WO2019061788A1 - 空调器控制方法、电子设备和计算机可读存储介质 - Google Patents

空调器控制方法、电子设备和计算机可读存储介质 Download PDF

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Publication number
WO2019061788A1
WO2019061788A1 PCT/CN2017/113364 CN2017113364W WO2019061788A1 WO 2019061788 A1 WO2019061788 A1 WO 2019061788A1 CN 2017113364 W CN2017113364 W CN 2017113364W WO 2019061788 A1 WO2019061788 A1 WO 2019061788A1
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Prior art keywords
air conditioner
information
determining
control
control information
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PCT/CN2017/113364
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English (en)
French (fr)
Inventor
樊其锋
黑继伟
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广东美的制冷设备有限公司
美的集团股份有限公司
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Publication of WO2019061788A1 publication Critical patent/WO2019061788A1/zh
Priority to US16/821,382 priority Critical patent/US11231194B2/en

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • F24F11/58Remote control using Internet communication
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • F24F11/63Electronic processing
    • F24F11/64Electronic processing using pre-stored data

Definitions

  • the present invention relates to the field of home appliance technology, and in particular, to an air conditioner control method, an electronic device, and a computer readable storage medium.
  • the air conditioner control mainly controls the operating parameters according to the user history control record or controls the operating parameters according to the user's immediate control command. In this way, only the air conditioner can be controlled before the user can control according to the history.
  • the air conditioner control may be inaccurate due to seasonal or weather changes. Poor comfort.
  • the main object of the present invention is to provide an air conditioner control method, an electronic device, and a computer readable storage medium, which aim to solve the problem that only when the user controls the air conditioner before, the air conditioner or the air conditioner can be newly purchased according to the history record. If it is not used for a long time, it may cause inaccurate air conditioner control and poor comfort due to seasonal or weather changes.
  • the present invention provides an air conditioner control method, and the air conditioner control method includes:
  • the operation of the air conditioner is controlled according to the determined control information of the air conditioner.
  • the current operating state information according to the at least one first air conditioner includes:
  • the highest frequency control parameter is extracted from the control parameters of all the determined first air conditioners as the control information of the air conditioner.
  • the first preset distance sets different values according to different position directions.
  • the determining, according to the current operating state information of the at least one first air conditioner, determining the control information of the air conditioner comprises:
  • Determining control information of the air conditioner according to environmental information currently in which the air conditioner is currently located.
  • the determining, according to the current operating state information of the at least one first air conditioner, determining the control information of the air conditioner comprises:
  • the method further includes:
  • the determining, according to the difference between the first preset distance and the second preset distance, and the current running state information of the second air conditioner, the control information of the air conditioner includes:
  • the control information of the air conditioner is corrected based on the compensation value, and the corrected control information is used as control information of the air conditioner.
  • the method further includes:
  • the control information of the air conditioner is corrected according to the difference in the number of users to obtain the corrected control information
  • the operation of the air conditioner is controlled based on the corrected control information.
  • the method further includes:
  • the control information of the air conditioner is corrected according to the difference of the user status to obtain the corrected control information
  • the operation of the air conditioner is controlled based on the corrected control information.
  • the method further includes:
  • the control information of the air conditioner is corrected according to the difference of the user types to obtain the corrected control information
  • the operation of the air conditioner is controlled based on the corrected control information.
  • the step of determining the at least one first air conditioner information within the first preset distance from the air conditioner comprises:
  • the step of determining the at least one first air conditioner information within the first preset distance from the air conditioner comprises:
  • the air conditioner information of the household in the residential area is marked as the first air conditioner information.
  • the present invention also provides an electronic device including: a memory, a processor, and an air conditioner control program stored on the memory and operable on the processor, The steps of the air conditioner control method as described above are implemented when the air conditioner control program is executed by the processor.
  • the electronic device is an air conditioner.
  • the present invention also provides a computer readable storage medium having an air conditioner control program stored thereon, the air conditioner control program being executed by a processor to implement the above The steps of the air conditioner control method.
  • the invention finds the neighboring air conditioner of the air conditioner by using the geographical location, and obtains the control information of the air conditioner by using the current control parameter of the neighboring air conditioner, because the environmental information such as the climate between the air conditioners which are relatively close to each other is similar, the air conditioner The control requirements are almost the same, and accurate air conditioner control information can be obtained, thereby accurately and reasonably controlling the operation of the air conditioner and improving the comfort of the air conditioner.
  • FIG. 1 is a schematic structural diagram of a terminal in a hardware operating environment according to an embodiment of the present invention
  • FIG. 2 is a schematic flow chart of an embodiment of a method for controlling an air conditioner according to the present invention
  • FIG. 3 is a schematic flowchart of obtaining geographic location information of an air conditioner according to an embodiment of the present invention, and determining first air conditioner information within a first preset distance from the air conditioner according to the geographic location information;
  • FIG. 4 is a schematic flow chart of determining information of a first air conditioner according to an embodiment of the present invention.
  • FIG. 5 is a schematic flowchart of determining control information of the air conditioner according to current operating state information of the first air conditioner according to an embodiment of the present invention
  • FIG. 6 is a schematic flowchart of determining control information of the air conditioner according to current operating state information of the first air conditioner according to another embodiment of the present invention.
  • FIG. 7 is a schematic flowchart of determining control information of the air conditioner according to current operating state information of the first air conditioner according to another embodiment of the present invention.
  • FIG. 8 is a schematic diagram of a system architecture of an air conditioner control
  • FIG. 9 is a schematic flow chart of another embodiment of a method for controlling an air conditioner according to the present invention.
