Multi-purifier Bluetooth networking linkage control system

By installing Bluetooth mesh intelligent module and intelligent control module on each purification machine, the rapid independent networking and linkage control between multiple purification machines is achieved, and the problems of unstable and low efficiency of linkage control of multiple purification machines in the existing technology are solved, and efficient and stable multi-machine joint control operation is achieved.

CN222914298UActive Publication Date: 2025-05-27CHINA NAT FOOD PURIFICATION TECH BEIJING CO LTD
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Patent Information

Application Number
CN202421730704.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-05-27
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

The existing purification machine control system cannot achieve stable and efficient linkage control between multiple purification machines, resulting in excessive load on the main control purification machine, unstable command data transmission, and low data interaction efficiency. Once the main control purification machine goes down, the joint control function fails, and the risk of failure is high.

Method used

By installing Bluetooth mesh intelligent module and intelligent control module on each purifier, it is possible to quickly and independently form a network between multiple purifiers in the effective space area, and send command data in a broadcast mesh dissemination form, making each purifier a node for data transmission and reception, ensuring the stable and smooth data link.

Benefits of technology

It realizes fast, efficient and stable joint control operation between multiple purifiers, reduces the heavy burden of hardware and software network environment deployment, improves the efficiency and stability of data interaction, and avoids the problem of overloading of the main control purifier.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-purifier Bluetooth networking linkage control system which comprises a purifier linkage control circuit board integrally installed on a purifier body, an intelligent control module, an intelligent operation module, an intelligent power supply system and a generator system, and the intelligent power supply system is respectively connected with the intelligent control module, the intelligent operation module, the intelligent power supply system and the generator system. The intelligent operation module is electrically connected with the generator system, the intelligent control module is respectively in communication connection with the intelligent operation module, the intelligent power supply system and the generator system, a Bluetooth mesh intelligent module is integrated on the intelligent control module, and the Bluetooth mesh intelligent module is respectively in communication connection with a plurality of purifiers in the same space area. According to the utility model, a plurality of purifiers in an effective space area are rapidly and autonomously networked, so that the network environment deployment and construction of heavy hardware and software are saved. The established mesh network enables a data link to be stable and smooth, data interaction is efficient and fast, and fast, efficient and stable multi-machine joint control operation can be achieved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of linkage control, and particularly relates to a Bluetooth networking linkage control system for multiple purifiers. Background Art

[0002] A purifier is a device used to improve indoor air quality. It can remove pollutants such as suspended particulate matter, harmful gases, and odors in the air. These devices are widely used in places such as homes, offices, hospitals, schools, and industrial production environments, and play an important role in improving the comfort and health level of living and working environments. For multiple purifiers, linkage control of multiple purifiers is usually adopted to achieve unified and coordinated operation. The existing purifier control mainly falls into three categories: for an independent purifier, a separate control method is used without the need for linkage control. For multiple purifiers, usually one of the multiple purifiers is set as the main control purifier, and other purifiers are driven to work by the main control purifier sending command data, and other purifiers cannot control each other. This control system can only achieve one-way control of multiple by one, without the function of joint control. Or one of the multiple purifiers is set as the main control purifier, and other purifiers are driven to work by the main control purifier sending command data, and other purifiers can send command data to achieve mutual control, but the command data sent by other purifiers must reach other purifiers through the retransmission of the main control purifier. Although this control system can achieve a certain degree of joint control, all the sent command data must pass through the processing of the main control purifier, resulting in an excessive load capacity of the main control purifier, unstable command data transmission, low data interaction efficiency, and once the main control purifier crashes, the joint control function will fail, with a relatively high failure risk. Content of the Utility Model

[0003] In order to solve the above problems, the utility model provides a Bluetooth networking linkage control system for multiple purifiers to solve the problem that stable and efficient linkage control cannot be achieved between multiple purifiers in the same effective space area.

[0004] To achieve the above object, the utility model provides a Bluetooth networking linkage control system for multiple purifiers, including:

[0005] A purifier linkage control circuit board, which is integrally installed on the purifier body. The purifier linkage control circuit board includes an intelligent control module, an intelligent operation module, an intelligent power system, and a generator system. The intelligent power system is electrically connected to the intelligent control module, the intelligent operation module, and the generator system respectively. The intelligent control module is communicatively connected to the intelligent operation module, the intelligent power system, and the generator system respectively. Among them, a Bluetooth mesh intelligent module is integrated on the intelligent control module, and the Bluetooth mesh intelligent module is communicatively connected to multiple purifiers in the same space area respectively.

[0006] According to a specific embodiment of the present utility model, the Bluetooth mesh intelligent module is communicatively connected to the intelligent control module, and is used to receive the power-on operation instruction sent by the intelligent control module, and send a valid broadcast instruction to at least one purifier within the same spatial area.

