Air purifier regulation and control method and device, computer equipment and storage medium

By obtaining external interference information of the air purifier and performing dynamic regulation, the problem of uneven purification effects of traditional air purifiers is solved, and a more efficient air purification effect is achieved.

CN120062777AActive Publication Date: 2025-05-30GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202510551204.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-05-30
Estimated Expiration
2045-04-29

AI Technical Summary

Technical Problem

The fixed placement method of traditional air purifiers leads to uneven purification effects and cannot effectively deal with external interference in different environments.

Method used

By obtaining external interference information of multiple air purifiers in the environment, determining the regulation conditions and regulation methods of each information type, selecting an air purifier that meets the regulation conditions, and regulating according to different regulation methods to improve the purification effect.

Benefits of technology

By dynamically controlling the air purifier, it can more effectively deal with external interference in different environments, improve the purification effect of the air purifier, and ensure the uniformity and improvement of indoor air quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an air purifier regulation and control method and device, computer equipment and a storage medium. The method comprises the steps that external interference information corresponding to a plurality of air purifiers in the environment is obtained; the external interference information comprises interference sub-information corresponding to various information types; determining respective regulation and control conditions and regulation and control modes of each information type; for each information type, based on the interference sub-information corresponding to each air purifier under the information type, a selected purifier meeting the regulation and control conditions of the information type is determined from all the air purifiers; and respectively regulating and controlling the selected purifiers to be regulated and controlled under each information type according to the respective regulation and control mode of each information type. By adopting the method, the air purification effect can be improved.
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Description

Technical Field

[0001] The present application relates to the technical field of household appliances, and particularly to a method and device for controlling an air purifier, a computer device, and a storage medium. Background Art

[0002] With the development of the technical field of household appliances, the importance of air purifiers in household appliances has become increasingly prominent. Through the built-in filtration system, an air purifier can effectively remove pollutants such as fine particulate matter (such as PM2.5), dust, pollen, mold, and bacteria in the air, making the indoor air cleaner, smelling fresher, and allowing people to live in a healthier living environment.

[0003] In traditional technologies, the placement position of an air purifier in the environment is generally fixed. However, the placement position of the air purifier actually has a significant impact on the purification efficiency. When using a fixed placement method for air purification, there may be a problem of uneven purification effect. Summary of the Invention

[0004] Based on this, in view of the technical problem of uneven purification effect existing in the traditional technology using a fixed placement method for air purification, it is necessary to provide a method and device for controlling an air purifier, a computer device, and a storage medium.

[0005] In a first aspect, the present application provides a method for controlling an air purifier. The method includes:

[0006] Obtaining external interference information respectively corresponding to a plurality of air purifiers in the environment; the external interference information includes interference sub-information corresponding to various information types;

[0007] Determining the regulation conditions and regulation methods for each of the information types;

[0008] For each of the information types, based on the interference sub-information respectively corresponding to the air purifiers under the information type, determining selected purifiers that meet the regulation conditions of the information type from the air purifiers;

[0009] Regulating the selected purifiers to be regulated under each of the information types according to the regulation methods of each of the information types.

[0010] In one embodiment, the determining selected purifiers that meet the regulation conditions of the information type from the air purifiers based on the interference sub-information respectively corresponding to the air purifiers under the information type includes:

[0011] Obtaining the external interference threshold under the information type;

[0012] For each of the air purifiers, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0013] When the information difference meets the regulation conditions of the information type, determine the air purifier as a selected purifier.

[0014] In one embodiment, the regulation method includes a regulation route; the method further includes:

[0015] For each of the air purifiers, when the air purifier is determined as a selected purifier of multiple information types, determine the regulation routes respectively corresponding to the multiple information types;

[0016] The step of regulating the selected purifiers to be regulated under each information type according to the regulation methods of the respective information types includes:

[0017] When there are intersection points among the regulation routes corresponding to the air purifier, determine an updated regulation route for the air purifier based on the intersection points;

[0018] Regulate the air purifier according to the updated regulation route.

[0019] In one embodiment, the step of regulating the selected purifiers to be regulated under each information type according to the regulation methods of the respective information types includes:

[0020] For each of the air purifiers, when the air purifier is determined as a selected purifier of multiple information types, determine the priorities respectively corresponding to the multiple information types;

[0021] Select a target type with the highest priority from the multiple information types;

[0022] Regulate the air purifier based on the regulation method corresponding to the target type.

[0023] In one embodiment, the step of determining, from each of the air purifiers, a selected purifier that meets the regulation conditions of the information type based on the interference sub-information respectively corresponding to each of the air purifiers under the information type includes:

[0024] Based on the interference sub-information respectively corresponding to each of the air purifiers under the information type, determine candidate purifiers that meet the regulation conditions of the information type from each of the air purifiers;

[0025] When there are multiple candidate purifiers corresponding to the information type, based on the degree of interference characterized by the interference sub-information of each candidate purifier, the selected purifier corresponding to the information type is screened from each candidate purifier.

[0026] In one embodiment, the determining the selected purifier that meets the regulation conditions of the information type from each air purifier based on the interference sub-information corresponding to each air purifier under the information type includes:

[0027] Obtain the priority of each information type;

[0028] Determine the selected type with the highest priority from each information type;

[0029] Based on the interference sub-information corresponding to each air purifier under the selected type, determine the selected purifier that meets the regulation conditions of the selected type from each air purifier;

[0030] Determine the selected type with the highest priority from the remaining information types, and return to the step of determining the selected purifier that meets the regulation conditions of the selected type from each air purifier based on the interference sub-information corresponding to each air purifier under the selected type until each information type corresponds to a different selected purifier.

[0031] In one embodiment, the obtaining the external interference information corresponding to multiple purifiers in the environment includes:

[0032] Obtain the operation information of all devices in the environment; all the devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types;

[0033] For each air purifier and for each information type, based on the multiple operation sub-information of the devices other than the air purifier in the information type among all the devices, determine the interference sub-information of the air purifier in the information type.

[0034] In a second aspect, the present application also provides an air purifier regulation device. The device includes:

[0035] An external interference information acquisition module, configured to acquire the external interference information corresponding to multiple purifiers in the environment; the external interference information includes interference sub-information corresponding to multiple information types;

[0036] A regulation method determination module, configured to determine the regulation conditions and regulation methods of each information type;

[0037] A selected purifier determination module, for each of the information types, based on the interference sub-information corresponding to each of the air purifiers under the information type, to determine a selected purifier that meets the control conditions of the information type from among the air purifiers;

[0038] The control module is used to control the selected purifiers to be controlled under each of the information types according to the respective control methods of each of the information types.

