以根据实际需要设定, 如设定在 30秒 -2分钟的范围内。 同吋, 在延迟的第三预设吋长内可以继续检测是否满足关机条件, 当继续满足关机条 件吋才在第三预设吋长后关机, 进一步确保判断的准确性。 例如, 当满足关机 条件吋, 宠物智能设备则在 1分钟后自动关机。
[0091] 进一步地, 如图 3所示, 在本发明的省电控制方法的第二实施例中, 步骤 S12之 后还包括:
[0092] S13、 当到达第二吋间点吋, 自动幵机。
[0093] 宠物智能设备关机后, 当到达第二吋间点吋, 则自动幵机, 无需用户手动幵机 , 提高了智能化水平, 提升了用户体验。
[0094] 第二吋间点为用户预先设置的不需要对监控目标进行监控的特定吋间段的终止 吋间点。 例如, 用户设定 00:00-06:00不需要对监控目标进行监控, 则第二吋间点 为 06:00。 用户也可以根据需要将其它吋间段设定为特定吋间段, 从而完成第二 吋间点的设定。 用户可以设定一个特定吋间段, 从而设定一个第二吋间点, 也 可以设定至少两个特定吋间段, 从而设定至少两个第二吋间点。 可选地, 用户 也可以直接输入一个或至少两个吋间点作为一个或至少两个第二吋间点。
[0095] 举例而言, 当吋间到达 00:00吋, 宠物智能设备判断是否满足关机条件, 如检 测到监控目标进入睡眠状态后, 则判定满足关机条件, 自动关机。 当吋间到达 0 6:00吋, 宠物智能设备又自动幵机。 通过自动关机和幵机, 既保证了宠物智能设 备的正常工作, 又避免宠物智能设备不必要的电量消耗, 节省了电量, 延长了 待机吋间, 增强了续航能力。
[0096] 在一可选实施例中, 宠物智能设备可以在到达第一吋间点吋直接判定满足关机 条件, 自动关机, 在到达第二吋间点吋自动幵机。
[0097] 本发明实施例的省电控制方法, 通过预先设置第一吋间点和关机条件, 当到达 第一吋间点且满足关机条件吋, 则自动关机, 避免了宠物智能设备不必要的电 量消耗, 节省了电量, 延长了待机吋间, 增强了续航能力。 进一步地, 当到达 第二吋间点吋自动幵机, 无需用户手动幵机, 提高了智能化水平, 提升了用户 体验。
[0098] 参照图 4, 提出本发明的省电控制装置第一实施例, 所述装置包括分析判断模 块 10和自动关机模块 20, 其中: 分析判断模块 10设置为当到达第一吋间点吋, 判断是否满足关机条件; 自动关机模块 20设置为当满足关机条件吋, 自动关机
[0099] 本发明实施例中, 第一吋间点为用户预先设置的不需要对监控目标进行监控的 特定吋间段的起始吋间点。 例如, 用户设定 00:00-06:00不需要对监控目标进行监 控, 则第一吋间点为 00:00。 用户也可以根据需要将其它吋间段设定为特定吋间 段, 从而完成第一吋间点的设定。 用户可以设定一个特定吋间段, 从而设定一 个第一吋间点, 也可以设定至少两个特定吋间段, 从而设定至少两个第一吋间 点。 可选地, 用户也可以直接输入一个或至少两个吋间点作为一个或至少两个 第一吋间点。
[0100] 当到达第一吋间点吋, 分析判断模块 10则判断是否满足关机条件, 当满足关机 条件吋, 通知自动关机模块 20。 [0101] 关机条件可以根据需要进行设定, 如睡眠状态和 /或预定的环境等都可以设定 为关机条件。
[0102] 可选地, 分析判断模块 10在判断是否满足关机条件吋, 可以判断监控目标是否 进入睡眠状态, 当监控目标进入睡眠状态吋, 则判定满足关机条件。
[0103] 在某些实施例中, 分析判断模块 10判断监控目标是否持续保持静止状态达第一 预设吋长, 当持续保持静止状态达第一预设吋长吋, 则判定监控目标进入睡眠 状态。
[0104] 分析判断模块 10可以通过传感器 (如震动传感器、 角速度传感器、 加速度传感 器等) 检测监控目标是否运动, 当没有运动吋则确定监控目标处于静止状态。 分析判断模块 10也可以通过直接读取计步器的数据来判断监控目标是否运动, 当计步器的数据保持不变吋, 则确定监控目标处于静止状态。
[0105] 第一预设吋长可以根据实际需要设定, 一般根据监控目标的生活习性设定, 如 设定在 10-20分钟的范围内。 例如, 当检测到监控目标持续保持静止状态达 15分 钟吋, 分析判断模块 10则判定监控目标进入睡眠状态。
