Production task and air compression station linkage system

Through the linkage system of production tasks and air compressor stations, the compressed air supply is monitored and regulated in real time, and the problem of mismatch between compressed air supply and demand is solved, and efficient energy utilization and stable supply of compressed air are achieved.

CN223140065UActive Publication Date: 2025-07-22BEIJING FENGDY S&T
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Patent Information

Application Number
CN202422385008.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-07-22
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

The prior art cannot effectively regulate the correspondence between compressed air supply and demand, resulting in energy waste and pressure fluctuations.

Method used

The production task linkage system is adopted to ensure that the compressed air supply is matched with the demand through detection and control components, the main control components of the air compressor station and the information transmission components.

Benefits of technology

The compressed air supply is effectively matched with the demand, avoiding the waste of energy during the operation of the air compressor station, and ensuring the sufficient and sufficient pressure supply of compressed air.

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Abstract

The utility model belongs to the technical field of air compression station linkage control, and discloses a production task and air compression station linkage system. The production task and air compression station linkage system comprises a detection and control assembly which is installed on an air inlet main pipeline of a production zone and is configured to detect and control the air inlet flow and the air inlet pressure of compressed air of the corresponding production zone; the air compression station main control assembly is used for sending a control adjustment instruction according to a comparison result of the demand data of compressed air corresponding to each production zone in the production task and the actual air transmission data information of the corresponding production zone; the information transmission assembly is electrically connected with the detection and control assembly and the air compression station main control assembly; and the air compression station supplies compressed air to each production zone according to the demand data of the compressed air corresponding to each production zone. According to the air compression station, the air compression station main control assembly is arranged, production requirements and actual air conveying matching are considered, sufficient compressed air conveying and sufficient pressure are guaranteed, and meanwhile waste of the compressed air capacity during operation of the air compression station is avoided.
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Description

Technical Field

[0001] The utility model belongs to the technical field of linkage control of air compressor stations, and specifically relates to a production task and air compressor station linkage system. Background Art

[0002] Compressed air is one of the three major power sources in industrial production. On average, 25% of industrial electricity is used to drive the air compressors in the air compressor station. An air compressor, abbreviated as an air compressor, is a device that sucks in the air in the surrounding environment, mechanically compresses and pressurizes it, and transports it to the pipe network.

[0003] During the production process, situations such as a decrease in task output, shutdown for maintenance, and sudden increase in task production will lead to a mismatch between the demand for production compressed air and the supply of the compressed air supply system equipment (air compressor station), resulting in problems such as energy loss, large pressure fluctuations, and energy waste caused by compressed air leakage during shutdown.

[0004] Therefore, there is an urgent need to provide a production task and air compressor station linkage system that can effectively regulate the corresponding relationship between the supply and demand of compressed air to overcome the above problems.

[0005] In view of this, this application is specifically proposed. Summary of the Utility Model

[0006] The technical problem to be solved by the utility model is to overcome the deficiency that the prior art cannot effectively regulate the corresponding relationship between the supply and demand of compressed air, and the purpose is to provide a production task and air compressor station linkage system.

[0007] To solve the above technical problem, the basic concept of the technical solution adopted by the utility model is: a production task and air compressor station linkage system, where the air compressor station supplies compressed air to each production area, including:

[0008] A detection and control component, which is installed on the main intake pipeline of the corresponding production area, and the detection and control component is configured to detect and control the intake flow and intake pressure of compressed air in the corresponding production area;

[0009] The main control component of the air compressor station, which is configured to process data information and send control adjustment instructions. The main control component of the air compressor station sends control adjustment instructions according to the comparison result between the demand data of compressed air corresponding to each production area in the production task and the actual gas transmission data information of the corresponding production area;

[0010] An information transmission component, which is electrically connected to the detection and control component and the main control component of the air compressor station. The information transmission component transmits the intake air flow rate and intake air pressure of the corresponding production area detected by the detection and control component to the main control component of the air compressor station in the form of data information as the actual gas transmission data information of the corresponding production area, and the information transmission component transmits the control adjustment instructions sent by the main control component of the air compressor station to the detection and control component;

[0011] The air compressor station supplies compressed air to each production area according to the demand data of the compressed air corresponding to each production area.

