Smart air conditioner control method, device, processor and smart home system

By obtaining the location and environmental information of smart home equipment, the intelligent air conditioner adjusts the operating parameters, solving the problem that air conditioners cannot be accurately regulated, personalized temperature and humidity adjustment is achieved, and user experience is improved.

CN115978734BActive Publication Date: 2025-09-02ZHUHAI GREE REFRIGERATION TECH CENT OF ENERGY SAVING & ENVIRONMENTAL PROTECTION
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310067227.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-12
Publication Date
2025-09-02
Estimated Expiration
2043-01-12

AI Technical Summary

Technical Problem

The existing air conditioners cannot accurately regulate the room's current temperature and humidity and other environmental information, resulting in the adjustment method being "flooded" and cannot meet personalized needs.

Method used

The location information and environmental information of smart home devices are obtained through smart air conditioners, the radar module is used to obtain three-dimensional coordinates, combined with temperature and humidity sensor data, and adjust the operating parameters to make the environmental information of the location of each smart home device within the preset range.

Benefits of technology

It realizes accurate adjustment based on environmental information in different locations, ensuring that the temperature and humidity of each smart home device are within the preset range, improving the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115978734B_ABST
    Figure CN115978734B_ABST
Patent Text Reader

Abstract

The present application provides a control method, device, processor, and smart home system for a smart air conditioner. The control method includes: obtaining location information of smart home devices within a predetermined space where the smart air conditioner is located; receiving current environmental information of the location sent by the smart home devices within the predetermined space where the smart air conditioner is located; determining a corresponding preset environmental parameter range based on the location information, and determining whether the current environmental information is within the corresponding preset environmental parameter range. If the current environmental information is not within the corresponding preset environmental parameter range, adjusting the operating parameters of the smart air conditioner so that the environmental information of the location of at least one smart home device after the operating parameters of the smart air conditioner are adjusted is within the preset environmental parameter range. Through this application, the problem of the air conditioner being unable to adjust according to current environmental information such as temperature and humidity is alleviated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of intelligent air conditioning control, and more specifically, to a control method, device, computer-readable storage medium, processor, and smart home system for an intelligent air conditioning. Background Art

[0002] With the improvement of people's living standards and the development of network technology, the concept of smart home has become more and more mature. At present, smart home devices on the market cover a variety of smart home appliances or smart products such as air conditioners, refrigerators, washing machines, mobile phones, rice cookers, smart gateways, smart switches, air purifiers, humidifiers, smart beds, electric curtains, etc. Smart home devices all have Wi-Fi modules, temperature and humidity sensors, etc., which constitute the overall ecological environment of smart home.

[0003] Normally, when the air conditioner is working, the cooling or heating function is directly turned on, releasing cold air or warm air without checking the room's cooling and heating conditions and temperature and humidity in advance. This is a "flooding" adjustment method.

[0004] Therefore, there is an urgent need for an air conditioning control method that can accurately adjust the air conditioning according to the current environmental information such as the temperature and humidity of the room. Summary of the Invention

[0005] The main purpose of this application is to provide a control method, device, computer-readable storage medium, processor and smart home system for an intelligent air conditioner, so as to at least solve the problem in the prior art that the air conditioner cannot be accurately controlled according to environmental information such as current temperature and humidity.

[0006] In order to achieve the above-mentioned purpose, according to one aspect of the present application, a control method for a smart air conditioner is provided, including: obtaining location information of a smart home device within a predetermined space where the smart air conditioner is located; receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity; determining a corresponding preset environmental parameter range based on the location information, and determining whether the current environmental information is within the corresponding preset environmental parameter range, and if the current environmental information is not within the corresponding preset environmental parameter range, adjusting the operating parameters of the smart air conditioner so that the environmental information of the location of at least one of the smart home devices after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range, wherein the preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0007] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0008] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is a space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value among the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value among the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0009] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0010] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining that the target environmental information is the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining that the target environmental information is the average value of the multiple current environmental information.

[0011] Optionally, the predetermined space includes multiple air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each smart home device as the target air outlet; and adjusting the operating parameters corresponding to the air outlet parameters of the target air outlet.

[0012] Optionally, determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the air outlets through the radar module of the smart air conditioner, calculating the distance between each of the smart home devices and each of the air outlets based on the position information of each of the smart home devices and the three-dimensional coordinates of each of the air outlets, and determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet; when the air outlet is located on the shell of the smart air conditioner, receiving instruction information sent by each of the smart home devices, and determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet based on the instruction information, wherein the instruction information includes a device code, an instruction transmission speed, and an instruction sending time.

[0013] Optionally, receiving current environmental information of the location sent by a smart home device within a predetermined space where the smart air conditioner is located includes: receiving a current temperature sent by the smart home device, where the current temperature is obtained by the smart home device through a built-in temperature sensor; and receiving a current humidity sent by the smart home device, where the current humidity is obtained by the smart home device through a built-in humidity sensor.

[0014] Optionally, the control method also includes: constructing a 3D environmental model within the predetermined space based on the environmental information of the smart home device and the corresponding location information; sending the 3D environmental model to a user terminal device for display, and in the displayed 3D environmental model, the location point where each smart home device is located is displayed with the corresponding environmental information.

[0015] According to another aspect of the present application, a control device for a smart air conditioner is provided, including: an acquisition unit for acquiring location information of smart home devices within a predetermined space where the smart air conditioner is located; a receiving unit for receiving current environmental information of the location sent by the smart home devices within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity; an adjustment unit for determining a corresponding preset environmental parameter range based on the location information, and determining whether the current environmental information is within the corresponding preset environmental parameter range, and adjusting an operating parameter of the smart air conditioner if the current environmental information is not within the corresponding preset environmental parameter range, so that the environmental information of the location of at least one of the smart home devices after the operating parameters of the smart air conditioner are adjusted is within the preset environmental parameter range, wherein the preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0016] According to another aspect of the present application, a computer-readable storage medium is provided, which includes a stored program, wherein when the program is run, the device where the computer-readable storage medium is located is controlled to execute any one of the above-mentioned control methods for the smart air conditioner.

[0017] According to another aspect of the present application, a processor is provided, which is used to run a program, wherein the program executes any one of the above-mentioned control methods for the intelligent air conditioner when running.

[0018] Furthermore, a smart home system is provided, comprising: a smart air conditioner and a smart home device communicatively connected to the smart air conditioner, wherein the smart air conditioner comprises one or more processors, a memory, and one or more programs, wherein the one or more programs are stored in the memory and configured to be executed by the one or more processors, and the one or more programs include a control method for executing any one of the above-mentioned smart air conditioners.

[0019] By applying the technical solution of the present application, first, the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained; then, the current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located is received, wherein the environmental information includes at least one of temperature and humidity; a corresponding preset environmental parameter range is determined according to the location information, and it is determined whether the current environmental information is within the corresponding preset environmental parameter range. If the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted so that the environmental information of the location of at least one of the smart home devices after the operating parameters of the smart air conditioner are adjusted is within the preset environmental parameter range, wherein the preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range. Compared with the method in the prior art in which the air conditioner is directly adjusted without detecting the current temperature and humidity of the room in advance, the present application can adjust the operating parameters of the smart air conditioner according to whether the current environmental information of the location of the smart home device is within the preset environmental parameter range, so that the temperature of the locations of different smart furniture devices in the predetermined space is always maintained within the preset environmental parameter range. This enables the smart air conditioner to adjust its operating parameters according to the current environmental information of different locations within the preset space, alleviating the problem in the prior art that the air conditioner cannot be controlled according to the current environmental information such as temperature and humidity. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The drawings that constitute part of this application are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an improper limitation on this application. In the drawings:

[0021] Figure 1 A hardware structure block diagram of a mobile terminal for executing a method for controlling an intelligent air conditioner according to an embodiment of the present application is shown;

[0022] Figure 2 A schematic diagram of a flow chart of a method for controlling an intelligent air conditioner according to an embodiment of the present application is shown;

[0023] Figure 3 A schematic diagram showing a specific method for controlling an intelligent air conditioner according to an embodiment of the present application is shown;

[0024] Figure 4 A schematic diagram of a control device for an intelligent air conditioner according to an embodiment of the present application is shown;

[0025] The above drawings include the following reference numerals:

[0026] 102. Processor; 104. Memory; 106. Transmission device; 108. Input / output device. DETAILED DESCRIPTION

[0027] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0028] In order to enable those skilled in the art to better understand the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of this application.

[0029] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequential order. It should be understood that the data used in this way can be interchanged where appropriate, so that the embodiments of the present application described here. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.

