Intelligent energy efficiency monitoring system

Through the design of magnetic suction components and buffer components, the poor stability problem caused by equipment vibration of the monitoring device host is solved, convenient disassembly and effective heat dissipation is achieved, and the stability and service life of the monitoring device host is improved.

CN223067316UActive Publication Date: 2025-07-04ANHUI BET ELECTRIC POWER TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421914870.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-07-04
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

In the existing intelligent energy efficiency monitoring system, the monitoring device host has poor stability due to equipment vibration, and further improvement is needed.

Method used

The magnetic suction assembly and buffer assembly are used to fix the monitoring device host, and the cooling assembly is combined to dissipate heat, achieving convenient disassembly and assembly and vibration energy-absorbing.

Benefits of technology

It improves the stability and service life of the monitoring device host, and enhances the flexibility and practicality of the system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of monitoring equipment, in particular to an intelligent energy efficiency monitoring system, which comprises a monitoring device host body, mounting pieces symmetrically fixed at two side ends of the monitoring device host body, mounting holes symmetrically arranged at the upper and lower ends of the mounting pieces, and a mounting seat provided with a magnetic component fixed on the equipment. The beneficial effects of the utility model are that the monitoring device host body and the mounting seat as well as the mounting seat and the equipment can be conveniently disassembled and assembled, the flexibility is high, the vibration generated by the operation of the equipment can be effectively absorbed and buffered, and the reliability of the monitoring device host body is improved. Therefore, the monitoring device host body is effectively prevented from being influenced by equipment vibration, the stability of the monitoring device host body is improved, the monitoring device host body can be effectively cooled, the service life of the monitoring device host body is prolonged, the practicability is greatly improved, and the monitoring device host is suitable for popularization and application.
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Description

Technical Field

[0001] The utility model relates to the field of monitoring equipment, in particular to an intelligent energy efficiency monitoring system. Background Art

[0002] An intelligent energy efficiency monitoring system refers to using a monitoring system to monitor the operating status of equipment, collect energy consumption data, and use a platform to summarize and analyze the energy consumption data, and realizing that the system summarizes and analyzes the energy consumption data of energy-consuming equipment, so as to realize the linkage functions such as equipment operation control, protection, and fault monitoring, achieve user energy efficiency monitoring and prediction, improve the target energy efficiency, and thus achieve the purpose of energy conservation and emission reduction.

[0003] At present, most of the intelligent energy efficiency monitoring systems are for the monitoring device host to monitor equipment, instrument doors, relays, slave modules, etc. (as Figure 1 shown), and the monitoring device host is usually installed on the equipment. During use, due to the vibration of the equipment operation, the monitoring device host will vibrate with it, resulting in poor stability and further improvement is needed.

[0004] Therefore, it is necessary to invent an intelligent energy efficiency monitoring system. Content of the Utility Model

[0005] For this reason, the utility model provides an intelligent energy efficiency monitoring system to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the utility model provides the following technical solutions: an intelligent energy efficiency monitoring system, including a monitoring device host body, mounting plates are symmetrically fixed at both ends of the monitoring device host body, mounting holes are symmetrically opened at the upper and lower ends of the mounting plates, and further including a mounting base, a magnetic attraction component for fixing on the equipment is arranged on the mounting base, a connecting end plate is installed on the mounting base through a buffer component, the mounting plates are detachably installed on the connecting end plate, and a cooling component for assisting in dissipating heat of the monitoring device host body is further arranged at the top of the mounting base.

[0007] Preferably, the magnetic attraction component includes a mounting groove, the mounting groove is opened at the side end of the mounting base, and an electromagnetic chuck is fixed inside the mounting groove.

[0008] Preferably, connection holes are opened at the four corners of the connecting end plate, the four connection holes and the four mounting holes respectively correspond to each other one by one, and fixing bolts penetrate between the corresponding connection holes and mounting holes.

[0009] Preferably, the buffer assembly includes a vertical plate, one side end of the vertical plate is fixed to the side end of the mounting base, limit rods are horizontally fixed at the corners of the side surface of the connection end plate far away from the mounting piece, limit holes are opened at the four corners of the vertical plate, the four limit rods and the four limit holes correspond to each other one by one, the limit rods horizontally pass through the corresponding limit holes, and the surface of the limit rod is in contact with the hole wall of the limit hole. Limit blocks are fixed at the ends of the limit rods, buffer springs are sleeved on the surfaces of the limit rods, one end of each buffer spring abuts against the surface of the connection end plate, and the other end of each buffer spring abuts against the surface of the vertical plate.