[0012] According to an embodiment of the present invention, wherein the detection and control component includes:

[0013] A flow meter configured to detect and obtain the total intake air volume of the compressed air in the corresponding production area, and the flow meter is installed on the main intake pipeline;

[0014] A pressure transmitter configured to detect and obtain the intake air pressure of the corresponding production area, and the pressure transmitter is installed on the main intake pipeline;

[0015] A voltage stabilizing control valve is provided at the end of the main intake pipeline. The voltage stabilizing control valve controls and changes the intake air volume and / or intake air pressure in the main intake pipeline by changing the cross-sectional area of the passage of the main intake pipeline.

[0016] According to an embodiment of the present invention, wherein the information transmission component is communicatively connected to the detection and control component and the main control component of the air compressor station through a local area network or network communication.

[0017] According to an embodiment of the present invention, wherein the information transmission component includes: a production task input end, and the production task input end is electrically connected to the main control component of the air compressor station;

[0018] The production task input through the production task input end is sent to the central processing unit of the main control component of the air compressor station.

[0019] According to an embodiment of the present invention, wherein the central processing unit plans the production tasks of each production area according to the transmitted production tasks, so as to determine the demand data of the compressed air corresponding to the corresponding production area;

[0020] According to the determined demand data of the compressed air corresponding to the corresponding production area, control the air compressor station to supply compressed air to the corresponding production area.

[0021] According to an embodiment of the present utility model, the production task and air compressor station linkage system includes four production zones, and the production tasks of the four production zones are different from each other;

[0022] The detection and control components and the pressure stabilizing control valves are provided on the intake main pipelines of the four production zones;

[0023] The detection and control components of the four production zones transmit information to the main control component of the air compressor station through the same information transmission component, or the detection and control components of the four production zones transmit information to the main control component of the air compressor station through their respective information transmission components.

[0024] According to an embodiment of the present utility model, the production task and air compressor station linkage system includes multiple production zones, and at least two of the multiple production zones have the same production tasks;

[0025] The detection and control components and the pressure stabilizing control valves are provided on the intake main pipelines of the multiple production zones;

[0026] The detection and control components of the multiple production zones transmit information to the main control component of the air compressor station through the same information transmission component, or the detection and control components of the multiple production zones transmit information to the main control component of the air compressor station through their respective information transmission components.

[0027] According to an embodiment of the present utility model, the main control component of the air compressor station further includes a data storage center, the storage center is electrically connected to the central processing unit, and the data storage center is configured to store the production tasks input through the production task input end, the data information obtained through the detection and control components and processed by the central processing unit.

[0028] According to an embodiment of the present utility model, the production task and air compressor station linkage system further includes: a warning component, and the warning component issues a reminder message according to the comparison result between the demand data of the compressed air corresponding to each production zone and the actual gas transmission data information of the corresponding production zone.

[0029] According to an embodiment of the present utility model, the reminder message issued by the warning component includes at least one of a sound reminder message, a color change reminder message, a graphic change reminder message, and a flash reminder message.

[0030] After adopting the above technical solutions, the present utility model has the following beneficial effects compared with the prior art:

[0031] By applying a production task and air compressor station linkage system provided by the present utility model, the task amounts of each production zone are planned corresponding to the production tasks, taking into account the matching of production requirements and actual gas transmission conditions. In this way, the corresponding relationship between the supply and demand of compressed air is effectively regulated. While ensuring sufficient supply and pressure of compressed air in the corresponding zone, the waste of compressed air production capacity during the operation of the air compressor station is avoided.

[0032] The following further describes in detail the specific implementation manners of the present utility model with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] The accompanying drawings, as a part of the present utility model, are used to provide a further understanding of the present utility model. The schematic embodiments and descriptions thereof of the present utility model are used to explain the present utility model, but do not constitute an improper limitation to the present utility model. Obviously, the accompanying drawings in the following description are only some embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts. In the drawings:

[0034] Figure 1 is a schematic diagram of the installation position of the detection and control components in the embodiment of the present utility model;

[0035] Figure 2 is a schematic diagram of the connection between the production zone and the air compressor station in the embodiment of the present utility model;

[0036] Figure 3 is a block diagram of the relationship between the production task and the air compressor station linkage system in the embodiment of the present utility model;

[0037] Figure 4 is a diagram of the information transmission relationship of multiple components in the embodiment of the present utility model.

[0038] Description of the main elements in the drawings:

[0039] 1. Detection and control components; 11. Flowmeter; 12. Pressure transmitter; 13. Voltage stabilization control valve; 2. Main intake pipeline; 3. Main control components of the air compressor station; 31. Central processing unit; 32. Data storage center; 4. Information transmission components; 41. Production task input end; 5. Warning components.