[0030] As introduced in the background technology, in the prior art, the air conditioner directly turns on the cooling or heating function when working, without detecting the room's heating and cooling conditions and temperature and humidity in advance. In order to solve the problem that the air conditioner cannot be accurately adjusted according to the current environmental information such as temperature and humidity, the embodiments of the present application provide a control method, device, computer-readable storage medium, processor and smart home system for an intelligent air conditioner.

[0031] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0032] The method embodiments provided in the embodiments of the present application can be executed in a mobile terminal, a computer terminal or a similar computing device. Taking running on a mobile terminal as an example, Figure 1 This is a hardware structure block diagram of a mobile terminal for a method of controlling an intelligent air conditioner according to an embodiment of the present invention. Figure 1 As shown, the mobile terminal may include one or more ( Figure 1Only one is shown) a processor 102 (the processor 102 may include but is not limited to a microprocessor MCU or a programmable logic device FPGA and other processing devices) and a memory 104 for storing data, wherein the mobile terminal may also include a transmission device 106 and an input and output device 108 for communication functions. It will be understood by those skilled in the art that Figure 1 The structure shown is only for illustration and does not limit the structure of the mobile terminal. Figure 1 More or fewer components than shown, or with Figure 1 Different configurations shown.

[0033] The memory 104 can be used to store computer programs, such as software programs and modules of application software, such as the computer program corresponding to the device information display method in the embodiment of the present invention. The processor 102 executes various functional applications and data processing by running the computer program stored in the memory 104, that is, implementing the above-mentioned method. The memory 104 may include a high-speed random access memory and may also include a non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memory. In some examples, the memory 104 may further include a memory remotely located relative to the processor 102, and these remote memories can be connected to the mobile terminal via a network. Examples of the above-mentioned networks include but are not limited to the Internet, corporate intranets, local area networks, mobile communication networks, and combinations thereof. The transmission device 106 is used to receive or send data via a network. Specific examples of the above-mentioned network may include a wireless network provided by the mobile terminal's communication provider. In one example, the transmission device 106 includes a network adapter (Network Interface Controller, abbreviated as NIC), which can be connected to other network devices via a base station to communicate with the Internet. In one example, the transmission device 106 may be a radio frequency (RF) module, which is used to communicate with the Internet wirelessly.

[0034] In this embodiment, a method for controlling an intelligent air conditioner running on a mobile terminal, a computer terminal or a similar computing device is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.

[0035] Figure 2 This is a flow chart of a method for controlling an intelligent air conditioner according to an embodiment of the present application. Figure 2 As shown, the method includes the following steps:

[0036] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0037] Specifically, the smart air conditioner and the smart home devices are located in the same predetermined space, and the smart air conditioner can obtain the location information of the smart home devices. The concept of smart home is becoming increasingly mature. The smart home devices mentioned above can cover a wide variety of smart home appliances or smart products on the market, such as air conditioners, refrigerators, washing machines, mobile phones, rice cookers, smart gateways, smart switches, air purifiers, humidifiers, smart beds, electric curtains, etc. Smart home devices all have Wi-Fi modules, temperature and humidity sensors, etc., forming the overall ecological environment of the smart home. Furthermore, the smart air conditioner is equipped with a large-screen display panel that can display various video content. Its function is similar to that of a TV display screen, enabling user interaction.

[0038] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0039] Specifically, the smart home device sends environmental information such as the current temperature and humidity at its location to the smart air conditioner. That is, after obtaining the location information of the smart home device, the smart air conditioner also obtains the current temperature and humidity at the location of the smart home device. This environmental information may also include other parameters such as air quality. This application does not specifically limit the type of this environmental information.

[0040] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0041] Specifically, different locations within the above-mentioned predetermined space will correspond to different preset environmental parameter ranges. For example, the predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. The location of the smart refrigerator requires a lower ambient temperature to maintain the refrigerator's low-temperature storage function, while the locations of the smart camera and the smart cat's eye require a normal temperature environment. Therefore, the preset temperature range of the location of the smart refrigerator is lower than the preset temperature range of the locations of the smart camera and the smart cat's eye. Similarly, the preset humidity range also varies depending on the humidity required for the location of the smart home device. Therefore, it is necessary to determine the corresponding preset environmental parameter range based on the above-mentioned location information. Furthermore, when the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted.

[0042] Through this embodiment, first, the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained; then, the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located is received, wherein the above-mentioned environmental information includes at least one of temperature and humidity; the corresponding preset environmental parameter range is determined according to the above-mentioned location information, and it is determined whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. When the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, the operating parameters of the above-mentioned smart air conditioner are adjusted so that the environmental information of the location of at least one of the above-mentioned smart home devices after the operating parameters of the above-mentioned smart air conditioner are adjusted is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range. Compared with the method in the prior art in which the air conditioner is directly adjusted without detecting the current temperature and humidity of the room in advance, the present application can adjust the operating parameters of the smart air conditioner according to whether the current environmental information of the location of the smart home device is within the preset environmental parameter range, so that the temperature of the locations of different smart furniture devices in the predetermined space is always maintained within the preset environmental parameter range. This enables the smart air conditioner to adjust its operating parameters according to the current environmental information of different locations within the preset space, alleviating the problem in the prior art that the air conditioner cannot be controlled according to the current environmental information such as temperature and humidity.

[0043] In a specific implementation, step S201 can be achieved by the following steps: the smart air conditioner includes a radar module, and obtaining the location information of the smart home devices within the predetermined space where the smart air conditioner is located via the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home devices within the predetermined space where the smart air conditioner is located, thereby obtaining the location information of the smart home devices. This method uses the radar module built into the smart air conditioner to emit electromagnetic waves within the predetermined space, and the smart home devices return the electromagnetic waves to the radar module of the smart air conditioner, thereby enabling the smart air conditioner to obtain the three-dimensional coordinate information of the smart home devices. This method can relatively accurately and efficiently obtain the location information of the smart home devices.

[0044] Specifically, for example, a predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. Through the radar module of the smart air conditioner, the location information of the smart camera is obtained as (X1, Y1, Z1), the location information of the smart cat's eye is obtained as (X2, Y2, Z2), and the location information of the smart refrigerator is obtained as (X3, Y3, Z3). The radar module can be any type of radar module capable of performing a positioning function, such as a millimeter-wave radar, and the present application does not specifically limit the type of the radar module.

[0045] In order to further obtain the current environmental information of the location of the smart home device, the above-mentioned step S202 of the present application can be implemented by the following steps: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor. This method obtains the current temperature and humidity of the location of the smart home device through the built-in temperature sensor and humidity sensor of the smart home device, and sends the above-mentioned temperature and humidity to the smart air conditioner, so that the smart air conditioner obtains the current temperature and humidity of the location of the above-mentioned smart home device. In this way, the temperature and humidity information can be obtained more accurately and conveniently, and the smart air conditioner can subsequently adjust its operating parameters according to the above-mentioned temperature and humidity information.

[0046] In some embodiments, the above-mentioned step S203 can be specifically implemented through the following steps: when the multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the above-mentioned smart air conditioner and the multiple current environmental information, the above-mentioned operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the above-mentioned predetermined subspace is the space within the above-mentioned predetermined space and the area is smaller than the predetermined area, the above-mentioned target environmental information is within the current environmental parameter range, the maximum value of the above-mentioned current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the above-mentioned current environmental parameter range is the minimum value of the multiple current environmental information; according to the above-mentioned target environmental information, the operating parameters of the above-mentioned smart air conditioner are adjusted so that the above-mentioned target environmental information after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range. In this method, when multiple smart home devices are in the same predetermined subspace and the current environmental information of the multiple smart home devices is not within the corresponding preset environmental parameter range, in order to ensure that after the smart air conditioner performs parameter adjustment, the environmental information value within the range of the maximum and minimum values ​​of the current environmental information is selected as the target environmental information. In this way, when the multiple smart home devices are located within the predetermined area, the operating parameters of the smart air conditioner can be adjusted according to the target environmental information, thereby ensuring a better adjustment effect.

[0047] Specifically, the predetermined area can be any area value that is pre-set and smaller than the predetermined space area. When the space area where multiple smart home devices are located is smaller than the predetermined area, the target environment information is determined. In a specific application, if the area of ​​the predetermined space is 20m 2 , the planned area is 5m 2 When the area of ​​the space where the above-mentioned smart cameras, smart cat eyes and smart refrigerators are located is less than 5m 2 In this case, the target environment information is determined based on the current operating mode of the smart air conditioner and the current environment information of multiple smart cameras, smart cat eyes, and smart refrigerators. It should be noted that the user can determine the area of ​​the predetermined space and the predetermined area based on actual conditions, that is, this application does not impose specific restrictions on the area of ​​the predetermined space and the predetermined area.