[0039] In a third aspect, the present application further provides a computer device, wherein the computer device comprises a memory and a processor, wherein the memory stores a computer program, and when the processor executes the computer program, the steps of the above method are implemented.

[0040] In a fourth aspect, the present application further provides a computer-readable storage medium having a computer program stored thereon, and when the computer program is executed by a processor, the steps of the above method are implemented.

[0041] In a fifth aspect, the present application further provides a computer program product, which includes a computer program, and when the computer program is executed by a processor, the steps of the above method are implemented.

[0042] The above-mentioned air purifier control method, device, computer equipment and storage medium obtain external interference information corresponding to multiple air purifiers in the environment. Since the external interference information includes interference sub-information corresponding to multiple information types, it is possible to determine the external interference situation to which each air purifier is subjected, and determine the control conditions and control methods for each information type. Since each information type corresponds to different control conditions and control methods, for each information type, based on the interference sub-information corresponding to each air purifier under the information type, a selected purifier that meets the control conditions of the information type can be determined from each air purifier. Finally, according to the control methods of each information type, the selected purifiers to be controlled under each information type are controlled respectively. Targeted control can be performed on the air purifiers in the environment according to the external interference situation, thereby improving the purification effect of the air purifier. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] Figure 1 An application environment diagram of an air purifier control method in an embodiment;

[0044] Figure 2 A schematic diagram of a flow chart of an air purifier control method in one embodiment;

[0045] Figure 3 A schematic diagram of a process for selecting a purifier and determining steps in one embodiment;

[0046] Figure 4 It is a schematic flow chart of the air purifier control steps in one embodiment;

[0047] Figure 5 It is a schematic flow chart of the air purifier control steps in another embodiment;

[0048] Figure 6 It is a schematic flow chart of the selected purifier determination steps in another embodiment;

[0049] Figure 7 It is a schematic flow chart of the selected purifier determination steps in yet another embodiment;

[0050] Figure 8 It is a schematic flow chart of the interference sub - information determination steps in one embodiment;

[0051] Figure 9 It is a schematic flow chart of the air purifier control method in another embodiment;

[0052] Figure 10 It is a structural block diagram of the air purifier control device in one embodiment;

[0053] Figure 11 It is an internal structure diagram of a computer device in one embodiment. Detailed implementation manners

[0054] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0055] The air purifier control method provided by the embodiments of the present application can be applied to, for example Figure 1In the application environment shown. Among them, the computer device 102 communicates with the air purifier 104 through a network. The computer device 102 can be a terminal or a server. Among them, the terminal can be, but is not limited to, various personal computers, laptop computers, smart phones, tablet computers, Internet of Things devices, and portable wearable devices. The Internet of Things devices can be smart speakers, smart TVs, smart air conditioners, smart in-vehicle devices, etc. The portable wearable devices can be smart watches, smart bracelets, head-mounted devices, etc. The server can be implemented by an independent server or a server cluster composed of multiple servers. The air purifier 104 is an indoor air purification device that removes pollutants in the air through a built-in filtration system, adsorption technology, or ionization device, thereby improving the indoor air quality. Specifically, in the process of regulating the air purifier, the computer device obtains the external interference information corresponding to each of the multiple air purifiers 104 in the environment; the external interference information includes interference sub-information corresponding to various information types; determines the regulation conditions and regulation methods for each information type; for each information type, based on the interference sub-information corresponding to each of the air purifiers 104 under the information type, determines the selected purifiers that meet the regulation conditions of the information type from the air purifiers 104; and regulates the selected purifiers to be regulated under each information type according to the regulation methods of each information type respectively.

[0056] In one embodiment, as Figure 2 shown, a method for regulating an air purifier is provided. Taking the computer device 102 in Figure 1 as an example, the method includes the following steps:

[0057] Step S202, obtain the external interference information corresponding to each of the multiple air purifiers in the environment.

[0058] Among them, the external interference information refers to the information formed by various external factors that affect the normal operation or performance of the air purifier. These interference factors may come from multiple aspects and have different degrees of influence on the operating state, purification effect, etc. of the air purifier. It can be understood that for each air purifier, the external interference information of the air purifier comes from the external interference of other air purifiers and other operating devices in the environment. The external interference information includes interference sub-information corresponding to various information types. The interference sub-information is the detailed information specific to a certain information type in the external interference information. The information types can include electromagnetic interference information, noise information, air outlet position information, etc.

[0059] Among them, the unit of electromagnetic interference information is usually microtesla (μT). According to the regulations, the electromagnetic field strength to which the public is exposed should be lower than 100 μT. Therefore, in this embodiment, the detection threshold of electromagnetic interference information is set to 50 μT. Optionally, the electromagnetic field strength generated by other devices in the environment (such as air conditioners, projectors, computers, etc.) can be monitored in real time through an electromagnetic interference sensor.

[0060] Specifically, by comprehensively and accurately obtaining these external interference information and their corresponding interference sub-information, the working state and performance of the air purifier under different environmental conditions can be deeply understood. Therefore, before the regulation process of the air purifier is carried out, it is necessary to first obtain the external interference information corresponding to multiple air purifiers in the environment. Optionally, the step of obtaining the external interference information corresponding to multiple air purifiers in the environment can be an active acquisition or a passive reception.

[0061] Step S204, determine the regulation conditions and regulation methods for each information type.

[0062] Among them, the regulation condition refers to a series of prerequisite conditions or environmental factors that need to be met in order to effectively regulate the information type. For example, the regulation condition can be characterized in the form of a preset threshold, and can also be characterized by whether the position condition and numerical condition are met. The regulation method is the specific management and control means and methods adopted for different information types on the basis of meeting the corresponding regulation conditions. For example, the regulation method can be characterized by a regulation route, a regulation speed, etc.

[0063] Specifically, after obtaining the external interference information corresponding to multiple air purifiers in the environment, in order to facilitate the subsequent selection operation of the purifier for each information type, it is necessary to first determine the regulation conditions and regulation methods corresponding to each information type.

[0064] Step S206, for each information type, based on the interference sub-information corresponding to each air purifier under the information type, determine the selected purifiers that meet the regulation conditions of the information type from each air purifier.

[0065] Among them, the selected purifier refers to the air purifier that meets the requirements after comprehensively considering the interference sub-information and screening according to the regulation conditions for each air purifier under a specific information type.

