Air conditioner intelligent control method and device based on formaldehyde detection information

By acquiring formaldehyde information and executing corresponding actions through the formaldehyde detection device in the smart air conditioner, the problems of low accuracy and efficiency of existing air conditioner control methods are solved, achieving more efficient response to excessive formaldehyde levels and improving living comfort.

CN121230101APending Publication Date: 2025-12-30FOSHAN VIOMI ELECTRICAL TECH
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Patent Information

Application Number
CN202410865265.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-12-30

AI Technical Summary

Technical Problem

Existing intelligent air conditioning control methods have low accuracy and efficiency, making it difficult to effectively address the problem of excessive formaldehyde levels.

Method used

The formaldehyde detection device equipped with the smart air conditioner obtains formaldehyde detection information, determines whether the current scene meets the formaldehyde removal conditions, and performs corresponding formaldehyde exceeding the standard response operations based on the detection information, including sending prompts to users or generating control parameters by the controller, such as adjusting the airflow to run the formaldehyde removal mode.

Benefits of technology

It improves the accuracy and efficiency of air conditioning control, enhances the ability to cope with excessive formaldehyde levels, and improves users' living comfort and health.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an air conditioner intelligent control method and device based on formaldehyde detection information, and the method comprises the steps: when an intelligent air conditioner is in a power-on state, obtaining formaldehyde detection information which is collected based on a formaldehyde detection device equipped on the intelligent air conditioner and aims at a current scene; according to the formaldehyde detection information, whether the current scene meets a preset basic formaldehyde removal condition or not is judged; if yes, corresponding formaldehyde standard exceeding coping operation is executed according to the formaldehyde detection information and the intelligent air conditioner. Therefore, the control accuracy and control reliability of the intelligent air conditioner can be improved, and the control efficiency and control convenience of the intelligent air conditioner can be improved, so that the formaldehyde standard exceeding response accuracy, timeliness and efficiency of the current scene are improved; the life comfort and the body health degree of the user in the current scene are further improved, the air freshness of the current scene is improved, and in addition, the formaldehyde detection device in the intelligent air conditioner of the scheme further provides a formaldehyde data monitoring function.
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Description

Technical Field

[0001] This invention relates to the field of intelligent device technology, and in particular to an intelligent control method and device for air conditioners based on formaldehyde detection information. Background Technology

[0002] With the development of artificial intelligence technology and the improvement of people's living standards, the use of traditional air conditioners has become widespread, and their functions are becoming increasingly intelligent and user-friendly. However, in practical applications, most existing intelligent air conditioner control methods still rely on remote controls. For example, users adjust the air conditioner's operating mode and select control functions using the remote. This existing intelligent air conditioner control method leads to problems with low accuracy and efficiency in regulation. Therefore, providing an intelligent air conditioner control method that improves both accuracy and efficiency is particularly important. Summary of the Invention

[0003] This invention provides an intelligent control method and device for air conditioners based on formaldehyde detection information, which can improve the accuracy and efficiency of air conditioner control.

[0004] To address the aforementioned technical problems, the first aspect of this invention discloses an intelligent air conditioning control method based on formaldehyde detection information, the method comprising:

[0005] When the smart air conditioner is turned on, formaldehyde detection information for the current scene is acquired based on the formaldehyde detection device equipped on the smart air conditioner. The formaldehyde detection information includes one or more of the following: formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information.

[0006] Based on the formaldehyde detection information, determine whether the current scenario meets the preset basic formaldehyde removal conditions;

[0007] When it is determined that the current scenario meets the basic formaldehyde removal conditions, the corresponding formaldehyde exceeding the standard response operation is executed based on the formaldehyde detection information and the smart air conditioner.

[0008] As an optional implementation, in the first aspect of the present invention, the step of performing corresponding formaldehyde exceeding the standard response operation based on the formaldehyde detection information and the smart air conditioner includes:

[0009] Identify the target user associated with the smart air conditioner, and based on the formaldehyde detection information, send a formaldehyde removal prompt command to the target user. The formaldehyde removal prompt command is used to instruct the target user to control the smart air conditioner to operate a preset formaldehyde removal mode; and / or,

[0010] Based on the formaldehyde detection information, formaldehyde removal control parameters for the smart air conditioner are generated, and based on the formaldehyde removal control parameters, the smart air conditioner is controlled to perform corresponding formaldehyde removal operations.

[0011] As an optional implementation, in the first aspect of the present invention, generating formaldehyde removal control parameters for the smart air conditioner based on the formaldehyde detection information includes:

[0012] Based on the formaldehyde detection information, determine the formaldehyde concentration change in the current scene, and based on the formaldehyde concentration change, determine the first airflow control parameter of the smart air conditioner;

[0013] Based on the formaldehyde detection information, the formaldehyde trend in the current scene is determined, and based on the formaldehyde trend and the determined spatial layout and air convection information of the current scene, the first airflow control parameter of the smart air conditioner is determined.

[0014] Based on the formaldehyde detection information, identify one or more formaldehyde-generating objects in the current scene that cause formaldehyde to appear in the scene, and their corresponding formaldehyde generation-related information; based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information, determine the object-oriented control parameters of the smart air conditioner.

[0015] Based on the first air volume control parameter, the first air direction control parameter, and the object-oriented control parameter, the formaldehyde removal control parameters of the smart air conditioner are generated.

[0016] The object-specific control parameters include one or more of the following: a second airflow control parameter, a second airflow direction control parameter, and other media control parameters for the formaldehyde generating object; the other media control parameters are used to control the output of the intelligent air conditioner in addition to the airflow and airflow direction media.

[0017] As an optional implementation, in the first aspect of the present invention, determining the object control parameters of the smart air conditioner based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information includes:

[0018] Based on each formaldehyde-generating object and its corresponding formaldehyde generation information, at least one first formaldehyde object that meets the preset independent formaldehyde emission conditions and / or at least one second formaldehyde object that meets the preset cooperative formaldehyde emission conditions are determined from all the formaldehyde-generating objects.

[0019] Based on the formaldehyde generation information of each of the formaldehyde-generating objects, determine the formaldehyde emission cause and emission point of each first formaldehyde object; based on the formaldehyde emission cause and emission point of each first formaldehyde object, determine the control parameters of the first sub-object of the smart air conditioner; and / or,

[0020] Based on the formaldehyde generation information of each formaldehyde generating object, determine the specific gas information corresponding to the target gas emitted by each second formaldehyde object that causes the cooperative generation of formaldehyde; based on the specific gas information of each second formaldehyde object, determine the exclusive neutralization medium for neutralizing its corresponding target gas; based on the specific gas information and exclusive neutralization medium of each second formaldehyde object, determine the control parameters of the second sub-object of the smart air conditioner.

[0021] The object control parameters of the intelligent air conditioner are determined based on the control parameters of the first sub-object and / or the control parameters of the second sub-object.

[0022] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0023] When it is determined that the current scenario does not meet the basic formaldehyde removal conditions, the current storage amount of formaldehyde removal substances stored in the smart air conditioner is determined; based on the current storage amount, the smart air conditioner is subjected to corresponding formaldehyde removal substance processing operations.

[0024] As an optional implementation, in the first aspect of the present invention, after acquiring the formaldehyde detection information for the current scenario collected by the formaldehyde detection device equipped on the smart air conditioner, the method further includes:

[0025] Based on the formaldehyde detection information, control the display screen associated with the smart air conditioner to perform a corresponding first formaldehyde data display operation; and / or,

[0026] Based on the formaldehyde detection information, the smart application bound to the smart air conditioner is controlled to perform a corresponding second formaldehyde data display operation.

[0027] As an optional implementation, in the first aspect of the present invention, the step of performing a corresponding formaldehyde removal substance treatment operation on the smart air conditioner according to the current storage amount includes:

[0028] Based on the current storage amount, determine whether the smart air conditioner meets the preset conditions for immediate demand addition;

[0029] When it is determined that the smart air conditioner meets the immediate demand addition conditions, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the current storage amount;

[0030] When it is determined that the smart air conditioner does not meet the immediate demand addition conditions, the expected demand for the formaldehyde removal substance in the next formaldehyde removal scenario of the smart air conditioner is predicted based on the determined historical formaldehyde removal data of the smart air conditioner.

[0031] Based on the expected demand and the current storage capacity, determine whether the smart air conditioner meets the preset pre-defined demand addition conditions;

[0032] When it is determined that the smart air conditioner meets the pre-required addition conditions, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the expected demand and the current storage capacity.

[0033] As an optional implementation, in the first aspect of the present invention, determining whether the current scenario meets the preset basic formaldehyde removal conditions based on the formaldehyde detection information includes:

[0034] Based on the formaldehyde concentration data, determine the current formaldehyde concentration of the current scene, and determine whether the current formaldehyde concentration is greater than or equal to a preset formaldehyde concentration threshold.

[0035] When it is determined that the current formaldehyde concentration is less than the formaldehyde concentration threshold, it is determined that the current scenario does not meet the preset basic formaldehyde removal conditions;

[0036] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the current scenario is determined to meet the preset basic formaldehyde removal conditions.