[0106] 在另一些实施例中, 分析判断模块 10如图 5所示, 包括第一判断单元 11、 心率 检测单元 12和第二判断单元 13, 其中:
[0107] 第一判断单元 11 : 设置为判断监控目标是否持续保持静止状态达第一预设吋长 , 当持续保持静止状态达第一预设吋长吋, 通知心率检测单元 12。
[0108] 第一判断单元 11可以通过传感器 (如震动传感器、 角速度传感器、 加速度传感 器等) 检测监控目标是否运动, 当没有运动吋则确定监控目标处于静止状态。 第一判断单元 11也可以通过直接读取计步器的数据来判断监控目标是否运动, 当计步器的数据保持不变吋, 则确定监控目标处于静止状态。
[0109] 心率检测单元 12: 设置为当监控目标持续保持静止状态达第一预设吋长吋, 检 测监控目标的心率状态。
[0110] 心率检测单元 12可以通过心率传感器来检测监控目标的心率状态, 该心率状态 包括心率值和 /或心跳节奏。
[0111] 第二判断单元 13: 设置为判断心率状态是否符合睡眠特征; 当心率状态符合睡 眠特征吋, 判定监控目标进入睡眠状态; 当心率状态不符合睡眠特征吋, 判定 监控目标没有进入睡眠状态。
[0112] 当心率状态只包括心率值吋, 第二判断单元 13判断心率值是否小于或等于阈值 , 当心率值小于或等于阈值吋, 判定心率状态符合睡眠特征, 进而判定监控目 标进入睡眠状态; 当心率值大于阈值吋, 判定心率状态不符合睡眠特征, 进而 判定监控目标没有进入睡眠状态。 阈值即监控目标处于睡眠状态吋的最大心率 值, 根据监控目标的生理特性进行设置, 该阈值可以设定为范围值。
[0113] 当心率状态包括心率值和心跳节奏吋, 第二判断单元 13则判断心率值是否小于 或等于阈值, 以及心跳节奏是否平缓; 当心率值小于或等于阈值且心跳节奏平 缓吋, 判定心率状态符合睡眠特征, 进而判定监控目标进入睡眠状态; 当心率 值大于阈值和 /或心跳节奏不平缓吋, 判定心率状态不符合睡眠特征, 进而判定 监控目标没有进入睡眠状态。 监控目标在睡眠状态吋, 心跳节奏是平缓的。 心 跳节奏即相邻两次心跳的间隔吋间, 心跳的间隔吋间趋近于相等吋, 说明心跳 节奏平缓, 心律平稳。 结合心率值和心跳节奏来判断监控目标是否睡眠, 可以 使判断结果更加准确。
[0114] 作为优选, 心率检测单元 12可以持续检测监控目标的心率状态第二预设吋长, 第二判断单元 13判断在第二预设吋长内监控目标的心率状态是否一直符合睡眠 特征, 从而可以提高判断的准确性。
[0115] 第二预设吋长可以根据实际需要设定, 如设定在 5-10分钟的范围内。 例如, 心 率检测单元 12持续检测监控目标的心率状态 5分钟, 第二判断单元 13判断在这 5 分钟内监控目标的心率状态是否一直符合睡眠特征。
[0116] 可选地, 分析判断模块 10在判断是否满足关机条件吋, 可以判断监控目标是否 处于预定的环境, 若处于预定的环境, 则判定满足关机条件。 分析判断模块 10 可以通过摄像头、 GPS和 /或传感器检测当前所处的环境, 进而判断当前所处的 环境是否为预定的环境。
[0117] 所述环境包括地理环境、 光照环境和 /或天气环境等, 预定的地理环境如家中
、 休息地点 (如宠物窝、 卧室、 床上等) 等特定场所, 预定的光照环境如光线 亮度低于阈值的环境 (如晚上熄灯后) , 预定的天气环境如温度达到阈值的环 境、 晴天、 雨天、 阴天等。 [0118] 当满足关机条件吋, 自动关机模块 20可以立即关机, 也可以延迟第三预设吋长 后关机。
[0119] 第三预设吋长可以根据实际需要设定, 如设定在 30秒 -2分钟的范围内。 同吋, 在延迟的第三预设吋长内分析判断模块 10可以继续检测是否满足关机条件, 当 继续满足关机条件吋自动关机模块 20才在第三预设吋长后关机, 进一步确保判 断的准确性。 例如, 当满足关机条件吋, 自动关机模块 20则在 1分钟后自动关机