  • FIG. 10 is a schematic flow chart of still another embodiment of a method for controlling an air conditioner according to the present invention.
  • the main solution of the embodiment of the present invention is: determining at least one first air conditioner information within the first preset distance from the air conditioner; determining, according to the current operating state information of the at least one first air conditioner, controlling the Control information of the air conditioner; controlling the operation of the air conditioner according to the determined control information of the air conditioner.
  • the present invention provides a solution for finding the neighboring air conditioner of the air conditioner by using the geographical location, and obtaining the control information of the air conditioner by using the current control parameters of the neighbor air conditioner, because of the climate between the air conditioners that are relatively close to each other.
  • the information is similar, the air conditioner control requirements are almost the same, and the accurate air conditioner control information can be obtained, thereby accurately and reasonably controlling the operation of the air conditioner and improving the comfort of the air conditioner.
  • FIG. 1 is a schematic structural diagram of a terminal in a hardware operating environment according to an embodiment of the present invention.
  • the terminal is an electronic device or a server connected to the air conditioner, and may be directly an air conditioner.
  • the terminal finds the neighbor air conditioner of the air conditioner by using a geographical location, and obtains the air conditioner by using current control parameters of the neighbor air conditioner.
  • the control information of the device is similar to the environmental information such as the climate between the air conditioners that are relatively close to each other. There is almost no difference, and accurate air conditioner control information can be obtained, thereby accurately and reasonably controlling the operation of the air conditioner and improving the comfort of the air conditioner.
  • the terminal may include a processor 1001, such as a CPU, a network interface 1004, a user interface 1003, a memory 1005, and a communication bus 1002.
  • the communication bus 1002 is used to implement connection communication between these components.
  • the user interface 1003 can include a display, an input unit such as a keyboard, and the optional user interface 1003 can also include a standard wired interface, a wireless interface.
  • the network interface 1004 can optionally include a standard wired interface, a wireless interface (such as a WI-FI interface).
  • the memory 1005 may be a high speed RAM memory or a non-volatile memory such as a disk memory.
  • the memory 1005 can also optionally be a storage device independent of the aforementioned processor 1001.
  • the terminal may further include a WiFi module or the like, and the terminal connects to the external device through the WiFi module to perform data interaction and control information transmission.
  • terminal structure shown in FIG. 1 does not constitute a limitation to the terminal, and may include more or less components than those illustrated, or a combination of certain components, or different component arrangements.
  • an operating system may be included in the memory 1005 as a computer storage medium.
  • a network communication module may be included in the memory 1005 as a computer storage medium.
  • a user interface module may be included in the memory 1005 as a computer storage medium.
  • an air conditioner control application may be included in the memory 1005 as a computer storage medium.
  • the network interface 1004 is mainly used to connect to the background server and perform data communication with the background server;
  • the user interface 1003 is mainly used to connect the client (user end), and perform data communication with the client;
  • the processor 1001 can be used to call the air conditioner control application stored in the memory 1005 and perform the following operations:
  • the operation of the air conditioner is controlled according to the determined control information of the air conditioner.
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • the highest frequency control parameter is extracted from the control parameters of all the determined first air conditioners as the control information of the air conditioner.
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • Determining control information of the air conditioner according to environmental information currently in which the air conditioner is currently located.
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • the processor 1001 may invoke the air conditioner control application stored in the memory 1005, and further execute The following operations:
  • the control information of the air conditioner is corrected according to the difference in the number of users to obtain the corrected control information
  • the operation of the air conditioner is controlled based on the corrected control information.
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • processor 1001 can call the air conditioner control application stored in the memory 1005, and also perform the following operations:
  • the air conditioner information of the household in the residential area is marked as the first air conditioner information.
  • a first embodiment of the present invention provides an air conditioner control method, where the air conditioner control method includes:
  • Step S10 determining at least one first air conditioner information within the first preset distance from the air conditioner
  • the geographic location of the air conditioner is obtained, and the geographic location information of the air conditioner can be obtained by using GPS information or by using an IP address.
  • the geographical location information of the air conditioner After obtaining the geographical location information of the air conditioner, determining at least one first air conditioner information within the first preset distance from the air conditioner according to the geographic location information. Since each air conditioner is provided with a WiFi module to communicate with an external device (remote controller, mobile phone, etc.), the IP address of the WiFi access point to which it is connected can be queried, and the geographical location information of the air conditioner is obtained through the IP address.
  • the step of acquiring the geographic location information of the air conditioner and determining the at least one first air conditioner information within the first preset distance from the air conditioner according to the geographic location information includes:
  • Step S11 collecting IP address information of the air conditioner, converting the longitude and latitude of the air conditioner according to the IP address information, and calculating the geographical location information of the air conditioner;
  • Step S12 Determine at least one first air conditioner information within the first preset distance from the air conditioner according to the geographic location information. Converting the IP address information into longitude lng, latitude lat, and searching for the air conditioner according to the geographical location information (longitude and latitude) of the air conditioner The nearest N neighbors, the most recent being within the first preset distance.
  • the first preset distance is, for example, 1 km or 2 km or the like. According to the weather and climate, the first preset distance is set, and the weather conditions within the first preset distance are close, and there is no large temperature difference and large climate difference.
  • the first A preset distance will be set differently depending on the direction, for example, 200 meters from the south to the north and 1 km from the east to the west.
  • distance(i,j) represents the distance between the air conditioner i and the air conditioner j
  • lat i and lng i represent the longitude and latitude of the air conditioner i, respectively.
  • the geographic location of the air conditioner for example, a positioning method such as GPS positioning, can also be obtained by other means.