[0066] Specifically, in order to improve the purification effect of the air purifier, when the air purifier is subject to relatively severe external interference, it can be considered to move the air purifier to an area with less external interference. Since the regulation conditions and regulation methods corresponding to each information type are different, and the external interferences received by each air purifier are also different, for each information type, based on the interference sub-information corresponding to each air purifier under the information type, the selected purifiers that meet the regulation conditions of the information type can be determined from each air purifier.

[0067] In some specific embodiments, the computer device can determine candidate purifiers that meet the regulation conditions of the information type from each air purifier based on the interference sub-information corresponding to each air purifier under the information type. When there are multiple candidate purifiers corresponding to the information type, based on the degree of interference characterized by the interference sub-information of each candidate purifier, the selected purifiers corresponding to the information type are screened from each candidate purifier.

[0068] In other specific embodiments, the computer device can also obtain the external interference threshold under the information type. For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference. When the information difference meets the regulation conditions of the information type, the air purifier is determined as the selected purifier.

[0069] Step S208, regulate the selected purifiers to be regulated under each information type according to the regulation methods of each information type.

[0070] Specifically, after determining the selected purifiers corresponding to each information type, the selected purifiers to be regulated under each information type can be regulated according to the regulation methods of each information type. In some specific embodiments, for each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the priorities corresponding to the multiple information types, select the target type with the highest priority from the multiple information types, and regulate the air purifier based on the regulation method corresponding to the target type. In other specific embodiments, for each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the regulation routes corresponding to the multiple information types. When there are intersection points between the regulation routes corresponding to the air purifier, determine the updated regulation route of the air purifier based on the intersection points, and regulate the air purifier according to the updated regulation route.

[0071] The above air purifier control method, device, computer device, and storage medium obtain the external interference information corresponding to multiple air purifiers in the environment. Since the external interference information includes interference sub-information corresponding to multiple information types, the external interference situation received by each air purifier can be determined. The control conditions and control methods for each information type are determined. Since each information type corresponds to different control conditions and control methods, for each information type, based on the interference sub-information corresponding to each air purifier under the information type, the selected purifiers that meet the control conditions of the information type are determined from each air purifier. Finally, according to the control methods of each information type, the selected purifiers to be controlled under each information type are controlled respectively, and the air purifiers in the environment can be controlled specifically according to the external interference situation, thereby improving the purification effect of the air purifier.

[0072] In one embodiment, as Figure 3 shown, based on the interference sub-information corresponding to each air purifier under the information type, determining the selected purifiers that meet the control conditions of the information type from each air purifier includes:

[0073] Step S302, obtaining the external interference threshold under the information type.

[0074] Among them, the external interference threshold is a boundary value preset for a specific information type, which is used to measure the degree of influence of external interference factors on the operation of the air purifier under this information type. When the interference sub-information corresponding to this information type exceeds this external interference threshold, it is considered that the external interference corresponding to this information type may have a greater impact on the normal operation or purification effect of the air purifier.

[0075] Specifically, in the actual air purifier control process, in order to accurately evaluate the influence of external interference on the operation of the air purifier, it is necessary to obtain the external interference thresholds corresponding to different information types in advance.

[0076] Step S304, for each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference.

[0077] Among them, the information difference is the difference obtained by comparing the interference sub-information of an air purifier under a certain information type with the external interference threshold corresponding to this information type.

[0078] Specifically, after determining the external interference threshold, the interference sub-information of each air purifier under this information type can be compared with the external interference threshold to obtain an information difference. For example, for the information type of noise information, the preset external interference threshold is 50 dB, and the interference sub-information is 60 dB, then the information difference is 10 dB. Another example is that for the information type of air outlet position information, the preset external interference threshold is at the air outlet position, and the interference sub-information is not at the air outlet position, then the information difference is the position difference between the air outlet position and the actual position where the air purifier is currently not at the air outlet position.

[0079] Step S306, when the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier.

[0080] Specifically, as long as there is a situation where the information difference meets the regulation conditions of the information type, the air purifier can be determined as the selected purifier. For example, if the information differences of air purifier 1 and air purifier 2 under the information type of noise information are both positive numbers, that is, the interference sub-information is greater than the external interference threshold, then air purifier 1 and air purifier 2 are determined as the selected purifiers.

[0081] In this embodiment, based on the matching of the information difference between the interference sub-information and the external interference threshold and the regulation conditions, the selected purifier is determined, which can ensure that the air purifiers with problems all have corresponding solutions and improve the air purification effect.

[0082] In one embodiment, as Figure 4 shown, the regulation method includes a regulation route; the method further includes:

[0083] Step S402, for each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the regulation routes respectively corresponding to the multiple information types.

[0084] Among them, the regulation route is a series of operation steps formulated for the air purifier under different information types to achieve a specific goal (such as reaching the set air quality standard). For example, the regulation route can be the moving route, moving speed, etc. for moving the air purifier from an area with greater noise interference to an area with less noise interference.

[0085] Specifically, for each air purifier, if the air purifier is determined as the selected purifier for multiple information types, it is necessary to first determine the regulation routes respectively corresponding to the multiple information types. For example, for air purifier 1, air purifier 1 is determined as the selected purifier for noise interference information and electromagnetic interference information respectively. For the convenience of subsequent regulation processes, it is necessary to first determine the regulation routes corresponding to noise interference information and electromagnetic interference information respectively.

[0086] Step S208 includes:

[0087] Step S404, when there are intersection points among the respective regulation routes corresponding to the air purifier, determine the updated regulation route of the air purifier based on the intersection points.

[0088] Step S406, regulate the air purifier according to the updated regulation route.

[0089] Among them, the intersection point refers to the point where there is an intersection between the regulation routes, or the intersection point between the regulation routes.

[0090] Specifically, if there are intersection points among the respective regulation routes corresponding to the air purifier, then in order to improve the regulation effect while taking into account various information types, the intersection point can be used as the end point of the updated regulation route, and the current position of the air purifier can be used as the starting point of the updated regulation route to determine the corresponding updated regulation route, and regulate the air purifier according to this updated regulation route. Further, the regulation speed and the specific running route of the updated regulation route can be determined based on the actual situation. For example, if there is a region or device with a high noise interference on the left side of the line segment between the starting point and the end point, then the updated regulation route can be designed as a curve, and the overall running route is farther away from the region or device with a high noise interference.

[0091] Optionally, if there are intersection points among the respective regulation routes corresponding to the air purifier, then in order to improve the regulation effect while taking into account various information types, the center point between the respective end points corresponding to the respective regulation routes can also be used as the end point of the updated regulation route, and the current position of the air purifier can be used as the starting point of the updated regulation route to determine the corresponding updated regulation route, and regulate the air purifier according to this updated regulation route.