[0040] It should be noted that these drawings and text descriptions are not intended to limit the concept scope of the present utility model in any way, but to illustrate the concept of the present utility model to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0041] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the following will, in conjunction with the accompanying drawings in the embodiments of the present utility model, clearly and completely describe the technical solutions in the embodiments. The following embodiments are used to illustrate the present utility model but are not intended to limit the scope of the present utility model.

[0042] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.

[0043] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0044] As Figures 1 to 4 shown, a production task and air compressor station linkage system according to the present utility model, where the air compressor station supplies compressed air to each production area, includes:

[0045] A detection and control component 1, which is installed on the intake main pipeline 2 of the corresponding production area. The detection and control component 1 is configured to detect and control the intake flow rate and intake pressure of the compressed air in the corresponding production area.

[0046] An air compressor station main control component 3, which is configured to process data information and send control adjustment instructions. The air compressor station main control component 3 sends control adjustment instructions according to the comparison result between the demand data of the compressed air corresponding to each production area in the production task and the actual gas transmission data information of the corresponding production area.

[0047] An information transmission component 4, which is electrically connected to the detection and control component 1 and the air compressor station main control component 3. The information transmission component 4 transmits the intake flow rate and intake pressure of the corresponding area detected by the detection and control component 1 to the air compressor station main control component 3 in the form of data information as the actual gas transmission data information of the corresponding production area, and the information transmission component 4 transmits the control adjustment instructions sent by the air compressor station main control component 3 to the detection and control component 1.

[0048] The air compressor station supplies compressed air to each production area according to the demand data of the compressed air corresponding to each production area.

[0049] In the present utility model, through the provided main control component 3 of the air compressor station, the production demand is balanced with the actual gas transmission condition, ensuring that sufficient and sufficient-pressure compressed air is transported while avoiding waste of the production capacity of the compressed air during the operation of the air compressor station.

[0050] The information transmission component 4 transmits the intake air flow rate and intake air pressure of the corresponding area detected by the detection and control component 1 to the main control component 3 of the air compressor station, which means that: the detection and control component 1 actively sends the detected intake air flow rate and intake air pressure to the information transmission component 4, and the information transmission component 4 further transmits it to the main control component 3 of the air compressor station.

[0051] Or, the information transmission component 4 sends an information extraction instruction to the detection and control component 1. After receiving the information extraction instruction, the detection and control component 1 sends the detected intake air flow rate and intake air pressure to the information transmission component 4, and the information transmission component 4 further transmits it to the main control component 3 of the air compressor station.

[0052] In a specific implementation manner of this embodiment, the information transmission component 4 is a local server, and the main control component 3 of the air compressor station is a cloud server.

[0053] The air compressor and the main control component 3 of the air compressor station form a compressed air supply system, and the compressed air supply system provides compressed air.

[0054] Please refer to the attached Figure 1 and the attached Figure 2 , in a specific implementation manner of this embodiment, the detection and control component 1 includes:

[0055] A flow meter 11 configured to detect and obtain the total intake volume of compressed air in the corresponding production area, and the flow meter 11 is installed on the intake main pipeline 2;

[0056] A pressure transmitter 12 configured to detect and obtain the intake air pressure in the corresponding production area, and the pressure transmitter 12 is installed on the intake main pipeline 2;

[0057] A voltage stabilizing control valve 13 is provided at the end of the intake main pipeline 2, and the voltage stabilizing control valve 13 controls and changes the intake air volume and / or intake air pressure in the intake main pipeline 2 by changing the cross-sectional area of the passage of the intake main pipeline 2.

[0058] The flow meters 11 detect and obtain the flow consumption (inlet air flow) of their respective corresponding production zones, and transmit it to the main control component 3 of the air compressor station via the information transmission component 4, for real-time flow monitoring of each production zone and flow accumulation within a selected time period.

[0059] The pressure stabilizing control valve 13 changes the opening degree of the opening and closing member inside itself according to the control adjustment instruction, thereby controlling the cross-sectional area of the passage of the inlet main pipeline 2 and controlling the flow rate of the compressed air. In this way, the requirement of controlling the balance between flow supply and demand is achieved. The pressure stabilizing control valve is a common component structure in the art and will not be elaborated here.

[0060] In a specific implementation manner of this embodiment, the pressure stabilizing control valve 13 is an electric control valve.

[0061] In a specific implementation manner of this embodiment, the information transmission component 4 is communicatively connected to the detection and control component 1 and the main control component 3 of the air compressor station through a local area network or network communication.