  • the step of determining the first air conditioner information may further include: step S13, determining, according to the geographic location information, a residential area within the first preset distance from the air conditioner;
  • step S14 the air conditioner information of the household in the residential area is marked as the first air conditioner information.
  • the residential area closest to the air conditioner is obtained by the geographical location information, the opened air conditioner is found from the residential area, and the found air conditioner information is marked as the first air conditioner information, that is, the nearest N neighbor air conditioners.
  • the first air conditioner is found near the side of the air conditioner according to the distribution of the residential cells.
  • Step S20 determining, according to current operating state information of the at least one first air conditioner, control information of the air conditioner
  • the at least one first air conditioner information After determining the at least one first air conditioner information, acquiring current operating state information of the at least one first air conditioner, and determining control information of the air conditioner according to current operating state information of the at least one first air conditioner. Because the determined first air conditioner and the air conditioner are neighbor air conditioners, the factors of all aspects are the same as those of the air conditioner, and the user may need the same control, and may determine according to the operating state of the at least one first air conditioner. Description Air conditioner control information.
  • the determining, according to the current operating state information of the at least one first air conditioner, determining the control information of the air conditioner comprises:
  • Step S21 after acquiring the current operating state of the at least one first air conditioner, determining a control parameter corresponding to each first air conditioner operating state;
  • Step S22 extracting the control parameter with the highest frequency as the control information of the air conditioner from the control parameters of all the determined first air conditioners.
  • the method of extracting the highest frequency control parameter may be: for N air conditioner neighbors, the air conditioner control information may be recommended according to the voting method. Calculate the frequency of each mode, temperature, and wind speed:
  • M k , T k , W k represent the current operating mode, temperature, and wind speed of the kth neighbor, respectively
  • M l represents the l mode
  • T m represents the m temperature
  • W n represents the n wind speed
  • MC l represents the occurrence of the l mode.
  • Frequency TC m represents the frequency at which m temperature occurs
  • WC n represents the frequency at which n wind speed occurs.
  • M max(MC l ), l ⁇ cooling, heating, automatic ⁇ ;
  • T max(TC m ), m ⁇ [17,30;];
  • W max(WC n ), n ⁇ low wind, stroke, high wind, automatic ⁇ ;
  • M, T, and W are the recommended mode, temperature, and wind speed control information.
  • an air conditioner is randomly selected in the system, and the geographical location information of the air conditioner is: longitude 113.3, latitude 22.5
  • the recommended mode, temperature, and wind speed settings are respectively cooling, 25 degrees, and low wind, and the recommended setting is returned to the air conditioner.
  • the determining, according to the current operating state information of the at least one first air conditioner, determining the control information of the air conditioner comprises:
  • Step S23 determining, according to the operating state information of the at least one first air conditioner, environment information currently in which the air conditioner is located;
  • Step S24 determining control information of the air conditioner according to environment information that the at least one air conditioner is currently located.
  • the control information of the air conditioner is set in advance with a mapping relationship between the environmental information and the control information, and is associated with the indoor environment information controlled by the air conditioner, for example, related to the user type, the user type (elder, child, patient, etc.).
  • the air conditioner control is more accurate and reasonable by obtaining the control information according to the environmental information combined with the user information of the space occupied by the air conditioner.
  • the determining, according to the current operating state information of the at least one first air conditioner, determining the control information of the air conditioner comprises:
  • Step S25 deleting the running state information that meets the preset condition from the obtained current running state information of the first air conditioner, and marking the running state information after the deleted state information as the new running state information;
  • Step S26 determining control information for controlling the air conditioner according to the new running state information.
  • the control of the air conditioner will be different, or the user just sports. After that, the control of the air conditioner will be different. Deleting the running state information that meets the preset condition from the obtained current running state information of the first air conditioner, marking the running state information after the deleted state information as new running state information, and determining according to the new running state information
  • the control information of the air conditioner, the running state information that satisfies the preset condition is the running state information of some special cases, and is not the normal or common running state information.
  • the user just turns on the air conditioner after the movement, and the frequency and the wind speed are both at this time.
  • Very large, relatively abnormal, not part of the need to obtain, so need to delete for example, the user is sick, very sensitive to the refrigeration of the air conditioner, at this time, the frequency and wind speed is very low, not part of the need to obtain, so need delete.
  • Step S30 controlling the operation of the air conditioner according to the determined control information of the air conditioner.
  • the operation of the air conditioner is controlled according to the determined control information of the air conditioner, for example, the air conditioner is controlled to adjust a set temperature, a wind guide angle, and/or a wind speed, and the like.
  • the system architecture includes a cloud collection server, a cloud big data server, and an Internet of Things air conditioner, and the Internet of Things air conditioner and the cloud collection server are all connected to the cloud big data server.
  • the Internet of Things air conditioner is connected to the cloud collection server, and the control in the application scenario includes:
  • Operation status data collection IoT air conditioning, regularly report running status data to the cloud collection server; operating status data includes: mode setting, temperature setting, and wind speed setting.
  • Geographical location data collection When the Internet of Things air conditioner reports data, it also reports the IP address of the air conditioner.
  • Find neighbors Find the nearest N neighbors from the air conditioner based on the air conditioning location information (longitude lng, latitude lat).
  • Air conditioning control The air conditioner controls the air conditioning operation according to the air conditioning control parameters returned by the cloud big data server.
  • the control parameters include mode, temperature, and wind speed.
  • the neighboring air conditioner of the air conditioner is found by using the geographic location of the air conditioner that needs to be controlled, and the control information of the air conditioner is obtained by using the current control parameters of the neighboring air conditioner, because the air conditioners are relatively close.