[0092] In this embodiment, when the air purifier is determined to be the selected purifier of multiple information types, the new updated regulation route is finally determined based on the respective regulation routes of the respective information types, which can more comprehensively improve the air purification effect.

[0093] In one embodiment, as Figure 5 shown, step S208 further includes:

[0094] Step S502, for each air purifier, when the air purifier is determined to be the selected purifier of multiple information types, determine the priorities corresponding to the multiple information types respectively.

[0095] Step S504, select the target type with the highest priority from the multiple information types.

[0096] Step S506, regulate the air purifier based on the regulation method corresponding to the target type.

[0097] Among them, the priority is used to represent the level of importance or processing order of multiple information types. The higher the priority, the higher the importance or the earlier the processing order of the information type when being processed or considered.

[0098] Specifically, if an air purifier is determined to be the selected purifier for multiple information types, but an air purifier can only have one regulation route, without changing the regulation method of the information type, the target type corresponding to each air purifier can be determined in the order from high to low according to the priority of the information type. That is, for each air purifier, when the air purifier is determined to be the selected purifier for multiple information types, the priorities corresponding to multiple information types are determined respectively. From multiple information types, the target type with the highest priority is selected, and the air purifier is regulated based on the regulation method corresponding to the target type. For example, if air purifier 1 is determined to be the selected purifier for noise interference information and electromagnetic interference information, and the priority of electromagnetic interference information is higher, then the electromagnetic interference information is taken as the target type of the air purifier 1, and the air purifier 1 is regulated based on the regulation method of the electromagnetic interference information. It can be understood that in this embodiment, there is a situation where the same information type corresponds to multiple air purifiers.

[0099] In this embodiment, when the air purifier is determined to be the selected purifier for multiple information types, selecting the corresponding target type based on the priority of the information type can enable the air purifier to make intelligent adjustments according to the current most critical information type, thereby more effectively improving the indoor air quality.

[0100] In one embodiment, as Figure 6 shown, based on the interference sub-information corresponding to each air purifier under the information type, determining the selected purifiers that meet the regulation conditions of the information type from each air purifier includes:

[0101] Step S602, based on the interference sub-information corresponding to each air purifier under the information type, determining the candidate purifiers that meet the regulation conditions of the information type from each air purifier.

[0102] Step S604, when the information type corresponds to multiple candidate purifiers, screening the selected purifiers corresponding to the information type from each candidate purifier based on the degree of interference characterized by the interference sub-information of each candidate purifier.

[0103] Among them, the candidate purifier is the air purifier that meets the regulation conditions of the information type after a preliminary screening of all air purifiers based on the interference sub-information corresponding to each air purifier under the information type. The degree of interference is the severity of the interference suffered by the air purifier reflected by the interference sub-information.

[0104] Specifically, the computer device can first determine, based on the interference sub-information corresponding to each air purifier under the information type, the candidate purifiers that meet the regulation conditions of the information type from each air purifier. That is, when the regulation conditions are characterized as threshold conditions, as long as the interference sub-information of each air purifier under the information type is greater than the threshold conditions, the air purifier can be determined as a candidate purifier for the information type. After that, if there are multiple candidate purifiers corresponding to the information type, the selected purifier corresponding to the information type can be screened from each candidate purifier based on the degree of interference characterized by the interference sub-information of each candidate purifier. It can be understood that the selected purifier has the greatest degree of interference under the information type. For example, if both air purifier 1 and air purifier 2 meet the regulation conditions of noise interference information, then both air purifier 1 and air purifier 2 will be used as candidate purifiers for noise interference information, and the interference sub-information of air purifier 1 characterizes that the air purifier has a stronger degree of interference. Therefore, air purifier 1 can be used as the selected purifier corresponding to noise interference information.

[0105] Optionally, if there is one candidate purifier corresponding to the information type, the candidate purifier is determined as the selected purifier for the information type.

[0106] In this embodiment, by first determining the candidate purifiers of the information type and, in the case of multiple candidate purifiers, selecting the one with a stronger degree of interference as the selected purifier based on the degree of interference of each candidate purifier, it can be ensured that the selected air purifier can respond more effectively to the regulation instructions during actual operation, improving the overall performance and stability of the air purification system.

[0107] In one embodiment, as Figure 7 shown, determining the selected purifier that meets the regulation conditions of the information type from each air purifier based on the interference sub-information corresponding to each air purifier under the information type includes:

[0108] Step S702, obtaining the priority of each information type, and determining the selected type with the highest priority from each information type.

[0109] Step S704, based on the interference sub-information corresponding to each air purifier under the selected type, determining the selected purifier that meets the regulation conditions of the selected type from each air purifier.

[0110] Step S706, determining the selected type with the highest priority from the remaining information types, and returning to the step of determining the selected purifier that meets the regulation conditions of the selected type based on the interference sub-information corresponding to each air purifier under the selected type until each information type corresponds to a different selected purifier.

[0111] Specifically, after obtaining the priorities of each information type, the information type with the highest priority is found from all information types and determined as the selected type that needs to be processed preferentially currently. The purpose of this step is to ensure that the air purification system can first process the most important and urgent information type, improving the effectiveness and timeliness of regulation. After determining the selected type with the highest priority, it is necessary to screen out the selected purifiers suitable for participating in the regulation from all air purifiers according to the characteristics and regulation requirements of the selected type. The basis for screening is the interference sub-information corresponding to each air purifier under the selected type and the regulation conditions that meet the selected type. Through this step, it can be ensured that the selected air purifiers can effectively regulate the information type with the highest current priority, improving the processing ability of the air purification system for this information type.

[0112] After determining the selected type with the highest priority and its corresponding selected purifiers, there may still be other unprocessed information types in the air purification system. To ensure that all information types can be reasonably processed, it is necessary to determine the information type with the highest priority again from the remaining information types and use it as the new selected type. Then, repeat the process of step S704, that is, based on the interference sub-information corresponding to each air purifier under the new selected type, determine the selected purifiers that meet the regulation conditions of the new selected type from each air purifier. This process loops continuously until each information type corresponds to different selected purifiers respectively.

[0113] In this embodiment, through this iterative loop method, each information type can be processed in turn according to the priority order of the information types, ensuring that each information type can receive appropriate attention and regulation, and improving the comprehensive performance and regulation effect of the entire air purification system.