[0007] According to a specific embodiment of the present utility model, the Bluetooth mesh intelligent module is further used to receive the power-on operation instruction sent by the intelligent control module, and receive the valid broadcast instruction sent by at least one purifier within the same spatial area.

[0008] According to a specific embodiment of the present utility model, the Bluetooth mesh intelligent module sends instruction data to at least one purifier within the same spatial area in a broadcast mesh dissemination form.

[0009] According to a specific embodiment of the present utility model, the intelligent power system is used to supply power to the intelligent control module, the intelligent operation module, and the generator system.

[0010] According to a specific embodiment of the present utility model, the generator system is communicatively connected to the Bluetooth mesh intelligent module, and is used to receive the data instruction sent by the Bluetooth mesh intelligent module and generate a wireless signal.

[0011] Compared with the prior art, the present utility model provides a multi-purifier Bluetooth networking linkage control system. By installing a Bluetooth mesh intelligent module and an intelligent control module on each purifier, the system can realize rapid autonomous networking among multiple purifiers within an effective spatial area, saving the deployment of heavy hardware and software network environments. Each purifier in the mesh network within the effective area is a node for data transceiver, and the data is disseminated in a broadcast mesh form to each node, making the data link stable and unobstructed, and the data interaction fast and efficient, and enabling fast, efficient, and stable multi-machine linkage control operations. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is a structural diagram of a multi-purifier Bluetooth networking linkage control system provided according to an embodiment of the present utility model.

[0013] Figure 2 is a schematic diagram of multi-purifier Bluetooth networking linkage control provided according to an embodiment of the present utility model.

[0014] Figure 3 is a Bluetooth mesh networking flowchart provided according to an embodiment of the present utility model.

[0015] Reference Numerals:

[0016] 1 - Intelligent control module; 2 - Intelligent operation module; 3 - Intelligent power system; 4 - Generator system; 5 - Bluetooth mesh intelligent module. Detailed implementation manners

[0017] In order to enable those skilled in the art to more clearly understand the concepts and ideas of the present utility model, the present utility model will be described in detail below in conjunction with specific embodiments. It should be understood that the embodiments given herein are only a part of all possible embodiments of the present utility model. After reading the specification of this application, those skilled in the art are capable of making improvements, modifications, or substitutions to part or all of the following embodiments, and these improvements, modifications, or substitutions are also included within the scope of protection required by the present utility model.

[0018] In this article, terms such as "first", "second" and other similar words do not imply any order, quantity, and importance, but are only used to distinguish different elements. In this article, terms such as "a", "an" and other similar words do not mean that there is only one thing, but mean that the relevant description only targets one of the things, and the thing may have one or more. In this article, terms such as "comprising", "including" and other similar words are intended to represent logical interrelationships and should not be regarded as representing spatial structural relationships. For example, "A includes B" is intended to mean that B belongs to A logically, rather than meaning that B is located inside A spatially. Additionally, the meanings of terms such as "comprising", "including" and other similar words should be regarded as open-ended rather than closed. For example, "A includes B" is intended to mean that B belongs to A, but B does not necessarily constitute all of A, and A may also include other elements such as C, D, E, etc.

[0019] In this article, terms such as "embodiment", "the present embodiment", "one embodiment", "a single embodiment" do not mean that the relevant description only applies to a specific embodiment, but mean that these descriptions may also apply to one or more other embodiments. Those skilled in the art should understand that in this article, any description made for a certain embodiment can be substituted, combined, or otherwise combined with the relevant descriptions in one or more other embodiments, and the new embodiments generated by substitution, combination, or otherwise combination are easily conceivable by those skilled in the art and fall within the scope of protection of the present utility model. Embodiment

[0020] Additional aspects and advantages of the implementation manners of the present utility model will be partially given in the following description, partially become apparent from the following description, or be understood through the practice of the implementation manners of the present utility model. In combination with Figures 1 - 3 , the embodiments of the present utility model provide a multi - purifier Bluetooth networking linkage control system, including:

[0021] Purification machine linkage control circuit board. The purification machine linkage control circuit board is integrally installed on the purification machine body. The purification machine linkage control circuit board includes an intelligent control module 1, an intelligent operation module 2, an intelligent power supply system 3, and a generator system 4. The intelligent power supply system 3 is electrically connected to the intelligent control module 1, the intelligent operation module 2, and the generator system 4 respectively, and is used to supply power to the intelligent control module 1, the intelligent operation module 2, and the generator system 4. The intelligent control module 1 is communicatively connected to the intelligent operation module 2, the intelligent power supply system 3, and the generator system 4 respectively. Among them, a Bluetooth mesh intelligent module 5 is integrated on the intelligent control module 1, and the Bluetooth mesh intelligent module 5 is communicatively connected to multiple purification machines in the same spatial area. The generator system 4 is communicatively connected to the Bluetooth mesh intelligent module 5 and is used to receive the data instructions sent by the Bluetooth mesh intelligent module 5 and generate wireless signals.