  • the environmental information such as climate is similar, and the air conditioner control requirements are almost the same, and accurate air conditioner control information can be obtained, thereby accurately and reasonably controlling the operation of the air conditioner and improving the comfort of the air conditioner.
  • the method further includes:
  • Step S40 when there is no first air conditioner in the first preset distance, determining second air conditioner information that is greater than the second preset distance;
  • Step S50 Obtain current operating state information of the second air conditioner, and determine, according to a difference between the first preset distance and the second preset distance, and current operating state information of the second air conditioner. Control information of the air conditioner, wherein the second preset distance is greater than the first preset distance.
  • the compensation value of the air conditioner control information in other distances exceeding the first preset distance is set in advance, and the difference value is different from the difference value.
  • the second preset distance is determined to be greater than the second preset distance.
  • the air conditioner information, the second preset distance is greater than the first preset distance, and relatively larger than the second preset distance, the environmental information between the air conditioners may be greatly different, and the accuracy of the air conditioner control may be different.
  • the compensation value is set corresponding to the parameters such as weather, distance and user group difference, and the corresponding relationship is set in advance. Make the control of the air conditioner accurate.
  • the compensation value is determined according to environmental information such as climate between distances, and is set differently in different directions.
  • the method further includes:
  • Step S60 when the current number of users of the air conditioner is different from the current number of users of the at least one first air conditioner, correcting the control information of the air conditioner according to the difference in the number of users to obtain the corrected control information;
  • Step S70 controlling the operation of the air conditioner according to the corrected control information.
  • the air conditioner control is more accurate by correcting the control information for the number of users. It can also be compensated according to different user status and user type. For example, the user in the post-exercise state urgently needs cooling, the set temperature will be smaller, and the wind speed will be larger; the old person set the temperature higher than the young person.
  • the compensation is used to compensate for the difference between the neighboring air conditioners, making the air conditioner control more accurate.
  • the present invention also provides an electronic device comprising: a memory, a processor, and an air conditioner control program stored on the memory and operable on the processor, the air conditioner control program being The process of implementing the air conditioner control method as described in the foregoing FIG. 2 to FIG. 10 when the processor is executed is not described herein again.
  • the electronic device is an air conditioner.
  • an embodiment of the present invention further provides a computer readable storage medium, where the computer readable storage medium stores an air conditioner control program, and when the air conditioner control program is executed by the processor, the following operations are implemented:
