Communication machine room electrical integration intelligent monitoring protection system

CN224762347UActive Publication Date: 2026-09-18BEIJING RAILWAY ADMINISTATION +2
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Patent Information

Application Number
CN202521885185.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2026-09-18
Estimated Expiration
2035-09-02

AI Technical Summary

Technical Problem

[0004]现阶段的机房电气一体化智能监控保护系统中,多采用传感器预警结合视频监控的方式进行火灾防控,然而,由于机房内电气设备较多,直接采用水灭火非常容易造成电气损坏,而等到管理人员赶到又会造成处理滞后的问题,因此现阶段的通信机房电气一体化智能保护系统在处置过程中存在时效性较低的问题

Benefits of technology

[0017] This utility model provides an integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms. It has the following beneficial effects:

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Abstract

The utility model relates to electrical protection equipment technical field discloses communication machine room electrical integration intelligent monitoring protection system, including the protection frame, the protection frame is embedded in the building shed roof, the protection frame is assembled with the storage container, the storage container is connected with the protection frame separately, the bottom of storage container is provided with the discharge pipe, is provided with the discharge control assembly on the discharge pipe. The utility model discloses independent fire extinguishing device, through the protection frame can install independently to the equipment, and the installation position is flexibly arranged according to space, and the storage container on the protection frame stores the fire extinguishing gas, when the fire, through the control discharge control assembly opens the discharge pipe, and then makes the fire extinguishing gas through the injection flow guide device more quickly to escape to the fire source, through the smoke feeling direct control fire extinguishing device work, carries out the early treatment before the personnel reaches, improves the timeliness of fire fighting.
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Description

Technical Field

[0001] This utility model relates to the field of electrical protection equipment technology, specifically to an integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms. Background Technology

[0002] Modern life and work are increasingly inseparable from the assistance of communication equipment. Communication equipment rooms integrate a variety of electrical equipment used for communication. In order to ensure the stable operation of electrical equipment, communication equipment rooms are usually equipped with integrated intelligent monitoring and protection equipment for equipment room electrical systems.

[0003] Current integrated intelligent monitoring and protection equipment for computer room electrical systems mainly includes multiple functional components such as power distribution units, uninterruptible power supplies, overload protection, grounding systems, and monitoring sensors. In the process of modern integrated electrical protection for computer rooms, fire prevention is the most important task.

[0004] At present, the integrated intelligent monitoring and protection system for electrical equipment rooms mostly adopts the method of sensor early warning combined with video monitoring for fire prevention and control. However, due to the large number of electrical devices in the equipment room, directly using water to extinguish fires can easily cause electrical damage. Furthermore, waiting for management personnel to arrive will cause delays in handling the situation. Therefore, the current integrated intelligent protection system for electrical equipment rooms for communication equipment rooms has the problem of low timeliness in the handling process.

[0005] In light of this, in-depth research into the aforementioned issues led to the creation of this case. Utility Model Content

[0006] To address the shortcomings of existing technologies, this utility model provides an integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms, which solves the existing technical problems.

[0007] To achieve the above objectives, this utility model provides the following technical solution:

[0008] The communication equipment room electrical integrated intelligent monitoring and protection system includes a protective frame embedded in the building roof, a storage container mounted on the protective frame, the storage container being separately connected to the protective frame, a discharge pipe at the bottom of the storage container, and a discharge control component on the discharge pipe.

[0009] The discharge control assembly includes a fixing plate, from which a control plate is fixed. A smoke sensor is provided at the bottom of the control plate, a frame electromagnet is provided on the control plate, and a battery is also provided on the control plate.

[0010] The discharge control assembly also includes a control valve. The discharge pipe is equipped with a control valve, which is a gate valve. The valve stem of the control valve is provided with a limiting hole. The telescopic end of the frame electromagnet is inserted into the limiting hole. A propulsion controller is provided on one side of the control valve and connected to the valve stem of the control valve.

[0011] The storage container contains high-pressure carbon dioxide gas, and a jet guide device is provided below the discharge pipe.

[0012] Preferably, the battery, the control switch controlling the electromagnet, and the smoke sensor constitute a control circuit.

[0013] Preferably, a limiting rod is connected to the telescopic end of the frame electromagnet, and the limiting rod is inserted into a limiting hole.

[0014] Preferably, the propulsion controller includes a propulsion telescopic rod, which is arranged parallel to one side of the valve stem of the control valve. The telescopic end of the propulsion telescopic rod is connected to the end of the valve stem through a connecting plate, and a thrust spring is sleeved on the outside of the propulsion telescopic rod.

[0015] Preferably, the jet guiding device includes a fixed pipe connected to the discharge pipe, and a hemispherical jet head extends from the bottom of the fixed pipe, with a plurality of jet holes arranged in a ring on the jet head.

