An air disinfection and purification machine adaptive control method, system and medium
By using adaptive control methods and systems, the parameters of the air disinfection and purification machine are adjusted in real time based on air information, solving the problems of low efficiency and inconvenient management of existing air disinfection and purification machines, and achieving efficient and safe air purification and management.
Patent Information
- Application Number
- CN202310802772.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-03
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2043-07-03
AI Technical Summary
Existing air disinfection and purification machines have inefficient control systems that cannot adjust parameters according to room conditions, resulting in high energy consumption, rapid filter failure, and a lack of group control and remote monitoring functions, making it impossible to achieve fresh air control.
By acquiring air information and inputting preset models to generate disinfection and purification parameters, the operating parameters of the air disinfection and purification machine are adjusted in real time, including zone control, power adjustment and temperature management, to achieve adaptive control.
It improves the control precision and efficiency of air disinfection and purification machines, extends their service life, reduces energy consumption, enables centralized management and remote monitoring, and enhances fresh air control capabilities.
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Figure CN116608558B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of air disinfection and purification, in particular, to an adaptive control method and system for an air disinfection and purification machine and a medium. BACKGROUND
[0002] There are various types of air disinfection and purification machines in China, which have been applied in millions of households, including hospitals and public places. The air disinfection and purification machines are used to improve indoor air quality, disinfect indoor air, and reduce the infection rate. However, the control systems of the air disinfection and purification machines generally have the following defects: low use efficiency, the machine is turned on regardless of whether there is a person in the room and whether the air quality meets the standard, which affects the service life of the machine, the rapid failure of the filter and the purification unit, and the increase of energy consumption; when installed on a large scale, there is no group control function, which is not convenient for centralized and unified management; there is no remote monitoring function, which cannot check the room air quality and the machine operation state at any time; there is no fresh air control function, which cannot control the fresh air volume according to the room air quality. In view of the above problems, there is an urgent need for effective technical solutions. SUMMARY
[0003] The purpose of the embodiments of the present application is to provide an adaptive control method and system for an air disinfection and purification machine and a medium, which can analyze air information to determine the disinfection and purification effect, and control the disinfection and purification parameters in real time according to the disinfection and purification result.
[0004] The embodiments of the present application also provide an adaptive control method for an air disinfection and purification machine, which comprises:
[0005] obtaining air information, inputting the air information into a preset air disinfection and purification model, and generating disinfection and purification parameters;
[0006] generating preset air disinfection and purification machine operation parameter information according to the disinfection and purification parameters;
[0007] obtaining air disinfection and purification machine operation parameter information, comparing the air disinfection and purification machine operation parameter information with the preset air purification machine operation parameter information, and obtaining a parameter deviation rate;
[0008] determining whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold;
[0009] if greater than or equal to, generating parameter correction information, and correcting the air disinfection and purification operation parameter information according to the parameter correction information;
[0010] if less than, controlling the air disinfection and purification machine to operate according to the current operation parameters.
[0011] Optionally, in the air disinfection and purification machine adaptive control method, the air information is obtained, the air information is input into a preset air disinfection and purification model, and disinfection and purification parameters are generated. Specifically,
[0012] The air information in the predetermined area of the air disinfection and purification machine is obtained, the predetermined area is partitioned, and sub-areas in different directions are obtained;
[0013] The air information of the sub-areas in different directions is obtained, and the air information of the sub-areas in different directions is input into a preset air purification model to generate a plurality of disinfection and purification parameters corresponding to the sub-areas in different directions;
[0014] A plurality of different control parameters are generated according to the disinfection and purification parameters of the sub-areas in different directions;
[0015] The disinfection parameters of different surfaces of the air disinfection and purification machine are controlled according to different control parameters;
[0016] The different surfaces of the air disinfection and purification machine are independently disinfected and controlled through the disinfection parameters of the different surfaces of the air disinfection and purification machine.
[0017] Optionally, in the air disinfection and purification machine adaptive control method, the air information in the predetermined area of the air disinfection and purification machine is obtained, the predetermined area is partitioned, and sub-areas in different directions are obtained, including:
[0018] The sub-areas in the same direction of the air disinfection and purification machine are spatially divided according to the distance from the air disinfection and purification machine, and are divided into a plurality of secondary sub-areas;
[0019] The distance between the center of the secondary sub-area and the center point of the air disinfection and purification machine is obtained to generate distance information;
[0020] The air disinfection and purification information of the plurality of secondary sub-areas is calculated according to the distance from near to far;
[0021] The air disinfection and purification information of the adjacent two secondary sub-areas is calculated by difference to obtain a disinfection and purification difference value;
[0022] It is judged whether the disinfection and purification difference value is greater than or equal to a preset difference value;
[0023] If greater than or equal to, the operating power of the air disinfection and purification machine is reduced;
[0024] If less than, the operating power of the air disinfection and purification machine is increased.