  • the operation of the air conditioner is controlled according to the determined control information of the air conditioner.
  • the highest frequency control parameter is extracted from the control parameters of all the determined first air conditioners as the control information of the air conditioner.
  • Determining control information of the air conditioner according to environmental information currently in which the air conditioner is currently located.
  • the control information of the air conditioner is corrected according to the difference in the number of users to obtain the corrected control information
  • the operation of the air conditioner is controlled based on the corrected control information.
  • the air conditioner information of the household in the residential area is marked as the first air conditioner information.

Abstract

一种空调器控制方法,包括:确定与空调器在第一预设距离内的至少一个第一空调器信息(S10);根据至少一个第一空调器当前的运行状态信息确定控制空调器的控制信息(S20);根据所确定的空调器的控制信息控制空调器的运行(S30)。另外还公开了一种电子设备和计算机可读存储介质。

Description

空调器控制方法、电子设备和计算机可读存储介质 技术领域
本发明涉及家用电器技术领域,尤其涉及空调器控制方法、电子设备和计算机可读存储介质。
背景技术
目前,空调器控制主要是根据用户历史控制记录来控制运行参数或者根据用户即时控制指令来控制运行参数。而这种方式下只有在用户之前控制过空调器才能根据历史记录控制,而在新买空调器或者空调器长时间未使用,重新使用时,会因季节或天气变化导致空调器控制不准确,舒适性差。
上述内容仅用于辅助理解本发明的技术方案,并不代表承认上述内容是现有技术。
发明内容
本发明的主要目的在于提供一种空调器控制方法、电子设备和计算机可读存储介质,旨在解决目前只有在用户之前控制过空调器才能根据历史记录控制,而在新买空调器或者空调器长时间未使用,重新使用时,会因季节或天气变化导致空调器控制不准确,舒适性差的问题。
为实现上述目的,本发明提供的一种空调器控制方法,所述空调器控制方法包括:
确定与所述空调器在第一预设距离内的至少一个第一空调器信息;
根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;
根据所确定的所述空调器的控制信息控制所述空调器的运行。
可选地,所述根据所述至少一个第一空调器当前的运行状态信息 确定控制所述空调器的控制信息的步骤包括:
在获取到至少一个第一空调器当前的运行状态后,确定每个第一空调器运行状态对应的控制参数;
从所有确定的第一空调器的控制参数中提取频次最高的控制参数作为所述空调器的控制信息。
可选地,在气候变化大的交接处,所述第一预设距离根据位置方向不同而设置不同的值。
可选地,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
根据所述至少一个第一空调器的运行状态信息确定所述空调器当前所处的环境信息;
根据所述空调器当前所处的环境信息确定所述空调器的控制信息。
可选地,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
从获取的所述第一空调器当前的运行状态信息删除满足预设条件的运行状态信息,将删除后的运行状态信息标记为新的运行状态信息;
根据所述新的运行状态信息确定所述空调器的控制信息。
可选地,所述方法,还包括:
在第一预设距离内不存在第一空调器时,确定大于第二预设距离内的第二空调器信息;
获取所述第二空调器当前的运行状态信息,根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息,其中,所述第二预设距离大于第一预设距离。
可选地,所述根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息包括:
根据所述第一预设距离与所述第二预设距离的差值确定控制信 息的补偿值;
根据补偿值修正空调器的控制信息,将所述修正后的控制信息作为所述空调器的控制信息。
可选地,根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户人数的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
根据所述修正后的控制信息控制空调器的运行。
可选地,根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户状态的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
根据所述修正后的控制信息控制空调器的运行。
可选地,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户类型的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
根据所述修正后的控制信息控制空调器的运行。
可选地,所述确定与所述空调器在第一预设距离内的至少一个第一空调器信息的步骤包括:
采集空调器的IP地址信息,根据IP地址信息转换得到空调器的经度和纬度,计算得到空调器的地理位置信息;
根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。
可选地,所述确定与所述空调器在第一预设距离内的至少一个第一空调器信息的步骤包括:
根据空调器的地理位置信息确定与所述空调器在第一预设距离 内的住宅区域;
将所述住宅区域内的住户的空调器信息标记为第一空调器信息。
此外,为实现上述目的,本发明还提供一种电子设备,所述电子设备包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器控制程序,所述空调器控制程序被处理器执行时实现如上所述的空调器控制方法的步骤。
优选地,所述电子设备为空调器。
此外,为实现上述目的,本发明还提供一种计算机可读存储介质,所述计算机可读存储介质上存储有空调器控制程序,所述空调器控制程序被处理器执行时实现如上所述的空调器控制方法的步骤。
本发明通过运用地理位置找到所述空调器的邻居空调,采用邻居空调当前的控制参数得到所述空调器的控制信息,因相隔比较近的空调器之间的气候等环境信息相差不多,空调器控制需求相差无几,可得到精准的空调器控制信息,进而准确、合理的控制空调器的运行,提高空调器舒适性。
附图说明
图1为本发明实施例方案涉及的硬件运行环境的终端结构示意图;
图2为本发明空调器控制方法的一实施例的流程示意图;
图3为本发明一实施例中获取空调器的地理位置信息,并根据所述地理位置信息确定与所述空调器在第一预设距离内的第一空调器信息的流程示意图;
图4为本发明一实施例中确定第一空调器信息的流程示意图;
图5为本发明一实施例中根据所述第一空调器当前的运行状态信息确定所述空调器的控制信息的流程示意图;
