WO2019141184A1 - Method, apparatus and device for intelligently adjusting charging, and storage medium - Google Patents

Method, apparatus and device for intelligently adjusting charging, and storage medium Download PDF

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Publication number
WO2019141184A1
WO2019141184A1 PCT/CN2019/071953 CN2019071953W WO2019141184A1 WO 2019141184 A1 WO2019141184 A1 WO 2019141184A1 CN 2019071953 W CN2019071953 W CN 2019071953W WO 2019141184 A1 WO2019141184 A1 WO 2019141184A1
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WO
WIPO (PCT)
Prior art keywords
mobile terminal
temperature
charging
event
sensor
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PCT/CN2019/071953
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French (fr)
Chinese (zh)
Inventor
程翠香
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中兴通讯股份有限公司
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Publication of WO2019141184A1 publication Critical patent/WO2019141184A1/en

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11CSTATIC STORES
    • G11C11/00Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/44Methods for charging or discharging
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the present disclosure relates to the field of terminals.
  • the hardware configuration is developing rapidly, and various applications of mobile terminals are increasing.
  • the charging module on the motherboard of the terminal product is generally combined with some other functional modules (such as a central processing unit (CPU), a radio frequency amplifier, and a wireless network.
  • the distance between (Wireless-Fidelity, WIFI) modules, etc.) is relatively close. This results in a large amount of heat generated by the relevant module of the mobile terminal (such as a mobile phone) if the user uses the mobile terminal to perform some operations (such as surfing the Internet through a mobile network or playing a game) while charging the mobile terminal.
  • the charging module itself works, it also generates a large amount of heat.
  • the heat generated by the charging module and the heat generated by the working module closer to it will cause the heat of the main board to become larger and larger, so that the temperature of the casing of the mobile terminal is higher.
  • the casing with a higher temperature of the mobile terminal may cause discomfort to the user, thereby affecting the normal operation of the user, and even when the mobile terminal is used for a long time during the charging process, the user's palm and fingers may be burned, thereby causing the user to The experience is very bad.
  • a method of intelligently adjusting charging comprising the steps of: detecting, during charging of a mobile terminal, a contact event that is contacted by a user or an operation event operated by a user; The mobile terminal detects the contact event or the operation event, and the mobile terminal collects its own temperature data; the mobile terminal adjusts its charging current according to the temperature data.
  • an apparatus for intelligently adjusting charging comprising: a detecting module configured to detect a contact event that the mobile terminal is contacted by a user or an operational event operated by a user during charging of the mobile terminal And an acquisition module configured to acquire temperature data of the mobile terminal if the contact event or the operation event is detected; and a temperature control module configured to adjust the charging current according to the temperature data.
  • an apparatus for intelligently adjusting charging includes: a processor and a memory coupled to the processor; the memory storing an intelligent adjustment operable on the processor A charging program that implements the steps of the method of intelligently adjusting charging as described above when executed by the processor.
  • a storage medium having stored thereon a program for intelligently adjusting charging, the step of implementing the intelligently adjusted charging method as described above when executed by a processor.
  • FIG. 1 is a flow chart of a method for intelligently adjusting charging according to an embodiment of the present disclosure
  • FIG. 2 is a block diagram of an apparatus for intelligently adjusting charging provided in accordance with an embodiment of the present disclosure
  • FIG. 3 is a block diagram showing a basic hardware layout of a mobile terminal according to an embodiment of the present disclosure
  • FIG. 4 is a flow chart of selecting a housing temperature sensor for temperature control, provided in accordance with an embodiment of the present disclosure
  • FIG. 5 is a schematic flow chart of temperature control processing according to another embodiment of the present disclosure.
  • a temperature sensor is generally disposed on the protection board inside the battery, and the temperature of the battery is detected by the temperature sensor.
  • the temperature of the battery is above a certain value, the mobile terminal is charged using a lower charging current.
  • this value is generally set higher.
  • the heat emitted by the corresponding module is superimposed with the heat generated by the charging module, which causes the temperature of the main board of the mobile terminal to rise rapidly, which in turn causes the temperature of the whole casing to continuously rise. Since the temperature sensor on the battery is generally far away from the heat source on the motherboard, the temperature on the motherboard is already high, and the battery is still charged with a large current, which causes the temperature of the casing of the mobile terminal to continuously rise, affecting user experience.
  • some mobile terminals directly reduce the charging current by detecting user contact or operating the mobile terminal, thereby charging the mobile terminal with a small current; when detecting that the user does not touch or does not operate the mobile terminal, moving with a large current Terminal charging.
  • the problem brought about by this is that when the mobile terminal has a low power and the user has to operate the mobile terminal for a long time, if the mobile terminal's battery power is insufficient, the user experience is not good.
  • a method of intelligently adjusting charging is provided.
  • 1 is a flow chart of a method of intelligently adjusting charging provided in accordance with an embodiment of the present disclosure. As shown in FIG. 1, the method includes the following steps S101 to S103.
  • step S101 during charging of the mobile terminal, the mobile terminal detects a contact event that it is contacted by the user or an operation event that is operated by the user, that is, detects whether the user touches or operates the mobile terminal.
  • the human body contact sensor may be utilized to detect whether the user contacts the mobile terminal.
  • step S101 during charging of the mobile terminal, whether the user operates the mobile terminal may be determined by detecting triggering and usage of each functional module on the mobile terminal.
  • step S102 if the mobile terminal detects the contact event or the operation event, the mobile terminal collects its own temperature data. That is, if it is detected that the user touches or operates the mobile terminal, the mobile terminal collects its own temperature data, in particular, collects temperature data that can reflect the temperature of the whole casing of the mobile terminal in real time.
  • the temperature data of the temperature of the whole casing of the mobile terminal is obtained by a temperature sensor at a predetermined position on the mobile terminal in advance.
  • step S102 the step of determining the predetermined location described above is further included, the step of determining the predetermined location comprising the following steps.
  • the heat generation condition of the mobile terminal is simulated. Specifically, a plurality of function modules are disposed on the main board of the mobile terminal, and different function modules function when the user performs different contact events or operation events. At this time, the corresponding function module emits heat, so that different functional modules can be used as different heat sources.
  • the heat generation condition of the mobile terminal can be simulated.
  • each heat source on the main board of the mobile terminal remote from the mobile terminal is determined and a plurality of positions of the highest temperature of the whole casing of the mobile terminal can be reflected in real time.
  • a correspondence between different contact events or operation events and each heat source on the main board of the mobile terminal may be determined, and then the corresponding relationship may be used to determine a plurality of real-time reflecting the maximum temperature of the whole casing of the mobile terminal. position.
  • a temperature sensor is placed at each location. Through the temperature data collected by the temperature sensor at the corresponding position, the maximum temperature of the whole casing of the mobile terminal at the time of the corresponding event can be obtained.
  • the correspondence between the predetermined event and the sensor is predetermined, and determining the correspondence includes the following steps.
  • the mobile terminal acquires a temperature change trend of the highest heat point of the entire casing. Then, if the temperature change trend of the sensor for temperature control collected and recorded in real time at a certain position on the mobile terminal coincides with the temperature change trend of the highest heat point, the temperature control at the position will be used.
  • the sensor acts as a sensor for temperature control when the mobile terminal detects the corresponding event.
  • the mobile terminal in the charging state acquires a temperature change trend of the highest heating point of the whole casing of the mobile device when the different events occur (ie, when the user touches or operates the mobile terminal in the charging state), the whole machine is recorded under various events.
  • the maximum heating curve of the casing and the temperature value curve of the sensor for temperature control at the same time Compare the maximum heating curve of the whole machine casing under various events and the temperature value curve of the sensor for temperature control at the same time. If the temperature control sensor in a certain position collects and records the temperature change trend in real time, In accordance with the temperature change trend of the highest heat point, the sensor for temperature control at the corresponding position is used as a sensor for temperature control when the corresponding event is detected by the mobile terminal.
  • the location may be the location where the temperature of the whole casing of the mobile terminal is the highest, or may be a position with a fixed temperature difference from the highest temperature.
  • the embodiment of the present disclosure includes but is not limited to the above location, as long as the temperature of the location can reflect different operations.
  • the maximum temperature of the casing can be.
  • step S102 the mobile terminal determines, according to the correspondence between the event and the sensor that is scheduled before step S101, that the mobile terminal detects a sensor for temperature control corresponding to a predetermined contact event or operation event that is being performed by the mobile terminal, and uses The temperature-controlled sensor collects temperature data such as a predetermined contact event or an operational event.
  • the sensor for temperature control is placed on the main board of the mobile terminal away from the respective heat sources on the main board of the mobile terminal and can reflect the highest temperature of the entire casing of the mobile terminal in real time when a contact event or an operation event occurs.
  • the corresponding temperature sensor for temperature control is started when the user contacts the mobile terminal, and the whole casing of the mobile terminal is collected by the temperature sensor for temperature control when the user contacts the mobile terminal. Temperature data.