[0037] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0038] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the formaldehyde concentration data, the formaldehyde distribution information, and the formaldehyde flow information are used to determine the formaldehyde removal effect of the current scene without the need for external formaldehyde removal by the smart air conditioner.

[0039] Determine whether the built-in formaldehyde removal effect meets the preset formaldehyde removal effect requirements;

[0040] When it is determined that the built-in formaldehyde removal effect meets the formaldehyde removal effect requirements, it is determined that the current scenario does not meet the preset basic formaldehyde removal conditions.

[0041] When it is determined that the built-in formaldehyde removal effect does not meet the formaldehyde removal effect requirements, the step of determining that the current scene meets the preset basic formaldehyde removal conditions is executed.

[0042] A second aspect of this invention discloses an intelligent air conditioning control device based on formaldehyde detection information, the device comprising:

[0043] The information acquisition module is used to acquire formaldehyde detection information for the current scenario based on the formaldehyde detection device equipped on the smart air conditioner when the smart air conditioner is turned on. The formaldehyde detection information includes one or more of formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information.

[0044] The judgment module is used to determine whether the current scene meets the preset basic formaldehyde removal conditions based on the formaldehyde detection information.

[0045] The first execution module is used to perform corresponding formaldehyde exceeding the standard response operation based on the formaldehyde detection information and the smart air conditioner when the judgment module determines that the current scenario meets the basic formaldehyde removal conditions.

[0046] As an optional implementation, in a second aspect of the present invention, the method by which the first execution module performs corresponding formaldehyde exceeding-standard response operations based on the formaldehyde detection information and the smart air conditioner specifically includes:

[0047] Identify the target user associated with the smart air conditioner, and based on the formaldehyde detection information, send a formaldehyde removal prompt command to the target user. The formaldehyde removal prompt command is used to instruct the target user to control the smart air conditioner to operate a preset formaldehyde removal mode; and / or,

[0048] Based on the formaldehyde detection information, formaldehyde removal control parameters for the smart air conditioner are generated, and based on the formaldehyde removal control parameters, the smart air conditioner is controlled to perform corresponding formaldehyde removal operations.

[0049] As an optional implementation, in a second aspect of the present invention, the method by which the first execution module generates the formaldehyde removal control parameters of the smart air conditioner based on the formaldehyde detection information specifically includes:

[0050] Based on the formaldehyde detection information, determine the formaldehyde concentration change in the current scene, and based on the formaldehyde concentration change, determine the first airflow control parameter of the smart air conditioner;

[0051] Based on the formaldehyde detection information, the formaldehyde trend in the current scene is determined, and based on the formaldehyde trend and the determined spatial layout and air convection information of the current scene, the first airflow control parameter of the smart air conditioner is determined.

[0052] Based on the formaldehyde detection information, identify one or more formaldehyde-generating objects in the current scene that cause formaldehyde to appear in the scene, and their corresponding formaldehyde generation-related information; based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information, determine the object-oriented control parameters of the smart air conditioner.

[0053] Based on the first air volume control parameter, the first air direction control parameter, and the object-oriented control parameter, the formaldehyde removal control parameters of the smart air conditioner are generated.

[0054] The object-specific control parameters include one or more of the following: a second airflow control parameter, a second airflow direction control parameter, and other media control parameters for the formaldehyde generating object; the other media control parameters are used to control the output of the intelligent air conditioner in addition to the airflow and airflow direction media.

[0055] As an optional implementation, in a second aspect of the present invention, the method by which the first execution module determines the object control parameters of the smart air conditioner based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information specifically includes:

[0056] Based on each formaldehyde-generating object and its corresponding formaldehyde generation information, at least one first formaldehyde object that meets the preset independent formaldehyde emission conditions and / or at least one second formaldehyde object that meets the preset cooperative formaldehyde emission conditions are determined from all the formaldehyde-generating objects.

[0057] Based on the formaldehyde generation information of each of the formaldehyde-generating objects, determine the formaldehyde emission cause and emission point of each first formaldehyde object; based on the formaldehyde emission cause and emission point of each first formaldehyde object, determine the control parameters of the first sub-object of the smart air conditioner; and / or,

[0058] Based on the formaldehyde generation information of each formaldehyde generating object, determine the specific gas information corresponding to the target gas emitted by each second formaldehyde object that causes the cooperative generation of formaldehyde; based on the specific gas information of each second formaldehyde object, determine the exclusive neutralization medium for neutralizing its corresponding target gas; based on the specific gas information and exclusive neutralization medium of each second formaldehyde object, determine the control parameters of the second sub-object of the smart air conditioner.

[0059] The object control parameters of the intelligent air conditioner are determined based on the control parameters of the first sub-object and / or the control parameters of the second sub-object.

[0060] As an optional implementation, in a second aspect of the invention, the apparatus further includes:

[0061] The second execution module is used to determine the current storage amount of formaldehyde removal substances stored in the smart air conditioner when the judgment module determines that the current scenario does not meet the basic formaldehyde removal conditions; and to perform corresponding formaldehyde removal substance processing operations on the smart air conditioner according to the current storage amount.

[0062] As an optional implementation, in a second aspect of the invention, the apparatus further includes:

[0063] The data display module is used to, after the information acquisition module acquires the formaldehyde detection information for the current scene collected by the formaldehyde detection device equipped on the smart air conditioner, control the display screen associated with the smart air conditioner to perform a corresponding first formaldehyde data display operation based on the formaldehyde detection information; and / or, control the smart application bound to the smart air conditioner to perform a corresponding second formaldehyde data display operation based on the formaldehyde detection information.

[0064] As an optional implementation, in a second aspect of the present invention, the method by which the second execution module performs a corresponding formaldehyde removal substance treatment operation on the smart air conditioner based on the current storage amount specifically includes:

[0065] Based on the current storage amount, determine whether the smart air conditioner meets the preset conditions for immediate demand addition;

[0066] When it is determined that the smart air conditioner meets the immediate demand addition conditions, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the current storage amount;

[0067] When it is determined that the smart air conditioner does not meet the immediate demand addition conditions, the expected demand for the formaldehyde removal substance in the next formaldehyde removal scenario of the smart air conditioner is predicted based on the determined historical formaldehyde removal data of the smart air conditioner.

[0068] Based on the expected demand and the current storage capacity, determine whether the smart air conditioner meets the preset pre-defined demand addition conditions;

[0069] When it is determined that the smart air conditioner meets the pre-required addition conditions, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the expected demand and the current storage capacity.

[0070] As an optional implementation, in a second aspect of the present invention, the method by which the judging module judges whether the current scene meets the preset basic formaldehyde removal conditions based on the formaldehyde detection information specifically includes:

[0071] Based on the formaldehyde concentration data, determine the current formaldehyde concentration of the current scene, and determine whether the current formaldehyde concentration is greater than or equal to a preset formaldehyde concentration threshold.

[0072] When it is determined that the current formaldehyde concentration is less than the formaldehyde concentration threshold, it is determined that the current scenario does not meet the preset basic formaldehyde removal conditions;

[0073] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the current scenario is determined to meet the preset basic formaldehyde removal conditions.

[0074] As an optional implementation, in a second aspect of the present invention, the judging module is further configured to, when judging that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, determine the inherent formaldehyde removal effect of the current scenario without external formaldehyde removal by the smart air conditioner, based on the formaldehyde concentration data, the formaldehyde distribution information, and the formaldehyde flow information; judge whether the inherent formaldehyde removal effect meets the preset formaldehyde removal effect requirements; when judging that the inherent formaldehyde removal effect meets the formaldehyde removal effect requirements, determine that the current scenario does not meet the preset basic formaldehyde removal conditions; when judging that the inherent formaldehyde removal effect does not meet the formaldehyde removal effect requirements, execute the step of determining that the current scenario meets the preset basic formaldehyde removal conditions.

[0075] A third aspect of this invention discloses another intelligent air conditioning control device based on formaldehyde detection information, the device comprising:

[0076] Memory containing executable program code;

[0077] A processor coupled to the memory;

[0078] The processor calls the executable program code stored in the memory to execute the intelligent air conditioning control method based on formaldehyde detection information disclosed in the first aspect of the present invention.

[0079] The fourth aspect of this invention discloses a computer storage medium storing computer instructions, which, when invoked, are used to execute an intelligent air conditioning control method based on formaldehyde detection information disclosed in the first aspect of this invention.