[0114] In one embodiment, as Figure 8 shown, obtain the external interference information corresponding to multiple purifiers in the environment, including:

[0115] Step S802, obtain the operation information of all devices in the environment; all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types respectively.

[0116] Step S804, for each air purifier and for each information type, based on the multiple operation sub-information of the remaining devices except the air purifier among all devices under the information type, determine the interference sub-information of the air purifier under the information type.

[0117] Specifically, in addition to the air purifier, the environment may also include other operating devices, which will also generate electromagnetic interference and noise interference. Therefore, it is necessary to first obtain the operating information of all devices in the environment. For each air purifier and each information type, it is necessary to determine the interference sub-information of the air purifier in the information type based on the multiple operating sub-information of the remaining devices other than the air purifier among all devices in the information type.

[0118] In this embodiment, through this step of determining the interference sub-information, the degree of interference of each air purifier by other devices under different information types can be accurately evaluated, providing a basis for subsequent optimization and regulation to ensure the efficient and stable operation of the air purification system.

[0119] In a specific embodiment, a method for regulating an air purifier used in a meeting room is also provided. In this method, the process of setting the regulation condition for electromagnetic interference information is as follows: Since the unit of electromagnetic interference information is usually microtesla (μT), according to regulations, the electromagnetic field intensity to which the public is exposed should be lower than 100 μT. Therefore, in this embodiment, the regulation condition for electromagnetic interference information is set to 50 μT. Optionally, an electromagnetic interference sensor can be used to continuously monitor the electromagnetic field intensity generated by other devices (such as air conditioners, projectors, computers, etc.) in the environment. When the detected electromagnetic field intensity exceeds 50 μT, the position and intensity of the interference source can be analyzed. The regulation method for electromagnetic interference information includes: navigating to an area with less electromagnetic interference, usually moving a distance of 1 meter to 5 meters, to avoid mutual interference with other devices.

[0120] Among them, the electromagnetic interference sensor can locate the azimuth of the interference source with an accuracy of ±10 degrees and a distance range of 0.5 meter to 10 meters. The computer device calculates the optimal movement path based on the position of the interference source and the layout of the meeting room to ensure that the purifier moves to the area with less electromagnetic interference within 30 seconds.

[0121] The process of setting the control conditions of noise interference information is as follows: The usual noise level in the conference room is about 40dB to 60dB. In order to ensure the normal progress of the meeting, it is recommended to control the noise level below 50dB. The air purifier will generate a certain amount of noise when it is running, especially in high wind speed mode. If it is operated at the same time as other noisy electrical appliances (such as air conditioners, projector cooling fans, computers, etc.), the noise superposition may significantly reduce the sound quality of the conference room, affecting the progress of the meeting and the comfort of the participants. Therefore, the computer equipment can capture the noise level in the conference room in real time through the sound sensor and analyze the noise superposition. When the detected noise level exceeds 45dB, the location and intensity of the noise source can be analyzed, and the air purifier can choose to reduce the running wind speed (such as from gear 3 to gear 2), or move to an area with less noise interference, usually moving a distance of 1 meter to 5 meters, to reduce the impact on the sound quality of the conference room.

[0122] The sound sensor can locate the direction of the noise source with an accuracy of ±15 degrees and a distance range of 0.5 to 10 meters. The computer equipment calculates the optimal movement path based on the location of the noise source and the layout of the conference room, ensuring that the air purifier moves to an area with less noise interference within 30 seconds.

[0123] The process of setting the control conditions for the air outlet position is as follows: the wind direction sensor detects the airflow direction of the conference room in real time, with a wind speed range of 0.1 m / s to 1 m / s. The computer equipment determines the position of the upwind outlet based on the airflow data, with an accuracy of ±10 degrees and a distance range of 0.5 m to 10 m. The computer equipment can navigate the position of the air purifier to the vicinity of the upwind outlet, usually moving a distance of 1 m to 5 m, to more efficiently filter the air entering the conference room. The maximum moving distance of the purifier in the conference room is 10 meters to ensure coverage of the entire space. Determine the best placement of the air purifier. The location should be as far away from electromagnetic interference sources and noise sources as possible, and close to the upwind outlet to improve purification efficiency. The moving speed of the purifier is 0.2 m / s to 0.5 m / s, and it is best to ensure that the task of positioning to the upwind outlet is completed within 2 minutes.

[0124] Optionally, the computer device can assign tasks to each purifier based on the overall environmental data to ensure that the working area of ​​each purifier covers the conference room to the maximum extent. For example, one purifier is responsible for electromagnetic interference detection near the air-conditioning area, and the other is responsible for noise detection near the projector area. Among them, multiple purifiers adjust their respective operating modes and positions according to the collaborative strategy to avoid mutual interference. For example, one purifier reduces the wind speed to reduce noise, and the other moves to the upwind to improve purification efficiency.

[0125] In a specific embodiment, Figure 9 As shown, a method for controlling an air purifier is also provided, comprising:

[0126] Step S901: Obtain the operation information of all devices in the environment;

[0127] Step S902: For each air purifier and for each information type, based on the multiple operation sub-informations of the devices other than the air purifier among all devices under the information type, determine the interference sub-information of the air purifier under the information type;

[0128] Among them, all devices include multiple air purifiers; the operation information includes operation sub-informations corresponding to multiple information types respectively; the external interference information includes interference sub-informations corresponding to multiple information types respectively;

[0129] Step S903: Determine the regulation conditions and regulation methods for each information type respectively;

[0130] Step S904: For each information type, obtain the external interference threshold under the information type. For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0131] Step S905: When the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier;

[0132] Step S906: Based on the interference sub-informations corresponding to each air purifier under the information type, determine the candidate purifiers that meet the regulation conditions of the information type from all air purifiers;

[0133] Step S907: When there are multiple candidate purifiers corresponding to the information type, based on the degree of interference characterized by the interference sub-informations of each candidate purifier respectively, screen the selected purifier corresponding to the information type from each candidate purifier;

[0134] Step S908: For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the regulation routes corresponding to the multiple information types respectively;

[0135] Step S909: When there are intersection points among the regulation routes corresponding to the air purifier, based on the intersection points, determine the updated regulation route of the air purifier, and regulate the air purifier according to the updated regulation route;

[0136] Step S910: For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the priorities corresponding to the multiple information types respectively;

[0137] Step S911: Select the target type with the highest priority from multiple information types, and regulate the air purifier based on the regulation method corresponding to the target type;

[0138] Step S912: Obtain the priorities of each information type, and determine the selected type with the highest priority from each information type;

[0139] Step S913: Based on the interference sub-information corresponding to each air purifier under the selected type, determine the selected purifiers that meet the regulation conditions of the selected type from each air purifier;

[0140] Step S914: Determine the selected type with the highest priority from the remaining information types, and return to the step of determining the selected purifiers that meet the regulation conditions of the selected type from each air purifier based on the interference sub-information corresponding to each air purifier under the selected type, until each information type corresponds to a different selected purifier;

[0141] Step S915: Regulate the selected purifiers to be regulated under each information type according to the regulation method of each information type.