[0025] Optionally, in the adaptive control method of the air disinfection and purification machine, after the sub-regions in the same direction of the air disinfection and purification machine are divided into a plurality of secondary sub-regions according to the distance from the air disinfection and purification machine, the method further comprises:
[0026] obtaining air quality information of the secondary sub-regions, comparing the air quality information of the secondary sub-regions with preset air quality information, and obtaining a quality deviation rate;
[0027] determining whether the quality deviation rate is greater than a first threshold value and less than a second threshold value;
[0028] if the quality deviation rate is greater than the first threshold value and less than the second threshold value, generating first feedback information, and adjusting the sterilization blowing amount of the air disinfection and purification machine according to the first feedback information;
[0029] if the quality deviation rate is greater than the second threshold value, generating second feedback information, and adjusting the sterilization blowing amount of the air disinfection and purification machine according to the second feedback information.
[0030] Optionally, in the adaptive control method of the air disinfection and purification machine, after the sub-regions in the same direction of the air disinfection and purification machine are divided into a plurality of secondary sub-regions according to the distance from the air disinfection and purification machine, the method further comprises:
[0031] obtaining space temperature information, and generating air expansion information according to the space temperature information;
[0032] generating secondary sub-region air disinfection and purification superposition information according to the air expansion information;
[0033] generating air flow change information according to the air disinfection and purification superposition information;
[0034] performing difference calculation on the air flow change information and preset air flow information to obtain air flow difference information;
[0035] determining whether the air flow difference information is greater than a preset difference threshold value;
[0036] if the air flow difference information is greater than the preset difference threshold value, generating temperature adjustment information, and performing temperature control on the corresponding secondary sub-region according to the temperature adjustment information;
[0037] if the air flow difference information is less than the preset difference threshold value, storing the air flow change information.
[0038] Optionally, in the adaptive control method of the air disinfection and purification machine, after the sub-regions in the same direction of the air disinfection and purification machine are divided into a plurality of secondary sub-regions according to the distance from the air disinfection and purification machine, the method further comprises:
[0039] Obtaining parameter correction information, and correcting the operation power of the air disinfection purifier in real time according to the parameter correction information;
[0040] Obtaining air disinfection purifier operation temperature information,
[0041] Comparing the air disinfection purifier operation temperature information with a preset temperature threshold to obtain a temperature deviation rate;
[0042] Determining whether the temperature deviation rate is greater than a preset deviation rate threshold;
[0043] If yes, generating cooling information, and cooling the air disinfection purifier according to the cooling information;
[0044] If no, adjusting the power of the air disinfection purifier according to the current parameter correction information.
[0045] In a second aspect, an air disinfection purifier adaptive control system is provided, which comprises a memory and a processor, the memory comprising a program of an air disinfection purifier adaptive control method, and the program of the air disinfection purifier adaptive control method is executed by the processor to implement the following steps:
[0046] Obtaining air information, inputting the air information into a preset air disinfection purifier model, and generating disinfection and purification parameters;
[0047] Generating preset air disinfection purifier operation parameter information according to the disinfection and purification parameters;
[0048] Obtaining the air disinfection purifier operation parameter information, comparing the air disinfection purifier operation parameter information with preset air purifier operation parameter information, and obtaining a parameter deviation rate;
[0049] Determining whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold;
[0050] If yes, generating parameter correction information, and correcting the air disinfection purifier operation parameter information according to the parameter correction information;
[0051] If no, controlling the air disinfection purifier to operate according to the current operation parameter.
[0052] Optionally, in the air disinfection purifier adaptive control system, the air information is obtained, the air information is input into a preset air disinfection purifier model, and disinfection and purification parameters are generated, specifically as follows:
[0053] Obtaining air information in a predetermined area of the air disinfection purifier, partitioning the predetermined area, and obtaining sub-areas in different directions;
[0054] The air information of the sub-regions in different directions is obtained, the air information of the sub-regions in different directions is input into a preset air purification model, and a plurality of disinfection and purification parameters corresponding to the sub-regions in different directions are generated.
[0055] The disinfection and purification parameters of the sub-regions in different directions are used to generate a plurality of different control parameters.
[0056] The different control parameters are used to control disinfection parameters of different surfaces of the air disinfection and purification machine.
[0057] The different surfaces of the air disinfection and purification machine are independently disinfected and controlled through the disinfection parameters of the different surfaces of the air disinfection and purification machine.
[0058] Optionally, in the air disinfection and purification machine adaptive control system, the air information in a predetermined region of the air disinfection and purification machine is obtained, the predetermined region is partitioned to obtain sub-regions in different directions, and the method comprises the following steps.