[0080] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:

[0081] In this embodiment of the invention, when the smart air conditioner is turned on, formaldehyde detection information for the current scenario is acquired based on the formaldehyde detection device equipped on the smart air conditioner. The formaldehyde detection information includes one or more of formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information. Based on the formaldehyde detection information, it is determined whether the current scenario meets the preset basic formaldehyde removal conditions. When it is determined that the current scenario meets the basic formaldehyde removal conditions, corresponding formaldehyde exceeding the standard response operation is performed based on the formaldehyde detection information and the smart air conditioner. As can be seen, implementing this invention enables the formaldehyde detection information of the current scene to be determined by the formaldehyde detection device in the smart air conditioner. When the formaldehyde removal conditions are met in the current scene, the smart air conditioner performs corresponding formaldehyde exceeding the standard response operations based on the formaldehyde detection information. This is beneficial to improving the comprehensiveness, rationality, and integrity of the intelligent control method of air conditioner based on formaldehyde detection information, thereby improving the control accuracy and reliability of the smart air conditioner, as well as its control efficiency and convenience. This, in turn, improves the accuracy, timeliness, and efficiency of responding to formaldehyde exceeding the standard in the current scene, further enhancing the user's living comfort and health in the current scene, and improving the air freshness of the current scene. In addition, the formaldehyde detection device in the smart air conditioner of this solution also provides formaldehyde data monitoring function, which is beneficial to improving the functional diversity and intelligence of the smart air conditioner, further enhancing the user experience and increasing the stickiness of the smart air conditioner. Attached Figure Description

[0082] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0083] Figure 1 This is a schematic diagram illustrating the applicable scenario for an intelligent air conditioning control method based on formaldehyde detection information disclosed in an embodiment of the present invention.

[0084] Figure 2 This is a flowchart illustrating an intelligent air conditioning control method based on formaldehyde detection information disclosed in an embodiment of the present invention.

[0085] Figure 3 This is a flowchart illustrating another intelligent air conditioning control method based on formaldehyde detection information disclosed in an embodiment of the present invention;

[0086] Figure 4 This is a schematic diagram of the structure of an intelligent air conditioning control device based on formaldehyde detection information disclosed in an embodiment of the present invention;

[0087] Figure 5 This is a schematic diagram of another intelligent air conditioning control device based on formaldehyde detection information disclosed in an embodiment of the present invention;

[0088] Figure 6 This is a schematic diagram of the structure of another intelligent air conditioning control device based on formaldehyde detection information disclosed in an embodiment of the present invention. Detailed Implementation

[0089] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0090] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish different objects, not to describe a specific order. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, apparatus, product, or end that includes a series of steps or units is not limited to the listed steps or units, but may optionally include steps or units not listed, or may optionally include other steps or units inherent to these processes, methods, products, or ends.

[0091] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0092] This invention discloses an intelligent air conditioning control method and device based on formaldehyde detection information. It can determine the formaldehyde detection information of the current scene through a formaldehyde detection device in the intelligent air conditioner. When the current scene meets the formaldehyde removal conditions, the method executes corresponding formaldehyde exceeding the standard response operations based on the formaldehyde detection information and the intelligent air conditioner. This improves the comprehensiveness, rationality, and integrity of the intelligent air conditioning control method based on formaldehyde detection information, thereby improving the control accuracy and reliability of the intelligent air conditioner, as well as its control efficiency and convenience. This enhances the accuracy, timeliness, and efficiency of responding to formaldehyde exceeding the standard in the current scene, further improving the user's living comfort and health, and increasing the air freshness in the current scene. Furthermore, the formaldehyde detection device in this solution also provides formaldehyde data monitoring functionality, which enhances the functional diversity and intelligence of the intelligent air conditioner, further improving the user experience and increasing user stickiness. Detailed descriptions follow.

[0093] To better understand the intelligent air conditioning control method and device based on formaldehyde detection information described in this invention, the applicable scenario architecture for the intelligent air conditioning control method based on formaldehyde detection information is first described. Specifically, this scenario architecture can be as follows: Figure 1 As shown, the applicable scenarios for this intelligent air conditioning control method based on formaldehyde detection information can include smart air conditioners and users. The smart air conditioner can be equipped with a formaldehyde detection device and a formaldehyde data display screen. Specifically, the method acquires formaldehyde detection information for the current scenario collected by the formaldehyde detection device on the smart air conditioner. Based on the formaldehyde detection information, it determines whether the current scenario meets the formaldehyde removal conditions. If so, it executes corresponding formaldehyde exceeding the standard response operation to achieve formaldehyde removal control of the air conditioner in the current scenario and real-time display of formaldehyde data. For example, the formaldehyde detection device on the smart air conditioner detects formaldehyde in the current scenario and obtains formaldehyde detection data. A display screen installed on the smart air conditioner and a smart application bound to the smart air conditioner display real-time formaldehyde data. Furthermore, when the formaldehyde detection data indicates that the formaldehyde level in the current scenario exceeds the standard, a formaldehyde exceeding the standard prompt instruction is sent to the target user bound to the smart air conditioner to prompt the user to start the air conditioner in formaldehyde removal mode. And / or, formaldehyde removal control parameters are generated based on the formaldehyde detection data, and the smart air conditioner is controlled to perform corresponding formaldehyde removal operations based on the formaldehyde removal control parameters, thereby realizing the intelligent air conditioning control function based on formaldehyde detection information.

[0094] It should be noted that, Figure 1The schematic diagram shown is only intended to illustrate a scenario applicable to an intelligent air conditioning control method based on formaldehyde detection information. The various intelligent devices involved are only illustrative; their specific structures, sizes, shapes, locations, installation methods, and communication methods between the intelligent devices can be adapted to the actual scenario. Figure 1 The scenario shown is not limited to this.

[0095] Example 1

[0096] Please see Figure 2 , Figure 2 This is a flowchart illustrating an intelligent air conditioning control method based on formaldehyde detection information disclosed in an embodiment of the present invention. Figure 2 The described method can be applied to smart air conditioners, wherein the smart air conditioner may include a server, which may be a local server or a cloud server; this embodiment of the invention is not limited thereto. Figure 2 As shown, the intelligent air conditioning control method based on formaldehyde detection information includes the following operations:

[0097] 101. When the smart air conditioner is turned on, obtain formaldehyde detection information for the current scenario based on the formaldehyde detection device equipped on the smart air conditioner.

[0098] Optionally, the formaldehyde detection information includes one or more of the following: formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information. This embodiment of the invention does not limit the information.

[0099] Optionally, formaldehyde distribution information can be understood as formaldehyde information in different areas of the current scene, and this embodiment of the invention does not limit it.

[0100] Optionally, formaldehyde flow information can be understood as one or more of the following: formaldehyde flow speed information, formaldehyde flow location information, formaldehyde flow percentage information, formaldehyde flow time information, and other flow information. This embodiment of the invention does not limit the scope of the information.

[0101] Optionally, formaldehyde detection information can also be collected by other formaldehyde detection devices that are linked to the smart air conditioner (but not placed in the smart air conditioner), and this embodiment of the invention does not limit this.

[0102] Further optionally, after step 101, based on the formaldehyde detection information, the display screen associated with the smart air conditioner is controlled to perform corresponding formaldehyde data display operations. This embodiment of the invention does not limit the scope of the invention.

[0103] 102. Based on the formaldehyde detection information, determine whether the current scene meets the preset basic formaldehyde removal conditions.

[0104] 103. When it is determined that the current scenario meets the basic formaldehyde removal conditions, the corresponding formaldehyde exceeding the standard response operation will be executed based on the formaldehyde detection information and the smart air conditioner.

[0105] Optionally, the application of this solution can be illustrated as follows: When the air conditioner is turned on, the main controller of the air conditioner detects the formaldehyde detection data collected by the formaldehyde detection device and performs corresponding data processing operations on the formaldehyde detection data. Furthermore, the display screen shows the real-time formaldehyde data, and the smart air conditioner's associated APP also displays the real-time formaldehyde data. Furthermore, when the formaldehyde detection data indicates that the formaldehyde level in the current scenario exceeds the standard, the main controller is linked to determine whether to start the smart air conditioner's formaldehyde removal mode. The APP is linked to remind the user that the formaldehyde level has exceeded the standard and that the air conditioner needs to be turned on to run the formaldehyde removal mode. This embodiment of the invention is not limited.

[0106] As can be seen, the intelligent air conditioning control method based on formaldehyde detection information described in this embodiment of the invention can determine the formaldehyde detection information of the current scene through the formaldehyde detection device in the intelligent air conditioner. When the formaldehyde removal conditions are met in the current scene, the method performs corresponding formaldehyde exceeding the standard response operations according to the formaldehyde detection information and the intelligent air conditioner. This is beneficial to improving the comprehensiveness, rationality, and integrity of the intelligent air conditioning control method based on formaldehyde detection information, thereby improving the control accuracy and reliability of the intelligent air conditioner, as well as its control efficiency and convenience. This, in turn, improves the accuracy, timeliness, and efficiency of responding to formaldehyde exceeding the standard in the current scene, further enhancing the user's living comfort and health in the current scene. In addition, the formaldehyde detection device in the intelligent air conditioner of this solution also provides formaldehyde data monitoring function, which is beneficial to improving the functional diversity and intelligence of the intelligent air conditioner, further enhancing the user experience and increasing the stickiness of the intelligent air conditioner.

[0107] In an optional embodiment, the above-mentioned actions to address formaldehyde exceeding the standard based on formaldehyde detection information and the smart air conditioner may include:

[0108] Identify the target user associated with the smart air conditioner and, based on formaldehyde detection information, send a formaldehyde removal prompt command to the target user. This prompt command instructs the target user to control the smart air conditioner to operate a preset formaldehyde removal mode; and / or,

[0109] Based on formaldehyde detection information, formaldehyde removal control parameters for the smart air conditioner are generated, and the smart air conditioner is controlled to perform corresponding formaldehyde removal operations based on these parameters.