[0048] In the case where the multiple current environmental information in the predetermined subspaces are not within the corresponding preset environmental parameter ranges, the target environmental information can be determined based on the current operating mode of the smart air conditioner and the multiple current environmental information in the following manner: when the current operating mode is cooling mode, the target environmental information is determined to be the maximum value of the current temperature; when the current operating mode is heating mode, the target environmental information is determined to be the minimum value of the current temperature; when the current operating mode is dehumidification mode, the target environmental information is determined to be the maximum value of the current humidity. In order to ensure that the environmental information at the location of each smart home device after parameter adjustment is within the preset environmental parameter range, when the multiple current environmental information in the predetermined subspaces are not within the corresponding preset environmental parameter ranges and the difference between the multiple current environmental information is small, the target environmental information is determined to be the minimum value of the current environmental information based on the operating mode. This ensures that the temperature and humidity are reasonably adjusted, so that the adjusted temperature and humidity remain within an appropriate range, thereby providing a better user experience.

[0049] Specifically, if the area of ​​the space where the smart camera, smart cat eye and smart refrigerator are located is less than 5m 2 , and the current operating mode is cooling, the preset environmental parameter range is 23°C to 26°C, the current temperature at the smart camera's location is 30°C, the current temperature at the smart cat's eye's location is 29°C, and the current temperature at the smart refrigerator's location is 28°C, then the target environmental information is determined to be the maximum current temperature, 30°C. Similarly, the target environmental information can be determined when the current operating mode is heating or dehumidification.

[0050] In the case where the multiple current environmental information in the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information can be determined according to the current operating mode of the smart air conditioner and the multiple current environmental information by the following steps: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information in the predetermined subspace, that is, calculating the difference between the maximum and minimum values ​​of all the current environmental information in the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information as the median of the multiple current environmental information. Since all the current environmental information in the predetermined subspace is not within the preset environmental parameter range, the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is actually equal to the number of current environmental information in the predetermined subspace; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information as the average value of the multiple current environmental information. When multiple current environmental information in a predetermined subspace are not within the corresponding preset environmental parameter range and the difference between the multiple current environmental information is large, this method determines that the target environmental information is the median or average value of the multiple current environmental information. In this way, it can be adjusted according to the multiple current environmental information to ensure that the adjusted environmental information will not be too high or too low, thereby ensuring that the adjusted environmental information is more reasonable and thus has a better user experience.

[0051] Specifically, the preset threshold is used to measure whether the difference between multiple current environmental information is large. If the preset threshold is 5°C, the predetermined subspace includes not only smart cameras, smart cat eyes and smart refrigerators, but also smart humidifiers, and the area of ​​the space where the smart home devices are located is less than 5m 2When the current operating mode is cooling, the preset environmental parameter range is 23℃~26℃, the current temperature of the smart camera location is 36℃, the current temperature of the smart cat's eye location is 33℃, the current temperature of the smart refrigerator location is 30℃, and the current temperature of the smart humidifier location is 29℃. The difference between the maximum and minimum values ​​of the multiple current temperatures is 7℃, and the target environmental information is determined to be the median of the above multiple current temperatures, that is, 31.5℃; and when the current temperature of the smart camera location in the above predetermined subspace is 33℃, the current temperature of the smart cat's eye location is 32℃, the current temperature of the smart refrigerator location is 30℃, and the current temperature of the smart humidifier location is 29℃, the target environmental information is determined to be the average value of the multiple current temperatures, that is, 31.7℃; when the above predetermined subspace only includes the smart camera and the smart refrigerator, the current temperature of the smart camera location is 36℃, and the current temperature of the smart refrigerator location is 30℃, the target environmental information is also determined to be the average value of the multiple current temperatures, that is, 33℃. Similarly, the target environment information when the current operation mode is heating or dehumidification can be determined.

[0052] In some optional embodiments, when the smart air conditioner is in cooling mode, if the temperature T at the location of the smart camera (X1, Y1, Z1) is within the following range: T+5≤T≤T+10, the cooling rate of the smart air conditioner is adjusted to 1.5 times. When the temperature T at the location of the smart camera (X1, Y1, Z1) is within the following range: T≤T<T+5, the cooling rate is increased to 1.0 times. When the humidity RH at the location of the smart camera (X1, Y1, Z1) is within the following range: RH+5≤RH≤RH+10, the dehumidification rate is increased to 1.5 times. When the humidity RH at the location of the smart camera (X1, Y1, Z1) is within the following range: RH0≤T<RH0+5, the dehumidification rate is increased to 1.0 times. Similarly, when the smart air conditioner is in heating mode, parameter adjustment can be performed in the same manner.

[0053] It should be noted that the preset thresholds and the values ​​of multiple current environmental information vary depending on the actual environmental conditions, that is, this application does not impose specific restrictions on the above-mentioned preset thresholds and the values ​​of multiple current environmental information.

[0054] The above-mentioned step S203 can also be implemented in other ways. For example, if the above-mentioned predetermined space includes multiple air-conditioning outlets, and the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the above-mentioned smart air conditioner are adjusted, including: if the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, determining the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; and adjusting the above-mentioned operating parameters corresponding to the air outlet parameters of the above-mentioned target air outlet. This method can determine the air outlet with the shortest distance from the above-mentioned smart home device based on the location information of the smart home device and adjust the parameters. This can ensure that the adjustment position is more accurate, thereby ensuring that the smart air conditioner can be accurately controlled according to the current environmental information at different locations.

[0055] Specifically, the above-mentioned smart air conditioner has multiple air outlets, such as a central air conditioner with multiple air outlets. For general wall-mounted units and cabinet units, the air outlet positions are divided, and the air outlets in different areas have independent working components, so that each air outlet area can work independently, that is, the purpose of adjusting the operating parameters of the smart air conditioner according to the current environmental information of different positions in the preset space can be achieved, and then the air outlet with the smallest distance from each smart home device is selected as the target air outlet to adjust the operating parameters.

[0056] The above-mentioned step S203 can also be implemented in other ways, for example: through the radar module of the above-mentioned smart air conditioner, the three-dimensional coordinates of each of the above-mentioned air outlets are obtained, and according to the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets is calculated, and the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices is determined to be the target air outlet; when the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, the instruction information sent by each of the above-mentioned smart home devices is received, and according to the above-mentioned instruction information, the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices is determined to be the target air outlet, wherein the above-mentioned instruction information includes the device code, the instruction transmission speed and the instruction sending time. This method is based on whether the air outlet of the air conditioner is located on the air conditioner casing. When the air conditioner has multiple air outlets, the location information of each air outlet is obtained through the radar module of the smart air conditioner, and then the distance between each smart home device and the air outlet is calculated; when the air outlet of the air conditioner is located on the air conditioner casing, the distance between each smart home device and the air outlet is calculated through the command transmission between the smart home device and the smart air conditioner. This can be applied to a variety of different air outlets of the air conditioner, ensuring more precise control.

[0057] Specifically, when the air conditioner has multiple air outlets, the three-dimensional coordinates of each air outlet are obtained through the radar module of the smart air conditioner, and the distance is calculated according to the three-dimensional coordinates of each smart home device and the three-dimensional coordinates of each air outlet, and the air outlet with the smallest distance to each smart home device is selected as the target air outlet; when the air outlet is located on the shell of the smart air conditioner, each smart home device sends instruction information including the device code, instruction transmission speed and instruction sending time to the smart air conditioner, and the smart air conditioner calculates the product of the instruction transmission speed and the instruction sending time to obtain the distance between the air outlet of the smart air conditioner and each smart home device, and selects the air outlet with the smallest distance to each smart home device as the target air outlet.

[0058] In some embodiments, the control method constructs a 3D environmental model within the predetermined space based on the environmental information and corresponding location information of the smart home devices; the 3D environmental model is sent to a user terminal device for display, and the corresponding environmental information is displayed at the location of each smart home device in the displayed 3D environmental model. This method matches the location information of the smart home devices within the predetermined space where the smart air conditioner is located with the environmental information, creates a 3D model, and sends it to a user terminal, such as the smart air conditioner's large-screen smart panel or an app on the user's mobile phone. This allows the smart air conditioner to monitor the indoor space in real time and interact with the user.

[0059] In order to enable those skilled in the art to more clearly understand the technical solution of the present application, the implementation process of the control method of the intelligent air conditioner of the present application will be described in detail below with reference to specific embodiments.

