Industrial and commercial energy storage cabinet temperature, humidity and dust control device

By installing temperature, humidity, and dust control devices with sensors and control modules in the energy storage cabinet, the problem of the inability of air conditioning and dehumidification systems to dynamically adjust has been solved, realizing automatic linkage control of the system, reducing energy consumption and maintenance costs, and improving equipment reliability.

CN223624556UActive Publication Date: 2025-12-02ZHENGFANG YUNTIAN INTELLIGENT TECH (ZHUHAI) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423284002.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-02
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In commercial and industrial energy storage cabinets, air conditioning systems, dehumidification systems, and dust filtration systems cannot be dynamically adjusted and linked according to actual operating conditions, which increases the complexity of manual maintenance and operating costs.

Method used

The device employs a temperature, humidity, and dust control system that includes sensors, a control module, and a louver opening and closing controller. By monitoring environmental parameters in real time and automatically adjusting the opening and closing angles of the air conditioning, dehumidification system, and louvers according to the operating status of the energy storage cabinet, dynamic linkage control is achieved.

Benefits of technology

It enables dynamic adjustments based on the actual operating conditions of the energy storage cabinet, thereby reducing energy consumption, extending equipment life, improving system reliability, and reducing operating costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223624556U_ABST
    Figure CN223624556U_ABST
Patent Text Reader

Abstract

The utility model provides an industrial and commercial energy storage cabinet temperature, humidity and dust control device, which is characterized in that a shutter is mounted at a position where an air inlet of a heat dissipation channel is connected with the outer wall of an energy storage cabinet body, the shutter is connected with a shutter opening and closing controller, and a wind speed sensor, a condensation detection sensor and a dust concentration sensor are arranged on the heat dissipation channel on the inner side of the shutter; the wind speed sensor, the condensation detection sensor and the dust concentration sensor are all connected with the control module through lines, and the control module is further connected with a shutter opening and closing controller. Data such as environment temperature, humidity and dust concentration are monitored in real time through various sensors installed in the energy storage cabinet.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of power energy storage technology, specifically to a device for controlling environmental factors such as temperature, humidity, and dust in energy storage cabinets. Background Technology

[0002] Compared to residential energy storage, commercial and industrial energy storage applications are more complex. Small and medium-sized commercial and industrial applications use integrated energy storage cabinets, while large commercial and industrial applications use energy storage containers. To ensure safe and stable operation, commercial and industrial energy storage cabinet systems are typically equipped with air conditioning, dehumidification, and dust filtration systems. These three components are usually purchased separately and then integrated, with relatively independent operation and control. Operating parameters are generally set once after deployment or manually adjusted by maintenance personnel during periodic inspections. This results in the inability to dynamically adjust these components based on the actual operating conditions of the energy storage cabinet, increasing the complexity of manual maintenance and adding extra costs to system operation. Summary of the Invention

[0003] The technical problem to be solved by this invention is the hardware implementation problem of the independent operation and control of the air conditioning system, dehumidification system and dust filtration system relative to the energy storage system, which cannot be dynamically adjusted and linked according to the actual operation of the energy storage cabinet.

[0004] This invention provides a temperature, humidity and dust control device for industrial and commercial energy storage cabinets, comprising an energy storage cabinet body, a control module, sensors, a dust filter for air ducts, louvers, an air conditioning system, a dehumidification system, a heat dissipation channel, and a dust filter for air ducts installed inside the heat dissipation channel.

[0005] The heat dissipation channel serves as the passageway for cooling air to enter and exit the energy storage cabinet. Louvers are installed at the connection point between the air inlet of the heat dissipation channel and the outer wall of the energy storage cabinet body. These louvers are connected to a louver opening and closing controller. An air velocity sensor, a condensation detection sensor, and a dust concentration sensor are installed on the inner side of the heat dissipation channel. A dust filter is installed between the louvers and the sensors. The air velocity sensor, condensation detection sensor, and dust concentration sensor are all connected to the control module via wiring. The control module is also connected to the louver opening and closing controller, which controls the opening and closing of the louvers. The control module is also connected to the energy storage cabinet's air conditioning system and dehumidification system, and further connected to the energy storage control system.

[0006] The air outlet of the heat dissipation channel is equipped with louvers and a louver opening and closing controller, which is connected to the control module.