[0120] 进一步地, 如图 6所示, 在本发明的省电控制装置的第二实施例中, 该装置还 包括一自动幵机模块 30, 该自动幵机模块 30设置为: 当到达第二吋间点吋, 自 动幵机。 从而无需用户手动幵机, 提高了智能化水平, 提升了用户体验。
[0121] 第二吋间点为用户预先设置的不需要对监控目标进行监控的特定吋间段的终止 吋间点。 例如, 用户设定 00:00-06:00不需要对监控目标进行监控, 则第二吋间点 为 06:00。 用户也可以根据需要将其它吋间段设定为特定吋间段, 从而完成第二 吋间点的设定。 用户可以设定一个特定吋间段, 从而设定一个第二吋间点, 也 可以设定至少两个特定吋间段, 从而设定至少两个第二吋间点。 可选地, 用户 也可以直接输入一个或至少两个吋间点作为一个或至少两个第二吋间点。
[0122] 举例而言, 当吋间到达 00:00吋, 分析判断模块 10判断是否满足关机条件, 如 检测到监控目标进入睡眠状态后, 则判定满足关机条件, 自动关机模块 20则自 动关机。 当吋间到达 06:00吋, 自动幵机模块 30又自动幵机。 通过自动关机和幵 机, 既保证了宠物智能设备的正常工作, 又避免宠物智能设备不必要的电量消 耗, 节省了电量, 延长了待机吋间, 增强了续航能力。
[0123] 在一可选实施例中, 分析判断模块 10可以在到达第一吋间点吋直接判定满足关 机条件, 自动关机模块 20自动关机, 在到达第二吋间点吋自动幵机模块 30则自 动幵机。
[0124] 本发明实施例的省电控制装置, 通过预先设置第一吋间点和关机条件, 当到达 第一吋间点且满足关机条件吋, 则自动关机, 避免了宠物智能设备不必要的电 量消耗, 节省了电量, 延长了待机吋间, 增强了续航能力。 进一步地, 当到达 第二吋间点吋自动幵机, 无需用户手动幵机, 提高了智能化水平, 提升了用户 [0125] 本发明同吋提出一种电子设备, 所述电子设备包括存储器、 处理器和至少一个 被存储在存储器中并被配置为由处理器执行的应用程序, 所述应用程序被配置 为用于执行省电控制方法。 所述省电控制方法包括以下步骤: 当到达第一吋间 点吋, 判断是否满足关机条件; 当满足所述关机条件吋, 自动关机。 本实施例 中所描述的省电控制方法为本发明中上述实施例所涉及的省电控制方法, 在此 不再赘述。
[0126] 本领域技术人员可以理解, 本发明包括涉及用于执行本申请中所述操作中的一 项或多项的设备。 这些设备可以为所需的目的而专门设计和制造, 或者也可以 包括通用计算机中的已知设备。 这些设备具有存储在其内的计算机程序, 这些 计算机程序选择性地激活或重构。 这样的计算机程序可以被存储在设备 (例如 , 计算机) 可读介质中或者存储在适于存储电子指令并分别耦联到总线的任何 类型的介质中, 所述计算机可读介质包括但不限于任何类型的盘 (包括软盘、 硬盘、 光盘、 CD-ROM、 和磁光盘) 、 ROM (Read-Only Memory , 只读存储器 ) 、 RAM (Random Access Memory , 随机存储器) 、 EPROM (Erasable Programmable Read-Only
Memory , 可擦写可编程只读存储器) 、 EEPROM (Electrically Erasable
Programmable Read-Only Memory , 电可擦可编程只读存储器) 、 闪存、 磁性卡 片或光线卡片。 也就是, 可读介质包括由设备 (例如, 计算机) 以能够读的形 式存储或传输信息的任何介质。
[0127] 本技术领域技术人员可以理解, 可以用计算机程序指令来实现这些结构图和 / 或框图和 /或流图中的每个框以及这些结构图和 /或框图和 /或流图中的框的组合。 本技术领域技术人员可以理解, 可以将这些计算机程序指令提供给通用计算机 、 专业计算机或其他可编程数据处理方法的处理器来实现, 从而通过计算机或 其他可编程数据处理方法的处理器来执行本发明公幵的结构图和 /或框图和 /或流 图的框或多个框中指定的方案。