[0010] Preferably, the buffer assembly further includes a plurality of dampers, one ends of the plurality of dampers are all fixed to the side end of the vertical plate far away from the mounting base, and the other ends of the plurality of dampers are all fixed to the side end of the connection end plate far away from the mounting piece.

[0011] Preferably, the cooling assembly includes a support frame, the bottom end of the support frame is fixed to the top of the mounting base, a top plate is horizontally fixed at the top end of the support frame, a plurality of air inlets are opened on the top plate, the plurality of air inlets are located directly above the main body of the monitoring device, and first dust filters are fixed inside the air inlets.

[0012] Preferably, a plurality of outer shells are fixed to the bottom of the top plate, the plurality of outer shells correspond to the plurality of air inlets one by one, the outer shells are vertically communicated with the corresponding air inlets, heat dissipation fans are fixed above the interiors of the outer shells, and second dust filters are fixed below the interiors of the outer shells.

[0013] The beneficial effects of the present utility model are as follows: through the combined use of the main body of the monitoring device, the mounting piece, the mounting hole, the mounting base, the magnetic attraction assembly, the connection end plate and the cooling assembly, the disassembly and assembly between the main body of the monitoring device and the mounting base, and between the mounting base and the equipment can be facilitated, with high flexibility, and the vibration generated during the operation of the equipment can be effectively absorbed and buffered, thereby effectively preventing the main body of the monitoring device from being affected by the vibration of the equipment, improving the stability of the main body of the monitoring device, and effectively dissipating heat from the main body of the monitoring device, which is beneficial to the service life of the main body of the monitoring device, greatly improving the practicability and being suitable for popularization and use. Description of the Drawings

[0014] Figure 1 It is a system block diagram of an intelligent energy efficiency monitoring system in the prior art;

[0015] Figure 2 It is a structural schematic diagram of the main body of the monitoring device in the prior art;

[0016] Figure 3 It is a structural sectional view provided by the present utility model;

[0017] Figure 4This is the top view of the structure provided by the present utility model.

[0018] In the figure: 1. Main body of the monitoring device; 2. Mounting piece; 3. Mounting hole; 4. Mounting seat; 5. Mounting groove; 6. Electromagnetic chuck; 7. Connecting end plate; 8. Connecting hole; 9. Fixing bolt; 10. Vertical plate; 11. Limiting rod; 12. Limiting hole; 13. Limiting block; 14. Buffer spring; 15. Damper; 16. Support frame; 17. Top plate; 18. Air inlet; 19. First dust filter; 20. Outer shell; 21. Cooling fan; 22. Second dust filter. Detailed implementation manners

[0019] The following is a description of the preferred embodiments of the present utility model with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present utility model, and are not used to limit the present utility model.

[0020] Please refer to the attached Figures 1-4 The intelligent energy efficiency monitoring system provided by the present utility model includes a main body 1 of the monitoring device. The main body 1 of the monitoring device is a well-known technology in the art. It can monitor the operating state of the device, collect energy consumption data, and use a platform to summarize and analyze the energy consumption data, and realize the system to summarize and analyze the energy consumption data of the energy-consuming equipment, so as to realize the linkage functions such as equipment operation control, protection and fault monitoring, achieve user energy efficiency monitoring and prediction, improve the target energy efficiency, and thus achieve the purpose of energy conservation and emission reduction. Mounting pieces 2 are symmetrically fixed at both ends of the main body 1 of the monitoring device. Mounting holes 3 are symmetrically opened at the upper and lower ends of the mounting pieces 2. It further includes a mounting seat 4. A magnetic adsorption component for fixing on the equipment is provided on the mounting seat 4. The magnetic adsorption component includes a mounting groove 5. The mounting groove 5 is opened at the side end of the mounting seat 4. An electromagnetic chuck 6 is fixed inside the mounting groove 5. It should be noted that the electromagnetic chuck 6 is externally connected to a 220V power supply. By energizing the internal coil to generate magnetic force, it can tightly adsorb on the equipment. A connecting end plate 7 is installed on the mounting seat 4 through a buffer component. The mounting piece 2 is detachably installed on the connecting end plate 7. Connecting holes 8 are opened at the four corners of the connecting end plate 7. The four connecting holes 8 and the four mounting holes 3 respectively correspond one by one. A fixing bolt 9 passes through the corresponding connecting hole 8 and mounting hole 3. Therefore, the user only needs to disassemble and assemble the fixing bolt 9 to control the disassembly and assembly between the main body of the monitoring device and the connecting end plate 7, that is, the present utility model can facilitate the disassembly and assembly between the main body 1 of the monitoring device and the mounting seat 4 and between the mounting seat 4 and the equipment, with high flexibility. A cooling component for assisting in dissipating heat from the main body 1 of the monitoring device is further provided on the top of the mounting seat 4;