[0059] The sub-regions in the same direction of the air disinfection and purification machine are spatially divided according to distances from the air disinfection and purification machine into a plurality of secondary sub-regions.
[0060] The distances between the centers of the secondary sub-regions and the center point of the air disinfection and purification machine are obtained to generate distance information.
[0061] The air disinfection and purification information of the plurality of secondary sub-regions is calculated according to the distances from near to far.
[0062] The air disinfection and purification information of the two adjacent secondary sub-regions is calculated by difference to obtain a disinfection and purification difference.
[0063] It is judged whether the disinfection and purification difference is greater than or equal to a preset difference.
[0064] If greater than or equal to, the operating power of the air disinfection and purification machine is reduced.
[0065] If less than, the operating power of the air disinfection and purification machine is increased.
[0066] In a third aspect, the embodiments of the present application also provide a computer readable storage medium, wherein the computer readable storage medium comprises an air disinfection and purification machine adaptive control method program, and the air disinfection and purification machine adaptive control method program is executed by a processor to implement the steps of the air disinfection and purification machine adaptive control method according to any one of the above embodiments.
[0067] From the above, the air disinfection and purification machine adaptive control method, system and medium provided by the embodiment of the application, by acquiring air information, inputting the air information into a preset air disinfection and purification model, generating disinfection and purification parameters; generating preset air disinfection and purification machine operation parameter information according to the disinfection and purification parameters; acquiring the air disinfection and purification machine operation parameter information, comparing the air disinfection and purification machine operation parameter information with the preset air purification machine operation parameter information, obtaining a parameter deviation rate; determining whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold; if yes, generating parameter correction information, and correcting the air disinfection and purification operation parameter information according to the parameter correction information; if no, controlling the air disinfection and purification machine to operate according to the current operation parameter; judging the disinfection and purification effect by analyzing the air information, and controlling the disinfection and purification parameters in real time according to the disinfection and purification result.
[0068] Other features and advantages of the application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the application. The purposes and other advantages of the application will be realized and attained by the structures particularly pointed out in the written description and claims hereof. BRIEF DESCRIPTION OF DRAWINGS
[0069] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments of the application. It should be understood that the following drawings only show some embodiments of the application, and therefore should not be regarded as a limitation to the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.
[0070] Figure 1 The flow chart of the air disinfection and purification machine adaptive control method provided by the embodiment of the application;
[0071] Figure 2 The different face independent disinfection control flow chart of the air disinfection and purification machine adaptive control method provided by the embodiment of the application;
[0072] Figure 3 The disinfection and air cooling control flow chart of the air disinfection and purification machine adaptive control method provided by the embodiment of the application;
[0073] Figure 4 The structure schematic diagram of the air disinfection and purification machine adaptive control system provided by the embodiment of the application. DETAILED DESCRIPTION
[0074] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0075] It should be noted that similar reference numerals and letters represent similar items in the following drawings, and therefore, once an item is defined in one drawing, it need not be further defined and explained in subsequent drawings. Meanwhile, in the description of the present application, the terms "first", "second", and the like are only used to distinguish description, and cannot be understood as indicating or implying relative importance.
[0076] Please refer to Figure 1 , Figure 1 is a flowchart of an air disinfection and purification machine adaptive control method in some embodiments of the present application. The air disinfection and purification machine adaptive control method is used in a terminal device. The air disinfection and purification machine adaptive control method comprises the following steps:
[0077] S101, air information is acquired, and the air information is input into a preset air disinfection and purification model to generate disinfection and purification parameters;
[0078] S102, preset air disinfection and purification machine operation parameter information is generated according to the disinfection and purification parameters;
[0079] S103, air disinfection and purification machine operation parameter information is acquired, and the air disinfection and purification machine operation parameter information is compared with the preset air purification machine operation parameter information to obtain a parameter deviation rate;
[0080] S104, it is judged whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold value;
[0081] S105, if greater than or equal to, parameter correction information is generated, and the air disinfection and purification operation parameter information is corrected according to the parameter correction information; if less than, the air disinfection and purification machine is controlled to operate according to the current operation parameter.
[0082] It should be noted that by analyzing the difference between the air disinfection and purification machine operation parameter information and the preset operation parameter, the real-time adjustment of the air disinfection and purification machine operation parameter is realized, and the control precision is improved.