[0142] It should be understood that although the steps in the flowcharts involved in the above embodiments are shown in sequence according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise clearly stated in this article, the execution of these steps has no strict order limit, and these steps can be executed in other orders. Moreover, at least a part of the steps in the flowcharts involved in the above embodiments may include multiple steps or multiple stages. These steps or stages are not necessarily executed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be executed alternately or alternately with at least a part of other steps or steps or stages in other steps.

[0143] Based on the same inventive concept, an embodiment of the present application further provides an air purifier regulation device for implementing the air purifier regulation method described above. The implementation solutions provided by this device to solve problems are similar to the implementation solutions described in the above method. Therefore, the specific limitations in one or more embodiments of the air purifier regulation device provided below can refer to the limitations on the air purifier regulation method in the above text, and will not be repeated here.

[0144] In one embodiment, as Figure 10 shown, an air purifier regulation device 1000 is provided, including: an external interference information acquisition module 1002, a regulation method determination module 1004, a selected purifier determination module 1006, and a regulation module 1008, where:

[0145] An external interference information acquisition module 1002, configured to acquire external interference information corresponding to multiple air purifiers in the environment; the external interference information includes interference sub-information corresponding to multiple information types.

[0146] A regulation method determination module 1004, configured to determine the regulation conditions and regulation methods for each information type.

[0147] A selected purifier determination module 1006, configured to, for each information type, determine a selected purifier that meets the regulation conditions of the information type from multiple air purifiers based on the interference sub-information corresponding to each air purifier under the information type.

[0148] A regulation module 1008, configured to regulate the selected purifiers to be regulated under each information type according to the regulation methods of each information type.

[0149] In one embodiment, the selected purifier determination module 1006 is configured to:

[0150] Acquire an external interference threshold under the information type;

[0151] For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0152] When the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier.

[0153] In one embodiment, the regulation method includes a regulation route. In this embodiment, the air purifier regulation device 1000 further includes a regulation route determination module, which is specifically configured to:

[0154] For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the regulation routes corresponding to the multiple information types respectively;

[0155] The regulation module 1008 is configured to:

[0156] When there is an intersection point between the regulation routes corresponding to the air purifier, determine an updated regulation route for the air purifier based on the intersection point;

[0157] Regulate the air purifier according to the updated regulation route.

[0158] In one embodiment, the regulation module 1008 is further configured to:

[0159] For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the priorities corresponding to the multiple information types respectively;

[0160] Select the target type with the highest priority from multiple information types;

[0161] Based on the regulation method corresponding to the target type, regulate the air purifier.

[0162] In one embodiment, the selected purifier determination module 1006 is used for:

[0163] Based on the interference sub-information corresponding to each air purifier under the information type, determine the candidate purifiers that meet the regulation conditions of the information type from each air purifier;

[0164] In the case where there are multiple candidate purifiers corresponding to the information type, based on the degree of interference characterized by the interference sub-information of each candidate purifier, screen the selected purifier corresponding to the information type from each candidate purifier.

[0165] In one embodiment, the selected purifier determination module 1006 is further used for:

[0166] Obtain the priority of each information type;

[0167] Determine the selected type with the highest priority from each information type;

[0168] Based on the interference sub-information corresponding to each air purifier under the selected type, determine the selected purifier that meets the regulation conditions of the selected type from each air purifier;

[0169] Determine the selected type with the highest priority from the remaining information types, and return to the step of determining the selected purifier that meets the regulation conditions of the selected type based on the interference sub-information corresponding to each air purifier under the selected type until each information type corresponds to a different selected purifier.

[0170] In one embodiment, the external interference information acquisition module 1002 is specifically used for:

[0171] Obtain the operation information of all devices in the environment; all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types;

[0172] For each air purifier and for each information type, based on the multiple operation sub-information of the devices other than the air purifier in the information type among all devices, determine the interference sub-information of the air purifier in the information type.

[0173] Each module in the above air purifier control device can be implemented in whole or in part by software, hardware, or a combination thereof. Each of the above modules can be embedded in the processor of a computer device in hardware form or independent of it, or stored in the memory of the computer device in software form, so that the processor can call and execute the operations corresponding to each of the above modules.

[0174] In one embodiment, a computer device is provided. The computer device can be a terminal, and its internal structure diagram can be as Figure 11 shown. The computer device includes a processor, a memory, an input / output interface, a communication interface, a display unit, and an input device. Among them, the processor, the memory, and the input / output interface are connected through a system bus, and the communication interface, the display unit, and the input device are connected to the system bus through the input / output interface. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The input / output interface of the computer device is used to exchange information between the processor and external devices. The communication interface of the computer device is used to communicate with external terminals in a wired or wireless manner. The wireless manner can be achieved through WIFI, a mobile cellular network, NFC (Near Field Communication), or other technologies. The computer program, when executed by the processor, implements an air purifier control method. The display unit of the computer device is used to form a visually visible picture, which can be a display screen, a projection device, or a virtual reality imaging device. The display screen can be a liquid crystal display screen or an electronic ink display screen. The input device of the computer device can be a touch layer covering the display screen, or a button, a trackball, or a touchpad provided on the shell of the computer device, or an external keyboard, touchpad, or mouse, etc.

[0175] Those skilled in the art can understand that Figure 11 the structure shown in

[0176] is only a block diagram of some structures related to the solution of this application, and does not constitute a limitation on the computer device to which the solution of this application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine some components, or have a different component layout.

[0176] In one embodiment, a computer device is provided, including a memory and a processor. A computer program is stored in the memory. When the processor executes the computer program, the following steps are implemented:

[0177] Obtain the external interference information corresponding to multiple air purifiers in the environment respectively; the external interference information includes interference sub-information corresponding to multiple information types;

[0178] Determine the respective regulation conditions and regulation methods for each information type;

[0179] For each information type, based on the interference sub-information corresponding to each air purifier under the information type, determine the selected purifiers that meet the regulation conditions of the information type from each air purifier;

[0180] Regulate the selected purifiers to be regulated under each information type respectively according to the respective regulation methods of each information type.