[0062] In a specific implementation manner of this embodiment, the local area network includes an Ethernet.

[0063] Applying the production task and air compressor station linkage system of the present utility model, when performing a shutdown operation on a production zone (task completion or shutdown for maintenance), control the pressure stabilizing control valve 13 to act, and maintain the air pressure of the compressed air in the entire production zone within a stable range, so that the air pressure of the compressed air (in the entire production zone) is greater than (at least slightly greater than) the atmospheric pressure, to avoid the problem of the intake pipeline (production zone pipeline) being contaminated due to air backflow. The above solution is based on considering the dew point requirements of the production zone to prevent air backflow and cause the problem of unqualified dew point.

[0064] Please refer to the attached Figure 3 and the attached Figure 4 In a specific implementation manner of this embodiment, the information transmission component 4 includes: a production task input terminal 41 (manual operation terminal, where an operator inputs a production task), and the production task input terminal 41 is electrically connected to the main control component 3 of the air compressor station;

[0065] The production task input through the production task input terminal 41 is transmitted to the central processing unit 31 of the main control component 3 of the air compressor station.

[0066] In actual operation, the operator inputs a production task into the compressed air supply system (production task and air compressor station linkage system) through the production task input terminal 41.

[0067] In a specific implementation manner of this embodiment, a storage unit is provided in the information transmission component 4, and the storage unit stores the acquired data information (mutually transmitted and acquired among components, and input by the operator).

[0068] In a specific implementation manner of this embodiment, the central processing unit 31 plans the production tasks of each production zone according to the conveyed production tasks, so as to determine the demand data of compressed air corresponding to the corresponding production zone.

[0069] Control the air compressor station according to the determined demand data of compressed air corresponding to the corresponding production zone, and supply compressed air to the corresponding production zone.

[0070] In a specific implementation manner of this embodiment, the determined demand data of compressed air corresponding to the corresponding production zone includes: compressed air flow rate and compressed air pressure.

[0071] In a specific implementation manner of this embodiment, the main control component 3 of the air compressor station performs dynamic adjustment according to the progress of the actual production tasks (the remaining production tasks are calculated by subtracting the completed part of the original total production tasks), (at a time interval t), adjusts and plans the production tasks of each production zone, so as to determine the demand data of compressed air corresponding to the corresponding production zone, and sends the corresponding control adjustment instructions to the detection and control component 1.

[0072] In another specific implementation manner of this embodiment, the main control component 3 of the air compressor station performs real-time dynamic adjustment according to the progress of the actual production tasks of each production zone (the remaining production tasks of each production zone), (at a time interval t), and real-time plans and adjusts the production tasks of each production zone (the remaining production tasks), so as to determine the demand data of compressed air corresponding to the corresponding production zone, and sends the corresponding control adjustment instructions to the detection and control component 1.

[0073] In a specific implementation manner of this embodiment, the time interval t is 10 - 60 min;

[0074] Preferably, the time interval t is 10 min.

[0075] Please refer to the appendix Figure 2 and the appendix Figure 3 , in a specific implementation manner of this embodiment, the factory area includes four production zones, and the production tasks of the four production zones are different;

[0076] The detection and control component 1 and the voltage stabilization control valve 13 are both arranged on the intake main pipeline 2 of the four production zones;

[0077] The detection and control components 1 of the four production zones transmit information to the main control component 3 of the air compressor station through the same information transmission component 4, or the detection and control components 1 of the four production zones transmit information to the main control component 3 of the air compressor station through their respective information transmission components 4.

[0078] In another specific implementation manner of this embodiment, the factory area includes multiple production zones, and at least two of the multiple production zones have the same production tasks for the zones;

[0079] The detection and control components 1 and the voltage stabilization control valves 13 are both arranged on the main intake pipelines 2 of the multiple production zones;

[0080] The detection and control components 1 of the multiple production zones transmit information to the main control component 3 of the air compressor station through the same information transmission component 4, or the detection and control components 1 of the multiple production zones transmit information to the main control component 3 of the air compressor station through their respective information transmission components 4.

[0081] In another specific implementation manner of this embodiment, the factory area includes four production zones. For the first production zone and the second production zone among the four production zones, the production tasks for the zones of these two production zones are the same; for the third production zone and the fourth production zone among the four production zones, the production tasks for the zones of these two production zones are the same, and the production task of the third production zone is different from the production task of the first production zone.

[0082] In another specific implementation manner of this embodiment, the factory area includes four production zones. For the first production zone, the second production zone, the third production zone, and the fourth production zone among the four production zones, the production tasks for the zones of these four production zones are all the same.

