Safety monitoring equipment for unmanned heat supply station

By integrating monitoring probes, sensors, and automatic alarm systems, the safety monitoring equipment for unmanned heating stations has solved the problems of low efficiency and safety hazards in traditional heating stations, realizing unmanned operation and automated management, and improving the safety and operational efficiency of heating stations.

CN223525227UActive Publication Date: 2025-11-07BEIJING HUIYUAN HANYU INTELLIGENT CONTROL TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202423184860.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-07
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Traditional heating stations are inefficient and pose safety hazards, requiring a large number of personnel for duty and monitoring.

Method used

Design a safety monitoring device for unmanned heating stations, which integrates monitoring probes, sensor detection devices, alarms, data acquisition processors, etc., to achieve real-time monitoring and automatic alarm, and can automatically shut off the equipment when an anomaly is detected.

Benefits of technology

This has enabled unmanned operation, improved the safety and management efficiency of heating stations, reduced operating costs, and decreased safety hazards and manpower requirements.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of monitoring equipment, in particular to safety monitoring equipment for an unmanned heat supply station. According to the technical scheme, the device comprises a monitoring probe, a sensor detection device, a multi-source data collector and a data processor, the monitoring probe and a sensor are both connected with the data collector and the data processor, a connecting rod is fixedly installed on one side of the monitoring probe, a fixing plate is fixedly installed at one end of the connecting rod, and the fixing plate is fixedly connected with the sensor detection device. A mounting plate is fixedly arranged in the middle of the bottom end of the monitoring probe, a protective shell is fixedly arranged around a data collector, the sensor is connected with the data collector through a corrosion-resistant cable, the data collector is connected with a data processor, and one side of the data processor is connected with an alarm through a connecting line. According to the utility model, through the combination of the monitoring probe and various sensors, the safety monitoring of equipment in various places can be realized, and the operation is very convenient.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of monitoring equipment, especially relates to a unmanned heat supply station safety monitoring equipment. BACKGROUND

[0002] The unmanned heat supply station safety monitoring equipment integrates data acquisition, remote communication, real-time alarm and various functions. It uses advanced data acquisition technology to obtain real-time parameters in the heat supply station, such as water temperature, pressure, flow, etc., and analyzes the collected parameters through a data processor. Once the data is abnormal or the equipment fails, the system will trigger an alarm mechanism immediately, reminding the manager through SMS, buzzer, etc. to ensure that the problem is solved in time. This intelligent control method not only improves the heating efficiency, but also reduces the operating cost.

[0003] Traditional heat supply stations need a lot of manpower for value and monitoring, which is not only inefficient, but also has safety hazards.

[0004] Therefore, in view of the above-mentioned existing monitoring device cannot be combined with the sensor, and the monitoring object of different places of heat supply station is not the same, a unmanned heat supply station safety monitoring equipment can be designed to solve the above-mentioned problems. INVENTION CONTENTS

[0005] In order to overcome the shortcomings of traditional heat supply station, which is not only inefficient, but also has safety hazards, and needs a lot of manpower for value and monitoring.

[0006] The technical scheme of the utility model discloses a unmanned heat supply station safety monitoring equipment, including monitoring probe, sensor detection device, alarm, cable, data acquisition processor, fixed bolt, protective cover, rubber pad, mounting plate, monitoring alarm, connecting rod, fixed plate, cable groove, sucking disc, display window, cable, rubber gasket, sensor, fixed plate, through -hole, the side fixed mounting of monitoring probe has fixed plate, the side fixed mounting of fixed plate has connecting rod, the one end fixed mounting of connecting rod has mounting plate, the right side fixed setting of mounting plate has rubber pad, the both sides fixed setting of monitoring probe has protective cover, the outside fixed setting of data acquisition processor has protective shell, the inside setting of protective shell has sucking disc, the downside setting has cable groove, the data acquisition processor and cable pass through the fixed, sensor detection device top setting has fixed plate, the top of fixed plate is equipped with through -hole.

[0007] As preferred, the top of the monitoring probe is fixed with a protective cover, and a fixed bolt is pre-set on one side of the top of the protective cover. A rubber pad is pre-set between the monitoring probe and the protective cover.