[0181] In one embodiment, when the processor executes the computer program, the following steps are further implemented:

[0182] Obtain the external interference threshold under the information type;

[0183] For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0184] When the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier.

[0185] In one embodiment, the regulation method includes a regulation route. In the case of this embodiment, when the processor executes the computer program, the following steps are further implemented:

[0186] For each air purifier, when the air purifier is determined as the selected purifier of multiple information types, determine the regulation routes respectively corresponding to the multiple information types;

[0187] When there is an intersection point between the respective regulation routes corresponding to the air purifier, determine the updated regulation route of the air purifier based on the intersection point;

[0188] Regulate the air purifier according to the updated regulation route.

[0189] In one embodiment, when the processor executes the computer program, the following steps are further implemented: For each air purifier, when the air purifier is determined as the selected purifier of multiple information types, determine the respective priorities corresponding to the multiple information types;

[0190] Select the target type with the highest priority from the multiple information types;

[0191] Regulate the air purifier based on the regulation method corresponding to the target type.

[0192] In one embodiment, when the processor executes the computer program, the following steps are further implemented: Based on the interference sub-information corresponding to each air purifier under the information type, determine the candidate purifiers that meet the regulation conditions of the information type from each air purifier;

[0193] When there are multiple candidate purifiers corresponding to an information type, a selected purifier corresponding to the information type is screened from the candidate purifiers based on the degree of interference characterized by the respective interference sub-information of each candidate purifier.

[0194] In one embodiment, when the processor executes the computer program, the following steps are further implemented: obtaining the priority of each information type;

[0195] Determining a selected type with the highest priority from each information type;

[0196] Based on the interference sub-information corresponding to each air purifier under the selected type, determining a selected purifier that meets the regulation conditions of the selected type from each air purifier;

[0197] Determining a selected type with the highest priority from the remaining information types, and returning to the step of determining a selected purifier that meets the regulation conditions of the selected type from each air purifier based on the interference sub-information corresponding to each air purifier under the selected type until each information type corresponds to a different selected purifier.

[0198] In one embodiment, when the processor executes the computer program, the following steps are further implemented:

[0199] Obtaining the operation information of all devices in the environment; all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types;

[0200] For each air purifier and for each information type, based on multiple operation sub-information of the devices other than the air purifier in the information type among all devices, determining the interference sub-information of the air purifier in the information type.

[0201] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, the following steps are implemented:

[0202] Obtaining the external interference information corresponding to multiple air purifiers in the environment; the external interference information includes interference sub-information corresponding to multiple information types;

[0203] Determining the regulation conditions and regulation methods of each information type;

[0204] For each information type, based on the interference sub-information corresponding to each air purifier in the information type, determining a selected purifier that meets the regulation conditions of the information type from each air purifier;

[0205] Regulating the selected purifiers to be regulated under each information type according to the regulation methods of each information type.

[0206] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:

[0207] Obtain the external interference threshold under the information type;

[0208] For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0209] When the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier.

[0210] In one embodiment, the regulation method includes a regulation route. In the case of this embodiment, when the computer program is executed by a processor, the following steps are further implemented:

[0211] For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the regulation routes respectively corresponding to the multiple information types;

[0212] According to the regulation methods of the respective information types, regulate the selected purifiers to be regulated under the respective information types, including:

[0213] When there are intersection points between the regulation routes corresponding to the air purifier, determine the updated regulation route of the air purifier based on the intersection points;

[0214] Regulate the air purifier according to the updated regulation route.

[0215] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented: For each air purifier, when the air purifier is determined as the selected purifier for multiple information types, determine the priorities respectively corresponding to the multiple information types;

[0216] Select the target type with the highest priority from the multiple information types;

[0217] Regulate the air purifier based on the regulation method corresponding to the target type.

[0218] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented: Based on the interference sub-information respectively corresponding to each air purifier under the information type, determine candidate purifiers that meet the regulation conditions of the information type from each air purifier;

[0219] When there are multiple candidate purifiers corresponding to the information type, screen the selected purifier corresponding to the information type from each candidate purifier based on the degree of interference characterized by the interference sub-information of each candidate purifier.

[0220] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented: obtaining the priority of each information type;

[0221] From each information type, determining a selected type with the highest priority;

[0222] Based on the interference sub-information corresponding to each air purifier under the selected type, determining a selected purifier that meets the regulation conditions of the selected type from each air purifier;

[0223] Determining a selected type with the highest priority from the remaining information types, and returning the step of determining a selected purifier that meets the regulation conditions of the selected type from each air purifier based on the interference sub-information corresponding to each air purifier under the selected type, until each information type corresponds to a different selected purifier.

[0224] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:

[0225] Obtaining the operation information of all devices in the environment; all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types;

[0226] For each air purifier and for each information type, based on the multiple operation sub-information of the devices other than the air purifier in the information type among all devices, determining the interference sub-information of the air purifier in the information type.

[0227] In one embodiment, a computer program product is provided, including a computer program, which when executed by a processor implements the following steps:

[0228] Obtaining the external interference information corresponding to multiple air purifiers in the environment; the external interference information includes interference sub-information corresponding to multiple information types;

[0229] Determining the regulation conditions and regulation methods of each information type;

[0230] For each information type, based on the interference sub-information corresponding to each air purifier in the information type, determining a selected purifier that meets the regulation conditions of the information type from each air purifier;

[0231] According to the regulation methods of each information type, respectively regulating the selected purifiers to be regulated under each information type.

[0232] In one embodiment, when the computer program is executed by a processor, the following steps are further implemented:

[0233] Obtaining the external interference threshold under the information type;

[0234] For each air purifier, compare the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference;

[0235] When the information difference meets the regulation conditions of the information type, determine the air purifier as the selected purifier.

[0236] In one embodiment, the regulation method includes a regulation route. In the case of this embodiment, when the computer program is executed by the processor, the following steps are further implemented:

[0237] For each air purifier, when the air purifier is determined as the selected purifier of multiple information types, determine the regulation routes respectively corresponding to the multiple information types;

[0238] According to the regulation methods of the respective information types, regulate the selected purifiers to be regulated under the respective information types, including:

[0239] When there are intersection points between the respective regulation routes corresponding to the air purifier, determine the updated regulation route of the air purifier based on the intersection points;

[0240] Regulate the air purifier according to the updated regulation route.