  • the user operates the corresponding temperature sensor for temperature control when the user operates the mobile terminal, and collects the corresponding temperature sensor for temperature control when the user operates the mobile terminal. Temperature data of the entire casing of the terminal.
  • step S103 the mobile terminal adjusts the charging current of the mobile terminal according to the temperature data.
  • step S103 if the temperature data is higher than the preset temperature threshold, the mobile terminal charges the battery according to the preset first charging current, otherwise, according to the preset second charging current that is greater than the preset first charging current, The battery is charged.
  • the preset temperature threshold is a temperature suitable for the user to feel contact with the mobile terminal, and is generally lower than a temperature threshold of the temperature sensor inside the battery.
  • step S101 If the mobile terminal does not detect a contact event or an operation event (ie, no user contact is detected or operates the mobile terminal) in step S101, the mobile terminal charges the battery according to the preset second charging current.
  • the temperature of the entire casing when detecting that the user touches or operates the mobile terminal, the temperature of the entire casing can be monitored in real time according to the sensor for temperature control built in the main board of the mobile terminal. Then adjust the charging current according to the temperature of the whole casing, so as not to burn the user, it can also increase the charging rate and reduce the charging time.
  • an apparatus for intelligently adjusting charging is provided.
  • 2 is a block diagram of an apparatus for intelligently adjusting charging provided by an embodiment of the present disclosure, the apparatus comprising a detection module, an acquisition module, and a temperature control module.
  • the detection module is configured to detect a contact event that the mobile terminal is contacted by the user or an operation event that is operated by the user during charging of the mobile terminal.
  • the acquisition module is configured to collect temperature data of the mobile terminal if the contact event or the operation event is detected.
  • the temperature control module is configured to adjust its charging current based on the temperature data.
  • the acquisition module includes temperature sensors located at a plurality of locations on the main board of the mobile terminal.
  • the temperature sensor is away from each heat source on the main board, and according to the test, the temperature data collected by each temperature sensor can reflect the highest time of the whole machine casing of the mobile terminal when different events occur (ie, the user's contact event or operation event to the mobile terminal). temperature.
  • the embodiment of the present disclosure can preset a comparison table, and by searching the comparison table, find that when different events occur (that is, when the user touches the mobile terminal or performs different operations on the mobile terminal), the highest value of the whole casing can be reflected.
  • the temperature sensor of the temperature and uses the temperature sensor as a sensor for temperature control when the user touches or operates the mobile terminal.
  • the collecting module determines that the contact event or the operation event corresponds to The sensor for temperature control (ie, the corresponding temperature sensor for temperature control when the mobile terminal is touched or operated on the mobile terminal), and the temperature sensor is activated to collect the temperature data of the whole casing of the mobile terminal. If the temperature value collected by the temperature sensor is higher than the preset temperature threshold, the temperature control module charges the battery of the mobile terminal according to the preset first charging current, otherwise the temperature control module presets the second according to the preset first charging current. The charging current charges the battery of the mobile terminal.
  • the acquisition module is further configured to determine, according to a predetermined event-to-sensor correspondence, the detected contact event or the sensor corresponding to the operation event for temperature control;
  • the temperature-controlled sensor collects the temperature data of the mobile terminal itself when the contact event or the operation event occurs.
  • the senor for temperature control is placed on a main board of the mobile terminal remote from respective heat sources on the main board of the mobile terminal, and can be capable of occurring when the contact event or the operation event occurs The position of the highest temperature of the whole casing of the mobile terminal is reflected in real time.
  • the location is predetermined
  • the collecting module is further configured to perform simulation processing on a heat generation condition of the mobile terminal according to a layout of each heat source on a main board of the mobile terminal; As a result of the simulation process, each of the heat sources on the main board remote from the mobile terminal on the mobile terminal is determined and a plurality of locations of the highest temperature of the whole casing of the mobile terminal can be reflected in real time.
  • the acquisition module is further configured to acquire a temperature change trend of a highest heat point of the entire casing of the mobile terminal for a predetermined event when the mobile terminal is in a charging state.
  • the temperature-controlled sensor is used as a sensor for temperature control when the mobile terminal detects a corresponding event.
  • the temperature control module is further configured to: if the temperature data is higher than a preset temperature threshold, charging the battery of the mobile terminal according to a preset first charging current; And setting a second charging current of the first charging current to charge the battery of the mobile terminal.
  • the temperature control module is further configured to: if the detection module detects the contact event or the operation event, charging the battery of the mobile terminal according to the preset second charging current .
  • the temperature control module when the mobile terminal is charging, when the detecting module detects that the user touches or operates the mobile terminal, the temperature control module can monitor the real-time monitoring according to the sensor for temperature control built in the collecting module on the main board of the mobile terminal. Machine case temperature. Then, the temperature control module adjusts the charging current according to the temperature of the whole casing, so that the user can not be burned, the charging rate can be increased, and the charging time can be reduced.
  • an apparatus for intelligently adjusting charging including a processor and a memory coupled to the processor, the memory having an intelligence executable on the processor A program for adjusting the charging, the step of implementing the intelligently adjusted charging method as described above, when the program for intelligently adjusting the charging is executed by the processor.
  • FIG. 3 is a block diagram of a basic hardware layout of a mobile terminal according to an embodiment of the present disclosure.
  • the embodiment of the present disclosure places a housing temperature sensor (for example, a second housing temperature sensor 10, a first housing temperature sensor 11) at a position on the main board of the mobile terminal that is remote from the heat source, and can also be set. More temperature sensors).
  • a housing temperature sensor for example, a second housing temperature sensor 10, a first housing temperature sensor 11
  • the memory 2, the power management chip 5, and the charging chip 4 generate a large amount of heat; when charging the Internet, the wireless network (WIreless-Fidelity) , WIFI) module 6 (for example, using WIFI Internet access), 3/4G Power Amplifier (PA) 8 (for example, using mobile network to access the Internet) and charging chip 4 heat up; when charging calls, Global Mobile Communications (Global System) For Mobile communications, GSM) system PA 7 and charging chip 4 heat up and so on.
  • WIFI wireless network
  • WIFI WIFI
  • PA 3/4G Power Amplifier
  • the case temperature sensor has been tested to stably reflect the maximum temperature of the entire casing of the mobile terminal when performing corresponding operations (such as playing games, surfing the Internet, making a phone call, etc.), or a temperature having a fixed difference from the highest temperature.
  • the temperature of the housing temperature sensor corresponding to the user's contact or operation is first detected.
  • the temperature value of the temperature sensor exceeds a predetermined threshold (that is, the temperature of the housing temperature sensor can reflect the maximum temperature of the mobile terminal housing, this value is a temperature that is suitable when the user touches the mobile terminal, and is set higher than the internal temperature sensor of the battery.
  • the mobile terminal is charged with a lower charging current, otherwise the mobile terminal is charged with a large current or a medium current. This will not cause discomfort to the user, but also increase the charging rate and reduce the charging time.
  • FIG. 4 is a flow chart of selecting a housing temperature sensor for temperature control according to an embodiment of the present disclosure. As shown in FIG. 4, the flowchart includes the following steps S201 to S203.
  • step S201 the mobile terminal is subjected to heat generation simulation in various situations according to the layout of the main board, and the case temperature sensors 1, 2, ..., N are placed at a position relatively far from the heat source of the main board. Since the case temperature sensor is far away from each heat source, the heat generated by each heat source on the main board does not cause the temperature of the case temperature to rise quickly when performing various operations on the mobile terminal.
  • the various situations herein include user contact events to the mobile terminal and various operational events.
  • step S202 by scanning the hot spot on the main board when the mobile terminal is charging and performing various operations on the mobile terminal, several high heat points of the whole casing of the mobile terminal when the mobile terminal is charged and various operations are performed on the mobile terminal are found. In turn, the highest heat point corresponding to various operating modes of the entire casing is found.
  • step S203 the curve of the highest heating point of the whole casing of the mobile terminal under various operating conditions is recorded, and the temperature value of the casing temperature sensor at the same time is read by software.
  • step S204 a case temperature sensor which is consistent with the heat generation tendency of the highest heat generation point of the entire casing when performing various operations on the mobile terminal is found by curve comparison, and the case temperature sensor is used as the case temperature sensor for temperature control.
  • the heating condition of the mobile terminal is simulated according to the layout of each functional module on the main board.
  • the first housing temperature sensor 11 and the second housing temperature sensor 10 are respectively disposed at the first position and the second position on the main board.
  • the temperature data collected by the first housing temperature sensor 11 and the second housing temperature sensor 10 in real time is recorded, and on the other hand, the hair of the whole casing is scanned. Hotspots, find the highest hot spot of the whole machine casing during charging calls, and draw the temperature curve of the highest hot spot.
  • the temperature change trend of the outer casing temperature sensor 11 is consistent with the temperature change trend of the highest hot spot of the whole casing, and the outer casing temperature sensor 11 is used for temperature control when charging the call.