[0008] As preferred, the bottom end side of the monitoring probe is fixedly provided with a connecting rod, the middle part of the connecting rod is fixedly connected with a monitoring alarm, the tail part of the monitoring alarm is connected with a cable, and one side of the monitoring probe is connected with a data acquisition processor through a connecting line.

[0009] As preferred, the outside of the data acquisition processor is fixedly provided with a protective cover, the front side of the protective cover is provided with a display window, and the display window corresponds to the position of the display screen of the data acquisition processor.

[0010] As preferred, the inside of the protective cover is fixedly provided with a suction cup, the position of the suction cup corresponds to the installation position of the data acquisition processor, and the surface of the suction cup is provided with convex points.

[0011] As preferred, the lower side of the protective cover is pre-provided with a cable groove, and the size of the cable groove is related to the cable used.

[0012] As preferred, the data acquisition processor is directly connected with the switch of the related equipment, when the collected data reaches a certain abnormality, the data acquisition processor can automatically cut off the equipment switch and alarm through the alarm.

[0013] As preferred, the top end of the sensor detection device is fixedly provided with a No. 2 fixed plate, a rubber pad is fixedly arranged between the No. 2 fixed plate and the sensor detection device, the middle part of the No. 2 fixed plate is pre-provided with a through hole, and the size of the through hole corresponds to the size of the No. 2 cable.

[0014] The utility model discloses the beneficial effect:

[0015] 1, by setting the whole device is connected respectively fixed, wherein the fixed plate of monitoring probe both ends have fixed bolt, followed by connecting rod and fixed plate are connected fixed, second fixed plate and monitoring probe connection, and monitoring probe and protective cover are connected with each other through fixed bolt, can make monitoring probe get effective protection, wherein the alarm and connecting rod are fixed together through the clamping groove, through the cable and monitoring probe connection, and installed on the other side of connecting rod pressing plate and rubber gasket, and the connection with the wall is more stable and fast, the data acquisition processor protection shell is fixedly provided with suction cup with convex point, the data acquisition processor can be fixed well, and the cable groove on the lower side can make the cable connected with monitoring probe, alarm and sensor detection device pass through and connect together, the display window can be seen through the protective shell the content displayed by data acquisition processor, the sensor is installed on the equipment needed to carry out data monitoring through the fixed plate, the cable of sensor monitoring device is connected with the sensor through the through hole so as to be connected with the data sampling controller, the monitoring probe can monitor the implementation of each place of heating station in real time, when detecting abnormal state, the self-contained alarm can be triggered to remind, the data acquisition processor and the switch of the related equipment are directly connected, when the collected data reaches a certain abnormal degree, the data acquisition processor can cut off the equipment switch, prevent accidents. Overcome the traditional heating station not only low efficiency, but also exist security risks, need a large number of manpower to keep watch and monitor the shortcomings; BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The main structure of the unmanned heating station safety monitoring equipment is shown.

[0017] Figure 2 The main structure of the unmanned heating station safety monitoring equipment is shown.

[0018] Figure 3 The main structure of the unmanned heating station safety monitoring equipment is shown.

[0019] Figure 4 The main structure of the unmanned heating station safety monitoring equipment is shown.

[0020] The main structure of the unmanned heating station safety monitoring equipment is shown. DETAILED DESCRIPTION

[0021] The utility model will be further explained in connection with the drawings and examples.

[0022] In the existing found can implement technology, a unmanned heating station safety monitoring equipment is introduced as follows:

[0023] I. Equipment Overview

[0024] Unmanned heating station safety monitoring equipment is a device specially used for all-round safety monitoring and management of unmanned heating station. It integrates various sensors, communication modules and monitoring software, can real-time perceive the running state, environmental condition and safety hidden danger of heating station and other key information, and timely transmit these information to monitoring center, so as to guarantee the safe and stable operation of heating station.