[0083] Please refer to the appendix Figure 3 In a specific implementation manner of this embodiment, the main control component 3 of the air compressor station further includes a data storage center 32. The data storage center 32 is electrically connected to the central processing unit 31, and the data storage center 32 is configured to store the production tasks input through the production task input terminal 41, the data information obtained by the detection and control components 1 and processed by the central processing unit 31.

[0084] In a specific implementation manner of this embodiment, the data storage center 32 also stores the control adjustment instructions

[0085] In a specific implementation manner of this embodiment, the data storage center 32 communicates with the information in the storage unit (not shown in the figure) to achieve dual storage of local and cloud.

[0086] In a specific implementation manner of this embodiment, a data model is built in the central processing unit 31. The data model includes a comparison module that compares the demand data of compressed air with the actual gas transmission data information. According to the comparison result of the comparison module, corresponding control adjustment instructions are sent to guide the detection and control component 1 to perform corresponding adjustment actions.

[0087] In a specific implementation manner of this embodiment, the previous production tasks, completion methods, and information are correspondingly stored in the data storage center 32 to form various production task flow models;

[0088] By comparing the production tasks reported on the current day with the production task flow models, a daily production task flow demand model is selected or generated;

[0089] According to the daily production task flow demand model, the operation plan and / or control adjustment instructions of the air compressor station equipment (air compressor) in the compressed air supply system are matched to switch and adjust the state of the air compressor.

[0090] The control method of this application includes:

[0091] According to WF, judge the production situation of each production area in the factory area, and control the corresponding voltage stabilizing control valve 13 to perform pressure stabilization and flow stabilization control;

[0092] When it is judged that WF is 0, control the voltage stabilizing control valve 13 to make the P value approach the P2 value, ensuring that when the corresponding production area is shut down for expansion or shut down for maintenance, the compressed air pressure in the air pipeline is slightly greater than the atmospheric pressure, preventing air from flowing back through the leakage point and causing pollution to the compressed air in the air pipeline.

[0093] When it is judged that WF is 0, when the opening degree of the voltage stabilizing control valve 13 is greater than FK and the duration exceeds the set time, it indicates that there is an obvious leakage point in the production area, and a system alarm push (reminder information sent by the warning component 5) is performed, suggesting that the corresponding production area perform leakage elimination to reduce energy waste caused by leakage on site.

[0094] Factory area control unit parameters:

[0095] P: Pressure after the voltage stabilizing control valve (i.e., the real-time pressure of the production area); P2: Pressure set value for factory shutdown or shutdown for maintenance; WF: Production task saturation of the production area (filled in by the person in charge of the production area or the production person in charge according to the production task on a daily basis or in case of emergency); FK: Opening degree set value of the voltage stabilizing control valve when WF is 0.

[0096] In a specific implementation manner of this embodiment, the production task and air compressor station linkage system further includes: a warning component 5, and the warning component 5 issues a reminder message according to the comparison result between the required data of compressed air corresponding to each production zone and the actual gas transmission data information of the corresponding production zone.

[0097] In the present utility model, by setting the warning component 5, it guides the operator to perform adjustment operations or Zhang Wei's adjustment progress, which provides convenience for the operator.

[0098] In a specific implementation manner of this embodiment, the reminder message issued by the warning component 5 includes at least one of a sound reminder message, a color change reminder message, a graphic change reminder message, and a flash reminder message.

[0099] By applying a production task and air compressor station linkage system provided by the present utility model, the task amounts of each production zone are planned according to the production tasks. Thus, the corresponding relationship between the supply amount and the demand amount of compressed air is effectively regulated. While ensuring sufficient supply and pressure of compressed air in the corresponding zones, the waste of compressed air production capacity during the operation of the air compressor station is avoided.

[0100] The above are only the preferred embodiments of the present utility model, and do not impose any form of limitation on the present utility model. Although the present utility model has been disclosed above with the preferred embodiments, it is not intended to limit the present utility model. Any person skilled in the art of this patent, without departing from the scope of the technical solution of the present utility model, can make some changes or modifications to the above-mentioned technical content as equivalent embodiments of equivalent changes. The implementation schemes in the above embodiments can also be further combined or replaced. However, as long as it does not depart from the content of the technical solution of the present utility model, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present utility model still fall within the scope of the present utility model.