  • the case temperature sensor that is, during charging talk, uses the temperature data collected by the case temperature sensor 11 as a basis for adjusting the magnitude of the charging current.
  • FIG. 5 is a schematic flow chart of temperature control processing according to another embodiment of the present disclosure.
  • the processing can be implemented by software. As shown in FIG. 5, the flowchart includes the following steps S301 to S304.
  • step S301 in a state where the battery of the mobile terminal is charged, it is detected whether the user touches the mobile terminal or performs a (touch) operation on the mobile terminal, and if yes, step S302 is performed, otherwise step S303 is performed.
  • step S302 the temperature value of the case temperature sensor corresponding to the operation is read, and it is judged whether the read temperature value is higher than the set temperature threshold. If yes, step S304 is performed, otherwise step S303 is performed.
  • step S303 the battery of the mobile terminal is charged with the second charging current.
  • step S304 the battery of the mobile terminal is charged with the first charging current.
  • the value of the second charging current is greater than the value of the first charging current.
  • the temperature value of the corresponding housing temperature sensor is first detected, and when the temperature value is higher than the predetermined threshold, the first The charging current is charged, and when the temperature value is lower than the threshold, the second charging current is charged.
  • the value of the second charging current is greater than the value of the first charging current.
  • a storage medium having stored thereon a program for intelligently adjusting charging, the step of implementing the intelligent adjustment charging method as described above when the program for intelligently adjusting charging is executed by a processor.
  • the storage medium may include a ROM/RAM, a magnetic disk, an optical disk, and a USB flash drive.
  • the embodiment of the present disclosure when charging a mobile terminal, the embodiment of the present disclosure further detects a housing temperature sensor capable of reflecting the temperature of the whole casing of the mobile terminal in real time if a human body is detected to contact the mobile terminal or perform a predetermined operation on the mobile terminal.
  • the temperature data determines whether to reduce the charging current according to the temperature data of the temperature sensor, so as to reduce the charging time of the device and improve the charging experience of the user.

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Abstract

Provided are a method, apparatus and device for intelligently adjusting charging, and a storage medium, relating to the field of terminals. The method comprises: during charging of a mobile terminal, the mobile terminal detecting a contact event of itself being contacted by a user or an operating event of itself being operated by the user; if the mobile terminal detects the contact event or the operation event, then the mobile terminal detecting temperature data of itself; and the mobile terminal adjusting a charging current of itself according to the temperature data.

Description

智能调节充电的方法、装置、设备及存储介质Method, device, device and storage medium for intelligently adjusting charging 技术领域Technical field
本公开涉及终端领域。The present disclosure relates to the field of terminals.
背景技术Background technique
移动终端进入智能时代后,硬件配置飞速发展,移动终端的各种应用越来越多。After the mobile terminal enters the intelligent era, the hardware configuration is developing rapidly, and various applications of mobile terminals are increasing.
由于终端产品主板上的器件布局一般比较密集,这使得终端产品主板上的充电模块一般与其他某个或某几个功能模块(比如中央处理器(Central Processing Unit,CPU)、射频功放、无线网(Wireless-Fidelity,WIFI)模块等等)之间的距离较近。这导致在对移动终端进行充电时,如果用户再使用移动终端做一些操作(比如通过移动网络上网、玩游戏),移动终端(例如手机)的相关模块就会产生较大的热量。而此时因为充电模块本身工作,也会产生较大的热量。充电模块产生的热量和距离其较近的工作模块产生的热量叠加,将造成主板的发热越来越大,从而使得移动终端的机壳温度较高。Since the device layout on the motherboard of the terminal product is generally dense, the charging module on the motherboard of the terminal product is generally combined with some other functional modules (such as a central processing unit (CPU), a radio frequency amplifier, and a wireless network. The distance between (Wireless-Fidelity, WIFI) modules, etc.) is relatively close. This results in a large amount of heat generated by the relevant module of the mobile terminal (such as a mobile phone) if the user uses the mobile terminal to perform some operations (such as surfing the Internet through a mobile network or playing a game) while charging the mobile terminal. At this time, because the charging module itself works, it also generates a large amount of heat. The heat generated by the charging module and the heat generated by the working module closer to it will cause the heat of the main board to become larger and larger, so that the temperature of the casing of the mobile terminal is higher.
移动终端的具有较高温度的机壳会给用户带来不适,进而影响用户的正常操作,甚至在充电过程中由于长时间使用移动终端会对用户的手掌和手指产生灼烧感,进而使得用户体验非常不好。The casing with a higher temperature of the mobile terminal may cause discomfort to the user, thereby affecting the normal operation of the user, and even when the mobile terminal is used for a long time during the charging process, the user's palm and fingers may be burned, thereby causing the user to The experience is very bad.
发明内容Summary of the invention
根据本公开的一个方面,提供了一种智能调节充电的方法,包括以下步骤:在移动终端充电期间,所述移动终端检测其被用户接触的接触事件或被用户操作的操作事件;若所述移动终端检测到所述接触事件或所述操作事件,则所述移动终端采集自身的温度数据;所述移动终端根据所述温度数据,调整其充电电流。According to an aspect of the present disclosure, there is provided a method of intelligently adjusting charging, comprising the steps of: detecting, during charging of a mobile terminal, a contact event that is contacted by a user or an operation event operated by a user; The mobile terminal detects the contact event or the operation event, and the mobile terminal collects its own temperature data; the mobile terminal adjusts its charging current according to the temperature data.
根据本公开的另一个方面,提供了一种智能调节充电的装置,包括:检测模块,其配置为在移动终端充电期间,检测所述移动终端被用户接触的接触事件或被用户操作的操作事件;采集模块,其配置 为若检测到所述接触事件或所述操作事件,则采集所述移动终端的温度数据;温控模块,其配置为根据所述温度数据,调整充电电流。According to another aspect of the present disclosure, an apparatus for intelligently adjusting charging is provided, comprising: a detecting module configured to detect a contact event that the mobile terminal is contacted by a user or an operational event operated by a user during charging of the mobile terminal And an acquisition module configured to acquire temperature data of the mobile terminal if the contact event or the operation event is detected; and a temperature control module configured to adjust the charging current according to the temperature data.
根据本公开的又一个方面,提供了一种智能调节充电的设备,包括:处理器以及与所述处理器耦接的存储器;所述存储器上存储有可在所述处理器上运行的智能调节充电的程序,所述智能调节充电的程序被所述处理器执行时实现如上述的智能调节充电的方法的步骤。According to still another aspect of the present disclosure, an apparatus for intelligently adjusting charging includes: a processor and a memory coupled to the processor; the memory storing an intelligent adjustment operable on the processor A charging program that implements the steps of the method of intelligently adjusting charging as described above when executed by the processor.
根据本公开的再一个方面,提供了一种存储介质,其上存储有智能调节充电的程序,所述智能调节充电的程序被处理器执行时实现如上述的智能调节充电的方法的步骤。According to still another aspect of the present disclosure, there is provided a storage medium having stored thereon a program for intelligently adjusting charging, the step of implementing the intelligently adjusted charging method as described above when executed by a processor.
附图说明DRAWINGS
图1是根据本公开实施例提供的智能调节充电的方法流程图;1 is a flow chart of a method for intelligently adjusting charging according to an embodiment of the present disclosure;
图2是根据本公开实施例提供的智能调节充电的装置框图;2 is a block diagram of an apparatus for intelligently adjusting charging provided in accordance with an embodiment of the present disclosure;
图3是根据本公开实施例提供的移动终端的硬件基本布局框图;3 is a block diagram showing a basic hardware layout of a mobile terminal according to an embodiment of the present disclosure;
图4是根据本公开实施例提供的选择用于温控的外壳温度传感器的流程图;以及4 is a flow chart of selecting a housing temperature sensor for temperature control, provided in accordance with an embodiment of the present disclosure;
图5是根据本公开另一实施例提供的温控处理的简要流程图。FIG. 5 is a schematic flow chart of temperature control processing according to another embodiment of the present disclosure.
具体实施方式Detailed ways
以下结合附图对本公开的实施例进行详细说明,应当理解,以下所说明的实施例仅用于说明和解释本公开,并不用于限定本公开。The embodiments of the present disclosure are described in detail below with reference to the accompanying drawings.
在对移动终端进行充电的过程中,为了避免用户对移动终端进行操作过程中由于移动终端温度过高而被灼伤,除了在移动终端设备上做散热处理之外,在一定成本原因和结构厚度等的限制下,更多的是直接采用软件来控制降低电池充电电流的方法来解决充电时的叠加发热问题。为了避免降低充电电流导致的充电时间过长,降低充电电流的触发点各不相同。In the process of charging the mobile terminal, in order to prevent the user from being burnt due to the excessive temperature of the mobile terminal during the operation of the mobile terminal, in addition to performing heat dissipation processing on the mobile terminal device, for a certain cost reason and structural thickness, etc. Under the limitation, more is to directly use software to control the method of reducing the charging current of the battery to solve the problem of superimposed heating during charging. In order to avoid the charging time caused by the reduction of the charging current is too long, the trigger points for lowering the charging current are different.