[0110] Optionally, the above-mentioned formaldehyde removal prompt instruction is sent to the target user. For example, the user may be prompted to turn on the air conditioner through the APP to check if the user needs to turn on the air conditioner for formaldehyde removal. The user may be reminded that the formaldehyde level has exceeded the standard and the air conditioner needs to be turned on in formaldehyde removal mode. This embodiment of the invention does not limit the scope.

[0111] Optionally, the above-mentioned control of the smart air conditioner to perform corresponding formaldehyde removal operation based on the formaldehyde removal control parameters can be illustrated by, for example, controlling the smart air conditioner to operate in formaldehyde removal mode based on the formaldehyde removal control parameters, or controlling the smart air conditioner to operate in formaldehyde removal mode and specific operating level based on the formaldehyde removal control parameters. This embodiment of the invention does not limit the scope of the invention.

[0112] As can be seen, this optional embodiment can provide intelligent functions such as sending formaldehyde removal prompts to target users and intelligently controlling the intelligent air conditioner to perform corresponding formaldehyde removal operations. This is beneficial to improving the diversity and comprehensiveness of intelligent functions, the rationality, timeliness, accuracy, and efficiency of sending formaldehyde removal prompts, and thus the timeliness and rationality of user control over the formaldehyde removal mode of the intelligent air conditioner. In addition, it is also beneficial to improving the rationality and comprehensiveness of the method for determining the formaldehyde removal control parameters of the intelligent air conditioner, thereby improving the accuracy and reliability of the determined formaldehyde removal control parameters, and thus improving the timeliness, accuracy, and rationality of the formaldehyde removal operation of the intelligent air conditioner.

[0113] In another optional embodiment, the above-mentioned generation of formaldehyde removal control parameters for the smart air conditioner based on formaldehyde detection information may include:

[0114] Based on formaldehyde detection information, determine the formaldehyde concentration change in the current scene, and based on the formaldehyde concentration change, determine the first air volume control parameter of the smart air conditioner.

[0115] Based on formaldehyde detection information, determine the formaldehyde trend in the current scene, and based on the formaldehyde trend and the determined spatial layout and air convection information of the current scene, determine the first airflow control parameter of the smart air conditioner.

[0116] Based on formaldehyde detection information, identify one or more formaldehyde-generating objects in the current scene that cause formaldehyde to appear in the scene, and their corresponding formaldehyde generation-related information; based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information, determine the object-oriented control parameters of the smart air conditioner.

[0117] Based on the first air volume control parameter, the first air direction control parameter, and the target control parameter, the formaldehyde removal control parameters of the intelligent air conditioner are generated.

[0118] Among them, the target-specific control parameters include one or more of the second air volume control parameters, the second air direction control parameters, and other media control parameters for the formaldehyde generating target; other media control parameters are used to control the output of the intelligent air conditioner in addition to the air volume media and the air direction media.

[0119] Optionally, the first airflow control parameter of the smart air conditioner is determined based on the formaldehyde concentration change. For example, when the formaldehyde concentration change indicates that the formaldehyde concentration is continuously increasing or the formaldehyde concentration is decreasing slowly, the first airflow control parameter indicates that the output airflow of the smart air conditioner continues to increase. When the formaldehyde concentration change indicates that the formaldehyde concentration is continuously decreasing or the formaldehyde concentration has reached the preset decreasing rate requirement, and the current output airflow of the smart air conditioner is too large and has affected the actual operation of the scene, the first airflow control parameter indicates that the output airflow of the smart air conditioner begins to decrease. Other situations can be obtained in the same way. This embodiment of the invention is not limited.

[0120] Optionally, the first wind direction control parameter can change the formaldehyde dissipation rate in the current scene, and this embodiment of the invention does not limit it.

[0121] Furthermore, the determination of the first airflow control parameter for the smart air conditioner based on formaldehyde trends and the determined spatial layout and air convection information of the current scene may include:

[0122] Based on the formaldehyde trend and the determined spatial layout and air convection information of the current scene, determine the target wind direction path in the current scene that facilitates the dissipation of formaldehyde.

[0123] Based on the target wind direction path, determine the first wind direction control parameter of the intelligent air conditioner.

[0124] Optionally, the objects that generate formaldehyde in the above-mentioned scenario can be exemplified by: wardrobes that emit formaldehyde gas, walls that emit formaldehyde gas, objects that emit gaseous substances that can generate formaldehyde, etc. This embodiment of the invention does not limit the scope of the invention.

[0125] Optionally, the other media mentioned above can be understood as media that can absorb or dissipate formaldehyde, such as activated carbon, chemical removers, and plants that can absorb formaldehyde. This embodiment of the invention does not limit the scope of the invention.

[0126] Optionally, the formaldehyde removal control parameters are determined by the first air volume control parameter, the first air direction control parameter, and the target control parameter. For example, not only the output air volume and output air direction of the smart air conditioner are controlled to remove formaldehyde, but also the specific formaldehyde removal substances are combined to remove formaldehyde. It can also be understood that not only the formaldehyde concentration and air circulation are considered to remove formaldehyde, but also the target objects that generate formaldehyde are treated to remove formaldehyde. The embodiments of the present invention are not limited.

[0127] As can be seen, this optional embodiment can determine the formaldehyde removal control parameters of the smart air conditioner from multiple levels, such as the formaldehyde concentration change, formaldehyde trend, formaldehyde generating objects and their corresponding formaldehyde generation information in the current scenario. This is beneficial to improving the comprehensiveness, integrity and rationality of the method for determining the formaldehyde removal control parameters of the smart air conditioner, as well as the comprehensiveness and diversity of the parameters considered in determining the formaldehyde removal control parameters. In turn, it is beneficial to improve the accuracy and reliability of the determined formaldehyde removal control parameters, thereby improving the rationality, accuracy and reliability of the operation of the smart air conditioner based on the formaldehyde removal control parameters.

[0128] In yet another optional embodiment, determining the object control parameters of the smart air conditioner based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information may include:

[0129] Based on each formaldehyde-generating object and its corresponding formaldehyde generation information, at least one first formaldehyde object that meets the preset independent formaldehyde emission conditions and / or at least one second formaldehyde object that meets the preset cooperative formaldehyde emission conditions are identified from all formaldehyde-generating objects.

[0130] Based on the formaldehyde generation information of each formaldehyde-generating object, determine the formaldehyde emission cause and emission point of each first formaldehyde-generating object; based on the formaldehyde emission cause and emission point of each first formaldehyde-generating object, determine the control parameters of the first sub-object of the smart air conditioner; and / or,

[0131] Based on the formaldehyde generation information of each formaldehyde-generating object, determine the specific gas information corresponding to the target gas emitted by each second formaldehyde object that causes the cooperative generation of formaldehyde; based on the specific gas information of each second formaldehyde object, determine the exclusive decontamination medium for decontaminating its corresponding target gas; based on the specific gas information and exclusive decontamination medium of each second formaldehyde object, determine the control parameters of the second sub-object of the smart air conditioner.

[0132] The object control parameters of the intelligent air conditioner are determined based on the control parameters of the first sub-object and / or the control parameters of the second sub-object.

[0133] Optionally, the first formaldehyde object that meets the preset independent formaldehyde emission conditions can be understood as an object that can directly emit formaldehyde, and this embodiment of the present invention does not limit it.

[0134] Optionally, the second formaldehyde object that meets the preset conditions for cooperative formaldehyde emission can be understood as: an object whose emitted gaseous substance can combine with other gaseous substances in the current scene to generate formaldehyde. This embodiment of the invention does not limit this.

[0135] Optionally, the first formaldehyde object and the cause of formaldehyde emission can be illustrated by examples: for instance, the first formaldehyde object is the wardrobe in the current scene, and the cause of formaldehyde emission is that the wardrobe's board is made of artificial board, or that the wardrobe uses adhesive coatings, etc.; or the first formaldehyde object is the wallpaper in the current scene, and the cause of formaldehyde emission is that the wallpaper has added formaldehyde-based additives, etc. Other cases can be obtained in the same way, and the embodiments of the present invention are not limited.

[0136] Optionally, the formaldehyde emission point can be understood as the specific location in the first formaldehyde object where formaldehyde is emitted, and this embodiment of the present invention does not limit it.

[0137] Optionally, the specific gas information corresponding to the target gas may include, but is not limited to, one or more of the following: gas properties, gas contents, location of occurrence, occurrence rate, occurrence volume, and other information used to represent the target gas. This embodiment of the invention does not limit the scope of the information.

[0138] Optionally, the control parameters of the first sub-object and the control parameters of the second sub-object can be, but are not limited to, control parameters for a specific output medium type, output quantity, output speed, output position and direction for that output medium type, etc., and the embodiments of the present invention do not limit them.