[0060] This embodiment relates to a specific intelligent air conditioner control method, such as Figure 3 As shown, the following steps are included:

[0061] Step S1: The smart air conditioner is turned on and the location information of different smart home devices is obtained through the radar module;

[0062] Step S2: Different smart home devices send command information to the smart air conditioner, and the smart air conditioner calculates the distance between each smart home device based on the command information, or the smart air conditioner obtains the location information of different air outlets through the radar module and calculates the distance to each smart home device;

[0063] Step S3: Obtaining temperature and humidity information of each smart home device;

[0064] Step S4: Determine whether the temperature and humidity of each smart home device are within the preset environmental parameter range;

[0065] Step S5: if the multiple current temperatures and humidity values ​​within the predetermined subspace are all outside the corresponding preset environmental parameter ranges, the target environmental information is determined to be the maximum value among the multiple current environmental information values ​​according to the current operating mode of the smart air conditioner and the multiple current temperatures and humidity values.

[0066] Step S6: if the multiple current temperatures and humidity levels within the predetermined subspace are all outside the corresponding preset environmental parameter ranges, the target environmental information is determined to be a median or average value of the multiple current environmental information levels based on the current operating mode of the smart air conditioner and the multiple current temperatures and humidity levels.

[0067] Step S7: determining the air outlet with the shortest distance from each smart home device as the target air outlet, and adjusting the operating parameters of the target air outlet;

[0068] Step S8: The radar location information, distance, and temperature and humidity information are combined to generate a 3D environmental model, which is then sent to a display screen or mobile phone APP for display.

[0069] The embodiment of the present application also provides a control device for an intelligent air conditioner. It should be noted that the control device for an intelligent air conditioner in the embodiment of the present application can be used to execute the control method for an intelligent air conditioner provided in the embodiment of the present application. The device is used to implement the above-mentioned embodiments and preferred implementation methods, and the details that have been described will not be repeated here. As used below, the term "module" can be a combination of software and / or hardware that implements a predetermined function. Although the devices described in the following embodiments are preferably implemented in software, the implementation of hardware, or a combination of software and hardware, is also possible and conceived.

[0070] The following is an introduction to the control device of the smart air conditioner provided in the embodiment of the present application.

[0071] Figure 4 Schematic diagram of a control device for an intelligent air conditioner according to an embodiment of the present application. Figure 4 As shown, the device includes:

[0072] An acquisition unit 10 is configured to acquire location information of smart home devices within a predetermined space where the smart air conditioner is located;

[0073] a receiving unit 20, configured to receive current environmental information of a location sent by a smart home device within a predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity;

[0074] The adjustment unit 30 is used to determine the corresponding preset environmental parameter range based on the above-mentioned location information, and determine whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjust the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after the operating parameters of the above-mentioned smart air conditioner are adjusted is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0075] Specifically, the smart air conditioner and the smart home devices are located in the same predetermined space, and the smart air conditioner can obtain the location information of the smart home devices. The concept of smart home is becoming increasingly mature. The smart home devices mentioned above can cover a wide variety of smart home appliances or smart products on the market, such as air conditioners, refrigerators, washing machines, mobile phones, rice cookers, smart gateways, smart switches, air purifiers, humidifiers, smart beds, electric curtains, etc. Smart home devices all have Wi-Fi modules, temperature and humidity sensors, etc., forming the overall ecological environment of the smart home. Furthermore, the smart air conditioner is equipped with a large-screen display panel that can display various video content. Its function is similar to that of a TV display screen, enabling user interaction.

[0076] Specifically, the smart home device sends environmental information such as the current temperature and humidity at its location to the smart air conditioner. That is, after obtaining the location information of the smart home device, the smart air conditioner also obtains the current temperature and humidity at the location of the smart home device. This environmental information may also include other parameters such as air quality. This application does not specifically limit the type of this environmental information.

[0077] Specifically, different locations within the above-mentioned predetermined space will correspond to different preset environmental parameter ranges. For example, the predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. The location of the smart refrigerator requires a lower ambient temperature to maintain the refrigerator's low-temperature storage function, while the locations of the smart camera and the smart cat's eye require a normal temperature environment. Therefore, the preset temperature range of the location of the smart refrigerator is lower than the preset temperature range of the locations of the smart camera and the smart cat's eye. Similarly, the preset humidity range also varies depending on the humidity required for the location of the smart home device. Therefore, it is necessary to determine the corresponding preset environmental parameter range based on the above-mentioned location information. Furthermore, when the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted.

[0078] Through this embodiment, the acquisition unit acquires the location information of the smart home device within the predetermined space where the smart air conditioner is located; the receiving unit receives the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, wherein the above-mentioned environmental information includes at least one of temperature and humidity; the adjustment unit determines the corresponding preset environmental parameter range according to the above-mentioned location information, and determines whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. When the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, the operating parameters of the above-mentioned smart air conditioner are adjusted so that the environmental information of the location of at least one of the above-mentioned smart home devices after the operating parameters of the above-mentioned smart air conditioner are adjusted is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range. Compared with the devices in the prior art that directly adjust the air conditioner without detecting the current temperature and humidity of the room in advance, the present application can adjust the operating parameters of the smart air conditioner according to whether the current environmental information of the location of the smart home device is within the preset environmental parameter range, so that the temperature of the locations of different smart furniture devices in the predetermined space is always maintained within the preset environmental parameter range. This enables the smart air conditioner to adjust the operating parameters according to the current environmental information of different locations in the preset space, alleviating the problem in the prior art that the air conditioner cannot be accurately controlled according to the current environmental information such as temperature and humidity.

[0079] As an optional solution, the smart air conditioner includes a radar module, and the acquisition unit includes a first acquisition module configured to use the radar module to acquire the three-dimensional coordinates of the smart home devices within a predetermined space where the smart air conditioner is located, thereby obtaining the location information of the smart home devices. This device transmits electromagnetic waves within the predetermined space through the radar module built into the smart air conditioner. The smart home devices transmit the electromagnetic waves back to the radar module of the smart air conditioner, thereby enabling the smart air conditioner to acquire the three-dimensional coordinate information of the smart home devices. This allows for relatively accurate and efficient acquisition of the location information of the smart home devices.

[0080] Specifically, for example, a predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. Through the radar module of the smart air conditioner, the location information of the smart camera is obtained as (X1, Y1, Z1), the location information of the smart cat's eye is obtained as (X2, Y2, Z2), and the location information of the smart refrigerator is obtained as (X3, Y3, Z3). The radar module can be any type of radar module capable of performing a positioning function, such as a millimeter-wave radar, and the present application does not specifically limit the type of the radar module.

[0081] In order to further obtain the current environmental information of the location of the smart home device, as an optional solution, the receiving unit includes a first receiving module and a second receiving module, wherein the first receiving module is used to receive the current temperature sent by the smart home device, and the current temperature is obtained by the smart home device through the built-in temperature sensor; the second receiving module is used to receive the current humidity sent by the smart home device, and the current humidity is obtained by the built-in humidity sensor of the smart home device. The device obtains the current temperature and humidity of the location of the smart home device through the built-in temperature sensor and humidity sensor of the smart home device, and sends the temperature and humidity to the smart air conditioner, so that the smart air conditioner obtains the current temperature and humidity of the location of the smart home device. This can more accurately and conveniently obtain temperature and humidity information, and ensure that the smart air conditioner subsequently adjusts its operating parameters according to the temperature and humidity information.

[0082] As an optional solution, the adjustment unit includes a first determination module and a first adjustment module, wherein the first determination module is used to determine the target environmental information according to the current operating mode of the above-mentioned smart air conditioner and the multiple current environmental information when the multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the above-mentioned operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the above-mentioned predetermined subspace is the space within the above-mentioned predetermined space and the area is smaller than the predetermined area, the above-mentioned target environmental information is within the current environmental parameter range, the maximum value of the above-mentioned current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the above-mentioned current environmental parameter range is the minimum value of the multiple current environmental information; the first adjustment module is used to adjust the operating parameters of the above-mentioned smart air conditioner according to the above-mentioned target environmental information, so that the above-mentioned target environmental information after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range. When multiple smart home devices are in the same predetermined subspace and the current environmental information of the multiple smart home devices is not within the corresponding preset environmental parameter range, in order to ensure that after the smart air conditioner performs parameter adjustment, the environmental information value within the range of the maximum and minimum values ​​of the current environmental information is selected as the target environmental information. In this way, when multiple smart home devices are located within the predetermined area, the operating parameters of the smart air conditioner can be adjusted according to the target environmental information, thereby ensuring a better adjustment effect.