[0083] Please refer toFigure 2 , Figure 2 is a different face independent disinfection control flowchart of an air disinfection purifier of an adaptive control method of the air disinfection purifier in some embodiments of the present application. According to the embodiments of the present application, air information is obtained, the air information is input into a preset air disinfection purification model, disinfection purification parameters are generated, and specifically:
[0084] S201, air information in a predetermined area of an air disinfection purifier is obtained, the predetermined area is partitioned, and sub-areas in different directions are obtained;
[0085] S202, air information of the sub-areas in different directions is obtained, the air information of the sub-areas in different directions is input into a preset air purification model, and multiple disinfection purification parameters corresponding to the sub-areas in different directions are generated;
[0086] S203, multiple different control parameters are generated according to the disinfection purification parameters of the sub-areas in different directions;
[0087] S204, different control parameters are used to control disinfection parameters of different faces of the air disinfection purifier;
[0088] S205, different faces of the air disinfection purifier are independently controlled by the disinfection parameters of the different faces of the air disinfection purifier.
[0089] It should be noted that by analyzing the air information of the sub-areas in different directions of the air disinfection purifier, the sub-areas in different directions are controlled, and the control flexibility is high.
[0090] According to the embodiments of the present application, air information in a predetermined area of an air disinfection purifier is obtained, the predetermined area is partitioned, and sub-areas in different directions are obtained, including:
[0091] The sub-areas in the same direction of the air disinfection purifier are spatially divided according to the distance from the air disinfection purifier into multiple secondary sub-areas;
[0092] The distance between the center of the secondary sub-area and the center point of the air disinfection purifier is obtained to generate distance information;
[0093] The air disinfection purification information of the multiple secondary sub-areas is calculated according to the distance from near to far;
[0094] The air disinfection purification information of the adjacent two secondary sub-areas is calculated by difference to obtain a disinfection purification difference;
[0095] It is judged whether the disinfection purification difference is greater than or equal to a preset difference value;
[0096] If greater than or equal to, the running power of the air disinfection purifier is reduced;
[0097] If less, increase the running power of the air disinfection purifier.
[0098] It should be noted that by analyzing the air disinfection purification information of the secondary sub-regions at different distances from the air disinfection purifier, the difference calculation of the secondary sub-regions at different distances is performed, so that the running power of the air disinfection purifier is flexibly controlled.
[0099] Please refer to Figure 3 , Figure 3 is a disinfection air cooling control flowchart of an air disinfection purifier adaptive control method in some embodiments of the present application. According to the embodiment of the present application, the sub-regions in the same direction of the air disinfection purifier are spatially divided into multiple secondary sub-regions according to the distance from the air disinfection purifier, and further comprising:
[0100] S301, obtaining air quality information of the secondary sub-regions, comparing the air quality information of the secondary sub-regions with preset air quality information, and obtaining a quality deviation rate;
[0101] S302, judging whether the quality deviation rate is greater than a first threshold and less than a second threshold;
[0102] S303, if greater than the first threshold and less than the second threshold, generating first feedback information, and adjusting the disinfection air blowing amount of the air disinfection purifier according to the first feedback information;
[0103] S304, if greater than the second threshold, generating second feedback information, and performing secondary adjustment on the disinfection air blowing amount of the air disinfection purifier according to the second feedback information.
[0104] It should be noted that the air quality of different secondary sub-regions is adjusted by different disinfection air blowing amounts, the adjustment flexibility is higher, and the separate control of different secondary sub-regions can be realized.
[0105] According to the embodiment of the present application, the sub-regions in the same direction of the air disinfection purifier are spatially divided into multiple secondary sub-regions according to the distance from the air disinfection purifier, and further comprising:
[0106] Obtaining space temperature information, and generating air expansion information according to the space temperature information;
[0107] Generating secondary sub-region air disinfection purification superposition information according to the air expansion information;
[0108] Generating air flow change information according to the air disinfection purification superposition information;
[0109] Calculating the difference between the air flow change information and the preset air flow information to obtain air flow difference information;
[0110] determining whether the air flow difference information is greater than a preset difference threshold value;
[0111] If greater, generating temperature adjustment information, and performing temperature control on the corresponding secondary sub-region according to the temperature adjustment information.
[0112] If less, storing the air flow change information.
[0113] It should be noted that different temperatures can realize the expansion of air in the region, and the air expansion process will cause the gas flow to accelerate, so by analyzing the space temperature to adjust the temperature of the secondary sub-region in real time, the gas flow rate is accurately adjusted, and the air in the secondary sub-region is conveniently sterilized and purified.
[0114] According to the embodiment of the present application, if greater than or equal to, parameter correction information is generated, and the air sterilization and purification operation parameter information is corrected according to the parameter correction information, and further comprising:
[0115] Obtaining parameter correction information, and correcting the operation power of the air sterilization and purification machine in real time according to the parameter correction information.
[0116] Obtaining air sterilization and purification machine operation temperature information,
[0117] Comparing the air sterilization and purification machine operation temperature information with a preset temperature threshold value to obtain a temperature deviation rate.
[0118] Determining whether the temperature deviation rate is greater than a preset deviation rate threshold value.