[0007] The control module obtains the current ambient temperature and humidity, as well as the control parameters of the air conditioner and dehumidifier, through the air conditioning and dehumidification systems of the energy storage cabinet. It also obtains the current ambient wind speed parameters through a wind speed sensor, condensation data through a condensation detection sensor, ambient dust concentration through a dust concentration sensor, adjusts the opening angle of the louvers at the air inlet or outlet of the heat dissipation channel through a louver opening and closing controller, and obtains the current operating status parameters through communication with the energy storage cabinet control system.

[0008] The control module uses ambient temperature, wind speed, dust concentration, and other factors to control whether to start the air conditioner, adjust the air conditioning cooling capacity, and control the louver opening angle.

[0009] The control module dynamically increases or decreases the airflow velocity of the heat dissipation channel by adjusting the opening and closing angle of the louvers.

[0010] The control module pre-adjusts the air conditioner and louver angles based on the operating data and strategies fed back from the energy storage system's PCS and EMS.

[0011] The system can also access the internet and use the API interface of the weather forecasting platform to obtain historical, current, and future weather data for the area where the equipment is deployed, which can further improve the reference index values ​​and calculation accuracy of the calculation model.

[0012] The technical advantages of this invention are: By installing multiple sensors within the energy storage cabinet, it monitors ambient temperature, humidity, and dust concentration in real time. The system has the ability to automatically adjust according to environmental changes, minimizing energy consumption, extending equipment lifespan, and improving system reliability. Attached Figure Description

[0013] The present invention will now be described in further detail with reference to the accompanying drawings:

[0014] Figure 1 This is a schematic diagram of the hardware structure of the present invention;

[0015] Reference numerals: 1-Control module; 2-Wind speed sensor; 3-Condensation detection sensor; 4-Dust concentration sensor; 5.1-Stepper motor; 5.2-Louvre threaded slider; 5.3-Motor screw; 6-Louvre; 7-Dust filter in air duct; 8-Air conditioning system; 9-Dehumidification system; 10-Energy storage operation status; 11-Energy storage system. Detailed Implementation

[0016] To make the above-mentioned objectives, features, and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings. To make the objectives, technical solutions, and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and specific implementation examples.

[0017] This invention provides a temperature, humidity and dust control device for industrial and commercial energy storage cabinets, comprising an energy storage cabinet body, a control module 1, a sensor, a dust filter 7 for air ducts, louvers 6, an air conditioning system 8, a dehumidification system 9, and a heat dissipation channel, wherein a dust filter 7 for air ducts is installed inside the heat dissipation channel.

[0018] The heat dissipation channel serves as the passage for cooling air to enter and exit the energy storage cabinet. Louvers 6 are installed at the connection point between the air inlet of the heat dissipation channel and the outer wall of the energy storage cabinet body. Louvers 6 are connected to a louver opening / closing controller. An air velocity sensor 2, a condensation detection sensor 3, and a dust concentration sensor 4 are installed on the heat dissipation channel inside the louvers. A dust filter 7 is installed between the louvers 6 and the sensors. The air velocity sensor 2, condensation detection sensor 3, and dust concentration sensor 4 are all connected to the control module 1 via wiring. The control module 1 is also connected to the louver opening / closing controller, which controls the opening and closing of the louvers. The control module 1 is also connected to the energy storage cabinet's air conditioning system 8 and dehumidification system 9, and further connected to the energy storage control system 11.

[0019] The louver opening and closing controller includes a stepper motor 5.1, a screw 5.3, and a threaded slider 5.2 mounted on the screw. The stepper motor 5.1 drives the screw 5.3, causing the threaded slider 5.2 to ultimately control the opening and closing angle of the louvers at the air outlet and air inlet of the heat dissipation channel. The threaded slider 5.2 is movably mounted on each louver 6.

[0020] The louver opening and closing controller can also be an electric telescopic device. The electric telescopic device drives the louver control rod, which is installed at one end of the louver. By pulling one end of the louver, it rotates around the pivot, thereby opening and closing the louver.

[0021] The louver opening and closing controller can also be a chain device, which controls the rotation angle of the louver shaft through the chain to realize the opening and closing of the louvers.

[0022] The air outlet of the heat dissipation channel is equipped with louvers and a louver opening and closing controller, which is connected to the control module.