[0139] Optionally, the object control parameters are determined by the first sub-object control parameters and the second sub-object control parameters. For example, formaldehyde can be emitted directly from an object, or it can be generated by a chemical reaction of gases emitted by multiple objects. Depending on the specific situation, it can be targeted to remove formaldehyde directly, or it can be targeted to eliminate the gas before the chemical reaction generates formaldehyde. This embodiment of the invention does not limit this.

[0140] As can be seen, this optional embodiment can identify a first formaldehyde object that meets the conditions for independent formaldehyde emission and / or a second formaldehyde object that meets the conditions for cooperative formaldehyde emission. For the first and second formaldehyde objects, corresponding sub-object control parameter determination methods are matched. Furthermore, based on the first and / or second sub-object control parameters, the object control parameters of the intelligent air conditioner are determined. This improves the comprehensiveness and rationality of the object control parameter determination method, as well as the diversity, flexibility, specificity, and comprehensiveness of the sub-object control parameter determination method. Consequently, it improves the accuracy and reliability of the determined first and second sub-object control parameters, thus enhancing the accuracy and reliability of the determined object control parameters.

[0141] Example 2

[0142] Please see Figure 3 , Figure 3 This is a flowchart illustrating another intelligent air conditioning control method based on formaldehyde detection information disclosed in an embodiment of the present invention. Figure 3 The described method can be applied to smart air conditioners, wherein the smart air conditioner may include a server, which may be a local server or a cloud server; this embodiment of the invention is not limited thereto. Figure 3 As shown, the intelligent air conditioning control method based on formaldehyde detection information includes the following operations:

[0143] 201. When the smart air conditioner is turned on, obtain formaldehyde detection information for the current scenario based on the formaldehyde detection device equipped on the smart air conditioner.

[0144] Optionally, the formaldehyde detection information includes one or more of the following: formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information. This embodiment of the invention does not limit the information.

[0145] 202. Based on the formaldehyde detection information, determine whether the current scene meets the preset basic formaldehyde removal conditions. If the determination result is yes, proceed to step 203; if the determination result is no, proceed to step 204.

[0146] 203. Based on the formaldehyde detection information and the smart air conditioner, implement the corresponding measures to deal with excessive formaldehyde levels.

[0147] 204. Determine the current storage quantity of formaldehyde removal substances stored in the smart air conditioner, and perform corresponding formaldehyde removal substance processing operations on the smart air conditioner based on the current storage quantity.

[0148] Optionally, the formaldehyde-removing substance can be a substance that corresponds to the above-mentioned specific decomposition medium used to decompose its corresponding target gas, or it can be a substance that is directly used to absorb formaldehyde, or it can be a substance that is directly used to dissipate formaldehyde. The embodiments of the present invention are not limited to this.

[0149] Optionally, the above-mentioned formaldehyde removal material treatment operations, for example, include: adding formaldehyde removal material, replacing formaldehyde removal material, loosening / compacting formaldehyde removal material, etc., but are not limited in the embodiments of the present invention.

[0150] In this embodiment of the invention, for other descriptions of steps 201-204, please refer to the other detailed descriptions of steps 101-103 in Embodiment 1. These descriptions will not be repeated in this embodiment of the invention.

[0151] As can be seen, the embodiments of the present invention can determine the formaldehyde detection information of the current scene through the formaldehyde detection device in the smart air conditioner. When the formaldehyde removal conditions are met in the current scene, the smart air conditioner performs corresponding formaldehyde exceeding the standard response operations based on the formaldehyde detection information. This is beneficial to improving the comprehensiveness, rationality, and integrity of the intelligent air conditioner control method based on formaldehyde detection information, thereby improving the control accuracy and reliability of the smart air conditioner, as well as its control efficiency and convenience. This, in turn, improves the accuracy, timeliness, and efficiency of responding to formaldehyde exceeding the standard in the current scene, further enhancing the user's living comfort and health in the current scene, and improving the air freshness of the current scene. Furthermore, this... The formaldehyde detection device in the smart air conditioner solution also provides formaldehyde data monitoring, which helps improve the functionality and intelligence of the smart air conditioner, further enhancing the user experience and user stickiness. Furthermore, it provides formaldehyde removal substance treatment and real-time formaldehyde data display functions, which further improve the functionality and intelligence of the smart air conditioner, enhance the comprehensiveness and integrity of the intelligent control method based on formaldehyde detection information, and improve the comprehensiveness and rationality of the formaldehyde removal substance treatment method. This, in turn, improves the timeliness, rationality, accuracy, and efficiency of the formaldehyde removal substance treatment, thereby enhancing the stability and effectiveness of the formaldehyde removal effect of the smart air conditioner.

[0152] In an optional embodiment, after obtaining the formaldehyde detection information for the current scenario collected by the formaldehyde detection device equipped on the smart air conditioner, the method may further include the following operations:

[0153] Based on formaldehyde detection information, control the display screen associated with the smart air conditioner to perform the corresponding first formaldehyde data display operation; and / or,

[0154] Based on the formaldehyde detection information, the smart application linked to the smart air conditioner is controlled to perform the corresponding second formaldehyde data display operation.

[0155] Optionally, the above-mentioned control of the display screen associated with the smart air conditioner to perform the corresponding first formaldehyde data display operation, for example: controlling the display screen installed on the smart air conditioner or the display screen associated with the smart air conditioner to display the formaldehyde data of the current scene in real time. This embodiment of the invention is not limited.

[0156] Optionally, the above-mentioned control is performed by a smart application bound to a smart air conditioner to perform a corresponding second formaldehyde data display operation. For example, an APP bound to a smart air conditioner displays formaldehyde data in real time. This embodiment of the invention does not limit the scope of the invention.

[0157] As can be seen, this optional embodiment can realize real-time display of formaldehyde data through a display screen associated with the smart air conditioner and / or a smart application associated with the smart air conditioner. This is beneficial to improving the comprehensiveness, rationality, diversity, and flexibility of formaldehyde data display methods, thereby improving the real-time performance, efficiency, and reference value of formaldehyde data display, as well as improving the accuracy and rationality of formaldehyde data display. This, in turn, helps improve the timeliness of users' understanding of formaldehyde data and the timeliness of their formaldehyde response.

[0158] In an optional embodiment, the above-mentioned operation of performing corresponding formaldehyde removal treatment on the smart air conditioner based on the current storage capacity may include:

[0159] Based on the current storage capacity, determine whether the smart air conditioner meets the preset conditions for immediate addition.

[0160] When it is determined that the smart air conditioner meets the immediate needs for adding substances, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the current storage capacity.

[0161] When it is determined that the smart air conditioner does not meet the conditions for immediate addition, the expected amount of formaldehyde removal material required for the next formaldehyde removal scenario is predicted based on the historical formaldehyde removal data of the smart air conditioner.

[0162] Based on the expected demand and current storage capacity, determine whether the smart air conditioner meets the preset conditions for adding demand.

[0163] When it is determined that the smart air conditioner meets the pre-defined requirements for adding formaldehyde removal substances, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the expected demand and the current storage capacity.

[0164] Optionally, there are immediate demand addition conditions and pre-demand addition conditions. For example, the immediate demand addition condition is that the current storage of formaldehyde removal material in the smart air conditioner is insufficient and formaldehyde removal material needs to be added now. The pre-demand addition condition is that the current storage of formaldehyde removal material in the smart air conditioner is still sufficient, but the current storage is insufficient to meet the formaldehyde removal material storage requirements for the next formaldehyde removal scenario. This embodiment of the invention does not limit these conditions.

[0165] Optionally, the historical formaldehyde removal data of the smart air conditioner can be understood as the amount of formaldehyde removal material required and consumed in each historical formaldehyde removal scenario of the smart air conditioner in the past. This embodiment of the invention does not limit this.

[0166] Further optionally, the above-mentioned determination of whether the smart air conditioner meets the preset immediate demand addition conditions based on the current storage amount may include:

[0167] Determine whether the current storage amount is less than or equal to the preset storage amount threshold;

[0168] When it is determined that the current storage amount is less than or equal to the storage amount threshold, the smart air conditioner meets the preset conditions for adding storage immediately.

[0169] When it is determined that the current storage amount is greater than the storage threshold, it is determined that the smart air conditioner does not meet the preset conditions for adding immediate demand.

[0170] Further optionally, the above-mentioned determination of whether the smart air conditioner meets the preset pre-defined demand addition conditions based on the expected demand and the current storage capacity may include:

[0171] Determine whether the current storage capacity is greater than or equal to the expected demand.

[0172] When it is determined that the current storage capacity is greater than or equal to the expected demand, it is determined that the smart air conditioner does not meet the preset pre-determined demand addition conditions.

[0173] When it is determined that the current storage capacity is less than the expected demand, the smart air conditioner is confirmed to meet the preset pre-defined demand addition conditions.

[0174] Further optionally, when it is determined that the smart air conditioner does not meet the pre-required addition conditions, the operation of determining the current storage amount of the formaldehyde removal substance stored in the smart air conditioner is performed again. This embodiment of the invention does not limit this.