[0119] If greater, generating cooling information, and cooling the air sterilization and purification machine according to the cooling information.
[0120] If less, adjusting the power of the air sterilization and purification machine according to the current parameter correction information.
[0121] It should be noted that during the air sterilization and purification process, the air sterilization and purification machine operation parameter adjustment process will cause the air sterilization and purification machine to generate a certain amount of heat, which will cause the operation of the air sterilization and purification machine to have a certain risk. By detecting the temperature of the air sterilization and purification in real time, the air sterilization and purification machine is cooled in real time to ensure the operation safety of the air sterilization and purification machine.
[0122] According to the embodiment of the present application, further comprising:
[0123] Obtaining temperature information of different sides of the air sterilization and purification machine, performing temperature difference judgment on the temperature information of different sides to obtain a temperature change rate in the same time period.
[0124] Determining whether the temperature change rate is greater than a preset temperature change rate threshold value.
[0125] If greater, it is determined that the temperature change is large, and synchronous cooling by air cooling and water cooling is performed;
[0126] If smaller, it is determined that the temperature change is small, and temperature control by one of air cooling or water cooling is performed.
[0127] It should be noted that the temperature changes of different sides are controlled by different cooling methods to ensure that the side temperature of the air disinfection and purification machine is always within a safe range, thereby improving the service life of the air disinfection and purification machine.
[0128] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of an air disinfection and purification machine adaptive control system in some embodiments of the present application. In a second aspect, the embodiments of the present application provide an air disinfection and purification machine adaptive control system 4, which comprises a memory 41 and a processor 42, the memory 41 comprising a program of an air disinfection and purification machine adaptive control method, the program of the air disinfection and purification machine adaptive control method being executed by the processor to implement the following steps:
[0129] Obtaining air information, inputting the air information into a preset air disinfection and purification model, and generating disinfection and purification parameters;
[0130] Generating preset air disinfection and purification machine operation parameter information according to the disinfection and purification parameters;
[0131] Obtaining air disinfection and purification machine operation parameter information, comparing the air disinfection and purification machine operation parameter information with preset air purification machine operation parameter information, and obtaining a parameter deviation rate;
[0132] Determining whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold;
[0133] If greater than or equal to, generating parameter correction information, and correcting the air disinfection and purification operation parameter information according to the parameter correction information;
[0134] If smaller, controlling the air disinfection and purification machine to operate according to the current operation parameters.
[0135] It should be noted that by analyzing the difference between the air disinfection and purification machine operation parameter information and the preset operation parameters, the real-time adjustment of the air disinfection and purification machine operation parameters is realized, and the control accuracy is improved.
[0136] According to the embodiments of the present application, air information is obtained, the air information is input into a preset air disinfection and purification model, and disinfection and purification parameters are generated, specifically:
[0137] Obtaining air information in a predetermined area of an air disinfection and purification machine, partitioning the predetermined area to obtain sub-areas in different directions;
[0138] Obtaining air information of sub-regions in different directions, inputting the air information of the sub-regions in different directions into a preset air purification model, and generating a plurality of disinfection and purification parameters corresponding to the sub-regions in different directions;
[0139] Generating a plurality of different control parameters according to the disinfection and purification parameters of the sub-regions in different directions;
[0140] Controlling disinfection parameters of different surfaces of the air disinfection and purification machine according to the different control parameters;
[0141] Independently disinfecting and controlling different surfaces of the air disinfection and purification machine through the disinfection parameters of the different surfaces.
[0142] It should be noted that the air information of the sub-regions in different directions of the air disinfection and purification machine is analyzed, and the partition control in different directions is realized, so that the control flexibility is higher.
[0143] According to the embodiment of the present application, the air information in the predetermined region of the air disinfection and purification machine is obtained, the predetermined region is partitioned, and different direction sub-regions are obtained, including:
[0144] The sub-regions in the same direction of the air disinfection and purification machine are spatially divided according to the distance from the air disinfection and purification machine, and are divided into a plurality of secondary sub-regions;
[0145] The distance between the center of the secondary sub-region and the center point of the air disinfection and purification machine is obtained, and distance information is generated;
[0146] The air disinfection and purification information of the plurality of secondary sub-regions is calculated according to the distance from near to far;
[0147] The air disinfection and purification information of the two adjacent secondary sub-regions is calculated by difference, and a disinfection and purification difference value is obtained;
[0148] It is judged whether the disinfection and purification difference value is greater than or equal to a preset difference value;
[0149] If greater than or equal to, the operating power of the air disinfection and purification machine is reduced;
[0150] If less than, the operating power of the air disinfection and purification machine is increased.