图6为本发明另一实施例中根据所述第一空调器当前的运行状态信息确定所述空调器的控制信息的流程示意图;
图7为本发明又一实施例中根据所述第一空调器当前的运行状态信息确定所述空调器的控制信息的流程示意图;
图8为空调器控制的系统架构示意图;
图9为本发明空调器控制方法的另一实施例的流程示意图;
图10为本发明空调器控制方法的又一实施例的流程示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明实施例的主要解决方案是:确定与所述空调器在第一预设距离内的至少一个第一空调器信息;根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;根据所确定的所述空调器的控制信息控制所述空调器的运行。
由于目前只有在用户之前控制过空调器才能根据历史记录控制,而在新买空调器或者空调器长时间未使用,重新使用时,会因季节或天气变化导致空调器控制不准确,舒适性差的问题。本发明提供一种解决方案,通过运用地理位置找到所述空调器的邻居空调,采用邻居空调当前的控制参数得到所述空调器的控制信息,因相隔比较近的空调器之间的气候等环境信息相差不多,空调器控制需求相差无几,可得到精准的空调器控制信息,进而准确、合理的控制空调器的运行,提高空调器舒适性。
如图1所示,图1是本发明实施例方案涉及的硬件运行环境的终端结构示意图。
本发明实施例终端为与空调器连接的电子设备或服务器,也可以直接是空调器,所述终端通过运用地理位置找到所述空调器的邻居空调,采用邻居空调当前的控制参数得到所述空调器的控制信息,因相隔比较近的空调器之间的气候等环境信息相差不多,空调器控制需求 相差无几,可得到精准的空调器控制信息,进而准确、合理的控制空调器的运行,提高空调器舒适性。
如图1所示,该终端可以包括:处理器1001,例如CPU,网络接口1004,用户接口1003,存储器1005,通信总线1002。其中,通信总线1002用于实现这些组件之间的连接通信。用户接口1003可以包括显示屏(Display)、输入单元比如键盘(Keyboard),可选用户接口1003还可以包括标准的有线接口、无线接口。网络接口1004可选的可以包括标准的有线接口、无线接口(如WI-FI接口)。存储器1005可以是高速RAM存储器,也可以是稳定的存储器(non-volatile memory),例如磁盘存储器。存储器1005可选的还可以是独立于前述处理器1001的存储装置。
可选地,终端还可以包括WiFi模块等等,终端通过WiFi模块与外部设备连接,进行数据交互和控制信息的传递。
本领域技术人员可以理解,图1中示出的终端结构并不构成对终端的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
如图1所示,作为一种计算机存储介质的存储器1005中可以包括操作系统、网络通信模块、用户接口模块以及空调器控制应用程序。
在图1所示的终端中,网络接口1004主要用于连接后台服务器,与后台服务器进行数据通信;用户接口1003主要用于连接客户端(用户端),与客户端进行数据通信;而处理器1001可以用于调用存储器1005中存储的空调器控制应用程序,并执行以下操作:
确定与所述空调器在第一预设距离内的至少一个第一空调器信息;
根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;
根据所确定的所述空调器的控制信息控制所述空调器的运行。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
在获取到至少一个第一空调器当前的运行状态后,确定每个第一 空调器运行状态对应的控制参数;
从所有确定的第一空调器的控制参数中提取频次最高的控制参数作为所述空调器的控制信息。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
根据所述至少一个第一空调器的运行状态信息确定所述空调器当前所处的环境信息;
根据所述空调器当前所处的环境信息确定所述空调器的控制信息。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
从获取的所述第一空调器当前的运行状态信息删除满足预设条件的运行状态信息,将删除后的运行状态信息标记为新的运行状态信息;
根据所述新的运行状态信息确定所述空调器的控制信息。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
在第一预设距离内不存在第一空调器时,确定大于第二预设距离内的第二空调器信息;
获取所述第二空调器当前的运行状态信息,根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息,其中,所述第二预设距离大于第一预设距离。
进一步地,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户人数的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
根据所述修正后的控制信息控制空调器的运行。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
采集空调器的IP地址信息,根据IP地址信息转换得到空调器的经度和纬度,计算得到空调器的地理位置信息;
根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。
进一步地,处理器1001可以调用存储器1005中存储的空调器控制应用程序,还执行以下操作:
根据空调器的地理位置信息确定与所述空调器在第一预设距离内的住宅区域;
将所述住宅区域内的住户的空调器信息标记为第一空调器信息。
参照图2,本发明的第一实施例提供一种空调器控制方法,所述空调器控制方法包括:
步骤S10,确定与所述空调器在第一预设距离内的至少一个第一空调器信息;
在本实施例中,在控制空调器的过程中,获取空调器的地理位置,空调器的地理位置信息可通过GPS信息获取,或者通过IP地址进行定位。在获取到空调器的地理位置信息后,根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。因每台空调器设置有WiFi模块与外部设备(遥控器、手机等)通信,可查询到其连接的WiFi接入点的IP地址,通过IP地址得到所述空调器的地理位置信息。具体的,参考图3,所述获取空调器的地理位置信息,并根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息的步骤包括:
步骤S11,采集空调器的IP地址信息,根据IP地址信息转换得到空调器的经度和纬度,计算得到空调器的地理位置信息;
步骤S12,根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。把IP地址信息转换为经度lng、纬度lat,根据空调器地理位置信息(经度和纬度)查找离所述空调 器最近的N个邻居,所述最近的为在第一预设距离内。所述第一预设距离,例如,为1公里或2公里等。根据天气、气候设定第一预设距离,在第一预设距离内的天气情况接近,不会出现温差大、气候差异大的情况,当然,在一些气候变化大交接的地方,所述第一预设距离会相应根据方向不同而设置不同,例如,由南往北的方向上为200米,而在由东往西的方向上设置成1公里等。计算空调器距离(欧氏距离)为:
;其中,distance(i,j)表示空调器i与空调j的距离,lati和lngi分别表示空调器i的经度和纬度。查找离当前空调器距离最小的N个空调邻居。
当然,可以理解的是,在本发明其他实施例中,也还可以通过其他方式来获取到空调器的地理位置,例如,GPS定位等定位方式。
在本发明一实施例中,参考图4,确定第一空调器信息的步骤还可以是:步骤S13,根据所述地理位置信息确定与所述空调器在第一预设距离内的住宅区域;步骤S14,将所述住宅区域内的住户的空调器信息标记为第一空调器信息。先通过地理位置信息得到离所述空调器最近的住宅区域,从住宅区域中找到开启的空调器,将找到的空调器信息标记为第一空调器信息,即最近的N个邻居空调器。进一步地,在存在多个第一空调器时,根据住宅小区的分布情况,找到靠近所述空调器一侧的标记为第一空调器。