[0083] Specifically, the predetermined area can be any area value that is pre-set and smaller than the predetermined space area. When the space area where multiple smart home devices are located is smaller than the predetermined area, the target environment information is determined. In a specific application, if the area of ​​the predetermined space is 20m 2 , the planned area is 5m2 When the area of ​​the space where the above-mentioned smart cameras, smart cat eyes and smart refrigerators are located is less than 5m 2 In this case, the target environment information is determined based on the current operating mode of the smart air conditioner and the current environment information of multiple smart cameras, smart cat eyes, and smart refrigerators. It should be noted that the user can determine the area of ​​the predetermined space and the predetermined area based on actual conditions, that is, this application does not impose specific restrictions on the area of ​​the predetermined space and the predetermined area.

[0084] As an optional solution, the first determination module includes a first determination submodule, a second determination submodule, and a third determination submodule, wherein the first determination submodule is configured to determine the target environmental information as the maximum value of the current temperature when the current operating mode is the cooling mode; the second determination submodule is configured to determine the target environmental information as the minimum value of the current temperature when the current operating mode is the heating mode; and the third determination submodule is configured to determine the target environmental information as the maximum value of the current humidity when the current operating mode is the dehumidification mode. In order to ensure that the environmental information at the location of each smart home device after parameter adjustment is within the preset environmental parameter range, the device determines the target environmental information as the maximum value of the current environmental information based on the operating mode when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range and the difference between the multiple current environmental information is small. This ensures that the temperature and humidity are reasonably adjusted, so that the adjusted temperature and humidity remain within an appropriate range, thereby providing a better user experience.

[0085] Specifically, if the area of ​​the space where the smart camera, smart cat eye and smart refrigerator are located is less than 5m 2 , and the current operating mode is cooling, the preset environmental parameter range is 23°C to 26°C, the current temperature at the smart camera's location is 30°C, the current temperature at the smart cat's eye's location is 29°C, and the current temperature at the smart refrigerator's location is 28°C, then the target environmental information is determined to be the maximum current temperature, 30°C. Similarly, the target environmental information can be determined when the current operating mode is heating or dehumidification.

[0086] As an optional solution, the first determination module further includes a calculation submodule, a fourth determination submodule, and a fifth determination submodule, wherein the calculation submodule is configured to calculate the difference between the maximum and minimum values ​​of the multiple current environmental information in the predetermined subspace; the fourth determination submodule is configured to determine the target environmental information as the median of the multiple current environmental information when the difference is greater than a preset threshold and the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two; and the fifth determination submodule is configured to determine the target environmental information as the average of the multiple current environmental information when the difference is less than the preset threshold or greater than the preset threshold and the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two. When the multiple current environmental information in the predetermined subspace are all outside the corresponding preset environmental parameter range and the difference between the multiple current environmental information is large, the target environmental information is determined to be the median or average of the multiple current environmental information. In this way, the target environmental information can be adjusted according to the multiple current environmental information to ensure that the adjusted environmental information is not too high or too low, thereby ensuring that the adjusted environmental information is more reasonable and thus has a better user experience.

[0087] Specifically, the preset threshold is used to measure whether the difference between multiple current environmental information is large. If the preset threshold is 5°C, the predetermined subspace includes not only smart cameras, smart cat eyes and smart refrigerators, but also smart humidifiers, and the area of ​​the space where the smart home devices are located is less than 5m 2 When the current operating mode is cooling, the preset environmental parameter range is 23℃~26℃, the current temperature of the smart camera location is 36℃, the current temperature of the smart cat's eye location is 33℃, the current temperature of the smart refrigerator location is 30℃, and the current temperature of the smart humidifier location is 29℃. The difference between the maximum and minimum values ​​of the multiple current temperatures is 7℃, and the target environmental information is determined to be the median of the above multiple current temperatures, that is, 31.5℃; and when the current temperature of the smart camera location in the above predetermined subspace is 33℃, the current temperature of the smart cat's eye location is 32℃, the current temperature of the smart refrigerator location is 30℃, and the current temperature of the smart humidifier location is 29℃, the target environmental information is determined to be the average value of the multiple current temperatures, that is, 31.7℃; when the above predetermined subspace only includes the smart camera and the smart refrigerator, the current temperature of the smart camera location is 36℃, and the current temperature of the smart refrigerator location is 30℃, the target environmental information is also determined to be the average value of the multiple current temperatures, that is, 33℃. Similarly, the target environment information when the current operation mode is heating or dehumidification can be determined.

[0088] It should be noted that the preset thresholds and the values ​​of multiple current environmental information vary depending on the actual environmental conditions, that is, this application does not impose specific restrictions on the above-mentioned preset thresholds and the values ​​of multiple current environmental information.

[0089] As an optional solution, the predetermined space includes multiple air conditioning outlets, and the adjustment unit includes a second determination module and a second adjustment module. The second determination module is configured to determine the outlet with the shortest distance from each smart home device as the target outlet if the current environmental information is not within the corresponding preset environmental parameter range; and the second adjustment module is configured to adjust the operating parameters corresponding to the outlet parameters of the target outlet. This device can determine the outlet with the shortest distance from the smart home device based on the location information of the smart home device and adjust the parameters accordingly. This ensures more precise adjustment of the position, thereby ensuring that the smart air conditioner can be precisely controlled based on the current environmental information at different locations.

[0090] Specifically, the above-mentioned smart air conditioner has multiple air outlets, such as a central air conditioner with multiple air outlets. For general wall-mounted units and cabinet units, the air outlet positions are divided, and the air outlets in different areas have independent working components, so that each air outlet area can work independently, that is, the purpose of adjusting the operating parameters of the smart air conditioner according to the current environmental information of different positions in the preset space can be achieved, and then the air outlet with the smallest distance from each smart home device is selected as the target air outlet to adjust the operating parameters.

[0091] As an optional solution, the second determination module includes a sixth determination submodule and a seventh determination submodule, wherein the sixth determination submodule is used to obtain the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculate the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets according to the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determine the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; the seventh determination submodule is used to receive the instruction information sent by each of the above-mentioned smart home devices when the above-mentioned air outlets are located on the shell of the above-mentioned smart air conditioner, and determine the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet according to the above-mentioned instruction information, wherein the above-mentioned instruction information includes the device code, instruction transmission speed and instruction sending time. The device determines whether the air outlet of the air conditioner is located on the air conditioner casing. When the air conditioner has multiple air outlets, the device obtains the position information of each air outlet through the radar module of the smart air conditioner, and then calculates the distance between each smart home device and the air outlet; when the air outlet of the air conditioner is located on the air conditioner casing, the device calculates the distance between each smart home device and the air outlet through the command transmission between the smart home device and the smart air conditioner. This can be applied to a variety of different air outlets of the air conditioner, ensuring more precise control.

[0092] Specifically, when the air conditioner has multiple air outlets, the three-dimensional coordinates of each air outlet are obtained through the radar module of the smart air conditioner, and the distance is calculated according to the three-dimensional coordinates of each smart home device and the three-dimensional coordinates of each air outlet, and the air outlet with the smallest distance to each smart home device is selected as the target air outlet; when the air outlet is located on the shell of the smart air conditioner, each smart home device sends instruction information including the device code, instruction transmission speed and instruction sending time to the smart air conditioner, and the smart air conditioner calculates the product of the instruction transmission speed and the instruction sending time to obtain the distance between the air outlet of the smart air conditioner and each smart home device, and selects the air outlet with the smallest distance to each smart home device as the target air outlet.

[0093] As an optional solution, the control device further includes a construction unit and a sending unit, wherein the construction unit is used to construct a 3D environmental model within the predetermined space based on the environmental information of the smart home devices and the corresponding location information; the sending unit is used to send the 3D environmental model to the user terminal device for display, and in the displayed 3D environmental model, the location point where each smart home device is located is displayed with the corresponding environmental information. The device matches the location information of the smart home devices within the predetermined space where the smart air conditioner is located with the environmental information, creates a 3D model, and sends it to the user terminal, such as the smart large-screen panel of the smart air conditioner or the APP end of the user's mobile phone. This can achieve the purpose of real-time monitoring of the indoor space by the smart air conditioner and user interaction.

[0094] The intelligent air conditioner control device includes a processor and memory. The acquisition unit, receiving unit, and adjustment unit are stored as program units in the memory. The processor executes the program units stored in the memory to implement the corresponding functions. The modules are all located in the same processor; alternatively, the modules can be located in different processors in any combination.

[0095] The processor contains a core, which retrieves the corresponding program unit from the memory. One or more cores can be configured, and by adjusting the core parameters, the smart air conditioner can precisely control the temperature and humidity based on the current environment.

[0096] The memory may include non-permanent memory in a computer-readable medium, random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM, and the memory includes at least one memory chip.

[0097] An embodiment of the present invention provides a computer-readable storage medium, which includes a stored program. When the program is executed, the device where the computer-readable storage medium is located is controlled to execute the control method of the smart air conditioner.