[0175] As can be seen, this optional embodiment can determine whether the smart air conditioner needs to add formaldehyde removal material based on two levels: whether the smart air conditioner meets the immediate demand addition conditions and whether the smart air conditioner meets the pre-determined demand addition conditions. It then performs specific formaldehyde removal material addition operations based on the current storage capacity and / or expected demand, which helps improve the comprehensiveness, rationality, and overall nature of the formaldehyde removal material treatment method of the smart air conditioner. This, in turn, helps improve the accuracy and reliability of formaldehyde removal material addition, as well as the timeliness and efficiency of formaldehyde removal material addition. Ultimately, this improves the stability and effectiveness of the formaldehyde removal effect of the smart air conditioner and reduces the occurrence of formaldehyde removal failure due to insufficient formaldehyde removal material.

[0176] In another optional embodiment, the above-mentioned determination of whether the current scene meets the preset basic formaldehyde removal conditions based on formaldehyde detection information may include:

[0177] Based on the formaldehyde concentration data, determine the current formaldehyde concentration in the current scene, and determine whether the current formaldehyde concentration is greater than or equal to the preset formaldehyde concentration threshold.

[0178] When it is determined that the current formaldehyde concentration is less than the formaldehyde concentration threshold, it is determined that the current scenario does not meet the preset basic formaldehyde removal conditions.

[0179] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the current scenario is determined to meet the preset basic formaldehyde removal conditions.

[0180] As can be seen, this optional embodiment can determine the basic formaldehyde removal conditions of the current scenario based on the comparison between the current formaldehyde concentration and the corresponding threshold. This is beneficial to improving the comprehensiveness and rationality of the method for determining the basic formaldehyde removal conditions, thereby improving the accuracy and reliability of the determined basic formaldehyde removal conditions. Consequently, it is beneficial to improve the timeliness, rationality, and accuracy of the execution of related formaldehyde removal operations based on the basic formaldehyde removal conditions.

[0181] In yet another alternative embodiment, the method may further include the following operations:

[0182] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the self-formaldehyde removal effect of the current scene is determined based on the formaldehyde concentration data, formaldehyde distribution information and formaldehyde flow information, without the need for external formaldehyde removal by smart air conditioning.

[0183] Determine whether the built-in formaldehyde removal effect meets the preset formaldehyde removal effect requirements;

[0184] When it is determined that the built-in formaldehyde removal effect meets the formaldehyde removal requirements, it is determined that the current scene does not meet the preset basic formaldehyde removal conditions.

[0185] When it is determined that the built-in formaldehyde removal effect does not meet the formaldehyde removal effect requirements, the step of determining that the current scene meets the preset basic formaldehyde removal conditions is executed.

[0186] Optionally, the formaldehyde removal effect can be determined and demonstrated by formaldehyde removal efficiency, formaldehyde removal speed, formaldehyde removal intensity, formaldehyde removal capacity, etc., and the embodiments of the present invention do not limit it.

[0187] Further optionally, the above determination of whether the built-in formaldehyde removal effect meets the preset formaldehyde removal effect requirements may include:

[0188] Based on the built-in formaldehyde removal effect, determine the built-in formaldehyde removal capacity and judge whether the built-in formaldehyde removal capacity is better than or equal to the preset expected formaldehyde removal capacity.

[0189] When it is determined that the built-in formaldehyde removal capacity is better than or equal to the expected formaldehyde removal capacity, it is determined that the built-in formaldehyde removal effect meets the preset formaldehyde removal effect requirements.

[0190] When it is determined that the built-in formaldehyde removal capacity is not better than or equal to the expected formaldehyde removal capacity, it is determined that the built-in formaldehyde removal effect does not meet the preset formaldehyde removal effect requirements.

[0191] As can be seen, this optional embodiment can further determine the basic formaldehyde removal condition satisfaction result by considering the inherent formaldehyde removal effect of the current scenario and the satisfaction of the formaldehyde removal effect requirements when the current formaldehyde concentration is greater than or equal to the corresponding threshold. This is beneficial to improving the comprehensiveness and integrity of the method for determining the basic formaldehyde removal condition satisfaction result, as well as the diversity and flexibility of the considerations used to determine the basic formaldehyde removal condition satisfaction result, thereby improving the accuracy and reliability of the determined basic formaldehyde removal condition satisfaction result.

[0192] Example 3

[0193] Please see Figure 4 , Figure 4 This is a schematic diagram of the structure of an intelligent air conditioning control device based on formaldehyde detection information disclosed in an embodiment of the present invention. Figure 4 The described apparatus may include a server, wherein the server includes a local server or a cloud server, and the embodiments of the present invention are not limited thereto. Figure 4 As shown, the intelligent air conditioning control device based on formaldehyde detection information may include:

[0194] The information acquisition module 301 is used to acquire formaldehyde detection information for the current scenario based on the formaldehyde detection device equipped on the smart air conditioner when the smart air conditioner is turned on. The formaldehyde detection information includes one or more of the following: formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information, and other formaldehyde information.

[0195] The judgment module 302 is used to determine whether the current scene meets the preset basic formaldehyde removal conditions based on the formaldehyde detection information.

[0196] The first execution module 303 is used to perform corresponding formaldehyde exceeding the standard response operation based on formaldehyde detection information and smart air conditioning when the judgment module 302 determines that the current scenario meets the basic formaldehyde removal conditions.

[0197] It is evident that implementation Figure 4The described intelligent air conditioning control device based on formaldehyde detection information can determine the formaldehyde detection information of the current scene through the formaldehyde detection device in the intelligent air conditioner. When the current scene meets the formaldehyde removal conditions, it performs corresponding formaldehyde excess response operations according to the formaldehyde detection information and the intelligent air conditioner. This is beneficial to improving the comprehensiveness, rationality, and integrity of the intelligent air conditioning control method based on formaldehyde detection information, thereby improving the control accuracy and reliability of the intelligent air conditioner, as well as its control efficiency and convenience. This, in turn, improves the accuracy, timeliness, and efficiency of responding to formaldehyde excess in the current scene, further enhancing the user's living comfort and health in the current scene, and improving the air freshness of the current scene. In addition, the formaldehyde detection device in the intelligent air conditioner of this solution also provides formaldehyde data monitoring function, which is beneficial to improving the functional diversity and intelligence of the intelligent air conditioner, further enhancing the user experience and increasing user stickiness.

[0198] In an optional embodiment, the first execution module 303 performs corresponding formaldehyde exceeding-standard response operations based on formaldehyde detection information and the smart air conditioner, specifically including:

[0199] Identify the target user associated with the smart air conditioner and, based on formaldehyde detection information, send a formaldehyde removal prompt command to the target user. This prompt command instructs the target user to control the smart air conditioner to operate a preset formaldehyde removal mode; and / or,

[0200] Based on formaldehyde detection information, formaldehyde removal control parameters for the smart air conditioner are generated, and the smart air conditioner is controlled to perform corresponding formaldehyde removal operations based on these parameters.

[0201] It is evident that implementation Figure 5 The described device provides intelligent functions such as sending formaldehyde removal prompts to target users and intelligently controlling intelligent air conditioners to perform corresponding formaldehyde removal operations. This enhances the diversity and comprehensiveness of intelligent functions, improves the rationality, timeliness, accuracy, and efficiency of sending formaldehyde removal prompts, and consequently improves the timeliness and rationality of user control over the formaldehyde removal mode of the intelligent air conditioner. Furthermore, it improves the rationality and comprehensiveness of the method for determining the formaldehyde removal control parameters of the intelligent air conditioner, thereby improving the accuracy and reliability of the determined formaldehyde removal control parameters, and ultimately enhancing the timeliness, accuracy, and rationality of the formaldehyde removal operation of the intelligent air conditioner.

[0202] In another optional embodiment, the first execution module 303 generates the formaldehyde removal control parameters for the smart air conditioner based on the formaldehyde detection information in the following specific ways:

[0203] Based on formaldehyde detection information, determine the formaldehyde concentration change in the current scene, and based on the formaldehyde concentration change, determine the first air volume control parameter of the smart air conditioner.

[0204] Based on formaldehyde detection information, determine the formaldehyde trend in the current scene, and based on the formaldehyde trend and the determined spatial layout and air convection information of the current scene, determine the first airflow control parameter of the smart air conditioner.

[0205] Based on formaldehyde detection information, identify one or more formaldehyde-generating objects in the current scene that cause formaldehyde to appear in the scene, and their corresponding formaldehyde generation-related information; based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information, determine the object-oriented control parameters of the smart air conditioner.

[0206] Based on the first air volume control parameter, the first air direction control parameter, and the target control parameter, the formaldehyde removal control parameters of the intelligent air conditioner are generated.

[0207] Among them, the target-specific control parameters include one or more of the second air volume control parameters, the second air direction control parameters, and other media control parameters for the formaldehyde generating target; other media control parameters are used to control the output of the intelligent air conditioner in addition to the air volume media and the air direction media.

[0208] It is evident that implementation Figure 5 The described device can also determine the formaldehyde removal control parameters of the smart air conditioner from multiple levels, such as the formaldehyde concentration change, formaldehyde trend, formaldehyde generating objects and their corresponding formaldehyde generation information in the current scene. This helps to improve the comprehensiveness, integrity and rationality of the method for determining the formaldehyde removal control parameters of the smart air conditioner, and also helps to improve the comprehensiveness and diversity of the parameters considered in determining the formaldehyde removal control parameters. In turn, it helps to improve the accuracy and reliability of the determined formaldehyde removal control parameters, thereby improving the rationality, accuracy and reliability of the operation of the smart air conditioner based on the formaldehyde removal control parameters.