步骤S20,根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;
在确定了至少一个第一空调器信息后,获取所述至少一个第一空调器当前的运行状态信息,根据所述至少一个第一空调器当前的运行状态信息确定所述空调器的控制信息。因为确定的第一空调器与所述空调器为邻居空调,各个方面的因素均与所述空调器的相同,用户会需要相同的控制,可根据至少一个第一空调器的运行状态来确定所述 空调器的控制信息。
具体的,参考图5,在一实施例中,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
步骤S21,在获取到至少一个第一空调器当前的运行状态后,确定每个第一空调器运行状态对应的控制参数;
步骤S22,从所有确定的第一空调器的控制参数中提取频次最高的控制参数作为所述空调器的控制信息。提取频次最高的控制参数的方式可以是:对N个空调器邻居,可以根据投票法推荐空调器控制信息。计算每个模式、温度、风速出现的频次:
Figure PCTCN2017113364-appb-000001
Figure PCTCN2017113364-appb-000002
Figure PCTCN2017113364-appb-000003
其中,Mk、Tk、Wk分别表示第k个邻居的当前运行模式、温度、风速,Ml表示l模式,Tm表示m温度,Wn表示n风速,MCl表示l模式出现的频次,TCm表示m温度出现的频次,WCn表示n风速出现的频次。I(x=X)是指示函数,满足条件(x=X)时为1,否则为0。
提取最大频次的模式、温度、风速作为推荐设置:
M=max(MCl),lε{制冷,制热,自动};
T=max(TCm),mε[17,30;];
W=max(WCn),nε{低风,中风,高风,自动};
M、T、W即为推荐的模式、温度、风速控制信息。例如,在系统中随机选择一台空调器,该空调器地理位置信息为:经度113.3,纬度22.5
查找出与该空调距离最近的N台空调邻居,假设选出的空调如下:
经度(113.3),纬度(22.5),设置模式(自动),设置温度(26度),设置风速(低风)
经度(113.3),纬度(22.6),设置模式(制冷),设置温度(25度),设置风速(中风)
经度(113.4),纬度(22.5),设置模式(制冷),设置温度(24度),设置风速(低风)
经度(113.2),纬度(22.7),设置模式(制冷),设置温度(25度),设置风速(自动)
根据投票法推荐模式、温度、风速设置分别为制冷、25度、低风,将该推荐设置返回给空调。
具体的,参考图6,在一实施例中,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
步骤S23,根据所述至少一个第一空调器的运行状态信息确定所述空调器当前所处的环境信息;
步骤S24,根据所述至少一个空调器当前所处的环境信息确定所述空调器的控制信息。地理位置越近,气候环境因素就越相似,空调器控制需求就越近,而空调器的运行状态信息会对应不同的气候情况/环境信息,根据运行状态可以确定环境信息,根据环境信息可以确定空调器的控制信息,提前设置有环境信息与控制信息的映射关系,且与空调器所控制的室内环境信息相关联,例如,跟用户多少,用户类型(老人、小孩、病人等)相关联。通过根据环境信息结合空调器所作用空间的用户信息得到其控制信息,使得空调器控制更加准确合理。
具体的,参考图7,在一实施例中,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
步骤S25,从获取的所述第一空调器当前的运行状态信息删除满足预设条件的运行状态信息,将删除后的状态信息后的运行状态信息标记为新的运行状态信息;
步骤S26,根据所述新的运行状态信息确定控制所述空调器的控制信息。
因处于不同家庭下,就算环境信息和其他外部信息相同,但是会存在一些特殊情况,例如,今天家庭聚会,家里比正常情况下人多很多,相对空调器的控制就会不同,或者用户刚运动完,空调器的控制也会不同。从获取的所述第一空调器当前的运行状态信息删除满足预设条件的运行状态信息,将删除后的状态信息后的运行状态信息标记为新的运行状态信息,根据新的运行状态信息确定空调器的控制信息,所述满足预设条件的运行状态信息为一些特殊情况的运行状态信息,不是常规或者常见的运行状态信息,例如,用户刚运动完开启空调器,此时频率和风速均很大,比较异常,不属于需要获取的部分,所以需要删除;再例如,用户生病了,对空调器的制冷非常敏感,此时,频率和风速非常低,不属于需要获取的部分,所以需要删除。使得空调器的控制信息确定更加准确、合理。
步骤S30,根据所确定的所述空调器的控制信息控制所述空调器的运行。
在确定了所述空调器的控制信息后,根据所确定的所述空调器的控制信息控制所述空调器的运行,例如,控制空调器调节设定温度、导风角度和/或风速等。
为了更好的描述本发明实施例的技术方案,参考图8,系统架构包括云端采集服务器、云端大数据服务器和物联网空调器,物联网空调器和云端采集服务器均与云端大数据服务器连接,物联网空调器与云端采集服务器连接,应用场景下的控制包括:
运行状态数据采集:物联网空调,定期上报运行状态数据到云端采集服务器;运行状态数据包括:模式设置、温度设置、风速设置。
地理位置数据采集:物联网空调上报数据时,同时上报该空调的ip地址信息。
查找邻居:根据空调地理位置信息(经度lng、纬度lat)查找离该空调最近的N个邻居。
获取空调控制参数:云端大数据服务器,根据该N个邻居的当 前空调运行状态,通过投票法,计算出推荐的空调控制参数,并返回给空调。
空调控制:空调根据云端大数据服务器返回的空调控制参数,控制空调运行,控制参数包括模式、温度、风速等。
本实施例通过需要控制的空调器的地理位置的获取,运用地理位置找到所述空调器的邻居空调,采用邻居空调当前的控制参数得到所述空调器的控制信息,因相隔比较近的空调器之间的气候等环境信息相差不多,空调器控制需求相差无几,可得到精准的空调器控制信息,进而准确、合理的控制空调器的运行,提高空调器舒适性。
参考图9,在本发明一较佳实施例中,所述,还包括:
步骤S40,在第一预设距离内不存在第一空调器时,确定大于第二预设距离内的第二空调器信息;
步骤S50,获取所述第二空调器当前的运行状态信息,根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息,其中,所述第二预设距离大于第一预设距离。
提前设置超过第一预设距离的其他距离内空调器控制信息的补偿值,距离差值不同补偿值不同,在第一预设距离内不存在第一空调器时,确定大于第二预设距离的空调器信息,第二预设距离大于第一预设距离,相对来说大于第二预设距离,空调器之间的环境信息会存在较大差异,空调器控制的准确度会存在差异,通过设置补偿值来弥补差异,补偿值与天气、距离和用户群体差异等参数对应设置得到,提前设置好对应关系。使得空调器的控制变得准确无误。所述补偿值根据距离之间气候等环境信息确定,且在不同方向上设置不同。
参考图10,在本发明一较佳实施例中,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
步骤S60,在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户人数的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
步骤S70,根据所述修正后的控制信息控制空调器的运行。
由于空调器所作用空间内用户人数不同,会存在不同的控制,因此根据用户的差值进行修正,例如,制冷,人多的设定温度要小于人少的设定温度,例如,5人的设定温度为24度,2人的设定温度为26度。通过针对用户的多少进行控制信息修正,使得空调器控制更加准确。也还可以根据用户状态不同、用户类型不同而进行补偿,例如,运动后状态的用户急需制冷,设定温度会更小,风速会更大;老人设定温度要高于年轻人等。通过补偿的方式弥补邻居空调器间的差异,使得空调器控制更加准确。
此外,本发明还提出一种电子设备,所述电子设备包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器控制程序,所述空调器控制程序被所述处理器执行时实现如上述图2至图10中所述的空调器控制方法的过程,在此不再一一赘述。可选地,所述电子设备为空调器。