[0025] II. Hardware Components

[0026] Sensor System

[0027] Temperature Sensor

[0028] Distributed in various key parts of heating station, such as around boiler, pipeline, heat exchanger and other equipment, used for accurate measurement of equipment running temperature. For example, temperature sensors are installed in the furnace and outside the furnace wall of the boiler, which can monitor the combustion temperature and shell temperature in real time. When the temperature exceeds the set safety threshold (such as high boiler wall temperature may indicate scale accumulation or local overheating), an alarm can be sent in time.

[0029] Pressure Sensor

[0030] Installed on heating pipelines and pressure vessels (such as hot water storage tanks), monitors the internal pressure changes. For example, the pressure of heating pipeline should be kept within a certain range during normal operation. If the pressure abnormally rises (due to pipeline blockage or water pump failure, etc.), the pressure sensor will immediately detect and notify the monitoring system.

[0031] Liquid Level Sensor

[0032] Mainly used for monitoring the liquid level of various water tanks, pools and other containers in heating station. In hot water storage tank, liquid level sensor can ensure that the water level is in a reasonable range, prevent dry burning of heating equipment due to low water level, or overflow caused by high water level, etc.

[0033] Gas Sensor

[0034] Detects the concentration of harmful gases in heating station, such as carbon monoxide (CO) and methane (CH4), etc. Near gas heating equipment, leakage of these gases may cause explosion or poisoning accident. Gas sensor can quickly detect trace leakage, and when the concentration reaches a dangerous level, the alarm mechanism is started quickly.

[0035] Flame sensor

[0036] For heating stations that use combustion heating, a flame sensor is used to monitor the flame state in the boiler or burner. It can determine whether the flame is burning normally, extinguished or abnormally fluctuating. For example, when the flame is accidentally extinguished, the sensor can detect it in time to prevent gas leakage and explosion accidents.

[0037] Video monitoring camera

[0038] Installed in key areas of the heating station, such as equipment rooms, entrances and exits, fuel storage areas, etc., to provide real-time video images. These cameras have night vision and high resolution, and can clearly record personnel activities, equipment operating status and possible abnormal situations in the station, such as illegal intrusion, equipment damage, etc.

[0039] Data acquisition and communication module

[0040] Data acquisition unit

[0041] Responsible for collecting signals from various sensors and converting them into digital signals for preliminary processing. For example, converting the analog voltage signal of the temperature sensor into a digital temperature value to ensure data accuracy and consistency.

[0042] Communication unit

[0043] Using various communication methods such as Ethernet, 4G / 5G wireless network, etc., the collected data is transmitted to the remote monitoring center. Ethernet communication is suitable for heating stations with wired network access, providing stable and high-speed data transmission; 4G / 5G network facilitates remote data transmission in the absence of wired networks, ensuring that monitoring equipment can work normally in various environments.

[0044] Local control and alarm unit

[0045] Local controller

[0046] According to the preset rules and parameters, the collected data is analyzed and judged. For example, when the temperature sensor detects that the temperature is too high, the local controller can first try to adjust the relevant equipment (such as reducing the power of the burner) to control the temperature.

[0047] Alarm device

[0048] Including audible and visual alarms, when potential safety hazards (such as pressure exceeding limits, harmful gas leaks, etc.) are detected, strong sound and light signals will be emitted to alert nearby workers or passers-by of potential dangers. At the same time, the alarm information will also be sent to the remote monitoring center through the communication module.

[0049] III. Software System Functionality

[0050] Real-time Monitoring and Data Display

[0051] The monitoring software can display real-time data from various sensors in the heating station on the screens at the monitoring center, in intuitive charts (such as temperature-time curves, pressure change histograms, etc.) and numerical form. The operating personnel can see the running state of the heating station at a glance, such as the specific values of current temperature, pressure, liquid level, etc.

[0052] Abnormality Detection and Alarm Management

[0053] The software has built-in intelligent algorithms that can automatically analyze data and identify abnormal situations. When data is detected to be outside the normal range or to have abnormal fluctuations, an alarm will be sent out in a timely manner. The alarm information includes the alarm type (such as excessively high temperature, excessively low liquid level, etc.), the alarm location (specific equipment or area), and the alarm time, etc. At the same time, the system records the alarm history, facilitating subsequent queries and analysis of the causes of accidents.

