一种电房空调远程监控系统

By monitoring the temperature of the power room cabinets with thermal imaging devices and adjusting the air outlets and air conditioning power, the high energy consumption problem of the power room air conditioning system when facing uneven heat generation in different cabinets was solved, achieving efficient and energy-saving heat dissipation.

CN224520500UActive Publication Date: 2026-07-17CHAODIAN (GUANGDONG) INTEGRATED ENERGY SERVICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHAODIAN (GUANGDONG) INTEGRATED ENERGY SERVICE CO LTD
Filing Date
2025-07-31
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing power room air conditioning systems, when faced with uneven heat generation from different cabinets, generally reduce temperature by increasing air conditioning power, leading to increased heat dissipation energy consumption.

Method used

A thermal imaging device is used to monitor the cabinet temperature. A drive mechanism is used to drive a sliding baffle to adjust the position and size of the air outlet. The air conditioning power is adjusted according to the heat generated by the cabinet to achieve targeted air supply and heat dissipation.

Benefits of technology

This reduced the overall heat dissipation power consumption of the power room, improved heat dissipation efficiency, and reduced the power demand for air conditioning.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224520500U_ABST
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Abstract

本实用新型提供一种电房空调远程监控系统;当电房内的机柜发热量存在差异时,本实用新型能够针对性地给予发热量较高的机柜进行送风散热,无需将空调功率调高而对整个电房的空调温度较低,从而降低电房的散热功耗;本实用新型属于电房的技术领域。
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Claims

1. A remote monitoring system for an electrical room air conditioner, characterized by, include: An electrical room (1) is provided, and an air conditioner (2) is installed inside the electrical room (1). One wall of the electrical room (1) is equipped with an air duct (4) and a thermal imaging device (3). One end of the air duct (4) is connected to the air supply port (21) of the air conditioner (2). The outermost side of the air duct (4) is an open surface (41). The bottom end of the open surface (41) is equipped with a guide rail (42) and a drive mechanism. Several sliding baffles (5) are arranged on the guide rail (42). The drive mechanism... The mechanism is used to drive the baffle (5) to move so that two adjacent baffles (5) close or form an air outlet (55). Several cabinets (6) are arranged in front of the full-face opening (41). The thermal imaging device (3) is used to remotely monitor the temperature of each cabinet (6) so as to control the power of the air conditioner (2) according to the temperature status of each cabinet (6) and control the drive mechanism to drive the baffle (5) to move and adjust the distribution position and size of the air outlet (55).

2. The remote monitoring system for an electric room air conditioner according to claim 1, wherein: One side of the baffle (5) is an adsorption block (51), and the other side of the baffle (5) is an electromagnet (52). The guide rail (42) is made of conductive material. The baffle (5) is equipped with a pulley (53) that slides on the guide rail (42). The pulley (53) is made of conductive material and is electrically connected to one pole of the electromagnet (52). The top of the baffle (5) is provided with a conductive antenna (54), which is connected to the other pole of the electromagnet (52). Electrical connection, the top of the full-face opening (41) is provided with conductive contact strips (43) that contact each of the antennae (54), the antennae (54) can slide on the conductive contact strips (43), the driving mechanism is a power module for driving one of the baffles (5) to move, when one of the baffles (5) moves, the time for the electromagnet (52) to attract the adsorption block (51) is controlled, driving the remaining baffles (5) to move, so that the remaining baffles (5) move to the target position.

3. The remote monitoring system for an electric room air conditioner according to claim 1, wherein: One side of the baffle (5) is a permanent magnet (56), and the other side of the baffle (5) is an electromagnet (52). The guide rail (42) is made of conductive material. The baffle (5) is equipped with a pulley (53) that slides on the guide rail (42). The pulley (53) is made of conductive material and is electrically connected to one pole of the electromagnet (52). The top of the baffle (5) is provided with a conductive antenna (54), which is electrically connected to the other pole of the electromagnet (52). The top of the full-face opening (41) is provided with conductive contact strips (43) that contact each antenna (54). The antenna (54) can slide on the conductive contact strips (43). The driving mechanism is a power supply device that controls the current direction and power of the electromagnet (52) so that the magnetic field generated by the electromagnet (52) reacts with the permanent magnet (56) to control the position of each baffle (5).

4. The remote monitoring system for an electric room air conditioner according to claim 2 or 3, wherein: The guide rail (42) and the conductive contact strip (43) are electrically connected to a resistor (8) to determine the position of each baffle (5) according to different resistance values.

5. The remote monitoring system for an electric room air conditioner according to claim 1, wherein: The cabinet (6) is provided with an air inlet (61), which is located directly in front of the full-face opening (41), and an air intake fan is installed in the air inlet (61).

6. The remote monitoring system for an electric room air conditioner according to claim 1, wherein: The electrical room (1) is equipped with a network host (7), which is used to collect information from the thermal imaging device (3) and the working information of the air conditioner (2).