Claims

1. A production task and air compressor station linkage system, where the air compressor station supplies compressed air to each production zone, characterized in that, including: a detection and control component (1), which is installed on the main air inlet pipeline (2) of the corresponding production zone, and the detection and control component (1) is configured to detect and control the air inlet flow rate and air inlet pressure of the compressed air in the corresponding production zone; a main control component (3) of the air compressor station, which is configured to process data information and send control adjustment instructions, and the main control component (3) of the air compressor station sends control adjustment instructions according to the comparison result between the required data of the compressed air corresponding to each production zone in the production task and the actual gas transmission data information of the corresponding production zone; an information transmission component (4), which is electrically connected to the detection and control component (1) and the main control component (3) of the air compressor station. The information transmission component (4) transmits the air inlet flow rate and air inlet pressure of the corresponding zone detected by the detection and control component (1) to the main control component (3) of the air compressor station in the form of data information as the actual gas transmission data information of the corresponding production zone. The information transmission component (4) also transmits the control adjustment instructions sent by the main control component (3) of the air compressor station to the detection and control component (1); The air compressor station supplies compressed air to each production zone according to the required data of the compressed air corresponding to each production zone.

2. The production task and air compressor station linkage system according to claim 1, characterized in that, The detection and control component (1) includes: a flow meter (11), which is configured to detect and obtain the total air inlet volume of the compressed air in the corresponding production zone, and the flow meter (11) is installed on the main air inlet pipeline (2); a pressure transmitter (12), which is configured to detect and obtain the air inlet pressure of the corresponding production zone, and the pressure transmitter (12) is installed on the main air inlet pipeline (2); a voltage stabilizing control valve (13), which is arranged at the end of the pipeline of the main air inlet pipeline (2), and the voltage stabilizing control valve (13) controls and changes the air inlet volume and / or air inlet pressure in the main air inlet pipeline (2) by changing the cross-sectional area of the passage of the main air inlet pipeline (2).

3. The production task and air compressor station linkage system according to claim 1, characterized in that, The information transmission component (4) is communicatively connected to the detection and control component (1) and the main control component (3) of the air compressor station through a local area network or network communication.

4. The production task and air compressor station linkage system according to claim 2, characterized in that The information transmission component (4) includes: a production task input terminal (41), and the production task input terminal (41) is electrically connected to the main control component (3) of the air compressor station; The production task input through the production task input terminal (41) is sent to the central processing unit (31) of the main control component (3) of the air compressor station.

5. The production task and air compressor station linkage system according to claim 4, characterized in that, The central processing unit (31) plans the production tasks of each production zone according to the sent production task, so as to determine the required data of the compressed air corresponding to the corresponding production zone; According to the determined required data of the compressed air corresponding to the corresponding production zone, the air compressor station is controlled to supply compressed air to the corresponding production zone.

6. The production task and air compressor station linkage system according to claim 5, wherein including four production zones, and the production tasks of the four production zones are different from each other; The detection and control component (1) and the pressure stabilizing control valve (13) are provided on the main air inlet pipelines (2) of the four production zones; The detection and control components (1) of the four production zones transmit information to the main control component (3) of the air compressor station through the same information transmission component (4), or the detection and control components (1) of the four production zones transmit information to the main control component (3) of the air compressor station through their respective information transmission components (4).

7. The production task and air compressor station linkage system according to claim 5, characterized in that, It includes multiple production zones, and at least two of the multiple production zones have the same production tasks; The detection and control component (1) and the pressure stabilizing control valve (13) are provided on the main air inlet pipelines (2) of the multiple production zones; The detection and control components (1) of the multiple production zones transmit information to the main control component (3) of the air compressor station through the same information transmission component (4), or the detection and control components (1) of the multiple production zones transmit information to the main control component (3) of the air compressor station through their respective information transmission components (4).

8. The production task and air compressor station linkage system according to claim 4, characterized in that The main control component (3) of the air compressor station further includes a data storage center (32), and the storage center (32) is electrically connected to the central processing unit (31); The data storage center (32) is configured to store the production tasks input through the production task input end (41), the data information obtained through the detection and control component (1) and processed by the central processing unit (31).

9. The production task and air compressor station linkage system according to any one of claims 1-8, characterized in that, It further includes: A warning component (5), and the warning component (5) issues a reminder message according to the comparison result between the required data of the compressed air corresponding to each production zone and the actual gas transmission data information of the corresponding production zone.

10. The production task and air compressor station linkage system according to claim 9, characterized in that, The reminder message issued by the warning component (5) includes at least one of a sound reminder message, a color change reminder message, a graphic change reminder message, and a flash reminder message.