[0209] In yet another optional embodiment, the first execution module 303 determines the object control parameters of the smart air conditioner based on each formaldehyde-generating object and its corresponding formaldehyde generation-related information in the following specific ways:

[0210] Based on each formaldehyde-generating object and its corresponding formaldehyde generation information, at least one first formaldehyde object that meets the preset independent formaldehyde emission conditions and / or at least one second formaldehyde object that meets the preset cooperative formaldehyde emission conditions are identified from all formaldehyde-generating objects.

[0211] Based on the formaldehyde generation information of each formaldehyde-generating object, determine the formaldehyde emission cause and emission point of each first formaldehyde-generating object; based on the formaldehyde emission cause and emission point of each first formaldehyde-generating object, determine the control parameters of the first sub-object of the smart air conditioner; and / or,

[0212] Based on the formaldehyde generation information of each formaldehyde-generating object, determine the specific gas information corresponding to the target gas emitted by each second formaldehyde object that causes the cooperative generation of formaldehyde; based on the specific gas information of each second formaldehyde object, determine the exclusive decontamination medium for decontaminating its corresponding target gas; based on the specific gas information and exclusive decontamination medium of each second formaldehyde object, determine the control parameters of the second sub-object of the smart air conditioner.

[0213] The object control parameters of the intelligent air conditioner are determined based on the control parameters of the first sub-object and / or the control parameters of the second sub-object.

[0214] It is evident that implementation Figure 5 The described device can also identify a first formaldehyde object that meets the conditions for independent formaldehyde emission and / or a second formaldehyde object that meets the conditions for cooperative formaldehyde emission. For the first and second formaldehyde objects, corresponding sub-object control parameter determination methods are matched. Furthermore, based on the first and / or second sub-object control parameters, the object control parameters of the intelligent air conditioner are determined. This improves the comprehensiveness and rationality of the object control parameter determination method, as well as the diversity, flexibility, specificity, and comprehensiveness of the sub-object control parameter determination method. Consequently, it improves the accuracy and reliability of the determined first and second sub-object control parameters, thus enhancing the accuracy and reliability of the determined object control parameters.

[0215] In yet another alternative embodiment, such as Figure 5 As shown, the device may further include:

[0216] The second execution module 304 is used to determine the current storage amount of formaldehyde removal substances stored in the smart air conditioner when the judgment module 302 determines that the current scenario does not meet the basic formaldehyde removal conditions; and to perform corresponding formaldehyde removal substance processing operations on the smart air conditioner according to the current storage amount.

[0217] It is evident that implementation Figure 5The described device can also provide formaldehyde removal treatment function and formaldehyde data real-time display function for intelligent air conditioners, which is conducive to improving the functional diversity and intelligence of intelligent air conditioners, improving the comprehensiveness and integrity of intelligent control mode of air conditioners based on formaldehyde detection information, and improving the comprehensiveness and rationality of formaldehyde removal treatment mode. In turn, it is conducive to improving the timeliness, rationality, accuracy and efficiency of formaldehyde removal treatment of intelligent air conditioners, thereby improving the stability and effectiveness of formaldehyde removal effect of intelligent air conditioners.

[0218] In yet another alternative embodiment, such as Figure 5 As shown, the device may further include:

[0219] The data display module 305 is used to control the display screen associated with the smart air conditioner to perform a corresponding first formaldehyde data display operation based on the formaldehyde detection information collected by the formaldehyde detection device equipped on the smart air conditioner for the current scene after the information acquisition module 301 acquires the formaldehyde detection information for the current scene; and / or, based on the formaldehyde detection information, control the smart application bound to the smart air conditioner to perform a corresponding second formaldehyde data display operation.

[0220] It is evident that implementation Figure 5 The described device can also display formaldehyde data in real time through a display screen associated with a smart air conditioner and / or a smart application associated with a smart air conditioner. This helps to improve the comprehensiveness, rationality, diversity, and flexibility of formaldehyde data display methods, thereby improving the real-time performance, efficiency, and reference value of formaldehyde data display. It also helps to improve the accuracy and rationality of formaldehyde data display, thus improving the timeliness of users' understanding of formaldehyde data and their reference and timeliness in responding to formaldehyde.

[0221] In yet another optional embodiment, the second execution module 304 performs the corresponding formaldehyde removal substance processing operation on the smart air conditioner according to the current storage amount, specifically including:

[0222] Based on the current storage capacity, determine whether the smart air conditioner meets the preset conditions for immediate addition.

[0223] When it is determined that the smart air conditioner meets the immediate needs for adding substances, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the current storage capacity.

[0224] When it is determined that the smart air conditioner does not meet the conditions for immediate addition, the expected amount of formaldehyde removal material required for the next formaldehyde removal scenario is predicted based on the historical formaldehyde removal data of the smart air conditioner.

[0225] Based on the expected demand and current storage capacity, determine whether the smart air conditioner meets the preset conditions for adding demand.

[0226] When it is determined that the smart air conditioner meets the pre-defined requirements for adding formaldehyde removal substances, the corresponding formaldehyde removal substance addition operation is performed on the smart air conditioner according to the expected demand and the current storage capacity.

[0227] It is evident that implementation Figure 5 The described device can also determine whether a smart air conditioner needs to add formaldehyde removal material based on two levels: whether the smart air conditioner meets the immediate demand addition conditions and whether the smart air conditioner meets the pre-determined demand addition conditions. It then performs the specific formaldehyde removal material addition operation based on the current storage capacity and / or expected demand, which helps improve the comprehensiveness, rationality, and integrity of the formaldehyde removal material treatment method of the smart air conditioner. This, in turn, helps improve the accuracy and reliability of formaldehyde removal material addition, as well as the timeliness and efficiency of formaldehyde removal material addition. Ultimately, this improves the stability and effectiveness of the formaldehyde removal effect of the smart air conditioner and reduces the occurrence of formaldehyde removal failure due to insufficient formaldehyde removal material.

[0228] In another optional embodiment, the method by which the determination module 302 determines whether the current scene meets the preset basic formaldehyde removal conditions based on formaldehyde detection information specifically includes:

[0229] Based on the formaldehyde concentration data, determine the current formaldehyde concentration in the current scene, and determine whether the current formaldehyde concentration is greater than or equal to the preset formaldehyde concentration threshold.

[0230] When it is determined that the current formaldehyde concentration is less than the formaldehyde concentration threshold, it is determined that the current scenario does not meet the preset basic formaldehyde removal conditions.

[0231] When it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, the current scenario is determined to meet the preset basic formaldehyde removal conditions.

[0232] It is evident that implementation Figure 5 The described device can also determine the basic formaldehyde removal conditions of the current scene based on the comparison between the current formaldehyde concentration and the corresponding threshold. This helps to improve the comprehensiveness and rationality of the method for determining the basic formaldehyde removal conditions, thereby improving the accuracy and reliability of the determined basic formaldehyde removal conditions. In turn, it helps to improve the timeliness, rationality and accuracy of the execution of related formaldehyde removal operations based on the basic formaldehyde removal conditions.

[0233] In another optional embodiment, the judgment module 302 is further configured to, when it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold, determine the self-formaldehyde removal effect of the current scenario without external formaldehyde removal by a smart air conditioner, based on formaldehyde concentration data, formaldehyde distribution information, and formaldehyde flow information; determine whether the self-formaldehyde removal effect meets the preset formaldehyde removal effect requirements; when it is determined that the self-formaldehyde removal effect meets the formaldehyde removal effect requirements, determine that the current scenario does not meet the preset basic formaldehyde removal conditions; when it is determined that the self-formaldehyde removal effect does not meet the formaldehyde removal effect requirements, execute the step of determining that the current scenario meets the preset basic formaldehyde removal conditions.

[0234] It is evident that implementation Figure 5 The described device can further determine the basic formaldehyde removal conditions by assessing the satisfaction of the inherent formaldehyde removal effect and the requirements of the formaldehyde removal effect in the current scenario when the current formaldehyde concentration is greater than or equal to the corresponding threshold. This is beneficial to improving the comprehensiveness and integrity of the method for determining the basic formaldehyde removal conditions, as well as the diversity and flexibility of the considerations used to determine the basic formaldehyde removal conditions, thereby improving the accuracy and reliability of the determined basic formaldehyde removal conditions.

[0235] Example 4

[0236] Please see Figure 6 , Figure 6 This is a schematic diagram of another intelligent air conditioning control device based on formaldehyde detection information disclosed in an embodiment of the present invention. Figure 6 The described apparatus may include a server, wherein the server includes a local server or a cloud server, and the embodiments of the present invention are not limited thereto. Figure 6 As shown, the device may include:

[0237] Memory 401 storing executable program code;

[0238] Processor 402 coupled to memory 401;

[0239] Furthermore, it may also include an input interface 403 coupled to the processor 402 and an output interface 404;

[0240] The processor 402 calls the executable program code stored in the memory 401 to execute the steps in the intelligent air conditioning control method based on formaldehyde detection information described in Embodiment 1 or Embodiment 2.