[0098] Specifically, the control method of the intelligent air conditioner includes:

[0099] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0100] Specifically, the smart air conditioner and the smart home devices are located in the same predetermined space, and the smart air conditioner can obtain the location information of the smart home devices. The concept of smart home is becoming increasingly mature. The smart home devices mentioned above can cover a wide variety of smart home appliances or smart products on the market, such as air conditioners, refrigerators, washing machines, mobile phones, rice cookers, smart gateways, smart switches, air purifiers, humidifiers, smart beds, electric curtains, etc. Smart home devices all have Wi-Fi modules, temperature and humidity sensors, etc., forming the overall ecological environment of the smart home. Furthermore, the smart air conditioner is equipped with a large-screen display panel that can display various video content. Its function is similar to that of a TV display screen, enabling user interaction.

[0101] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0102] Specifically, the smart home device sends environmental information such as the current temperature and humidity at its location to the smart air conditioner. That is, after obtaining the location information of the smart home device, the smart air conditioner also obtains the current temperature and humidity at the location of the smart home device. This environmental information may also include other parameters such as air quality. This application does not specifically limit the type of this environmental information.

[0103] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0104] Specifically, different locations within the above-mentioned predetermined space will correspond to different preset environmental parameter ranges. For example, the predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. The location of the smart refrigerator requires a lower ambient temperature to maintain the refrigerator's low-temperature storage function, while the locations of the smart camera and the smart cat's eye require a normal temperature environment. Therefore, the preset temperature range of the location of the smart refrigerator is lower than the preset temperature range of the locations of the smart camera and the smart cat's eye. Similarly, the preset humidity range also varies depending on the humidity required for the location of the smart home device. Therefore, it is necessary to determine the corresponding preset environmental parameter range based on the above-mentioned location information. Furthermore, when the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted.

[0105] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0106] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and the multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is the space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value of the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0107] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0108] Optionally, when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information to be the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information to be the average value of the multiple current environmental information.

[0109] Optionally, the predetermined space includes a plurality of air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet; and adjusting the operating parameters corresponding to the air outlet parameters of the target air outlet.

[0110] Optionally, determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculating the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets based on the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; in a case where the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, receiving instruction information sent by each of the above-mentioned smart home devices, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet based on the above-mentioned instruction information, wherein the above-mentioned instruction information includes a device code, an instruction transmission speed and an instruction sending time.

[0111] Optionally, receiving the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, including: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor.

[0112] Optionally, the above-mentioned control method also includes: constructing a 3D environmental model within the above-mentioned predetermined space based on the above-mentioned environmental information of the smart home device and the corresponding above-mentioned location information; sending the above-mentioned 3D environmental model to the user terminal device for display, and in the displayed above-mentioned 3D environmental model, the location point where each of the above-mentioned smart home devices is located is displayed with the corresponding above-mentioned environmental information.

[0113] An embodiment of the present invention provides a processor, which is used to run a program, wherein the control method of the intelligent air conditioner is executed when the program is run.

[0114] Specifically, the control method of the intelligent air conditioner includes:

[0115] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0116] Specifically, the smart air conditioner and the smart home devices are located in the same predetermined space, and the smart air conditioner can obtain the location information of the smart home devices. The concept of smart home is becoming increasingly mature. The smart home devices mentioned above can cover a wide variety of smart home appliances or smart products on the market, such as air conditioners, refrigerators, washing machines, mobile phones, rice cookers, smart gateways, smart switches, air purifiers, humidifiers, smart beds, electric curtains, etc. Smart home devices all have Wi-Fi modules, temperature and humidity sensors, etc., forming the overall ecological environment of the smart home. Furthermore, the smart air conditioner is equipped with a large-screen display panel that can display various video content. Its function is similar to that of a TV display screen, enabling user interaction.

[0117] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0118] Specifically, the smart home device sends environmental information such as the current temperature and humidity at its location to the smart air conditioner. That is, after obtaining the location information of the smart home device, the smart air conditioner also obtains the current temperature and humidity at the location of the smart home device. This environmental information may also include other parameters such as air quality. This application does not specifically limit the type of this environmental information.

[0119] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0120] Specifically, different locations within the above-mentioned predetermined space will correspond to different preset environmental parameter ranges. For example, the predetermined space includes a smart camera, a smart cat's eye, and a smart refrigerator. The location of the smart refrigerator requires a lower ambient temperature to maintain the refrigerator's low-temperature storage function, while the locations of the smart camera and the smart cat's eye require a normal temperature environment. Therefore, the preset temperature range of the location of the smart refrigerator is lower than the preset temperature range of the locations of the smart camera and the smart cat's eye. Similarly, the preset humidity range also varies depending on the humidity required for the location of the smart home device. Therefore, it is necessary to determine the corresponding preset environmental parameter range based on the above-mentioned location information. Furthermore, when the above-mentioned current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted.

[0121] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0122] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and the multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is the space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value of the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0123] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0124] Optionally, when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information to be the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information to be the average value of the multiple current environmental information.

[0125] Optionally, the predetermined space includes a plurality of air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet; and adjusting the operating parameters corresponding to the air outlet parameters of the target air outlet.

[0126] Optionally, determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculating the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets based on the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; in a case where the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, receiving instruction information sent by each of the above-mentioned smart home devices, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet based on the above-mentioned instruction information, wherein the above-mentioned instruction information includes a device code, an instruction transmission speed and an instruction sending time.

[0127] Optionally, receiving the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, including: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor.

[0128] Optionally, the above-mentioned control method also includes: constructing a 3D environmental model within the above-mentioned predetermined space based on the above-mentioned environmental information of the smart home device and the corresponding above-mentioned location information; sending the above-mentioned 3D environmental model to the user terminal device for display, and in the displayed above-mentioned 3D environmental model, the location point where each of the above-mentioned smart home devices is located is displayed with the corresponding above-mentioned environmental information.

[0129] An embodiment of the present invention provides a smart home system, including a smart air conditioner and a smart home device communicatively connected to the smart air conditioner. The smart air conditioner includes one or more processors, a memory, and a program stored in the memory and executable on the processor. When the processor executes the program, at least the following steps are performed:

[0130] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0131] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0132] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0133] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0134] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and the multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is the space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value of the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0135] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0136] Optionally, when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information to be the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information to be the average value of the multiple current environmental information.

[0137] Optionally, the above-mentioned predetermined space value includes multiple air-conditioning outlets. When the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, the operating parameters of the above-mentioned smart air conditioner are adjusted, including: when the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, the above-mentioned air outlet with the shortest distance from each of the above-mentioned smart home devices is determined as the target air outlet; and the above-mentioned operating parameters corresponding to the air outlet parameters of the above-mentioned target air outlet are adjusted.

[0138] Optionally, determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculating the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets based on the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; in a case where the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, receiving instruction information sent by each of the above-mentioned smart home devices, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet based on the above-mentioned instruction information, wherein the above-mentioned instruction information includes a device code, an instruction transmission speed and an instruction sending time.

[0139] Optionally, receiving the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, including: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor.

[0140] Optionally, the above-mentioned control method also includes: constructing a 3D environmental model within the above-mentioned predetermined space based on the above-mentioned environmental information of the smart home device and the corresponding above-mentioned location information; sending the above-mentioned 3D environmental model to the user terminal device for display, and in the displayed above-mentioned 3D environmental model, the location point where each of the above-mentioned smart home devices is located is displayed with the corresponding above-mentioned environmental information.

[0141] An embodiment of the present invention provides a device including a processor, a memory, and a program stored in the memory and executable on the processor. When the processor executes the program, at least the following steps are performed:

[0142] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0143] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0144] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0145] The devices in this article can be servers, PCs, PADs, mobile phones, etc.

[0146] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0147] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and the multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is the space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value of the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0148] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0149] Optionally, when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information to be the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information to be the average value of the multiple current environmental information.

[0150] Optionally, the predetermined space includes a plurality of air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet; and adjusting the operating parameters corresponding to the air outlet parameters of the target air outlet.

[0151] Optionally, determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculating the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets based on the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; in a case where the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, receiving instruction information sent by each of the above-mentioned smart home devices, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet based on the above-mentioned instruction information, wherein the above-mentioned instruction information includes a device code, an instruction transmission speed and an instruction sending time.

[0152] Optionally, receiving the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, including: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor.

[0153] Optionally, the above-mentioned control method also includes: constructing a 3D environmental model within the above-mentioned predetermined space based on the above-mentioned environmental information of the smart home device and the corresponding above-mentioned location information; sending the above-mentioned 3D environmental model to the user terminal device for display, and in the displayed above-mentioned 3D environmental model, the location point where each of the above-mentioned smart home devices is located is displayed with the corresponding above-mentioned environmental information.