[0151] It should be noted that the air disinfection and purification information of the secondary sub-regions at different distances from the air disinfection and purification machine is analyzed, and the difference calculation of the secondary sub-regions at different distances is performed, so that the operating power of the air disinfection and purification machine is flexibly controlled.
[0152] According to the embodiment of the present application, after the sub-regions in the same direction of the air disinfection and purification machine are spatially divided according to the distance from the air disinfection and purification machine, and are divided into a plurality of secondary sub-regions, the method further comprises:
[0153] obtain the air quality information of the secondary sub-region, compare the air quality information of the secondary sub-region with preset air quality information, and obtain a quality deviation rate;
[0154] determine whether the quality deviation rate is greater than a first threshold value and less than a second threshold value;
[0155] If the quality deviation rate is greater than the first threshold value and less than the second threshold value, first feedback information is generated, and the sterilization blowing amount of the air sterilization purifier is adjusted according to the first feedback information.
[0156] If the quality deviation rate is greater than the second threshold value, second feedback information is generated, and the sterilization blowing amount of the air sterilization purifier is adjusted according to the second feedback information.
[0157] It should be noted that the air quality of different secondary sub-regions of the branch office is adjusted by different sterilization blowing amounts, the adjustment flexibility is higher, and the separate control of different secondary sub-regions can be realized.
[0158] According to the embodiment of the application, the sub-regions in the same direction of the air sterilization purifier are divided into a plurality of secondary sub-regions according to the distance from the air sterilization purifier, and further comprising:
[0159] obtain space temperature information, and generate air expansion information according to the space temperature information;
[0160] generate secondary sub-region air sterilization purifier superposition information according to the air expansion information;
[0161] generate air flow change information according to the air sterilization purifier superposition information;
[0162] differentially calculate the air flow change information and preset air flow information to obtain air flow difference information;
[0163] determine whether the air flow difference information is greater than a preset difference threshold value;
[0164] If it is greater, temperature adjustment information is generated, and the corresponding secondary sub-region is controlled in temperature according to the temperature adjustment information;
[0165] If it is less, the air flow change information is stored.
[0166] It should be noted that different temperatures can realize the expansion of air in the region, and the air expansion process will cause the gas flow to accelerate, so by analyzing the space temperature to adjust the temperature of the secondary sub-region in real time, the gas flow rate is accurately adjusted, and the air in the secondary sub-region is sterilized and purified.
[0167] According to the embodiment of the present application, if greater than or equal to, parameter correction information is generated, and after the air disinfection and purification operation parameter information is corrected according to the parameter correction information, the method further comprises:
[0168] The parameter correction information is acquired, and the operation power of the air disinfection and purification machine is corrected in real time according to the parameter correction information.
[0169] The air disinfection and purification machine operation temperature information is acquired,
[0170] The air disinfection and purification machine operation temperature information is compared with the preset temperature threshold to obtain a temperature deviation rate.
[0171] It is judged whether the temperature deviation rate is greater than the preset deviation rate threshold.
[0172] If greater than, cooling information is generated, and the air disinfection and purification machine is cooled according to the cooling information.
[0173] If less than, the power of the air disinfection and purification machine is adjusted according to the current parameter correction information.
[0174] It should be noted that during the air disinfection and purification process, the air disinfection and purification machine operation parameter adjustment process will cause the air disinfection and purification machine to generate a certain amount of heat, which will cause the operation of the air disinfection and purification machine to have a certain risk. By detecting the temperature of the air disinfection and purification in real time, the air disinfection and purification machine is cooled in real time to ensure the safety of the operation of the air disinfection and purification machine.
[0175] According to the embodiment of the present application, the method further comprises:
[0176] The temperature information of different sides of the air disinfection and purification machine is acquired, the temperature information of different sides is compared to obtain the temperature change rate in the same time period.
[0177] It is judged whether the temperature change rate is greater than the preset temperature change rate threshold.
[0178] If greater than, it is determined that the temperature change is large, and the air disinfection and purification machine is cooled by air cooling and water cooling.
[0179] If less than, it is determined that the temperature change is small, and the air disinfection and purification machine is cooled by one of air cooling and water cooling.
[0180] It should be noted that the temperature change of different sides is controlled by different cooling methods to ensure that the temperature of the side of the air disinfection and purification machine is always within a safe range, thereby prolonging the service life of the air disinfection and purification machine.
[0181] The third aspect of the present application provides a computer readable storage medium, the readable storage medium comprising an air disinfection purifier adaptive control method program, when the air disinfection purifier adaptive control method program is executed by a processor, the steps of the air disinfection purifier adaptive control method of any one of the above are realized.