为了避免移动终端在充电过程中温度过高,一般在电池内部的保护板上设置温度传感器,通过温度传感器检测电池的温度。当电池的温度高于某个值时,使用较低的充电电流对移动终端进行充电。但 是为防止充电时间过长,这个值一般会设置的较高。当用户再进行其他操作时,相应的模块发出的热量与充电模块发出的热量叠加,会导致移动终端的主板温度很快升高,进而导致整机外壳温度不断升高。由于电池上的温度传感器距离主板上的发热源一般较远,主板上某一点温度已经较高了,而还在使用大电流对电池进行充电,这会导致移动终端的外壳温度持续升高,影响用户体验。In order to avoid the temperature of the mobile terminal being too high during the charging process, a temperature sensor is generally disposed on the protection board inside the battery, and the temperature of the battery is detected by the temperature sensor. When the temperature of the battery is above a certain value, the mobile terminal is charged using a lower charging current. However, in order to prevent the charging time from being too long, this value is generally set higher. When the user performs other operations, the heat emitted by the corresponding module is superimposed with the heat generated by the charging module, which causes the temperature of the main board of the mobile terminal to rise rapidly, which in turn causes the temperature of the whole casing to continuously rise. Since the temperature sensor on the battery is generally far away from the heat source on the motherboard, the temperature on the motherboard is already high, and the battery is still charged with a large current, which causes the temperature of the casing of the mobile terminal to continuously rise, affecting user experience.
在一些情况下,有些移动终端通过检测到用户接触或者操作移动终端,来直接降低充电电流,从而以小电流对移动终端充电;检测到用户不接触或不操作移动终端时,以大电流对移动终端充电。但这样带来的问题是,当移动终端电量较低而用户又要对移动终端进行较长时间操作时,如果移动终端的电池电量不足,则用户体验也会不好。In some cases, some mobile terminals directly reduce the charging current by detecting user contact or operating the mobile terminal, thereby charging the mobile terminal with a small current; when detecting that the user does not touch or does not operate the mobile terminal, moving with a large current Terminal charging. However, the problem brought about by this is that when the mobile terminal has a low power and the user has to operate the mobile terminal for a long time, if the mobile terminal's battery power is insufficient, the user experience is not good.
根据本公开的一个方面,提供了一种智能调节充电的方法。图1是根据本公开实施例提供的智能调节充电的方法流程图。如图1所示,该方法包括以下的步骤S101至S103。In accordance with an aspect of the present disclosure, a method of intelligently adjusting charging is provided. 1 is a flow chart of a method of intelligently adjusting charging provided in accordance with an embodiment of the present disclosure. As shown in FIG. 1, the method includes the following steps S101 to S103.
在步骤S101中,在移动终端充电期间,所述移动终端检测其被用户接触的接触事件或被用户操作的操作事件,即检测用户是否接触或操作移动终端。In step S101, during charging of the mobile terminal, the mobile terminal detects a contact event that it is contacted by the user or an operation event that is operated by the user, that is, detects whether the user touches or operates the mobile terminal.
具体地,在步骤S101中,在移动终端充电期间,可以利用人体接触传感器,检测用户是否接触移动终端。Specifically, in step S101, during charging of the mobile terminal, the human body contact sensor may be utilized to detect whether the user contacts the mobile terminal.
具体地,在步骤S101中,在移动终端充电期间,可以通过检测移动终端上的各功能模块的触发和使用情况,确定用户是否操作移动终端。Specifically, in step S101, during charging of the mobile terminal, whether the user operates the mobile terminal may be determined by detecting triggering and usage of each functional module on the mobile terminal.
在步骤S102中,若所述移动终端检测到所述接触事件或所述操作事件,则所述移动终端采集自身的温度数据。即若检测到用户接触或操作移动终端,则移动终端采集自身的温度数据,特别是采集能够实时反映移动终端的整机外壳温度的温度数据。In step S102, if the mobile terminal detects the contact event or the operation event, the mobile terminal collects its own temperature data. That is, if it is detected that the user touches or operates the mobile terminal, the mobile terminal collects its own temperature data, in particular, collects temperature data that can reflect the temperature of the whole casing of the mobile terminal in real time.
在采集能够实时反映移动终端的整机外壳温度的温度数据时,通过预先设置在移动终端上的预定位置处的温度传感器来获得移动终端的整机外壳温度的温度数据。When collecting temperature data capable of reflecting the temperature of the entire casing of the mobile terminal in real time, the temperature data of the temperature of the whole casing of the mobile terminal is obtained by a temperature sensor at a predetermined position on the mobile terminal in advance.
在一些实施例中,在步骤S102(或者步骤S101)之前,还包括 确定以上所述的预定位置的步骤,该确定预定位置的步骤包括以下步骤。首先,根据移动终端的主板上的各个发热源的布局,对移动终端的发热情况进行仿真处理。具体地,移动终端的主板上设置有多个功能模块,在用户进行不同的接触事件或操作事件时,不同的功能模块发挥作用。此时,相应的功能模块发出热量,从而可将不同的功能模块作为不同的发热源。为获得不同的接触事件或操作事件与移动终端的主板上的各个发热源的对应关系,可以对移动终端的发热情况进行仿真处理。In some embodiments, prior to step S102 (or step S101), the step of determining the predetermined location described above is further included, the step of determining the predetermined location comprising the following steps. First, according to the layout of each heat source on the main board of the mobile terminal, the heat generation condition of the mobile terminal is simulated. Specifically, a plurality of function modules are disposed on the main board of the mobile terminal, and different function modules function when the user performs different contact events or operation events. At this time, the corresponding function module emits heat, so that different functional modules can be used as different heat sources. In order to obtain a correspondence between different contact events or operation events and respective heat sources on the main board of the mobile terminal, the heat generation condition of the mobile terminal can be simulated.
然后,根据仿真处理的结果,确定移动终端的主板上远离移动终端的主板上的各个发热源并且能够实时反映移动终端的整机外壳最高温度的多个位置。具体地,可以根据仿真结果,确定不同的接触事件或操作事件与移动终端的主板上的各个发热源的对应关系,进而通过该对应关系确定能够实时反映移动终端的整机外壳最高温度的多个位置。Then, according to the result of the simulation processing, each heat source on the main board of the mobile terminal remote from the mobile terminal is determined and a plurality of positions of the highest temperature of the whole casing of the mobile terminal can be reflected in real time. Specifically, according to the simulation result, a correspondence between different contact events or operation events and each heat source on the main board of the mobile terminal may be determined, and then the corresponding relationship may be used to determine a plurality of real-time reflecting the maximum temperature of the whole casing of the mobile terminal. position.
最后,在每个位置上分别放置温度传感器。通过相应位置处的温度传感器采集的温度数据,可以获得相应事件发生时移动终端的整机外壳的最高温度。Finally, a temperature sensor is placed at each location. Through the temperature data collected by the temperature sensor at the corresponding position, the maximum temperature of the whole casing of the mobile terminal at the time of the corresponding event can be obtained.
在一些实施例中,预定的事件与传感器的对应关系是预先确定的,确定所述对应关系包括以下步骤。In some embodiments, the correspondence between the predetermined event and the sensor is predetermined, and determining the correspondence includes the following steps.
首先,当处于充电状态时,针对预定的事件,移动终端获取其整机外壳的最高发热点的温度变化趋势。然后,若处于移动终端上的某一位置处的用于温控的传感器实时采集并记录的温度的变化趋势与最高发热点的温度变化趋势一致,则将处于该位置处的用于温控的传感器作为移动终端检测到相应事件时的用于温控的传感器。First, when in the charging state, for a predetermined event, the mobile terminal acquires a temperature change trend of the highest heat point of the entire casing. Then, if the temperature change trend of the sensor for temperature control collected and recorded in real time at a certain position on the mobile terminal coincides with the temperature change trend of the highest heat point, the temperature control at the position will be used. The sensor acts as a sensor for temperature control when the mobile terminal detects the corresponding event.