[0154] The present application also provides a computer program product, which, when executed on a data processing device, is adapted to execute a program for initializing at least the following method steps:

[0155] Step S201: Acquire location information of smart home devices within a predetermined space where the smart air conditioner is located.

[0156] Step S202: receiving current environmental information of the location sent by the smart home device within the predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity.

[0157] Step S203, determining the corresponding preset environmental parameter range based on the above-mentioned location information, and determining whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. If the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, adjusting the operating parameters of the above-mentioned smart air conditioner so that the environmental information of the location of at least one of the above-mentioned smart home devices after adjusting the operating parameters of the above-mentioned smart air conditioner is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range.

[0158] The devices in this article can be servers, PCs, PADs, mobile phones, etc.

[0159] Optionally, the smart air conditioner includes a radar module, and the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained through the radar module, including: using the radar module to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtaining the location information of the smart home device.

[0160] Optionally, when the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the smart air conditioner and the multiple current environmental information, the operating mode is one of the cooling mode, the heating mode and the dehumidification mode, the predetermined subspace is the space within the predetermined space and the area is smaller than the predetermined area, the target environmental information is within the current environmental parameter range, the maximum value of the current environmental parameter range is the maximum value of the multiple current environmental information, and the minimum value of the current environmental parameter range is the minimum value of the multiple current environmental information; according to the target environmental information, the operating parameters of the smart air conditioner are adjusted so that the target environmental information after adjusting the operating parameters of the smart air conditioner is within the preset environmental parameter range.

[0161] Optionally, when multiple current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and multiple current environmental information, including: when the current operating mode is a cooling mode, determining the target environmental information as the maximum value of the current temperature; when the current operating mode is a heating mode, determining the target environmental information as the minimum value of the current temperature; when the current operating mode is a dehumidification mode, determining the target environmental information as the maximum value of the current humidity.

[0162] Optionally, when multiple current environmental information within the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined based on the current operating mode of the smart air conditioner and the multiple current environmental information, including: calculating the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; when the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining the target environmental information to be the median of the multiple current environmental information; when the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determining the target environmental information to be the average value of the multiple current environmental information.

[0163] Optionally, the predetermined space includes a plurality of air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, the operating parameters of the smart air conditioner are adjusted, including: when the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet; and adjusting the operating parameters corresponding to the air outlet parameters of the target air outlet.

[0164] Optionally, determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet includes one of the following: obtaining the three-dimensional coordinates of each of the above-mentioned air outlets through the radar module of the above-mentioned smart air conditioner, calculating the distance between each of the above-mentioned smart home devices and each of the above-mentioned air outlets based on the position information of each of the above-mentioned smart home devices and the three-dimensional coordinates of each of the above-mentioned air outlets, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet; in a case where the above-mentioned air outlet is located on the shell of the above-mentioned smart air conditioner, receiving instruction information sent by each of the above-mentioned smart home devices, and determining the air outlet with the shortest distance from each of the above-mentioned smart home devices as the target air outlet based on the above-mentioned instruction information, wherein the above-mentioned instruction information includes a device code, an instruction transmission speed and an instruction sending time.

[0165] Optionally, receiving the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located, including: receiving the current temperature sent by the above-mentioned smart home device, the above-mentioned current temperature is obtained by the above-mentioned smart home device through the built-in temperature sensor; receiving the current humidity sent by the above-mentioned smart home device, the above-mentioned current humidity is obtained by the above-mentioned smart home device through the built-in humidity sensor.

[0166] Optionally, the above-mentioned control method also includes: constructing a 3D environmental model within the above-mentioned predetermined space based on the above-mentioned environmental information of the smart home device and the corresponding above-mentioned location information; sending the above-mentioned 3D environmental model to the user terminal device for display, and in the displayed above-mentioned 3D environmental model, the location point where each of the above-mentioned smart home devices is located is displayed with the corresponding above-mentioned environmental information.

[0167] Obviously, those skilled in the art will appreciate that the various modules or steps of the present invention described above can be implemented using a general-purpose computing device, can be centralized on a single computing device, or can be distributed across a network of multiple computing devices. They can be implemented using program code executable by the computing device, and thus, can be stored in a storage device and executed by the computing device. In some cases, the steps shown or described herein can be performed in a different order than that shown, or can be fabricated as separate integrated circuit modules, or multiple modules or steps can be fabricated as a single integrated circuit module. Thus, the present invention is not limited to any particular combination of hardware and software.

[0168] Those skilled in the art will appreciate that the embodiments of the present application can be provided as methods, systems, or computer program products. Therefore, the present application can adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment in combination with software and hardware. Moreover, the present application can adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) that contain computer-usable program code.

[0169] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the steps in the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0170] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0171] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0172] In a typical configuration, a computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.

[0173] The memory may include non-permanent memory in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. The memory is an example of a computer-readable medium.

[0174] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. The information can be computer-readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be accessed by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media (transitory media), such as modulated data signals and carrier waves.

[0175] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.

[0176] From the above description, it can be seen that the above embodiments of the present application achieve the following technical effects:

[0177] 1) In the control method of the smart air conditioner of the present application, first, the location information of the smart home device within the predetermined space where the smart air conditioner is located is obtained; then, the current environmental information of the location sent by the smart home device within the predetermined space where the above-mentioned smart air conditioner is located is received, wherein the above-mentioned environmental information includes at least one of temperature and humidity; the corresponding preset environmental parameter range is determined according to the above-mentioned location information, and it is determined whether the above-mentioned current environmental information is within the corresponding above-mentioned preset environmental parameter range. When the above-mentioned current environmental information is not within the corresponding above-mentioned preset environmental parameter range, the operating parameters of the above-mentioned smart air conditioner are adjusted so that the environmental information of the location of at least one of the above-mentioned smart home devices after the operating parameters of the above-mentioned smart air conditioner are adjusted is within the above-mentioned preset environmental parameter range, wherein the above-mentioned preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range. Compared with the method in the prior art in which the air conditioner is directly adjusted without detecting the current temperature and humidity of the room in advance, the present application can adjust the operating parameters of the smart air conditioner according to whether the current environmental information of the location of the smart home device is within the preset environmental parameter range, so that the temperature of the locations of different smart furniture devices in the predetermined space is always maintained within the preset environmental parameter range. This enables the smart air conditioner to adjust its operating parameters according to the current environmental information of different locations within the preset space, alleviating the problem in the prior art that the air conditioner cannot be accurately controlled according to the current environmental information such as temperature and humidity.

[0178] 2) The present application adopts the above-mentioned radar module to obtain the three-dimensional coordinates of the above-mentioned smart home devices within the predetermined space where the above-mentioned smart air conditioner is located, and obtains the location information of the above-mentioned smart home devices. In this way, the location information of the smart home devices can be obtained more accurately and efficiently. The current temperature sent by the above-mentioned smart home devices is received, and the above-mentioned current temperature is obtained by the above-mentioned smart home devices through the built-in temperature sensor; the current humidity sent by the above-mentioned smart home devices is received, and the above-mentioned current humidity is obtained by the above-mentioned smart home devices through the built-in humidity sensor. In this way, the temperature and humidity information can be obtained more accurately and conveniently, and the subsequent smart air conditioner can adjust the operating parameters according to the above-mentioned temperature and humidity information. When multiple current environmental information in the predetermined subspace are not within the corresponding preset environmental parameter range, the target environmental information is determined according to the current operating mode of the above-mentioned smart air conditioner and the multiple current environmental information. In this way, when multiple smart home devices are located within the predetermined area, the operating parameters of the smart air conditioner can be adjusted according to the target environmental information, thereby ensuring a better adjustment effect. When the current operating mode is cooling mode, the target environmental information is determined to be the maximum value of the current temperature; when the current operating mode is heating mode, the target environmental information is determined to be the minimum value of the current temperature; when the current operating mode is dehumidification mode, the target environmental information is determined to be the maximum value of the current humidity. This ensures that the temperature and humidity are reasonably adjusted, so that the adjusted temperature and humidity are maintained within an appropriate range, thereby providing a better user experience. Calculate the difference between the maximum and minimum values ​​of the multiple current environmental information within the predetermined subspace; if the difference is greater than a preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determine the target environmental information as the median of the multiple current environmental information; if the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of the current environmental information within the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, determine the target environmental information as the average of the multiple current environmental information, so that it can be adjusted according to the multiple current environmental information to ensure that the adjusted environmental information is not too high or too low, thereby ensuring that the adjusted environmental information is more reasonable and thus providing a better user experience. If the current environmental information is not within the corresponding preset environmental parameter range, determine the air outlet with the shortest distance from each of the smart home devices as the target air outlet; adjust the operating parameters corresponding to the air outlet parameters of the target air outlet, so that the adjustment position can be more accurate, thereby ensuring that the smart air conditioner can be accurately controlled according to the current environmental information at different locations.The smart air conditioner obtains the three-dimensional coordinates of each of the air outlets through the radar module, calculates the distance between each of the smart home devices and each of the air outlets based on the location information of each of the smart home devices and the three-dimensional coordinates of each of the air outlets, and determines the air outlet with the shortest distance from each of the smart home devices as the target air outlet; receives command information sent by each of the smart home devices when the air outlets are located on the housing of the smart air conditioner, and determines the air outlet with the shortest distance from each of the smart home devices as the target air outlet based on the command information, wherein the command information includes a device code, a command transmission speed, and a command transmission time, which can be applied to various air outlets of the air conditioner to ensure more accurate control; constructs a 3D environmental model within the predetermined space based on the environmental information of the smart home devices and the corresponding location information; and transmits the 3D environmental model to a user terminal device for display, wherein the displayed 3D environmental model displays the corresponding environmental information at the location of each of the smart home devices, thereby achieving the purpose of real-time monitoring of the indoor space by the smart air conditioner and user interaction.