[0182] The present application discloses an air disinfection purifier adaptive control method, system and medium, by obtaining air information, inputting the air information into a preset air disinfection purification model to generate disinfection purification parameters, generating preset air disinfection purifier operation parameter information according to the disinfection purification parameters, obtaining air disinfection purifier operation parameter information, comparing the air disinfection purifier operation parameter information with the preset air purifier operation parameter information to obtain a parameter deviation rate, judging whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold, if yes, generating parameter correction information, and correcting the air disinfection purifier operation parameter information according to the parameter correction information, if no, controlling the air disinfection purifier to operate according to the current operation parameters, judging the disinfection and purification effect by analyzing the air information, and controlling the disinfection and purification parameters in real time according to the disinfection and purification result.
[0183] In several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other manners. The above described device embodiments are only schematic. For example, the division of units is only a logical function division. There can be another division manner for the actual implementation, for example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed coupling, direct coupling or communication connection between the components can be indirect coupling or communication connection through some interfaces, or electrical, mechanical or other forms.
[0184] The units described as separate components can or can not be physically separate, and the components shown as units can or can not be physical units; they can be located in one place or distributed on multiple network units; part or all of the units can be selected according to actual needs to achieve the purpose of the present embodiment.
[0185] In addition, each functional unit in each embodiment of the present application can be integrated into one processing unit, or each unit can be a separate unit, or two or more units can be integrated into one unit; the integrated unit can be realized in the form of hardware or in the form of hardware plus software functional unit.
[0186] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by relevant hardware of program instructions, and the foregoing program can be stored in a readable storage medium, and the program executes the steps of the above-mentioned method embodiments when executed; and the foregoing storage medium includes various media capable of storing program codes, such as a mobile storage device, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk.
[0187] Alternatively, the integrated unit of the present application can also be stored in a readable storage medium if it is realized in the form of a software function module and sold or used as an independent product. Based on such understanding, the technical solutions of the embodiments of the present application can be embodied in the form of a software product in essence or in the form of a part of the prior art that makes a contribution, and the software product is stored in a storage medium, including a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in the embodiments of the present application. The foregoing storage medium includes various media capable of storing program codes, such as a mobile storage device, a ROM, a RAM, a magnetic disk or an optical disk.
Claims
1. An adaptive control method for an air disinfection purifier, characterized in that, The method comprises the following steps: acquiring air information, inputting the air information into a preset air disinfection and purification model to generate disinfection and purification parameters; generating preset air disinfection and purification machine operation parameter information according to the disinfection and purification parameters; acquiring the air disinfection and purification machine operation parameter information, comparing the air disinfection and purification machine operation parameter information with the preset air purification machine operation parameter information to obtain a parameter deviation rate; determining whether the parameter deviation rate is greater than or equal to a preset parameter deviation rate threshold value; if yes, generating parameter correction information and correcting the air disinfection and purification operation parameter information according to the parameter correction information; if no, controlling the air disinfection and purification machine to operate according to the current operation parameters; the acquiring of the air information and the inputting of the air information into the preset air disinfection and purification model to generate the disinfection and purification parameters specifically comprise the following steps: acquiring air information in a predetermined area of the air disinfection and purification machine, partitioning the predetermined area to obtain sub-areas in different directions; acquiring air information of the sub-areas in different directions, inputting the air information of the sub-areas in different directions into a preset air purification model to generate multiple disinfection and purification parameters corresponding to the sub-areas in different directions; generating multiple different control parameters according to the disinfection and purification parameters of the sub-areas in different directions; controlling disinfection parameters of different surfaces of the air disinfection and purification machine according to the different control parameters; independently disinfecting and controlling different surfaces of the air disinfection and purification machine through the disinfection parameters of the different surfaces of the air disinfection and purification machine.
2. The self-adaptive control method of air sterilization and purification machine according to claim 1, characterized in that, the acquiring of the air information in the predetermined area of the air disinfection and purification machine and the partitioning of the predetermined area to obtain the sub-areas in different directions comprise the following steps: spatially dividing the sub-areas in the same direction of the air disinfection and purification machine according to distances from the air disinfection and purification machine into multiple secondary sub-areas; acquiring distances between centers of the secondary sub-areas and a center point of the air disinfection and purification machine to generate distance information; respectively calculating air disinfection and purification information of the multiple secondary sub-areas according to the distances from near to far; calculating differences between air disinfection and purification information of two adjacent secondary sub-areas to obtain disinfection and purification difference values; determining whether the disinfection and purification difference values are greater than or equal to a preset difference value; if yes, reducing operation power of the air disinfection and purification machine; if no, increasing the operation power of the air disinfection and purification machine.