[0241] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented: For each air purifier, when the air purifier is determined as the selected purifier of multiple information types, determine the priorities respectively corresponding to the multiple information types;

[0242] Select the target type with the highest priority from the multiple information types;

[0243] Regulate the air purifier based on the regulation method corresponding to the target type.

[0244] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented: Based on the interference sub-information respectively corresponding to each air purifier under the information type, determine the candidate purifiers that meet the regulation conditions of the information type from each air purifier;

[0245] When there are multiple candidate purifiers corresponding to the information type, screen the selected purifier corresponding to the information type from each candidate purifier based on the degree of interference respectively characterized by the interference sub-information of each candidate purifier.

[0246] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:

[0247] Obtain the priorities of the respective information types;

[0248] Determine the selected type with the highest priority from the respective information types;

[0249] Based on the interference sub-information corresponding to each air purifier under the selected type, determine the selected purifiers that meet the regulation conditions of the selected type from each air purifier;

[0250] Determine the selected type with the highest priority from the remaining information types, and return the step of determining the selected purifiers that meet the regulation conditions of the selected type from each air purifier based on the interference sub-information corresponding to each air purifier under the selected type, until each information type corresponds to a different selected purifier.

[0251] In one embodiment, when the computer program is executed by the processor, the following steps are further implemented:

[0252] Obtain the operation information of all devices in the environment; all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types;

[0253] For each air purifier and for each information type, based on the multiple operation sub-information of the devices other than the air purifiers in all devices under the information type, determine the interference sub-information of the air purifier under the information type.

[0254] It should be noted that the user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data for analysis, stored data, displayed data, etc.) involved in this application are all information and data authorized by the user or fully authorized by all parties, and the collection, use, and processing of relevant data need to comply with the relevant laws, regulations, and standards of relevant countries and regions.

[0255] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, database, or other medium used in the embodiments provided in the present application can include at least one of non-volatile and volatile memories. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetoresistive random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc. The databases involved in the embodiments provided in the present application can include at least one of relational databases and non-relational databases. Non-relational databases can include distributed databases based on blockchain, etc., without limitation. The processors involved in the embodiments provided in the present application can be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, data processing logics based on quantum computing, etc., without limitation.

[0256] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.

[0257] The above embodiments only represent several implementation manners of the present application. Their descriptions are relatively specific and detailed, but they should not be construed as limiting the patent scope of the present application. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. A method for controlling an air purifier, characterized in that: The method comprises: Acquire external interference information corresponding to multiple air purifiers in an environment; the external interference information includes interference sub-information corresponding to multiple information types; Determine respective control conditions and control methods for each of the information types; For each of the information types, based on the interference sub-information corresponding to each of the air purifiers under the information type, determine a selected purifier that meets the control condition of the information type from among the air purifiers; According to the respective control methods of each of the information types, the selected purifiers to be controlled under each of the information types are controlled respectively.

2. The method according to claim 1, characterized in that The method of determining a selected purifier that meets the control condition of the information type from each of the air purifiers based on the interference sub-information corresponding to each of the air purifiers under the information type includes: Obtaining an external interference threshold under the information type; For each of the air purifiers, comparing the interference sub-information of the air purifier under the information type with the external interference threshold to obtain an information difference; When the information difference satisfies the regulation condition of the information type, the air purifier is determined as the selected purifier.

3. The method according to claim 1, characterized in that The control method includes a control route; The method further comprises: For each of the air purifiers, when the air purifier is determined as a selected purifier of multiple information types, determining control routes corresponding to the multiple information types respectively; According to the respective control methods of the information types, the selected purifiers to be controlled under the information types are controlled respectively, including: In the case where there are intersections between the control routes corresponding to the air purifier, determining an updated control route for the air purifier based on the intersections; The air purifier is regulated according to the updated regulation route.

4. The method according to claim 1, characterized in that According to the respective control methods of the information types, the selected purifiers to be controlled under the information types are controlled respectively, including: For each of the air purifiers, when the air purifier is determined as a selected purifier of multiple information types, determining priorities corresponding to the multiple information types respectively; Selecting a target type with the highest priority from among the multiple information types; The air purifier is regulated based on the regulation method corresponding to the target type.

5. The method according to claim 1, characterized in that The method of determining a selected purifier that meets the control condition of the information type from each of the air purifiers based on the interference sub-information corresponding to each of the air purifiers under the information type includes: Based on the interference sub-information corresponding to each of the air purifiers under the information type, determining a candidate purifier that meets the control condition of the information type from each of the air purifiers; In the case where the information type corresponds to a plurality of candidate purifiers, based on the interference levels represented by the interference sub-information of each of the candidate purifiers, a selected purifier corresponding to the information type is screened from the candidate purifiers.

6. The method according to claim 1, characterized in that The method of determining a selected purifier that meets the control condition of the information type from each of the air purifiers based on the interference sub-information corresponding to each of the air purifiers under the information type includes: Obtaining respective priorities of each of the information types; From among the information types, determining a selected type with the highest priority; Based on the interference sub-information corresponding to each of the air purifiers under the selected type, determining a selected purifier that meets the control condition of the selected type from the air purifiers; Determine the selected type with the highest priority from the remaining information types, return the interference sub-information corresponding to each air purifier under the selected type, and determine the selected purifier that meets the control conditions of the selected type from each air purifier, until each information type corresponds to a different selected purifier.

7. The method according to claim 1, characterized in that The obtaining of external interference information corresponding to a plurality of purifiers in the environment includes: Acquire operation information of all devices in the environment; the all devices include multiple air purifiers; the operation information includes operation sub-information corresponding to multiple information types; For each of the air purifiers and for each of the information types, based on a plurality of operation sub-information of the remaining devices in all the devices except the air purifier under the information type, the interference sub-information of the air purifier in the information type is determined.

8. An air purifier control device, characterized in that: The device comprises: An external interference information acquisition module is used to acquire external interference information corresponding to multiple air purifiers in an environment; the external interference information includes interference sub-information corresponding to multiple information types; A control mode determination module, used to determine the control conditions and control modes for each of the information types; A selected purifier determination module, for each of the information types, based on the interference sub-information corresponding to each of the air purifiers under the information type, to determine a selected purifier that meets the control conditions of the information type from among the air purifiers; The control module is used to control the selected purifiers to be controlled under each of the information types according to the respective control methods of each of the information types.

9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the method according to any one of claims 1 to 7 are implemented.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 7 are implemented.

11. A computer program product, comprising a computer program, characterized in that When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 7 are implemented.

Citation Information

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