具体地,处于充电状态的移动终端获取不同事件发生时(即用户接触或操作处于充电状态的移动终端时),其整机外壳的最高发热点的温度变化趋势,并记录各种事件下整机外壳最高发热曲线和同一时间下用于温控的传感器的温度值曲线。对各种事件下整机外壳最高发热曲线和同一时间下用于温控的传感器的温度值曲线进行比对,若处于某一位置的用于温控的传感器实时采集并记录的温度的变化趋 势与最高发热点的温度变化趋势一致,则将处于相应位置的用于温控的传感器作为移动终端检测到相应事件时的用于温控的传感器。其中,该位置可以是移动终端整机外壳温度最高的位置,也可以是与最高温度有固定温差的位置,本公开实施例包括但不限于以上位置,只要该位置的温度能够反映不同操作下整机外壳的最高温度即可。Specifically, when the mobile terminal in the charging state acquires a temperature change trend of the highest heating point of the whole casing of the mobile device when the different events occur (ie, when the user touches or operates the mobile terminal in the charging state), the whole machine is recorded under various events. The maximum heating curve of the casing and the temperature value curve of the sensor for temperature control at the same time. Compare the maximum heating curve of the whole machine casing under various events and the temperature value curve of the sensor for temperature control at the same time. If the temperature control sensor in a certain position collects and records the temperature change trend in real time, In accordance with the temperature change trend of the highest heat point, the sensor for temperature control at the corresponding position is used as a sensor for temperature control when the corresponding event is detected by the mobile terminal. The location may be the location where the temperature of the whole casing of the mobile terminal is the highest, or may be a position with a fixed temperature difference from the highest temperature. The embodiment of the present disclosure includes but is not limited to the above location, as long as the temperature of the location can reflect different operations. The maximum temperature of the casing can be.
在步骤S102中,移动终端根据在步骤S101之前预定的事件与传感器的对应关系,确定移动终端检测到其正在进行的预定的接触事件或操作事件对应的用于温控的传感器,并利用用于温控的传感器,采集例如预定的接触事件或操作事件发生时的温度数据。用于温控的传感器放置在移动终端的主板上远离移动终端的主板上的各个发热源并且在接触事件或操作事件发生时能够实时反映移动终端的整机外壳的最高温度的位置处。In step S102, the mobile terminal determines, according to the correspondence between the event and the sensor that is scheduled before step S101, that the mobile terminal detects a sensor for temperature control corresponding to a predetermined contact event or operation event that is being performed by the mobile terminal, and uses The temperature-controlled sensor collects temperature data such as a predetermined contact event or an operational event. The sensor for temperature control is placed on the main board of the mobile terminal away from the respective heat sources on the main board of the mobile terminal and can reflect the highest temperature of the entire casing of the mobile terminal in real time when a contact event or an operation event occurs.
也就是说,若检测到用户接触移动终端,则启动用户接触移动终端时相应的用于温控的温度传感器,并通过用户接触移动终端时用于温控的温度传感器采集移动终端的整机外壳的温度数据。同样地,若检测到用户操作移动终端,则启动用户操作移动终端时相应操作对应的用于温控的温度传感器,并通过用户操作移动终端时相应操作对应的用于温控的温度传感器采集移动终端的整机外壳的温度数据。That is to say, if it is detected that the user contacts the mobile terminal, the corresponding temperature sensor for temperature control is started when the user contacts the mobile terminal, and the whole casing of the mobile terminal is collected by the temperature sensor for temperature control when the user contacts the mobile terminal. Temperature data. Similarly, if it is detected that the user operates the mobile terminal, the user operates the corresponding temperature sensor for temperature control when the user operates the mobile terminal, and collects the corresponding temperature sensor for temperature control when the user operates the mobile terminal. Temperature data of the entire casing of the terminal.
在步骤S103中,所述移动终端根据所述温度数据,调整移动终端的充电电流。In step S103, the mobile terminal adjusts the charging current of the mobile terminal according to the temperature data.
在步骤S103中,若温度数据高于预设温度阈值,则移动终端按照预设第一充电电流对其电池进行充电,否则按照大于预设第一充电电流的预设第二充电电流,对其电池进行充电。该预设温度阈值是让用户感觉接触该移动终端时比较适宜的温度,一般比电池内部的温度传感器的温度阈值低。In step S103, if the temperature data is higher than the preset temperature threshold, the mobile terminal charges the battery according to the preset first charging current, otherwise, according to the preset second charging current that is greater than the preset first charging current, The battery is charged. The preset temperature threshold is a temperature suitable for the user to feel contact with the mobile terminal, and is generally lower than a temperature threshold of the temperature sensor inside the battery.
若在步骤S101中,移动终端未检测到接触事件或操作事件(即未检测到用户接触或操作移动终端),则移动终端按照预设第二充电电流对其电池进行充电。If the mobile terminal does not detect a contact event or an operation event (ie, no user contact is detected or operates the mobile terminal) in step S101, the mobile terminal charges the battery according to the preset second charging current.
在本公开中,当对移动终端进行充电时,在检测到用户接触或操作移动终端时,可以根据移动终端的主板上内置的用于温控的传感 器实时监测整机外壳温度。然后根据整机外壳温度来调整充电电流,这样不会灼伤用户,也能提高充电速率,减少充电时间。In the present disclosure, when charging the mobile terminal, when detecting that the user touches or operates the mobile terminal, the temperature of the entire casing can be monitored in real time according to the sensor for temperature control built in the main board of the mobile terminal. Then adjust the charging current according to the temperature of the whole casing, so as not to burn the user, it can also increase the charging rate and reduce the charging time.
根据本公开的另一个方面,提供了一种智能调节充电的装置。图2是本公开实施例提供的智能调节充电的装置框图,该装置包括检测模块、采集模块和温控模块。其中,检测模块配置为在移动终端充电期间,检测所述移动终端被用户接触的接触事件或被用户操作的操作事件。采集模块配置为若检测到所述接触事件或所述操作事件,则采集所述移动终端的温度数据。温控模块配置为根据所述温度数据,调整其充电电流。In accordance with another aspect of the present disclosure, an apparatus for intelligently adjusting charging is provided. 2 is a block diagram of an apparatus for intelligently adjusting charging provided by an embodiment of the present disclosure, the apparatus comprising a detection module, an acquisition module, and a temperature control module. The detection module is configured to detect a contact event that the mobile terminal is contacted by the user or an operation event that is operated by the user during charging of the mobile terminal. The acquisition module is configured to collect temperature data of the mobile terminal if the contact event or the operation event is detected. The temperature control module is configured to adjust its charging current based on the temperature data.
具体地,采集模块包括位于移动终端的主板上的多个位置处的温度传感器。温度传感器远离主板上的各个发热源,且根据测试,每个温度传感器采集的温度数据能够实时反映不同事件发生时(即用户对移动终端的接触事件或操作事件)移动终端的整机外壳的最高温度。基于此,本公开实施例可以预设一张对照表,通过查所述对照表,找到不同事件发生时(即用户接触移动终端或对移动终端进行不同操作时),能够反映整机外壳的最高温度的温度传感器,并将该温度传感器作为用户接触或操作移动终端时用于温控的传感器。In particular, the acquisition module includes temperature sensors located at a plurality of locations on the main board of the mobile terminal. The temperature sensor is away from each heat source on the main board, and according to the test, the temperature data collected by each temperature sensor can reflect the highest time of the whole machine casing of the mobile terminal when different events occur (ie, the user's contact event or operation event to the mobile terminal). temperature. Based on this, the embodiment of the present disclosure can preset a comparison table, and by searching the comparison table, find that when different events occur (that is, when the user touches the mobile terminal or performs different operations on the mobile terminal), the highest value of the whole casing can be reflected. The temperature sensor of the temperature and uses the temperature sensor as a sensor for temperature control when the user touches or operates the mobile terminal.
具体工作时,若在移动终端充电期间,检测模块检测到移动终端被用户接触的接触事件或被用户操作的操作事件(即用户接触或操作移动终端),则采集模块确定接触事件或操作事件对应的用于温控的传感器(即找到对移动终端进行触摸或对移动终端进行操作时对应的用于温控的温度传感器),并启动温度传感器以采集移动终端的整机外壳的温度数据。若温度传感器采集的温度值高于预设温度阈值,则温控模块按照预设第一充电电流对移动终端的电池进行充电,否则温控模块按照大于预设第一充电电流的预设第二充电电流对移动终端的电池进行充电。In a specific work, if the detecting module detects a contact event that the mobile terminal is touched by the user or an operation event that is operated by the user during the charging of the mobile terminal (ie, the user touches or operates the mobile terminal), the collecting module determines that the contact event or the operation event corresponds to The sensor for temperature control (ie, the corresponding temperature sensor for temperature control when the mobile terminal is touched or operated on the mobile terminal), and the temperature sensor is activated to collect the temperature data of the whole casing of the mobile terminal. If the temperature value collected by the temperature sensor is higher than the preset temperature threshold, the temperature control module charges the battery of the mobile terminal according to the preset first charging current, otherwise the temperature control module presets the second according to the preset first charging current. The charging current charges the battery of the mobile terminal.
在一些实施例中,所述采集模块还配置为根据预定的事件与传感器的对应关系,确定检测到的所述接触事件或所述操作事件对应的用于温控的传感器;利用所述用于温控的传感器,采集所述接触事件或所述操作事件发生时所述移动终端的自身的温度数据。In some embodiments, the acquisition module is further configured to determine, according to a predetermined event-to-sensor correspondence, the detected contact event or the sensor corresponding to the operation event for temperature control; The temperature-controlled sensor collects the temperature data of the mobile terminal itself when the contact event or the operation event occurs.