[0179] The above description is merely a preferred embodiment of the present application and is not intended to limit the present application. Persons skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present application shall be included within the scope of protection of the present application.

Claims

1. A control method for an intelligent air conditioner, characterized in that: include: Obtaining location information of smart home devices within a predetermined space where the smart air conditioner is located; Receiving current environmental information of a location sent by a smart home device within a predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity; Determining a corresponding preset environmental parameter range based on the location information, and determining whether the current environmental information is within the corresponding preset environmental parameter range; if the current environmental information is not within the corresponding preset environmental parameter range, adjusting operating parameters of the smart air conditioner so that environmental information at the location of at least one of the smart home devices after the operating parameters of the smart air conditioner are adjusted is within the preset environmental parameter range, wherein the preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range; When the current environmental information is not within the corresponding preset environmental parameter range, adjusting the operating parameters of the smart air conditioner includes: In a case where multiple pieces of current environmental information within a predetermined subspace are not within the corresponding preset environmental parameter range, determining target environmental information according to a current operating mode of the intelligent air conditioner and the multiple pieces of current environmental information, the operating mode being one of a cooling mode, a heating mode, and a dehumidification mode, the predetermined subspace being a space within the predetermined space and having an area smaller than a predetermined area, the target environmental information being within the current environmental parameter range, the maximum value of the current environmental parameter range being the maximum value of the multiple pieces of current environmental information, and the minimum value of the current environmental parameter range being the minimum value of the multiple pieces of current environmental information; According to the target environment information, the operating parameters of the smart air conditioner are adjusted so that the target environment information after the operating parameters of the smart air conditioner are adjusted is within the preset environment parameter range.

2. The control method according to claim 1, characterized in that: The smart air conditioner includes a radar module, and obtaining location information of smart home devices within a predetermined space where the smart air conditioner is located through the radar module includes: The radar module is used to obtain the three-dimensional coordinates of the smart home device within the predetermined space where the smart air conditioner is located, and obtain the location information of the smart home device.

3. The control method according to claim 1, wherein: When the multiple current environmental information in the predetermined subspace is not within the corresponding preset environmental parameter range, determining the target environmental information according to the current operating mode of the smart air conditioner and the multiple current environmental information includes: When the current operating mode is a cooling mode, determining that the target environment information is a maximum value of the current temperature; When the current operating mode is a heating mode, determining the target environment information to be a minimum value of the current temperature; When the current operating mode is the dehumidification mode, the target environment information is determined to be the maximum value of the current humidity.

4. The control method according to claim 1, wherein: When the multiple current environmental information in the predetermined subspace is not within the corresponding preset environmental parameter range, determining the target environmental information according to the current operating mode of the smart air conditioner and the multiple current environmental information includes: Calculating the difference between the maximum value and the minimum value of the plurality of current environmental information within a predetermined subspace; When the difference is greater than a preset threshold and the number of the current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is greater than two, determining that the target environmental information is a median of the multiple current environmental information; When the difference is less than the preset threshold or the difference is greater than the preset threshold and the number of current environmental information in the predetermined subspace that is not within the corresponding preset environmental parameter range is equal to two, the target environmental information is determined to be the average value of multiple current environmental information.

5. The control method according to claim 1, characterized in that: The predetermined space includes a plurality of air-conditioning outlets. When the current environmental information is not within the corresponding preset environmental parameter range, adjusting the operating parameters of the smart air conditioner includes: When the current environmental information is not within the corresponding preset environmental parameter range, determining the air outlet with the shortest distance from each smart home device as the target air outlet; The operating parameters corresponding to the air outlet parameters of the target air outlet are adjusted.

6. The control method according to claim 5, characterized in that: Determining the air outlet with the shortest distance from each of the smart home devices as the target air outlet includes one of the following: Obtaining the three-dimensional coordinates of each air outlet through the radar module of the smart air conditioner, calculating the distance between each smart home device and each air outlet based on the location information of each smart home device and the three-dimensional coordinates of each air outlet, and determining the air outlet with the shortest distance to each smart home device as the target air outlet; When the air outlet is located on the shell of the smart air conditioner, command information sent by each smart home device is received, and according to the command information, the air outlet with the shortest distance from each smart home device is determined as the target air outlet, wherein the command information includes a device code, a command transmission speed and a command sending time.

7. The control method according to claim 1, characterized in that: Receiving current environment information of a location sent by a smart home device within a predetermined space where the smart air conditioner is located, including: Receiving a current temperature sent by the smart home device, where the current temperature is obtained by the smart home device through a built-in temperature sensor; Receive the current humidity sent by the smart home device, where the current humidity is obtained by the smart home device through a built-in humidity sensor.

8. The control method according to claim 1, characterized in that: Also includes: Constructing a 3D environment model within the predetermined space according to the environment information and the corresponding location information of the smart home device; The 3D environment model is sent to a user terminal device for display, and in the displayed 3D environment model, the location point where each smart home device is located is displayed with the corresponding environment information.

9. A control device for an intelligent air conditioner, characterized in that: include: an acquiring unit, configured to acquire location information of smart home devices within a predetermined space where the smart air conditioner is located; a receiving unit, configured to receive current environmental information of a location sent by a smart home device within a predetermined space where the smart air conditioner is located, wherein the environmental information includes at least one of temperature and humidity; an adjustment unit, configured to determine a corresponding preset environmental parameter range based on the location information, and determine whether the current environmental information is within the corresponding preset environmental parameter range; if the current environmental information is not within the corresponding preset environmental parameter range, adjust an operating parameter of the smart air conditioner so that the environmental information at the location of at least one smart home device after the operating parameter of the smart air conditioner is adjusted is within the preset environmental parameter range, wherein the preset environmental parameter range includes at least one of a preset humidity range and a preset temperature range; The adjustment unit includes: A first determination module is configured to determine target environmental information based on a current operating mode of the intelligent air conditioner and the multiple current environmental information when none of the multiple current environmental information within a predetermined subspace is within the corresponding preset environmental parameter range, wherein the operating mode is one of a cooling mode, a heating mode, and a dehumidification mode, the predetermined subspace is a space within the predetermined space and smaller than a predetermined area, the target environmental information is within a current environmental parameter range, a maximum value of the current environmental parameter range is a maximum value among the multiple current environmental information, and a minimum value of the current environmental parameter range is a minimum value among the multiple current environmental information; The first adjustment module is configured to adjust the operating parameters of the smart air conditioner according to the target environment information, so that the target environment information after the operating parameters of the smart air conditioner are adjusted is within the preset environment parameter range.

10. A computer-readable storage medium, characterized in that The computer-readable storage medium includes a stored program, wherein when the program is executed, the device where the computer-readable storage medium is located is controlled to execute the control method of the intelligent air conditioner according to any one of claims 1 to 8.

11. A processor, characterized in that: The processor is used to run a program, wherein the program executes the control method of the intelligent air conditioner according to any one of claims 1 to 8 when running.

12. A smart home system, characterized in that: include: A smart air conditioner and a smart home device communicatively connected to the smart air conditioner, wherein the smart air conditioner includes one or more processors, a memory, and one or more programs, wherein the one or more programs are stored in the memory and are configured to be executed by the one or more processors, and the one or more programs include a method for executing the control method of the smart air conditioner according to any one of claims 1 to 8.

Citation Information

Patent Citations

  • Smart household equipment control method and apparatus

    CN105446278A

  • Indoor environment adjusting method and device based on smart home operating system

    CN110262265A