[0022] Specifically, the Bluetooth mesh intelligent module 5 is communicatively connected to the intelligent control module 1 and is used to receive the power-on operation instruction sent by the intelligent control module 1 and send a valid broadcast instruction to at least one purification machine in the same spatial area. The Bluetooth mesh intelligent module 5 is also used to receive the power-on operation instruction sent by the intelligent control module 1 and receive the valid broadcast instruction sent by at least one purification machine in the same spatial area. The Bluetooth mesh intelligent module 5 of the embodiment of the present utility model has the function of autonomous data sending and receiving with both master / slave integration, and it uses the broadcast mesh dissemination form to send instruction data to at least one purification machine in the same spatial area. Multiple purification machines can realize Bluetooth networking linkage control within the effective transmission distance space of the Bluetooth mesh intelligent module 5, and its working principle is as follows:

[0023] When the intelligent power supply system 3 is turned on and the intelligent control module 1 is powered on and runs, at this time, an operation instruction can be sent to the intelligent control module 1 through the intelligent operation module 2. After processing the operation instruction data, the intelligent control module 1 sends a power-on operation instruction to the Bluetooth mesh intelligent module 5, and it is sent to other purification machines in the area in a mesh form through Bluetooth broadcast by the Bluetooth mesh intelligent module 5. The Bluetooth mesh intelligent module 5 filters out the mesh devices by autonomously sending and receiving valid broadcast instructions in the area and establishes a connection with them. Through the characteristic value of login pairing, the mesh networking of the devices is completed, and the intelligent control module 1 of each purification machine becomes a node for data sending and receiving in the mesh network. Each purification machine receives the instruction data through its own Bluetooth mesh intelligent module 5, and then analyzes and processes the instruction data through its own intelligent control module 1, and sends the corresponding instruction data to the intelligent operation module 2, the intelligent power supply system 3, and the generator system 4, thereby driving the purification machine to work.

[0024] In summary, a Bluetooth networking linkage control system for multiple purifiers provided by the present utility model can achieve rapid and autonomous networking among multiple purifiers within an effective space area by installing Bluetooth mesh intelligent modules and intelligent control modules on each purifier, saving the deployment of heavy hardware and software network environments. Each purifier in the mesh network within the effective area is a node for data transmission and reception, and data is disseminated in a broadcast form in a mesh pattern to each node, making the data link stable and unobstructed, and data interaction fast and efficient, enabling fast, efficient, and stable multi-machine control operations.

[0025] The concept, principle, and idea of the present utility model have been described in detail above in combination with specific implementation manners (including embodiments and examples). Those skilled in the art should understand that the implementation manners of the present utility model are not limited to the several forms given above. After reading the present application document, those skilled in the art may make any possible improvements, substitutions, and equivalent forms to the steps, methods, systems, and components in the above implementation manners, and these improvements, substitutions, and equivalent forms should be regarded as falling within the scope of the present utility model. The protection scope of the present utility model is only subject to the claims.

Claims

1. A Bluetooth networking linkage control system for multiple purifiers, characterized in that: include: A purifier linkage control circuit board, the purifier linkage control circuit board is integrated and installed on the purifier body, the purifier linkage control circuit board includes an intelligent control module, an intelligent operation module, an intelligent power supply system and a generator system, the intelligent power supply system is electrically connected to the intelligent control module, the intelligent operation module and the generator system respectively, the intelligent control module is communicatively connected to the intelligent operation module, the intelligent power supply system and the generator system respectively, wherein the intelligent control module is integrated with a Bluetooth mesh intelligent module, and the Bluetooth mesh intelligent module is communicatively connected to multiple purifiers in the same spatial area respectively.

2. The Bluetooth networking linkage control system for multiple purifiers according to claim 1 is characterized in that: The Bluetooth mesh intelligent module is communicatively connected with the intelligent control module, and is used to receive a power-on operation instruction sent by the intelligent control module, and send a valid broadcast instruction to at least one purifier in the same spatial area.

3. The Bluetooth networking linkage control system for multiple purifiers according to claim 2 is characterized in that: The Bluetooth mesh intelligent module is also used to receive the power-on operation instruction sent by the intelligent control module, and receive the effective broadcast instruction sent by at least one purifier in the same space area.

4. The Bluetooth networking linkage control system for multiple purifiers according to claim 1 is characterized in that: The Bluetooth mesh intelligent module uses a broadcast mesh spreading form to send instruction data to at least one purifier in the same spatial area.

5. The Bluetooth networking linkage control system for multiple purifiers according to claim 1 is characterized in that: The intelligent power supply system is used to supply power to the intelligent control module, the intelligent operation module and the generator system.

6. The Bluetooth networking linkage control system for multiple purifiers according to claim 1 is characterized in that: The generator system is communicatively connected to the Bluetooth mesh intelligent module, and is used for receiving data instructions sent by the Bluetooth mesh intelligent module and generating wireless signals.