[0054] Remote Control Function

[0055] In some cases, the monitoring personnel can remotely control some of the equipment in the heating station through the software. For example, when the pressure is found to be too high, some valves can be remotely closed or the speed of the water pump can be adjusted to reduce the pressure, achieving emergency intervention on the running state of the heating station.

[0056] Data Analysis and Prediction

[0057] Long-term accumulated data is analyzed to uncover the rules and potential problems in the operation of the heating station. For example, by analyzing the trends of temperature and pressure data, the risk of equipment failure can be predicted. If the pressure in a section of pipe has been continuously decreasing for a period of time, it may indicate that there is a leakage in the pipe, so that maintenance measures can be taken in advance.

[0058] IV. Application Advantages and Significance

[0059] Improved Safety

[0060] The safety monitoring equipment for unmanned heating stations can monitor various safety hazards in real time, promptly discover and handle problems, greatly reducing the probability of accidents, and ensuring the safety of the heating station and the surrounding environment.

[0061] Reduced Operating Costs

[0062] Because it can be unmanned, the number of on-site staff is reduced, reducing labor costs. At the same time, by discovering equipment failure hazards in a timely manner and taking preventive maintenance measures, severe damage to equipment can be avoided, reducing maintenance and equipment replacement costs.

[0063] Efficiency of management is improved

[0064] The real-time data provided by the monitoring device and the remote control function make the management of the heat supply station more convenient and efficient. The management personnel can centrally manage multiple heat supply stations at the monitoring center, keep abreast of the operation of each heat supply station at any time, and make decisions in a timely manner.

[0065] Please refer to Figures 1-4The utility model provides an embodiment: a kind of unmanned heating station safety monitoring equipment, including monitoring probe 1, sensor detection device 2, alarm 3, cable 4, data acquisition processor 5, fixed bolt 6, protective cover 7, rubber pad 8, mounting plate 9, monitoring alarm 10, connecting rod 11, fixed plate 12, cable slot 13, suction cup 14, display window 15, cable 16, rubber gasket 17, sensor 18, second fixed plate 19, through -hole 20, one side of monitoring probe 1 is fixedly installed with fixed plate 12, one side of fixed plate 12 is fixedly installed with connecting rod 11, one end of connecting rod 11 is fixedly installed with mounting plate 9, the right side of mounting plate 9 is fixedly provided with rubber pad 8, both sides of monitoring probe 1 are fixedly provided with protective cover 7, the outside of data acquisition processor 5 is fixedly provided with protective shell, and the inside of protective shell is equipped with suction cup 14, and the lower side is equipped with cable slot 13, and it is convenient for fixed data acquisition processor 5 and cable 4 pass, sensor detection device 2 top is equipped with second fixed plate 19, and the top of second fixed plate 19 is equipped with through -hole 20. Monitoring probe 1 fixed plate 12 both ends are respectively provided with fixed bolt 6, then connecting rod 11 is connected with fixed plate 12, and then fixed plate 12 is connected with monitoring probe 1, and monitoring probe 1 and protective cover 7 are connected with each other by fixed bolt 6, can make monitoring probe 1 effectively protected, wherein monitoring alarm 10 and connecting rod 11 are fixed together by clamping groove, are connected with monitoring probe 1 by cable 4, and mounting plate 9 and rubber pad 8 are installed on the other side of connecting rod 11, and the connection with wall surface is more stable and fast, the inside of the protective cover 7 of data acquisition processor 5 is fixedly provided with suction cup 14 with convex point, can be well fixed data acquisition processor 5, and the lower cable slot 13 can make the cable 4 of connecting monitoring probe 1, alarm 3 and sensor detection device 2 pass and be connected together with data acquisition processor 5, display window 15 can be directly observed the content shown by data acquisition processor 5 through protective cover 7, sensor 18 is installed to the equipment needed to carry out data monitoring by second fixed plate 19, and the second cable 16 of sensor detection device 2 is connected with sensor 18 by through -hole 20 to be connected with data acquisition processor 5, the top of monitoring probe 1 is fixed with protective cover 7, and the top one side of protective cover 7 is provided with fixed bolt 6, and rubber pad 8 is preset between monitoring probe 1 and protective cover 7. The bottom one side of monitoring probe 1 is fixedly installed with connecting rod 11, and monitoring alarm 10 is fixedly connected in the middle of connecting rod 11, and cable is connected to the tail of monitoring alarm 10, and one side of monitoring probe 1 is connected with data acquisition processor 5 by connecting wire. The outside of data acquisition processor 5 is fixed with protective cover 7, and the front of protective cover 7 is equipped with display window 15, and display window 15 corresponds with the display screen position of data acquisition processor 5.The inside of the protective cover 7 is fixedly provided with a suction cup 14, the position of the suction cup 14 corresponds to the installation position of the data acquisition processor 5, and the surface of the suction cup 14 has a convex point. The lower side of the protective cover 7 is pre-provided with a cable slot 13, the size of the cable slot 13 is related to the cable used. The data acquisition processor 5 is directly connected with the switch of the related equipment, when the collected data reaches a certain abnormality, the data acquisition processor 5 can automatically cut off the equipment switch and alarm through the alarm 3. The top end of the sensor detection device 2 is fixedly provided with a second fixing plate 19, a rubber pad 17 is fixedly arranged between the second fixing plate 19 and the sensor detection device 2, the middle part of the second fixing plate 19 is pre-provided with a through hole 20, and the size of the through hole 20 corresponds to the size of the second cable 16. The monitoring probe 1 can monitor the implementation of each place of the heating station in real time, and can trigger the self-provided alarm 3 to remind when an abnormal state is detected. The data acquisition processor 5 is directly connected with the switch of the related equipment, when the collected data reaches a certain abnormality, the data acquisition processor 5 can automatically cut off the equipment switch, so as to prevent accidents.