[0241] Example 5

[0242] This invention discloses a computer storage medium that stores a computer program for electronic data exchange, wherein the computer program causes a computer to execute the steps in the intelligent air conditioning control method based on formaldehyde detection information described in Embodiment 1 or Embodiment 2.

[0243] Example 6

[0244] This invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to perform the steps in the intelligent air conditioning control method based on formaldehyde detection information described in Embodiment 1 or Embodiment 2.

[0245] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0246] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each implementation method can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, including read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-erasable programmable read-only memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc storage, disk storage, magnetic tape storage, or any other computer-readable medium that can be used to carry or store data.

[0247] Finally, it should be noted that the intelligent air conditioning control method and device based on formaldehyde detection information disclosed in the embodiments of the present invention are merely preferred embodiments of the present invention and are only used to illustrate the technical solutions of the present invention, not to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A method for intelligent control of an air conditioner based on formaldehyde detection information, characterized in that, The method comprises: When the intelligent air conditioner is in a starting state, acquiring formaldehyde detection information for a current scene collected by a formaldehyde detection device equipped on the intelligent air conditioner, the formaldehyde detection information comprising one or more of formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information and other formaldehyde information; According to the formaldehyde detection information, determining whether the current scene meets a preset basic formaldehyde removal condition; When it is determined that the current scene meets the basic formaldehyde removal condition, performing a corresponding formaldehyde over-standard response operation according to the formaldehyde detection information and the intelligent air conditioner.

2. The air conditioner intelligent control method based on formaldehyde detection information according to claim 1, characterized in that, The performing of the corresponding formaldehyde over-standard response operation according to the formaldehyde detection information and the intelligent air conditioner comprises: determining a target user bound to the intelligent air conditioner, and sending a formaldehyde removal prompt instruction to the target user according to the formaldehyde detection information, the formaldehyde removal prompt instruction being used to prompt the target user to control the intelligent air conditioner to run a preset formaldehyde removal mode; and / or generating formaldehyde removal control parameters of the intelligent air conditioner according to the formaldehyde detection information, and controlling the intelligent air conditioner to perform a corresponding formaldehyde removal operation according to the formaldehyde removal control parameters.

3. The method of claim 2, wherein the method further comprises: The generating of the formaldehyde removal control parameters of the intelligent air conditioner according to the formaldehyde detection information comprises: determining a formaldehyde concentration change condition of the current scene according to the formaldehyde detection information, and determining a first air volume control parameter of the intelligent air conditioner according to the formaldehyde concentration change condition; determining a formaldehyde movement condition of the current scene according to the formaldehyde detection information, and determining a first air direction control parameter of the intelligent air conditioner according to the formaldehyde movement condition and determined space layout and air convection information of the current scene; determining one or more formaldehyde generating objects in the current scene that cause the scene to generate formaldehyde and corresponding formaldehyde generation related information of the formaldehyde generating objects according to the formaldehyde detection information; determining object control parameters of the intelligent air conditioner according to each of the formaldehyde generating objects and the corresponding formaldehyde generation related information of the formaldehyde generating objects; generating formaldehyde removal control parameters of the intelligent air conditioner according to the first air volume control parameter, the first air direction control parameter and the object control parameters; The object control parameters comprise one or more of a second air volume control parameter, a second air direction control parameter and other medium control parameters for the formaldehyde generating objects; the other medium control parameters are used to control the intelligent air conditioner to output other media in addition to air volume media and air direction media.

4. The method of claim 3, wherein the formaldehyde detection information is obtained by a formaldehyde sensor. The determining of the object control parameters of the intelligent air conditioner according to each of the formaldehyde generating objects and the corresponding formaldehyde generation related information of the formaldehyde generating objects comprises: determining at least one first formaldehyde object meeting a preset independent formaldehyde emission condition and / or at least one second formaldehyde object meeting a preset cooperative formaldehyde emission condition from all the formaldehyde generating objects according to each of the formaldehyde generating objects and the corresponding formaldehyde generation related information of the formaldehyde generating objects; determine a first sub-object control parameter of the intelligent air conditioner according to the formaldehyde emission reason and the formaldehyde emission point of each first formaldehyde object; and / or, determine specific gas information corresponding to a target gas that cooperates with the second formaldehyde object to generate formaldehyde according to the formaldehyde generation related information of each formaldehyde generation object; determine a special resolving medium for resolving the corresponding target gas of each second formaldehyde object according to the specific gas information of each second formaldehyde object; and determine a second sub-object control parameter of the intelligent air conditioner according to the specific gas information and the special resolving medium of each second formaldehyde object; determine an object control parameter of the intelligent air conditioner according to the first sub-object control parameter and / or the second sub-object control parameter.

5. The formaldehyde detection information-based intelligent control method of an air conditioner according to claim 1, wherein The method further comprises: when it is determined that the current scene does not satisfy the basic formaldehyde removal condition, determining a current storage amount of a formaldehyde removal substance stored in the intelligent air conditioner; and performing a corresponding formaldehyde removal substance processing operation on the intelligent air conditioner according to the current storage amount; and, after obtaining the formaldehyde detection information of the current scene collected by the formaldehyde detection device arranged on the intelligent air conditioner, the method further comprises: controlling a display screen associated with the intelligent air conditioner to perform a corresponding first formaldehyde data display operation according to the formaldehyde detection information; and / or, controlling a smart application bound to the intelligent air conditioner to perform a corresponding second formaldehyde data display operation according to the formaldehyde detection information.

6. The formaldehyde detection information-based intelligent control method of an air conditioner according to claim 5, wherein The method further comprises: determining whether the intelligent air conditioner satisfies a preset immediate demand addition condition according to the current storage amount; when it is determined that the intelligent air conditioner satisfies the immediate demand addition condition, performing a corresponding formaldehyde removal substance addition operation on the intelligent air conditioner according to the current storage amount; when it is determined that the intelligent air conditioner does not satisfy the immediate demand addition condition, predicting an expected demand amount of the formaldehyde removal substance for a next formaldehyde removal scene of the intelligent air conditioner according to the determined historical formaldehyde removal data of the intelligent air conditioner; determining whether the intelligent air conditioner satisfies a preset pre-demand addition condition according to the expected demand amount and the current storage amount; when it is determined that the intelligent air conditioner satisfies the pre-demand addition condition, performing a corresponding formaldehyde removal substance addition operation on the intelligent air conditioner according to the expected demand amount and the current storage amount.

7. The formaldehyde detection information based intelligent control method of an air conditioner according to any one of claims 1-6, characterized in that, The method further comprises: determining a current formaldehyde concentration of the current scene according to the formaldehyde concentration data, and determining whether the current formaldehyde concentration is greater than or equal to a preset formaldehyde concentration threshold value; when it is determined that the current formaldehyde concentration is less than the formaldehyde concentration threshold value, determining that the current scene does not satisfy the preset basic formaldehyde removal condition; determining that the current scene meets a preset basic formaldehyde removal condition when it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold value; and the method further comprises: determining a self formaldehyde removal effect of the current scene without external force formaldehyde removal by the intelligent air conditioner according to the formaldehyde concentration data, the formaldehyde distribution information and the formaldehyde flow information when it is determined that the current formaldehyde concentration is greater than or equal to the formaldehyde concentration threshold value; determining whether the self formaldehyde removal effect meets a preset formaldehyde removal effect requirement; determining that the current scene does not meet the preset basic formaldehyde removal condition when it is determined that the self formaldehyde removal effect meets the formaldehyde removal effect requirement; determining that the current scene meets the preset basic formaldehyde removal condition when it is determined that the self formaldehyde removal effect does not meet the formaldehyde removal effect requirement.

8. An air conditioner intelligent control device based on formaldehyde detection information, characterized in that, The device comprises: an information acquisition module configured to acquire formaldehyde detection information for a current scene based on a formaldehyde detection device equipped on an intelligent air conditioner when the intelligent air conditioner is in a powered-on state, the formaldehyde detection information including one or more of formaldehyde concentration data, formaldehyde distribution information, formaldehyde flow information and other formaldehyde information; a determination module configured to determine whether the current scene meets a preset basic formaldehyde removal condition according to the formaldehyde detection information; a first execution module configured to execute a corresponding formaldehyde over-standard response operation according to the formaldehyde detection information and the intelligent air conditioner when the determination module determines that the current scene meets the basic formaldehyde removal condition.

9. An air conditioner intelligent control device based on formaldehyde detection information, characterized in that, The device comprises: a memory storing executable program codes; a processor coupled with the memory; the processor invokes the executable program codes stored in the memory to execute the air conditioner intelligent control method based on formaldehyde detection information according to any one of claims 1-7.

10. A computer storage medium, characterized in that The computer storage medium stores computer instructions, which are invoked to execute the air conditioner intelligent control method based on formaldehyde detection information according to any one of claims 1-7.