在一些实施例中,所述用于温控的传感器放置于所述移动终端的主板上远离所述移动终端的主板上的各个发热源、并且在所述接触事件或所述操作事件发生时能够实时反映所述移动终端的整机外壳最高温度的位置处。In some embodiments, the sensor for temperature control is placed on a main board of the mobile terminal remote from respective heat sources on the main board of the mobile terminal, and can be capable of occurring when the contact event or the operation event occurs The position of the highest temperature of the whole casing of the mobile terminal is reflected in real time.
在一些实施例中,所述位置是预先确定的,所述采集模块还配置为根据所述移动终端的主板上的各个发热源的布局,对所述移动终端的发热情况进行仿真处理;根据所述仿真处理的结果,确定所述移动终端上远离所述移动终端的主板上的各个发热源并且能够实时反映所述移动终端的整机外壳最高温度的多个位置。In some embodiments, the location is predetermined, and the collecting module is further configured to perform simulation processing on a heat generation condition of the mobile terminal according to a layout of each heat source on a main board of the mobile terminal; As a result of the simulation process, each of the heat sources on the main board remote from the mobile terminal on the mobile terminal is determined and a plurality of locations of the highest temperature of the whole casing of the mobile terminal can be reflected in real time.
在一些实施例中,所述采集模块还配置为当所述移动终端处于充电状态时,针对预定的事件,获取所述移动终端的整机外壳的最高发热点的温度变化趋势。In some embodiments, the acquisition module is further configured to acquire a temperature change trend of a highest heat point of the entire casing of the mobile terminal for a predetermined event when the mobile terminal is in a charging state.
若处于所述移动终端上的某一位置处的用于温控的传感器实时采集并记录的温度的变化趋势与所述最高发热点的温度变化趋势一致,则将处于所述位置处的用于温控的传感器作为所述移动终端检测到相应事件时的用于温控的传感器。If the trend of temperature collected and recorded by the sensor for temperature control at a certain position on the mobile terminal coincides with the temperature change trend of the highest heat point, then the position at the position is used for The temperature-controlled sensor is used as a sensor for temperature control when the mobile terminal detects a corresponding event.
在一些实施例中,所述温控模块还配置为若所述温度数据高于预设温度阈值,则按照预设第一充电电流对所述移动终端的电池进行充电,否则按照大于所述预设第一充电电流的预设第二充电电流,对所述移动终端的电池进行充电。In some embodiments, the temperature control module is further configured to: if the temperature data is higher than a preset temperature threshold, charging the battery of the mobile terminal according to a preset first charging current; And setting a second charging current of the first charging current to charge the battery of the mobile terminal.
在一些实施例中,所述温控模块还配置为若所述检测模块检测到所述接触事件或所述操作事件,则按照所述预设第二充电电流对所述移动终端的电池进行充电。In some embodiments, the temperature control module is further configured to: if the detection module detects the contact event or the operation event, charging the battery of the mobile terminal according to the preset second charging current .
在本公开中,当对移动终端进行充电时,在检测模块检测到用户接触或操作移动终端时,温控模块可以根据移动终端的主板上采集模块中内置的用于温控的传感器实时监测整机外壳温度。然后温控模块根据整机外壳温度来调整充电电流,这样不会灼伤用户,也能提高充电速率,减少充电时间。In the present disclosure, when the mobile terminal is charging, when the detecting module detects that the user touches or operates the mobile terminal, the temperature control module can monitor the real-time monitoring according to the sensor for temperature control built in the collecting module on the main board of the mobile terminal. Machine case temperature. Then, the temperature control module adjusts the charging current according to the temperature of the whole casing, so that the user can not be burned, the charging rate can be increased, and the charging time can be reduced.
根据本公开的又一个方面,提供了一种智能调节充电的设备,该设备包括处理器以及与所述处理器耦接的存储器,所述存储器上存 储有可在所述处理器上运行的智能调节充电的程序,所述智能调节充电的程序被所述处理器执行时实现如上述的智能调节充电的方法的步骤。In accordance with still another aspect of the present disclosure, an apparatus for intelligently adjusting charging is provided, the apparatus including a processor and a memory coupled to the processor, the memory having an intelligence executable on the processor A program for adjusting the charging, the step of implementing the intelligently adjusted charging method as described above, when the program for intelligently adjusting the charging is executed by the processor.
图3是本公开实施例提供的移动终端的硬件基本布局框图。如图3所示,本公开实施例在移动终端的主板上的一个或几个远离发热源的位置处放置外壳温度传感器(例如第二外壳温度传感器10、第一外壳温度传感器11,还可以设置更多温度传感器)。当用户充电玩游戏时,图3中的应用处理器(Application Processor,AP)主芯片3、存储器2、电源管理芯片5和充电芯片4发热较大;当充电上网时,无线网(WIreless-Fidelity,WIFI)模块6(例如利用WIFI上网)、3/4G功率放大器(Power Amplifier,PA)8(例如利用移动网络上网)和充电芯片4发热较大;当充电通话时,全球移动通信(Global System for Mobile communications,GSM)系统PA 7和充电芯片4发热较大等等。FIG. 3 is a block diagram of a basic hardware layout of a mobile terminal according to an embodiment of the present disclosure. As shown in FIG. 3, the embodiment of the present disclosure places a housing temperature sensor (for example, a second housing temperature sensor 10, a first housing temperature sensor 11) at a position on the main board of the mobile terminal that is remote from the heat source, and can also be set. More temperature sensors). When the user is charging to play the game, the application processor (AP) of the application processor (AP) in FIG. 3, the memory 2, the power management chip 5, and the charging chip 4 generate a large amount of heat; when charging the Internet, the wireless network (WIreless-Fidelity) , WIFI) module 6 (for example, using WIFI Internet access), 3/4G Power Amplifier (PA) 8 (for example, using mobile network to access the Internet) and charging chip 4 heat up; when charging calls, Global Mobile Communications (Global System) For Mobile communications, GSM) system PA 7 and charging chip 4 heat up and so on.
外壳温度传感器经过测试可以稳定反映进行对应操作(例如玩游戏、上网、打电话等)时移动终端的整机外壳的最高温度,或者与最高温度具有固定差值的温度。当移动终端在充电且检测到用户接触移动终端或对移动终端进行操作时,先检测与用户接触或操作对应的外壳温度传感器的温度。当这个温度传感器的温度值超过预定阈值时(也就是这个外壳温度传感器的温度可以反映移动终端外壳的最高温度,这个值就是用户接触移动终端时感觉比较适宜的温度,比电池内部温度传感器设置的要低些),再以较低的充电电流对移动终端进行充电,否则以大电流或中等电流对移动终端进行充电。这样不会给用户带来不适,也能提高充电速率,减少充电时间。The case temperature sensor has been tested to stably reflect the maximum temperature of the entire casing of the mobile terminal when performing corresponding operations (such as playing games, surfing the Internet, making a phone call, etc.), or a temperature having a fixed difference from the highest temperature. When the mobile terminal is charging and detecting that the user contacts or operates the mobile terminal, the temperature of the housing temperature sensor corresponding to the user's contact or operation is first detected. When the temperature value of the temperature sensor exceeds a predetermined threshold (that is, the temperature of the housing temperature sensor can reflect the maximum temperature of the mobile terminal housing, this value is a temperature that is suitable when the user touches the mobile terminal, and is set higher than the internal temperature sensor of the battery. To be lower, the mobile terminal is charged with a lower charging current, otherwise the mobile terminal is charged with a large current or a medium current. This will not cause discomfort to the user, but also increase the charging rate and reduce the charging time.
图4是本公开实施例提供的选择用于温控的外壳温度传感器的流程图。如图4所示,该流程图包括以下的步骤S201至步骤S203。4 is a flow chart of selecting a housing temperature sensor for temperature control according to an embodiment of the present disclosure. As shown in FIG. 4, the flowchart includes the following steps S201 to S203.
在步骤S201中,根据主板布局对移动终端进行各种情况下的发热仿真,将外壳温度传感器1、2、……N放在距离主板上几个发热源相对较远的位置处。由于外壳温度传感器距离各发热源较远,这样在对移动终端进行各种操作时时,主板上各发热源发出的热量不会让外 壳温度传感器很快的升温。此处的各种情况包括用户对移动终端的接触事件和各种操作事件。In step S201, the mobile terminal is subjected to heat generation simulation in various situations according to the layout of the main board, and the case temperature sensors 1, 2, ..., N are placed at a position relatively far from the heat source of the main board. Since the case temperature sensor is far away from each heat source, the heat generated by each heat source on the main board does not cause the temperature of the case temperature to rise quickly when performing various operations on the mobile terminal. The various situations herein include user contact events to the mobile terminal and various operational events.