[0066] In the working process, the whole device is respectively connected and fixed, wherein the two ends of the first fixing plate 12 of the monitoring probe 1 are respectively provided with fixing bolts 6, then the connecting rod 11 is connected and fixed with the first fixing plate 12, then the first fixing plate 12 is connected with the monitoring probe 1, and the monitoring probe 1 and the protective cover 7 are connected with each other through the fixing bolts 6, so that the monitoring probe 1 can be effectively protected, the monitoring alarm 10 is fixed with the connecting rod 11 through the clamping groove, is connected with the monitoring probe 1 through the first cable 4, and the mounting plate 9 and the rubber pad 8 are installed on the other side of the connecting rod 11, so that the connection with the wall is more stable and fast, the inside of the protective cover 7 of the data acquisition processor 5 is fixedly provided with the suction cup 14 with a convex point, the data acquisition processor 5 can be fixed well, the cable slot 13 at the lower side can pass the first cable 4 connected with the monitoring probe 1, the alarm 3 and the sensor detection device 2 and connect the first cable 4 with the data acquisition processor 5 together, the display window 15 can directly view the content displayed by the data acquisition processor 5 through the protective cover 7, the sensor 18 is installed on the equipment required to be monitored through the second fixing plate 19, the second cable 16 of the sensor detection device 2 is connected with the sensor 18 through the through hole 20, so as to be connected with the data acquisition processor 5, the monitoring probe 1 can monitor the implementation of each place of the heating station in real time, and can trigger the self-provided alarm 3 to remind when an abnormal state is detected. The data acquisition processor 5 is directly connected with the switch of the related equipment, when the collected data reaches a certain abnormality, the data acquisition processor 5 can automatically cut off the equipment switch, so as to prevent accidents, and complete all work.