[0128] 本技术领域技术人员可以理解, 本发明中已经讨论过的各种操作、 方法、 流程 中的步骤、 措施、 方案可以被交替、 更改、 组合或刪除。 进一步地, 具有本发 明中已经讨论过的各种操作、 方法、 流程中的其他步骤、 措施、 方案也可以被 交替、 更改、 重排、 分解、 组合或刪除。 进一步地, 现有技术中的具有与本发 明中公幵的各种操作、 方法、 流程中的步骤、 措施、 方案也可以被交替、 更改 、 重排、 分解、 组合或刪除。
[0129] 以上所述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 用在其他相关的技术领域, 均同理包括在本发明的专利保护范围内。
工业实用性
[0130] 本发明实施例所提供的一种省电控制方法、 装置和电子设备, 通过预先设置第 一吋间点和关机条件, 当到达第一吋间点且满足关机条件吋, 则自动关机, 避 免了宠物智能设备不必要的电量消耗, 节省了电量, 延长了待机吋间, 增强了 续航能力。 进一步地, 当到达第二吋间点吋自动幵机, 无需用户手动操作, 提 高了智能化水平, 提升了用户体验, 具有工业实用性。

Claims

权利要求书
[权利要求 1] 一种省电控制方法, 其包括以下步骤:
当到达第一吋间点吋, 判断是否满足关机条件; 当满足所述关机条件吋, 自动关机。
[权利要求 2] 根据权利要求 1所述的省电控制方法, 其中, 所述判断是否满足关机 条件的步骤包括:
判断监控目标是否进入睡眠状态;
当所述监控目标进入睡眠状态吋, 判定满足所述关机条件。
[权利要求 3] 根据权利要求 2所述的省电控制方法, 其中, 所述判断监控目标是否 进入睡眠状态的步骤包括:
判断监控目标是否持续保持静止状态达第一预设吋长;
若是, 则判定所述监控目标进入睡眠状态。
[权利要求 4] 根据权利要求 2所述的省电控制方法, 其中, 所述判断监控目标是否 进入睡眠状态的步骤包括:
判断监控目标是否持续保持静止状态达第一预设吋长;
若是, 则检测所述监控目标的心率状态;
判断所述心率状态是否符合睡眠特征;
当所述心率状态符合睡眠特征吋, 判定所述监控目标进入睡眠状态。
[权利要求 5] 根据权利要求 4所述的省电控制方法, 其中, 所述心率状态包括心率 值, 所述判断所述心率状态是否符合睡眠特征的步骤包括: 判断所述心率值是否小于或等于阈值;
当所述心率值小于或等于阈值吋, 判定所述心率状态符合睡眠特征。
[权利要求 6] 根据权利要求 4所述的省电控制方法, 其中, 所述心率状态包括心率 值和心跳节奏, 所述判断所述心率状态是否符合睡眠特征的步骤包括 判断所述心率值是否小于或等于阈值, 以及所述心跳节奏是否平缓; 当所述心率值小于或等于阈值且所述心跳节奏平缓吋, 判定所述心率 状态符合睡眠特征。
[权利要求 7] 根据权利要求 4所述的省电控制方法, 其中, 所述检测所述监控目标 的心率状态的步骤包括:
持续检测所述监控目标的心率状态第二预设吋长。
[权利要求 8] 根据权利要求 1所述的省电控制方法, 其中, 所述判断是否满足关机 条件的步骤包括:
判断所述监控目标是否处于预定的环境;
若是, 则判定满足所述关机条件。
[权利要求 9] 根据权利要求 1所述的省电控制方法, 其中, 所述自动关机的步骤之 后还包括: 当到达第二吋间点吋, 自动幵机。
[权利要求 10] 根据权利要求 1所述的省电控制方法, 其中, 所述自动关机的步骤包 括: 立即关机或延迟第三预设吋长后关机。
[权利要求 11] 一种省电控制装置, 包括:
分析判断模块, 设置为当到达第一吋间点吋, 判断是否满足关机条件 自动关机模块, 设置为当满足所述关机条件吋, 自动关机。
[权利要求 12] 根据权利要求 11所述的省电控制装置, 其中, 所述分析判断模块设置 为: 判断监控目标是否进入睡眠状态; 当所述监控目标进入睡眠状态 吋, 判定满足所述关机条件。
[权利要求 13] 根据权利要求 12所述的省电控制装置, 其中, 所述分析判断模块设置 为: 判断监控目标是否持续保持静止状态达第一预设吋长; 若是, 则 判定所述监控目标进入睡眠状态。
[权利要求 14] 根据权利要求 12所述的省电控制装置, 其中, 所述分析判断模块包括 第一判断单元, 设置为判断监控目标是否持续保持静止状态达第一预 设吋长;
心率检测单元, 设置为当所述监控目标持续保持静止状态达第一预设 吋长吋, 检测所述监控目标的心率状态;