在步骤S202中,通过扫描移动终端充电且对移动终端进行各种操作时主板上的发热点,找到移动终端充电且对移动终端进行各种操作时移动终端的整机外壳的几个较高发热点,进而找到整机外壳的与各种操作模式对应的最高发热点。In step S202, by scanning the hot spot on the main board when the mobile terminal is charging and performing various operations on the mobile terminal, several high heat points of the whole casing of the mobile terminal when the mobile terminal is charged and various operations are performed on the mobile terminal are found. In turn, the highest heat point corresponding to various operating modes of the entire casing is found.
在步骤S203中,记录各种操作情况下移动终端的整机外壳最高发热点的曲线,通过软件读取同一时间的外壳温度传感器的温度值。In step S203, the curve of the highest heating point of the whole casing of the mobile terminal under various operating conditions is recorded, and the temperature value of the casing temperature sensor at the same time is read by software.
在步骤S204中,通过曲线对比找到与对移动终端进行各种操作时整机外壳的最高发热点的发热趋势一致的外壳温度传感器,并将该外壳温度传感器作为用于温控的外壳温度传感器。In step S204, a case temperature sensor which is consistent with the heat generation tendency of the highest heat generation point of the entire casing when performing various operations on the mobile terminal is found by curve comparison, and the case temperature sensor is used as the case temperature sensor for temperature control.
以图3为例,根据主板上各功能模块的布局情况,对移动终端的发热情况进行仿真。具体地,在主板上的第一位置和第二位置分别设置第一外壳温度传感器11和第二外壳温度传感器10。在移动终端充电期间,用户对移动终端进行操作(例如通话)时,一方面分别记录第一外壳温度传感器11和第二外壳温度传感器10实时采集的温度数据,另一方面扫描整机外壳的发热点,找出充电通话时整机外壳的最高发热点,并绘制最高发热点的温度曲线。如果用户对移动终端进行操作(例如通话)时,外壳温度传感器11的温度变化趋势与整机外壳最高发热点的温度变化趋势一致,则将外壳温度传感器11作为充电通话时用来进行温控的外壳温度传感器,即充电通话时,利用外壳温度传感器11采集的温度数据作为调节充电电流大小的依据。Taking FIG. 3 as an example, the heating condition of the mobile terminal is simulated according to the layout of each functional module on the main board. Specifically, the first housing temperature sensor 11 and the second housing temperature sensor 10 are respectively disposed at the first position and the second position on the main board. During the charging of the mobile terminal, when the user operates the mobile terminal (for example, a call), on the one hand, the temperature data collected by the first housing temperature sensor 11 and the second housing temperature sensor 10 in real time is recorded, and on the other hand, the hair of the whole casing is scanned. Hotspots, find the highest hot spot of the whole machine casing during charging calls, and draw the temperature curve of the highest hot spot. If the user operates the mobile terminal (for example, the call), the temperature change trend of the outer casing temperature sensor 11 is consistent with the temperature change trend of the highest hot spot of the whole casing, and the outer casing temperature sensor 11 is used for temperature control when charging the call. The case temperature sensor, that is, during charging talk, uses the temperature data collected by the case temperature sensor 11 as a basis for adjusting the magnitude of the charging current.
图5是本公开另一实施例提供的温控处理的简要流程图。所述处理可以由软件实现。如图5所示,该流程图包括以下的步骤S301至S304。FIG. 5 is a schematic flow chart of temperature control processing according to another embodiment of the present disclosure. The processing can be implemented by software. As shown in FIG. 5, the flowchart includes the following steps S301 to S304.
在步骤S301中,在对移动终端的电池进行充电的状态下,检测用户是否接触移动终端或对移动终端进行(触摸)操作,若是则执行步骤S302,否则执行步骤S303。In step S301, in a state where the battery of the mobile terminal is charged, it is detected whether the user touches the mobile terminal or performs a (touch) operation on the mobile terminal, and if yes, step S302 is performed, otherwise step S303 is performed.
在步骤S302中,读取与操作对应的外壳温度传感器的温度值,并判断读取的温度值是否高于设定的温度阈值,若是则执行步骤 S304,否则执行步骤S303。In step S302, the temperature value of the case temperature sensor corresponding to the operation is read, and it is judged whether the read temperature value is higher than the set temperature threshold. If yes, step S304 is performed, otherwise step S303 is performed.
在步骤S303中,以第二充电电流对移动终端的电池进行充电。In step S303, the battery of the mobile terminal is charged with the second charging current.
在步骤S304中,以第一充电电流对移动终端的电池进行充电。其中,第二充电电流的值大于第一充电电流的值。In step S304, the battery of the mobile terminal is charged with the first charging current. Wherein, the value of the second charging current is greater than the value of the first charging current.
也就是说,在移动终端充电期间,当检测到用户接触或对移动终端进行应操作时,先检测对应的外壳温度传感器的温度值,当这个温度值高于预定的阀值时,以第一充电电流充电,当这个温度值低于该阀值时,以第二充电电流充电。其中,第二充电电流的值大于第一充电电流的值。That is to say, during the charging of the mobile terminal, when detecting the user's contact or performing the operation on the mobile terminal, the temperature value of the corresponding housing temperature sensor is first detected, and when the temperature value is higher than the predetermined threshold, the first The charging current is charged, and when the temperature value is lower than the threshold, the second charging current is charged. Wherein, the value of the second charging current is greater than the value of the first charging current.
本领域普通技术人员可以理解,实现上述实施例方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,所述的程序可以存储于计算机可读取存储介质中。根据本公开的再一个方面,还提供了一种存储介质,其上存储有智能调节充电的程序,所述智能调节充电的程序被处理器执行时实现如上述的智能调节充电的方法的步骤。其中,所述的存储介质可以包括ROM/RAM、磁碟、光盘、U盘。It will be understood by those skilled in the art that all or part of the steps of the above embodiments may be implemented by a program to instruct related hardware, and the program may be stored in a computer readable storage medium. According to still another aspect of the present disclosure, there is also provided a storage medium having stored thereon a program for intelligently adjusting charging, the step of implementing the intelligent adjustment charging method as described above when the program for intelligently adjusting charging is executed by a processor. The storage medium may include a ROM/RAM, a magnetic disk, an optical disk, and a USB flash drive.
综上所述,本公开实施例在对移动终端充电时,如果检测到有人体接触移动终端或对移动终端进行预定的操作,则进一步检测能够实时反映移动终端的整机外壳温度的外壳温度传感器的温度数据,根据该温度传感器的温度数据来决定是否降低充电电流,以减少设备充电时间,提高用户充电体验。In summary, when charging a mobile terminal, the embodiment of the present disclosure further detects a housing temperature sensor capable of reflecting the temperature of the whole casing of the mobile terminal in real time if a human body is detected to contact the mobile terminal or perform a predetermined operation on the mobile terminal. The temperature data determines whether to reduce the charging current according to the temperature data of the temperature sensor, so as to reduce the charging time of the device and improve the charging experience of the user.
尽管上文对本公开进行了详细说明,但是本公开不限于此,本技术领域技术人员可以根据本公开的原理进行各种修改。因此,凡按照本公开原理所作的修改,都应当理解为落入本公开的保护范围。Although the present disclosure has been described in detail above, the present disclosure is not limited thereto, and various modifications may be made by those skilled in the art in accordance with the principles of the present disclosure. Therefore, modifications made in accordance with the principles of the present disclosure are to be understood as falling within the scope of the present disclosure.

Claims (16)

  1. 一种智能调节充电的方法,包括以下步骤:A method for intelligently adjusting charging, comprising the following steps:
    在移动终端充电期间,所述移动终端检测其被用户接触的接触事件或被用户操作的操作事件;During charging of the mobile terminal, the mobile terminal detects a contact event that it is contacted by the user or an operation event that is operated by the user;
    若所述移动终端检测到所述接触事件或所述操作事件,则所述移动终端采集自身的温度数据;If the mobile terminal detects the contact event or the operation event, the mobile terminal collects its own temperature data;
    所述移动终端根据所述温度数据,调整其充电电流。The mobile terminal adjusts its charging current according to the temperature data.
  2. 根据权利要求1所述的方法,其中,所述若所述移动终端检测到所述接触事件或所述操作事件,则所述移动终端采集自身的温度数据的步骤包括以下步骤:The method according to claim 1, wherein if the mobile terminal detects the contact event or the operation event, the step of the mobile terminal collecting its own temperature data comprises the following steps:
    所述移动终端根据预定的事件与传感器的对应关系,确定检测到的所述接触事件或所述操作事件对应的用于温控的传感器;Determining, by the mobile terminal, the sensor for temperature control corresponding to the detected contact event or the operation event according to a predetermined relationship between the event and the sensor;
    所述移动终端利用所述用于温控的传感器,采集所述接触事件或所述操作事件发生时所述移动终端的自身的温度数据。The mobile terminal uses the sensor for temperature control to collect the temperature data of the mobile terminal when the contact event or the operation event occurs.