[0067] Through the above steps, by setting the whole device is connected respectively fixed, wherein the monitoring probe 1 one fixed plate 12 both ends are fixed bolt 6, followed by connecting rod 11 and one fixed plate 12 are connected fixed, second one fixed plate 12 and monitoring probe 1 are connected, and the monitoring probe 1 and the protective cover 7 are connected with each other through the fixed bolt 6, can make monitoring probe 1 get effective protection, wherein the monitoring alarm 10 and connecting rod 11 are fixed together through the card slot, through one cable 4 and monitoring probe 1 are connected, and the mounting plate 9 and rubber pad 8 are installed on the other side of connecting rod 11, and the connection with the wall is more stable and fast, the protective cover 7 of data acquisition processor 5 is internally fixedly provided with suction cup 14 with convex point, data acquisition processor 5 can be well fixed, and the lower cable slot 13 can make one cable 4 connected with monitoring probe 1, alarm 3 and sensor detection device 2 pass through and be connected together with data acquisition processor 5, display window 15 can be directly observed through protective cover 7 the content displayed by data acquisition processor 5, sensor 18 is installed on the equipment needed to carry out data monitoring through second fixed plate 19, second cable 16 of sensor detection device 2 is connected with sensor 18 through through hole 20 so as to be connected with data acquisition processor 5, monitoring probe 1 can monitor the implementation of each place of heat supply station in real time, when detecting abnormal state, the self-contained alarm 3 can be triggered to remind, data acquisition processor 5 and the switch of related equipment are directly connected, when the collected data reaches a certain abnormal degree, data acquisition processor 5 can cut off the equipment switch, prevent accidents. Overcome the traditional heat supply station not only low efficiency, there are also security risks, need a large number of manpower to guard and monitor the shortcomings.

[0068] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of those skilled in the art without departing from the purpose of the utility model.

Claims

1. A safety monitoring device for an unattended heating station, comprising a monitoring probe (1), characterized in that: It also includes sensor detection device (2), alarm (3), cable (4), data acquisition processor (5), fixing bolt (6), protective cover (7), rubber pad (8), mounting plate (9), monitoring alarm (10), connecting rod (11), a fixed plate (12), cable slot (13), suction cup (14), display window (15), cable (16), rubber gasket (17), sensor (18), two fixed plate (19), through hole (20), one side of monitoring probe (1) is fixedly installed on a fixed plate (12), one side of a fixed plate (12) is fixedly installed on a connecting rod (11), one end of a connecting rod (11) is fixedly installed on a mounting plate (9), the right side of a mounting plate (9) is fixedly provided with a rubber pad (8), both sides of monitoring probe (1) are fixedly provided with a protective cover (7), the outside of data acquisition processor (5) is fixedly provided with a protective shell, the inside of the protective shell is provided with a suction cup (14), the lower side is provided with a cable slot (13), which is convenient for fixing data acquisition processor (5) and cable (4) to pass through, sensor detection device (2) top is provided with two fixed plate (19), the top of two fixed plate (19) is provided with through hole (20).

2. A safety monitoring device for an unattended heating station according to claim 1, characterized in that The top of the monitoring probe (1) is fixedly connected with the protective cover (7), and the top of the protective cover (7) is provided with a fixing bolt (6) on one side.

3. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The bottom of the monitoring probe (1) is fixedly connected with the connecting rod (11), the middle of the connecting rod (11) is fixedly connected with the monitoring alarm (10), the tail of the monitoring alarm (10) is connected with the cable, and one side of the monitoring probe (1) is connected with the data acquisition processor (5) through the connecting line.

4. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The outside of the data acquisition processor (5) is fixedly provided with a protective cover (7), and the front of the protective cover (7) is provided with a display window (15) corresponding to the display screen position of the data acquisition processor (5).

5. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The inside of the protective cover (7) is fixedly provided with a suction cup (14), the position of the suction cup (14) corresponds to the installation position of the data acquisition processor (5), and the surface of the suction cup (14) has a convex point.

6. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The lower side of the protective cover (7) is provided with a cable slot (13), and the size of the cable slot (13) corresponds to the size of the cable.

7. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The data acquisition processor (5) is directly connected with the switch of the related equipment, and when the collected data reaches a certain abnormality, the data acquisition processor (5) can automatically cut off the equipment switch and alarm through the alarm (3).

8. The safety monitoring device for an unattended heating station according to claim 1, characterized in that: The top of the sensor detection device (2) is fixedly provided with a second fixed plate (19), the second fixed plate (19) and the sensor detection device (2) are fixedly provided with a rubber gasket (17), the middle of the second fixed plate (19) is provided with a through hole (20), and the size of the through hole (20) corresponds to the size of the second cable (16).