[0016] Beneficial effects

[0017] This utility model provides an integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms. It has the following beneficial effects:

[0018] This integrated intelligent monitoring and protection system for the electrical equipment room employs an independent fire extinguishing device. The equipment can be installed independently through a protective frame, and the installation location can be flexibly arranged according to the space. The storage container on the protective frame stores fire extinguishing gas. When a fire occurs, the discharge control component opens the discharge pipe, allowing the fire extinguishing gas to disperse more quickly to the fire source through the spray guide device. The fire extinguishing device is directly controlled by the smoke detector, enabling preliminary treatment before personnel arrive, thus improving the timeliness of fire fighting. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms described in this utility model.

[0020] Figure 2 This is a partial cross-sectional view of the intelligent monitoring and protection system for the electrical integration of the communication equipment room described in this utility model.

[0021] Figure 3This is a side sectional view of the communication equipment room electrical integrated intelligent monitoring and protection system described in this utility model.

[0022] In the diagram: 1. Protective frame; 2. Storage container; 3. Discharge pipe; 4. Fixing plate; 5. Control plate; 6. Smoke sensor; 7. Frame electromagnet; 8. Battery; 9. Control valve; 10. Valve stem; 11. Limiting hole; 12. Limiting rod; 13. Propulsion controller; 14. Spray guide device; 131. Propulsion telescopic rod; 132. Connecting plate; 133. Reverse thrust spring; 141. Fixing pipe; 142. Spray head; 143. Spray hole. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figure 1-3 This utility model provides an implementation scheme: In the application of modern communication equipment rooms, in order to ensure the stable operation of the communication equipment room, an integrated electrical protection device is usually configured. Among them, fire early warning and handling are the most important aspects of integrated protection of communication equipment rooms. At present, fire early warning devices often only have monitoring and alarm functions, and manual on-site maintenance is required, so the timeliness of handling is not good.

[0025] To address the aforementioned issues, this application discloses an integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms, comprising a protective frame 1. In practice, the protective frame 1 is embedded in the building's ceiling. The protective frame 1 serves as the installation frame for the entire monitoring and protection system, primarily for fire prevention. A storage container 2 is mounted on the protective frame 1, and the storage container 2 is separately connected to the protective frame 1. The storage container 2 is a rectangular hollow shell containing high-pressure carbon dioxide gas. A discharge pipe 3 is located at the bottom of the storage container 2, and a discharge control component is installed on the discharge pipe 3. The discharge control component is connected to a temperature sensor and a smoke detector. When a smoke alarm is detected or the temperature is too high, the discharge control component opens the discharge pipe 3, using high pressure to discharge the carbon dioxide gas, extinguishing the fire source in the communication equipment room. This, combined with power disconnection, prevents the fire from spreading.

[0026] According to the instruction manual Figure 1-3It is known that the above-mentioned discharge control component includes a fixed plate 4, a fixed plate 4 extending from one side of the protective frame 1, a control plate 5 fixed on the fixed plate 4, a smoke sensor 6 provided at the bottom of the control plate 5, a frame electromagnet 7 provided on the control plate 5, and a battery 8 provided on the control plate 5.

[0027] In the specific implementation process, the battery 8, the control switch of the control electromagnet and the smoke sensor 6 constitute a control circuit. The frame electromagnet 7 is powered by the battery 8 alone to ensure the effectiveness of the equipment. When a fire occurs, the smoke sensor 6 detects smoke and then turns on the switch of the frame electromagnet 7, causing the extension end of the frame electromagnet 7 to retract, thereby causing the frame electromagnet 7 to control the movement of the valve 9.

[0028] According to the instruction manual Figure 1-3 It can be seen that the above-mentioned discharge control component also includes a control valve 9. The discharge pipe 3 is equipped with a control valve 9, which is a gate valve. The valve stem 10 of the control valve 9 is provided with a limit hole 11. The telescopic end of the frame electromagnet 7 is inserted into the limit hole 11. A push controller 13 is provided on one side of the control valve 9 and connected to the valve stem 10 of the control valve 9.

[0029] In the specific implementation process, the frame electromagnet 7 is normally closed. Under the action of the spring, the telescopic end of the frame electromagnet 7 is always inserted in the limiting hole 11 to limit the valve stem 10 of the control valve 9. When it is necessary to open the discharge pipe 3, the telescopic end of the frame electromagnet 7 is retracted, so that the valve stem 10 of the control valve 9 is unlocked. Then, under the action of the push controller 13, the valve stem 10 of the control valve 9 moves, so that the discharge pipe 3 is opened.

[0030] Furthermore, a jet guiding device 14 is installed below the discharge pipe 3 to guide the extinguishing gas when it is ejected, thereby making the gas diffuse faster and improving the extinguishing efficiency.