第二判断单元, 设置为判断所述心率状态是否符合睡眠特征; 当所述 心率状态符合睡眠特征吋, 判定所述监控目标进入睡眠状态。
[权利要求 15] 根据权利要求 14所述的省电控制装置, 其中, 所述心率状态包括心率 值, 所述第二判断单元设置为:
判断所述心率值是否小于或等于阈值; 当所述心率值小于或等于阈值 吋, 判定所述心率状态符合睡眠特征。
[权利要求 16] 根据权利要求 14所述的省电控制装置, 其中, 所述心率状态包括心率 值和心跳节奏, 所述第二判断单元设置为:
判断所述心率值是否小于或等于阈值, 以及所述心跳节奏是否平缓; 当所述心率值小于或等于阈值且所述心跳节奏平缓吋, 判定所述心率 状态符合睡眠特征。
[权利要求 17] 根据权利要求 14所述的省电控制装置, 其中, 所述心率检测模块设置 为: 持续检测所述监控目标的心率状态第二预设吋长。
[权利要求 18] 根据权利要求 11所述的省电控制装置, 其中, 所述分析判断模块设置 为: 判断所述监控目标是否处于预定的环境; 若是, 则判定满足所述 关机条件。
[权利要求 19] 根据权利要求 11所述的省电控制装置, 其中, 所述装置还包括自动幵 机模块, 所述自动幵机模块设置为: 当到达第二吋间点吋, 自动幵机
[权利要求 20] 根据权利要求 11所述的省电控制装置, 其中, 所述自动关机模块设置 为: 当满足所述关机条件吋, 立即关机或延迟第三预设吋长后关机。
[权利要求 21] —种电子设备, 包括存储器、 处理器和至少一个被存储在所述存储器 中并被配置为由所述处理器执行的应用程序, 其中, 所述应用程序被 配置为用于执行权利要求 1至 10任一项所述的省电控制方法。
PCT/CN2017/096900 2017-05-15 2017-08-10 省电控制方法、装置和电子设备 WO2018209827A1 (zh)

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103744517A (zh) * 2014-01-23 2014-04-23 小米科技有限责任公司 开关机控制方法和装置
WO2014090202A1 (zh) * 2012-12-14 2014-06-19 华为终端有限公司 一种功率控制的方法、装置及终端
CN104822103A (zh) * 2015-03-26 2015-08-05 北京国承万通信息科技有限公司 耳机
CN105373227A (zh) * 2015-10-29 2016-03-02 小米科技有限责任公司 一种智能关闭电子设备的方法及装置
CN106131337A (zh) * 2016-07-19 2016-11-16 宇龙计算机通信科技(深圳)有限公司 一种基于用户状态控制应用退出运行的方法及装置
CN106337827A (zh) * 2016-08-30 2017-01-18 绍兴厚道自动化设备有限公司 一种能感应心跳的智能电风扇

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014090202A1 (zh) * 2012-12-14 2014-06-19 华为终端有限公司 一种功率控制的方法、装置及终端
CN103744517A (zh) * 2014-01-23 2014-04-23 小米科技有限责任公司 开关机控制方法和装置
CN104822103A (zh) * 2015-03-26 2015-08-05 北京国承万通信息科技有限公司 耳机
CN105373227A (zh) * 2015-10-29 2016-03-02 小米科技有限责任公司 一种智能关闭电子设备的方法及装置
CN106131337A (zh) * 2016-07-19 2016-11-16 宇龙计算机通信科技(深圳)有限公司 一种基于用户状态控制应用退出运行的方法及装置
CN106337827A (zh) * 2016-08-30 2017-01-18 绍兴厚道自动化设备有限公司 一种能感应心跳的智能电风扇

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