[0021] The buffer assembly includes a vertical plate 10. One side end of the vertical plate 10 is fixed to the side end of the mounting base 4. At the corners of the side surface of the connecting end plate 7 away from the mounting piece 2, limiting rods 11 are horizontally fixed. Limiting holes 12 are provided at the four corners of the vertical plate 10. The four limiting rods 11 and the four limiting holes 12 correspond to each other one by one. The limiting rod 11 horizontally passes through the corresponding limiting hole 12, and the surface of the limiting rod 11 fits against the hole wall of the limiting hole 12. That is, under the limiting action of the limiting hole 12, the limiting rod 11 can stably move horizontally without deviation. Limiting blocks 13 are fixed to the ends of the limiting rods 11. The limiting blocks 13 can effectively prevent the limiting rods 11 from falling off the limiting holes 12, that is, prevent the connecting end plate 7 from falling off the vertical plate 10. Buffer springs 14 are sleeved on the surfaces of the limiting rods 11. One end of each buffer spring 14 abuts against the surface of the connecting end plate 7, and the other end of each buffer spring 14 abuts against the surface of the vertical plate 10. That is, when the monitoring device main body 1 mounted on the equipment is subjected to a vibration force due to the vibration of the equipment operation, the connecting end plate 7 and the vertical plate 10 can be displaced relative to each other, so that the buffer spring 14 undergoes elastic deformation to generate an elastic force, thereby effectively buffering the vibration force generated by the equipment operation. That is, the utility model can effectively absorb and buffer the vibration generated by the equipment operation, thereby effectively preventing the monitoring device main body 1 from being affected by the equipment vibration and improving the stability of the monitoring device main body 1. The buffer assembly further includes a plurality of dampers 15. One ends of the plurality of dampers 15 are all fixed to one side end of the vertical plate 10 away from the mounting base 4, and the other ends of the plurality of dampers 15 are all fixed to one side end of the connecting end plate 7 away from the mounting piece 2. Specifically, under the damping action of the dampers 15, it can effectively prevent the elastic force of the buffer springs 14 from causing the monitoring device main body 1 to shake;

[0022] The cooling assembly includes a support frame 16. The bottom end of the support frame 16 is fixed to the top of the mounting base 4. A top plate 17 is horizontally fixed to the top end of the support frame 16. A plurality of air inlets 18 are provided on the top plate 17. The plurality of air inlets 18 are located directly above the monitoring device main body 1. First dust filters 19 are fixed inside the air inlets 18. A plurality of outer shells 20 are fixed to the bottom of the top plate 17. The plurality of outer shells 20 and the plurality of air inlets 18 correspond to each other one by one. The outer shell 20 is vertically communicated with the corresponding air inlet 18. Cooling fans 21 are fixed above the interiors of the outer shells 20. It should be noted that the cooling fans 21 are externally connected to a 220V power supply. Second dust filters 22 are fixed below the interiors of the outer shells 20. Specifically, when the cooling fans 21 are powered on and operate, they can suck the outside air through the air inlets 18, filter it through the first dust filters 19, and then accelerate to form cold air and blow it towards the monitoring device main body 1, thereby performing air cooling and heat dissipation operations on the monitoring device main body 1, which is beneficial to the service life of the monitoring device main body 1.

[0023] The usage process of the present utility model is as follows: First, the user can first magnetically fix the mounting base 4 on the device by the magnetic attraction generated by the energized electromagnetic chuck 6, and then fix the connecting end plate 7 on the vertical plate 10 through the fixing bolt 9, that is, the main body 1 of the monitoring device is installed on the mounting base 4. Similarly, by operating in reverse, the disassembly of the mounting base 4 and the main body 1 of the monitoring device can be controlled. That is, the present utility model can facilitate the disassembly and assembly between the main body 1 of the monitoring device and the mounting base 4, as well as between the mounting base 4 and the device, with high flexibility;