[0031] As a preferred option, a limiting rod 12 is connected to the telescopic end of the frame electromagnet 7. The limiting rod 12 is inserted into the limiting hole 11 to protect the telescopic end of the frame electromagnet 7.

[0032] As a preferred option, further according to the appendix to the instruction manual... Figure 1-3 It can be seen that the above-mentioned propulsion controller 13 includes a propulsion telescopic rod 131, which is arranged parallel to one side of the valve stem 10 of the control valve 9. The telescopic end of the propulsion telescopic rod 131 is connected to the end of the valve stem 10 through a connecting plate 132. A reverse thrust spring 133 is sleeved on the outside of the propulsion telescopic rod 131.

[0033] In the specific implementation process, since the push telescopic rod 131 is parallel to the valve stem 10 of the control valve 9, and the telescopic end of the push telescopic rod 131 is connected to the end of the valve stem 10 through the connecting plate 132, when the limit of the valve stem 10 is released, under the action of the push spring 133, the push telescopic rod 131 and the valve stem 10 are pushed out, releasing the limit on the discharge pipe 3.

[0034] As a preferred option, further according to the appendix to the instruction manual... Figure 1-3 It can be seen that the above-mentioned jet guiding device 14 includes a fixed pipe 141 connected to the discharge pipe 3, and a hemispherical jet head 142 extends from the bottom of the fixed pipe 141. The jet head 142 is provided with a plurality of jet holes 143 in a ring array.

[0035] In the specific implementation process, the fixed pipe 141 is threadedly connected to the discharge pipe 3. After the discharge pipe 3 is opened, the high-pressure carbon dioxide gas enters the nozzle 142, and then the several nozzle holes 143 on the nozzle 142 play a guiding and diverting role, so that the carbon dioxide gas can cover the space more quickly and ensure the fire extinguishing range.

[0036] In summary, this integrated intelligent monitoring and protection system for the electrical equipment room employs an independent fire extinguishing device. The protective frame 1 allows for independent installation of the equipment, with flexible placement based on available space. The storage container 2 on the protective frame 1 stores fire extinguishing gas. In the event of a fire, the exhaust pipe 3 is opened by controlling the exhaust control component, allowing the fire extinguishing gas to dissipate more quickly to the fire source via the spray guide device 14. The fire extinguishing device is directly controlled by smoke detectors, enabling preliminary treatment before personnel arrive, thus improving the timeliness of firefighting.

[0037] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An integrated intelligent monitoring and protection system for electrical systems in a communication equipment room, comprising a protective frame (1) embedded in the building roof, wherein a storage container (2) is mounted on the protective frame (1), and the storage container (2) is separately connected to the protective frame (1), characterized in that, The storage container (2) is provided with a discharge pipe (3) at the bottom, and a discharge control component is provided on the discharge pipe (3); The discharge control assembly includes a fixing plate (4), the fixing plate (4) extends from one side of the protective frame (1), a control plate (5) is fixed on the fixing plate (4), a smoke sensor (6) is provided at the bottom of the control plate (5), a frame electromagnet (7) is provided on the control plate (5), and a battery (8) is also provided on the control plate (5). The discharge control assembly also includes a control valve (9), and the discharge pipe (3) is provided with a control valve (9). The control valve (9) is a gate valve. The valve stem (10) of the control valve (9) is provided with a limiting hole (11). The telescopic end of the frame electromagnet (7) is inserted into the limiting hole (11). A propulsion controller (13) is provided on one side of the control valve (9) and connected to the valve stem (10) of the control valve (9). The storage container (2) contains high-pressure carbon dioxide gas, and a jet guide device (14) is provided below the discharge pipe (3).

2. The integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms according to claim 1, characterized in that, The battery (8), together with the control switch for controlling the electromagnet and the smoke sensor (6), constitute a control circuit.

3. The integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms according to claim 2, characterized in that, A limiting rod (12) is connected to the telescopic end of the frame electromagnet (7), and the limiting rod (12) is inserted into the limiting hole (11).

4. The integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms according to claim 3, characterized in that, The propulsion controller (13) includes a propulsion telescopic rod (131), which is arranged parallel to the valve stem (10) of the control valve (9). The telescopic end of the propulsion telescopic rod (131) is connected to the end of the valve stem (10) through a connecting plate (132). A thrust spring (133) is sleeved on the outside of the propulsion telescopic rod (131).

5. The integrated intelligent monitoring and protection system for electrical systems in communication equipment rooms according to claim 4, characterized in that, The jet guide device (14) includes a fixed pipe (141) connected to the discharge pipe (3), and a hemispherical jet head (142) extends from the bottom of the fixed pipe (141). The jet head (142) is provided with a plurality of jet holes (143) arranged in a ring array.