[0023] The control module obtains the current ambient temperature and humidity, as well as the control parameters of the air conditioner and dehumidifier, through the air conditioning and dehumidification systems of the energy storage cabinet. It also obtains the current ambient wind speed parameters through a wind speed sensor, condensation data through a condensation detection sensor, ambient dust concentration through a dust concentration sensor, adjusts the opening angle of the louvers at the air inlet or outlet of the heat dissipation channel through a louver opening and closing controller, and obtains the current operating status parameters through communication with the energy storage cabinet control system.

[0024] The control module dynamically increases or decreases the airflow velocity by adjusting the opening angle of the louvers in the heat dissipation channel, thereby improving the cooling effect of the air conditioner and the dehumidification effect of the dehumidifier. It makes full use of the temperature and humidity changes in the external environment, adopts natural cooling to reduce the power consumption of the air conditioner and dehumidifier, and reduces the filtration consumption rate of the dust filter in the air duct according to the air quality index of the external environment, thus reducing replacement costs.

[0025] Multiple sensors installed within the energy storage cabinet monitor ambient temperature, humidity, and dust concentration in real time. Combining historical data and intelligent algorithms, the system precisely controls the air conditioner, dehumidifier, and louvers to achieve optimal temperature, humidity, and air quality. The system can automatically adjust to environmental changes, minimizing energy consumption, extending equipment lifespan, and improving system reliability. For example, when the indoor temperature is too high, the system automatically turns on the air conditioner and adjusts the louver angle to accelerate heat dissipation; when the humidity is too high, the system activates the dehumidifier. Furthermore, the system can predict environmental changes based on historical data and make adjustments in advance, improving its adaptability. This intelligent control method not only improves the operating environment of the energy storage cabinet but also reduces operating costs and increases equipment utilization. It is suitable for various scenarios such as data centers, industrial production workshops, and research laboratories.

[0026] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A temperature, humidity, and dust control device for an industrial and commercial energy storage cabinet, comprising an energy storage cabinet body, a control module, sensors, louvers, an air conditioning system, a dehumidification system, and a heat dissipation channel, wherein the heat dissipation channel is the channel for heat dissipation air to enter and exit the energy storage cabinet, characterized in that: Louvers are installed at the connection between the air inlet of the heat dissipation channel and the outer wall of the energy storage cabinet. The louvers are connected to a louver opening and closing controller. A wind speed sensor, a condensation detection sensor, and a dust concentration sensor are installed on the heat dissipation channel inside the louvers. The wind speed sensor, condensation detection sensor, and dust concentration sensor are all connected to the control module through wiring. The control module is also connected to the louver opening and closing controller, and the control module realizes the opening and closing control of the louvers through the louver opening and closing controller.

2. The industrial and commercial energy storage cabinet temperature, humidity, and dust control device according to claim 1, characterized in that: A dust filter is installed between the louvers and the sensor.

3. The temperature, humidity, and dust control device for industrial and commercial energy storage cabinets according to claim 2, characterized in that: The control module is also connected to the air conditioning and dehumidification systems of the energy storage cabinet.

4. The temperature, humidity, and dust control device for industrial and commercial energy storage cabinets according to claim 3, characterized in that: The control module is also connected to the energy storage control system.

5. The temperature, humidity, and dust control device for industrial and commercial energy storage cabinets according to claim 2, characterized in that: The louver opening and closing controller includes a stepper motor, a screw, and a threaded slider mounted on the screw. The stepper motor drives the screw, which in turn controls the opening and closing angle of the louvers in the heat dissipation channel.

6. The industrial and commercial energy storage cabinet temperature, humidity, and dust control device according to claim 5, characterized in that: The threaded slider is movable on each louver.

7. The industrial and commercial energy storage cabinet temperature, humidity and dust control device according to claim 2, characterized in that: The louver opening and closing controller is an electric telescopic device. The electric telescopic device drives the louver control rod, which is installed at one end of the louver. By pulling one end of the louver, it makes the louver rotate around the pivot.

8. The industrial and commercial energy storage cabinet temperature, humidity and dust control device according to claim 2, characterized in that: The louver opening and closing controller is a chain device that controls the rotation angle of the louver shaft through the chain.

9. The temperature, humidity, and dust control device for industrial and commercial energy storage cabinets according to claim 2, characterized in that: The air outlet of the heat dissipation channel is equipped with louvers and a louver opening and closing controller, which is connected to the control module.