  3. 根据权利要求2所述的方法,其中,所述用于温控的传感器放置于所述移动终端的主板上远离所述移动终端的主板上的各个发热源、并且在所述接触事件或所述操作事件发生时能够实时反映所述移动终端的整机外壳最高温度的位置处。The method according to claim 2, wherein said sensor for temperature control is placed on a main board of said mobile terminal remote from respective heat sources on said main board of said mobile terminal, and said contact event or said When the operation event occurs, it can reflect the position of the highest temperature of the whole casing of the mobile terminal in real time.
  4. 根据权利要求3所述的方法,其中,所述位置是预先确定的,确定所述位置的步骤包括以下步骤:The method of claim 3 wherein said location is predetermined and said step of determining said location comprises the step of:
    根据所述移动终端的主板上的各个发热源的布局,对所述移动终端的发热情况进行仿真处理;Simulating a heat generation condition of the mobile terminal according to a layout of each heat source on a main board of the mobile terminal;
    根据所述仿真处理的结果,确定所述移动终端上远离所述移动终端的主板上的各个发热源并且能够实时反映所述移动终端的整机外壳最高温度的多个位置。And determining, according to the result of the simulation processing, each heat source on the main board remote from the mobile terminal on the mobile terminal and capable of reflecting a plurality of positions of the highest temperature of the whole casing of the mobile terminal in real time.
  5. 根据权利要求4所述的方法,其中,预定的事件与传感器的对应关系是预先确定的,确定所述对应关系的步骤包括以下步骤:The method according to claim 4, wherein the correspondence between the predetermined event and the sensor is predetermined, and the step of determining the correspondence includes the following steps:
    当处于充电状态的时,针对预定的事件,所述移动终端获取其整机外壳的最高发热点的温度变化趋势;When in the charging state, the mobile terminal acquires a temperature change trend of the highest heat point of the whole casing of the whole machine for a predetermined event;
    若处于所述移动终端上的某一位置处的用于温控的传感器实时采集并记录的温度的变化趋势与所述最高发热点的温度变化趋势一致,则将处于所述位置处的用于温控的传感器作为所述移动终端检测到相应事件时的用于温控的传感器。If the trend of temperature collected and recorded by the sensor for temperature control at a certain position on the mobile terminal coincides with the temperature change trend of the highest heat point, then the position at the position is used for The temperature-controlled sensor is used as a sensor for temperature control when the mobile terminal detects a corresponding event.
  6. 根据权利要求1-5中任意一项所述的方法,其中,所述移动终端根据所述温度数据,调整其充电电流包括以下步骤:The method according to any one of claims 1 to 5, wherein the mobile terminal adjusts its charging current according to the temperature data, comprising the steps of:
    若所述温度数据高于预设温度阈值,则所述移动终端按照预设第一充电电流对其电池进行充电,否则按照大于所述预设第一充电电流的预设第二充电电流,对其电池进行充电。If the temperature data is higher than the preset temperature threshold, the mobile terminal charges the battery according to the preset first charging current, otherwise, according to the preset second charging current that is greater than the preset first charging current, Its battery is charged.
  7. 根据权利要求6所述的方法,其中,还包括:The method of claim 6 further comprising:
    若所述移动终端未检测到所述接触事件或所述操作事件,则所述移动终端按照所述预设第二充电电流对其电池进行充电。If the mobile terminal does not detect the contact event or the operation event, the mobile terminal charges the battery according to the preset second charging current.
  8. 一种智能调节充电的装置,包括:A device for intelligently adjusting charging, comprising:
    检测模块,其配置为在移动终端充电期间,检测所述移动终端被用户接触的接触事件或被用户操作的操作事件;a detecting module configured to detect a contact event that the mobile terminal is contacted by the user or an operation event that is operated by the user during charging of the mobile terminal;
    采集模块,其配置为若检测到所述接触事件或所述操作事件,则采集所述移动终端的温度数据;An acquisition module configured to collect temperature data of the mobile terminal if the contact event or the operation event is detected;
    温控模块,其配置为根据所述温度数据,调整所述移动终端的充电电流。And a temperature control module configured to adjust a charging current of the mobile terminal according to the temperature data.
  9. 根据权利要求8所述的装置,其中,所述采集模块还配置为:The apparatus of claim 8, wherein the acquisition module is further configured to:
    根据预定的事件与传感器的对应关系,确定检测到的所述接触事件或所述操作事件对应的用于温控的传感器;Determining, according to a predetermined relationship between the event and the sensor, a sensor for temperature control corresponding to the detected contact event or the operation event;
    利用所述用于温控的传感器,采集所述接触事件或所述操作事件发生时所述移动终端的自身的温度数据。Using the sensor for temperature control, the contact event or the temperature data of the mobile terminal itself when the operation event occurs is acquired.
  10. 根据权利要求9所述的装置,其中,所述用于温控的传感器放置于所述移动终端的主板上远离所述移动终端的主板上的各个发热源、并且在所述接触事件或所述操作事件发生时能够实时反映所述移动终端的整机外壳最高温度的位置处。The apparatus according to claim 9, wherein said sensor for temperature control is placed on a main board of said mobile terminal remote from respective heat sources on said main board of said mobile terminal, and said contact event or said When the operation event occurs, it can reflect the position of the highest temperature of the whole casing of the mobile terminal in real time.
  11. 根据权利要求10所述的装置,其中,所述位置是预先确定的,所述采集模块还配置为:The apparatus of claim 10, wherein the location is predetermined, and the acquisition module is further configured to:
    根据所述移动终端的主板上的各个发热源的布局,对所述移动终端的发热情况进行仿真处理;Simulating a heat generation condition of the mobile terminal according to a layout of each heat source on a main board of the mobile terminal;
    根据所述仿真处理的结果,确定所述移动终端上远离所述移动终端的主板上的各个发热源并且能够实时反映所述移动终端的整机外壳最高温度的多个位置。And determining, according to the result of the simulation processing, each heat source on the main board remote from the mobile terminal on the mobile terminal and capable of reflecting a plurality of positions of the highest temperature of the whole casing of the mobile terminal in real time.
  12. 根据权利要求11所述的装置,其中,所述采集模块还配置为:The apparatus of claim 11, wherein the acquisition module is further configured to:
    当所述移动终端处于充电状态时,针对预定的事件,获取所述移动终端的整机外壳的最高发热点的温度变化趋势;Obtaining a temperature change trend of a highest heat point of the whole casing of the mobile terminal for a predetermined event when the mobile terminal is in a charging state;
    若处于所述移动终端上的某一位置处的用于温控的传感器实时采集并记录的温度的变化趋势与所述最高发热点的温度变化趋势一致,则将处于所述位置处的用于温控的传感器作为所述移动终端检测到相应事件时的用于温控的传感器。If the trend of temperature collected and recorded by the sensor for temperature control at a certain position on the mobile terminal coincides with the temperature change trend of the highest heat point, then the position at the position is used for The temperature-controlled sensor is used as a sensor for temperature control when the mobile terminal detects a corresponding event.
  13. 根据权利要求8-12中任意一项所述的装置,其中,所述温控模块还配置为:The apparatus of any of claims 8-12, wherein the temperature control module is further configured to:
    若所述温度数据高于预设温度阈值,则按照预设第一充电电流对所述移动终端的电池进行充电,否则按照大于所述预设第一充电电流的预设第二充电电流,对所述移动终端的电池进行充电。If the temperature data is higher than the preset temperature threshold, charging the battery of the mobile terminal according to the preset first charging current, otherwise, according to the preset second charging current greater than the preset first charging current, The battery of the mobile terminal is charged.
  14. 根据权利要求13所述的装置,其中,所述温控模块还配置为:The apparatus of claim 13 wherein said temperature control module is further configured to:
    若所述检测模块检测到所述接触事件或所述操作事件,则按照所述预设第二充电电流对所述移动终端的电池进行充电。And if the detecting module detects the contact event or the operating event, charging the battery of the mobile terminal according to the preset second charging current.
  15. 一种智能调节充电的设备,所述设备包括:处理器以及与所述处理器耦接的存储器;所述存储器上存储有可在所述处理器上运行的智能调节充电的程序,所述智能调节充电的程序被所述处理器执行时实现如权利要求1至7中任一项所述的智能调节充电的方法的步骤。An apparatus for intelligently adjusting charging, the apparatus comprising: a processor and a memory coupled to the processor; the memory storing a program for intelligently adjusting charging operable on the processor, the smart The step of the method of intelligently adjusting charging as claimed in any one of claims 1 to 7 when the program for regulating charging is executed by the processor.
  16. 一种存储介质,其上存储有智能调节充电的程序,所述智能调节充电的程序被处理器执行时实现如权利要求1至7中任一项所述的智能调节充电的方法的步骤。A storage medium having stored thereon a program for intelligently adjusting charging, the step of implementing the smart adjustment charging method of any one of claims 1 to 7 when executed by a processor.
PCT/CN2019/071953 2018-01-19 2019-01-16 Method, apparatus and device for intelligently adjusting charging, and storage medium WO2019141184A1 (en)

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