3. The self-adaptive control method of air sterilization and purification machine according to claim 2, characterized in that, after the spatial division of the sub-areas in the same direction of the air disinfection and purification machine according to the distances from the air disinfection and purification machine into the multiple secondary sub-areas, the method further comprises the following steps: acquiring air quality information of the secondary sub-areas, comparing the air quality information of the secondary sub-areas with preset air quality information to obtain a quality deviation rate; determining whether the quality deviation rate is greater than a first threshold value and less than a second threshold value; if yes, generating first feedback information and adjusting a disinfection blowing amount of the air disinfection and purification machine according to the first feedback information; if no, generating second feedback information and secondarily adjusting the disinfection blowing amount of the air disinfection and purification machine according to the second feedback information.
4. The self-adaptive control method of air sterilization and purification machine according to claim 3, characterized in that, The sub-regions in the same direction of the air disinfection purifier are divided into multiple secondary sub-regions according to the distance from the air disinfection purifier, and then the method further comprises: obtaining space temperature information, and generating air expansion information according to the space temperature information; generating secondary sub-region air disinfection purifier superimposed information according to the air expansion information; generating air flow change information according to the air disinfection purifier superimposed information; calculating the difference between the air flow change information and the preset air flow information to obtain air flow difference information; judging whether the air flow difference information is greater than the preset difference threshold; if greater, generating temperature adjustment information, and controlling the temperature of the corresponding secondary sub-region according to the temperature adjustment information; if less, storing the air flow change information.
5. The self-adaptive control method of air sterilization and purification machine according to claim 4, characterized in that, If greater or equal, generating parameter correction information, and correcting the air disinfection purifier operation parameter information according to the parameter correction information, and then the method further comprises: obtaining the parameter correction information, and correcting the operation power of the air disinfection purifier in real time according to the parameter correction information; obtaining air disinfection purifier operation temperature information, comparing the air disinfection purifier operation temperature information with the preset temperature threshold to obtain a temperature deviation rate; judging whether the temperature deviation rate is greater than the preset deviation rate threshold; if greater, generating cooling information, and cooling the air disinfection purifier according to the cooling information; if less, adjusting the power of the air disinfection purifier according to the current parameter correction information.
6. An air disinfection purifier self-adaptive control system, characterized in that, The system comprises a memory and a processor, the memory comprises an air disinfection purifier adaptive control method program, and the air disinfection purifier adaptive control method program is executed by the processor to realize the following steps: obtaining air information, inputting the air information into a preset air disinfection purifier model, and generating disinfection and purification parameters; generating preset air disinfection purifier operation parameter information according to the disinfection and purification parameters; obtaining air disinfection purifier operation parameter information, comparing the air disinfection purifier operation parameter information with the preset air purifier operation parameter information, and obtaining a parameter deviation rate; judging whether the parameter deviation rate is greater than or equal to the preset parameter deviation rate threshold; if greater or equal, generating parameter correction information, and correcting the air disinfection purifier operation parameter information according to the parameter correction information; if less, controlling the air disinfection purifier to operate according to the current operation parameter; The air information is obtained, the air information is input into a preset air disinfection purifier model, and disinfection and purification parameters are generated. Specifically, the air information in a predetermined area of the air disinfection purifier is obtained, the predetermined area is divided into sub-regions in different directions, and different sub-regions are obtained. obtaining the air information of the sub-regions in different directions, inputting the air information of the sub-regions in different directions into a preset air purification model, and generating multiple disinfection and purification parameters corresponding to the sub-regions in different directions; generating multiple different control parameters according to the disinfection and purification parameters of the sub-regions in different directions; controlling the disinfection parameters of different surfaces of the air disinfection purifier according to different control parameters; independently disinfecting and controlling different surfaces of the air disinfection purifier through the disinfection parameters of different surfaces of the air disinfection purifier.
7. The self-adaptive control system of air sterilization and purification machine according to claim 6, wherein, The method comprises the following steps: acquiring air information in a predetermined area of an air disinfection and purification machine, partitioning the predetermined area to obtain sub-areas in different directions, and spatially dividing the sub-areas in the same direction of the air disinfection and purification machine into multiple secondary sub-areas according to the distance from the air disinfection and purification machine; acquiring the distance between the center of the secondary sub-area and the center of the air disinfection and purification machine to generate distance information; calculating air disinfection and purification information of the multiple secondary sub-areas from near to far according to the distance; calculating the difference between the air disinfection and purification information of two adjacent secondary sub-areas to obtain a disinfection and purification difference value; judging whether the disinfection and purification difference value is greater than or equal to a preset difference value; if yes, reducing the operating power of the air disinfection and purification machine; if no, increasing the operating power of the air disinfection and purification machine.
8. A computer-readable storage medium, characterized in that, The computer readable storage medium comprises an air disinfection and purification machine adaptive control method program, and when the air disinfection and purification machine adaptive control method program is executed by a processor, the steps of the air disinfection and purification machine adaptive control method according to any one of claims 1 to 5 are implemented.
Citation Information
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