[0024] Then, when the main body 1 of the monitoring device installed on the device is subjected to vibration force due to the vibration of the device during operation, the connecting end plate 7 and the vertical plate 10 can be displaced relative to each other, so that the buffer spring 14 undergoes elastic deformation to generate elastic force, thereby effectively buffering the vibration force generated during the operation of the device. That is, the present utility model can effectively absorb and buffer the vibration generated during the operation of the device, thereby effectively preventing the main body 1 of the monitoring device from being affected by the vibration of the device and improving the stability of the main body 1 of the monitoring device;

[0025] Finally, the user can also energize the cooling fan 21. When the cooling fan 21 operates after being energized, it can suck in the outside air through the air inlet 18, filter it through the first dust filter 19, and then accelerate to form cold air and blow it towards the main body 1 of the monitoring device, thereby performing air-cooling heat dissipation operation on the main body 1 of the monitoring device, which is beneficial to the service life of the main body 1 of the monitoring device.

[0026] The above is only a preferred embodiment of the present utility model. Any person skilled in the art can modify the present utility model by using the technical solutions described above or modify it into an equivalent technical solution. Therefore, any simple modification or equivalent replacement made according to the technical solution of the present utility model falls within the scope of protection required by the present utility model.

Claims

1. An intelligent energy efficiency monitoring system, comprising a main body (1) of a monitoring device, mounting pieces (2) symmetrically fixed to both side ends of the main body (1) of the monitoring device, and mounting holes (3) symmetrically formed at the upper and lower ends of the mounting pieces (2), characterized in that: It further includes a mounting base (4). A magnetic attraction component for fixing on the device is arranged on the mounting base (4). A connection end plate (7) is mounted on the mounting base (4) through a buffer component. The mounting piece (2) is detachably mounted on the connection end plate (7). A cooling component for assisting in dissipating heat of the monitoring device main body (1) is further arranged on the top of the mounting base (4).

2. The intelligent energy efficiency monitoring system according to claim 1, wherein: The magnetic attraction component includes a mounting groove (5). The mounting groove (5) is opened at the side end of the mounting base (4). An electromagnetic chuck (6) is fixed inside the mounting groove (5).

3. The intelligent energy efficiency monitoring system according to claim 1, characterized in that: Connection holes (8) are opened at the four corners of the connection end plate (7). The four connection holes (8) and the four mounting holes (3) correspond to each other one by one. A fixing bolt (9) penetrates between the corresponding connection hole (8) and the mounting hole (3).

4. The intelligent energy efficiency monitoring system according to claim 1, wherein: The buffer component includes a vertical plate (10). One side end of the vertical plate (10) is fixed to the side end of the mounting base (4). Limiting rods (11) are horizontally fixed at the corners of the side end surface of the connection end plate (7) far from the mounting piece (2). Limiting holes (12) are opened at the four corners of the vertical plate (10). The four limiting rods (11) and the four limiting holes (12) correspond to each other one by one. The limiting rod (11) horizontally penetrates through the corresponding limiting hole (12), and the surface of the limiting rod (11) is in contact with the hole wall of the limiting hole (12). Limiting blocks (13) are fixed at the ends of the limiting rods (11). Buffer springs (14) are sleeved on the surfaces of the limiting rods (11). One end of the buffer spring (14) abuts against the surface of the connection end plate (7), and the other end of the buffer spring (14) abuts against the surface of the vertical plate (10).

5. The intelligent energy efficiency monitoring system according to claim 4, wherein: The buffer component further includes a plurality of dampers (15). One ends of the plurality of dampers (15) are all fixed to the side end of the vertical plate (10) far from the mounting base (4). The other ends of the plurality of dampers (15) are all fixed to the side end of the connection end plate (7) far from the mounting piece (2).

6. The intelligent energy efficiency monitoring system according to claim 1, wherein: The cooling component includes a support frame (16). The bottom end of the support frame (16) is fixed to the top of the mounting base (4). A top plate (17) is horizontally fixed at the top end of the support frame (16). A plurality of air inlets (18) are opened on the top plate (17). The plurality of air inlets (18) are located directly above the monitoring device main body (1). First dust-proof filters (19) are fixed inside the air inlets (18).

7. The intelligent energy efficiency monitoring system according to claim 6, wherein: A plurality of outer shells (20) are fixed to the bottom of the top plate (17). The plurality of outer shells (20) and the plurality of air inlets (18) correspond to each other one by one. The outer shell (20) and the corresponding air inlet (18) are connected up and down. Heat dissipation fans (21) are fixed above the interiors of the outer shells (20). Second dust-proof filters (22) are fixed below the interiors of the outer shells (20).