此外,本发明实施例还提出一种计算机可读存储介质,所述计算机可读存储介质上存储有空调器控制程序,所述空调器控制程序被处理器执行时实现如下操作:
确定与所述空调器在第一预设距离内的至少一个第一空调器信息;
根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;
根据所确定的所述空调器的控制信息控制所述空调器的运行。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
在获取到至少一个第一空调器当前的运行状态后,确定每个第一空调器运行状态对应的控制参数;
从所有确定的第一空调器的控制参数中提取频次最高的控制参数作为所述空调器的控制信息。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
根据所述至少一个第一空调器的运行状态信息确定所述空调器当前所处的环境信息;
根据所述空调器当前所处的环境信息确定所述空调器的控制信息。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
从获取的所述第一空调器当前的运行状态信息删除满足预设条件的运行状态信息,将删除后的运行状态信息标记为新的运行状态信息;
根据所述新的运行状态信息确定所述空调器的控制信息。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
在第一预设距离内不存在第一空调器时,确定大于第二预设距离内的第二空调器信息;
获取所述第二空调器当前的运行状态信息,根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息,其中,所述第二预设距离大于第一预设距离。
进一步地,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,所述空调器控制程序被处理器执行时实现如下操作:
在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户人数的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
根据所述修正后的控制信息控制空调器的运行。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
采集空调器的IP地址信息,根据IP地址信息转换得到空调器的经度和纬度,计算得到空调器的地理位置信息;
根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。
进一步地,所述空调器控制程序被处理器执行时实现如下操作:
根据空调器的地理位置信息确定与所述空调器在第一预设距离 内的住宅区域;
将所述住宅区域内的住户的空调器信息标记为第一空调器信息。以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (15)

  1. 一种空调器控制方法,其特征在于,所述空调器控制方法包括:
    确定与所述空调器在第一预设距离内的至少一个第一空调器信息;
    根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息;
    根据所确定的所述空调器的控制信息控制所述空调器的运行。
  2. 如权利要求1所述的空调器控制方法,其特征在于,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
    在获取到至少一个第一空调器当前的运行状态后,确定每个第一空调器运行状态对应的控制参数;
    从所有确定的第一空调器的控制参数中提取频次最高的控制参数作为所述空调器的控制信息。
  3. 如权利要求1所述的空调器控制方法,其特征在于,在气候变化大的交接处,所述第一预设距离根据位置方向不同而设置不同的值。
  4. 如权利要求1所述的空调器控制方法,其特征在于,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
    根据所述至少一个第一空调器的运行状态信息确定所述空调器当前所处的环境信息;
    根据所述空调器当前所处的环境信息确定所述空调器的控制信息。
  5. 如权利要求1所述的空调器控制方法,其特征在于,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤包括:
    从获取的所述第一空调器当前的运行状态信息删除满足预设条 件的运行状态信息,将删除后的运行状态信息标记为新的运行状态信息;
    根据所述新的运行状态信息确定所述空调器的控制信息。
  6. 如权利要求1所述的空调器控制方法,其特征在于,所述方法,还包括:
    在第一预设距离内不存在第一空调器时,确定大于第二预设距离内的第二空调器信息;
    获取所述第二空调器当前的运行状态信息,根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息,其中,所述第二预设距离大于第一预设距离。
  7. 如权利要求6所述的空调器控制方法,其特征在于,所述根据所述第一预设距离与所述第二预设距离的差值和所述第二空调器当前的运行状态信息确定所述空调器的控制信息包括:
    根据所述第一预设距离与所述第二预设距离的差值确定控制信息的补偿值;
    根据补偿值修正空调器的控制信息,将所述修正后的控制信息作为所述空调器的控制信息。
  8. 如权利要求1所述的空调器控制方法,其特征在于,根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
    在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户人数的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
    根据所述修正后的控制信息控制空调器的运行。
  9. 如权利要求1所述的空调器控制方法,其特征在于,根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
    在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户状态的差异对所述空调器的控制信息进 行修正得到修正后的控制信息;
    根据所述修正后的控制信息控制空调器的运行。
  10. 如权利要求1所述的空调器控制方法,其特征在于,所述根据所述至少一个第一空调器当前的运行状态信息确定控制所述空调器的控制信息的步骤之后,还包括:
    在所述空调器当前的用户人数与所述至少一个第一空调器当前的用户人数不同时,根据用户类型的差异对所述空调器的控制信息进行修正得到修正后的控制信息;
    根据所述修正后的控制信息控制空调器的运行。
  11. 如权利要求1所述的空调器控制方法,其特征在于,所述确定与所述空调器在第一预设距离内的至少一个第一空调器信息的步骤包括:
    采集空调器的IP地址信息,根据IP地址信息转换得到空调器的经度和纬度,计算得到空调器的地理位置信息;
    根据所述地理位置信息确定与所述空调器在第一预设距离内的至少一个第一空调器信息。
  12. 如权利要求1所述的空调器控制方法,其特征在于,所述确定与所述空调器在第一预设距离内的至少一个第一空调器信息的步骤包括:
    根据空调器的地理位置信息确定与所述空调器在第一预设距离内的住宅区域;
    将所述住宅区域内的住户的空调器信息标记为第一空调器信息。
  13. 一种电子设备,其特征在于,所述电子设备包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的空调器控制程序,所述空调器控制程序被所述处理器执行时实现如上所述的空调器控制方法的步骤。
  14. 如权利要求13所述的电子设备,其特征在于,所述电子设备为空调器。
  15. 一种计算机可读存储介质,其特征在于,所述计算机可读存 储介质上存储有空调器控制程序,所述空调器控制程序被处理器执行时实现如上所述的空调器控制方法的步骤。
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