An online monitoring device for a sluice

By setting up electrical and network environments at the culvert site and using online video monitoring devices for real-time supervision and alerts, the safety management hazards and monitoring blind spots at the culvert site have been resolved, and effective defense and traceability of illegal and dangerous behaviors have been achieved.

CN224682703UActive Publication Date: 2026-08-25SOUTH TO NORTH WATER SHANDONG LINE CORP
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Patent Information

Application Number
CN202520711790.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-08-25
Estimated Expiration
2035-04-15

AI Technical Summary

Technical Problem

The culvert site has no electricity, no network, and no monitoring, making it impossible to monitor and warn against illegal or dangerous behaviors in real time. This poses safety management risks and monitoring blind spots, and makes it impossible to trace safety incidents.

Method used

Design an online video monitoring device for culvert gates, including a metal pole, controller, power supply component, communication component, trigger alarm component, and video monitoring component. It is powered by solar panels, communicates via 4G network, uses infrared detectors to sense human bodies, and cameras to perform multi-angle monitoring, linking alarms and warnings to eliminate monitoring blind spots.

Benefits of technology

It enables real-time monitoring and alerts at the culvert site, eliminates blind spots in monitoring, effectively prevents and traces illegal and dangerous behaviors, and improves safety management and security capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

An online monitoring device for culvert gate, the monitoring device comprises a metal vertical pole, a controller is arranged on the metal vertical pole, a power supply assembly, a communication assembly, a triggering alarm assembly and a video monitoring assembly are electrically connected on the controller; the power supply assembly is used for providing power supply on the culvert gate site, the communication assembly is used for constructing communication network on the culvert gate site, the triggering alarm assembly is used for realizing linkage alarm, shouting and warning, and sensing human body intrusion into dangerous area; the video monitoring assembly is used for multi-angle and multi-range control on the culvert gate and the nearby channel site condition; the triggering alarm assembly comprises an integrated box, a horn, a warning light, an infrared detector and an LED screen are arranged in the integrated box and are arranged in linkage; the horn is matched with the warning light to realize horn alarm and warning light flickering; the infrared detector is used for sensing whether human body intrudes into dangerous area by using infrared rays; and the LED screen is used for presenting safety warning slogans.
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Description

Technical fields:

[0001] This utility model relates to an online video monitoring device for culverts and gates. Background technology:

[0002] Sluice gates are used for releasing water from reservoirs and diverting water from embankments. They are water discharge projects built on rivers and dikes. Because there is no electricity, internet, or monitoring facilities at the sluice gate site, it is impossible to monitor and effectively warn against illegal acts that damage the project facilities or dangerous behaviors such as illegally climbing over guardrails to draw water, fishing, or swimming. This poses a significant safety management hazard. At the same time, there are blind spots in the monitoring at the sluice gate site, and corresponding illegal and dangerous behaviors and safety incidents cannot be effectively traced, which is not conducive to on-site safety management. Therefore, it is impossible to effectively prevent and monitor safety incidents and dangerous behaviors at the sluice gate site. Utility Model Content:

[0003] This utility model provides an online video monitoring device for culverts. With a reasonable structural design, based on the integrated control function of the controller and in conjunction with various types of electrical components and functional modules, it can establish an electrical and network environment at the culvert site, covering the culvert area. It provides real-time monitoring and effective warnings for illegal acts that damage engineering facilities and dangerous behaviors such as illegally climbing over guardrails to fetch water, fishing, or swimming, eliminating monitoring blind spots, effectively preventing and monitoring safety incidents and dangerous behaviors at the culvert site, and effectively tracing illegal and dangerous behaviors and safety incidents involved at the culvert site. This facilitates on-site management and security early warning for culverts, solving the problems existing in the prior art.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows:

[0005] An online video monitoring device for a culvert gate, the monitoring device includes a metal pole, a controller is mounted on the metal pole, and a power supply component, a communication component, a trigger alarm component and a video monitoring component are electrically connected to the controller;

[0006] The power supply component is used to provide power at the culvert site; the communication component is used to build a communication network at the culvert site; the alarm triggering component is used to realize linkage alarm, announcement and warning, and to sense human intrusion into the danger zone; the video monitoring component is used to monitor the culvert and nearby channels from multiple angles and in multiple ranges.

[0007] The alarm triggering component includes an integrated housing, within which are a horn, a warning light, an infrared detector, and an LED screen that are interconnected. The horn and warning light work together to trigger an alarm and a flashing warning light. The infrared detector uses infrared light to sense whether a person has entered a dangerous area. The LED screen displays safety warning signs.

[0008] The controller is an STM32F103C8T6 with 48 pins. The controller is connected to the power supply component via pin 4, to the communication component via pin 15, to the alarm triggering component via pin 33, and to the video monitoring component via pin 38.

[0009] The power supply component is a solar panel, which is directly connected to the controller; the solar panel is a monocrystalline silicon solar panel.

[0010] The communication component is a wireless transceiver, which builds a 4G network for data interaction.

[0011] The video monitoring component is a camera, which has a fixed lens and a rotatable lens to achieve multi-angle and multi-range control of the culvert and nearby channels.

[0012] The metal pole is made of steel pipe and is used to provide an installation platform for the power supply components, integrated enclosure and video surveillance components.

[0013] The metal poles are supported by a concrete foundation, with a steel cage installed inside the concrete foundation and fixed using a mortise and tenon joint.

[0014] The controller can establish communication with both PC and mobile devices, and can monitor the device status through background data presentation, perform regular checks on the device, and ensure that the device operates normally.

[0015] The infrared detector's sensing probe has a sensing distance of 16m, a sensing angle of 150°, and three adjustable sensitivity levels.

[0016] This utility model adopts the above-mentioned structure, which automatically controls all electrical functional components through the integrated control function of the controller; provides sufficient power supply and endurance at the culvert site through the power supply component; establishes a communication network at the culvert site through the communication component and uses the 4G network for data interaction; realizes linkage alarm, announcement and warning through the trigger alarm component, and senses human intrusion into the dangerous area; and conducts multi-angle and multi-range control of the culvert and nearby channels through the video monitoring component, which has the advantages of safety, practicality, accuracy and efficiency. Attached image description:

[0017] Figure 1 This is a schematic diagram of the structure of this utility model.

[0018] Figure 2 This is the electrical schematic diagram of this utility model.

[0019] In the picture, 1 is a metal upright, and 2 is an integrated box. Detailed implementation method:

[0020] To clearly illustrate the technical features of this solution, the present invention will be described in detail below through specific embodiments and in conjunction with the accompanying drawings.

[0021] like Figure 1-2 As shown in the figure, an online video monitoring device for a culvert gate is provided. The monitoring device includes a metal pole 1, on which a controller is provided. A power supply component, a communication component, a trigger alarm component, and a video monitoring component are electrically connected to the controller.

[0022] The power supply component is used to provide power at the culvert site; the communication component is used to build a communication network at the culvert site; the alarm triggering component is used to realize linkage alarm, announcement and warning, and to sense human intrusion into the danger zone; the video monitoring component is used to monitor the culvert and nearby channels from multiple angles and in multiple ranges.

[0023] The alarm triggering component includes an integrated housing 2, within which are a horn, a warning light, an infrared detector, and an LED screen that are interconnected. The horn and warning light work together to trigger an alarm and a flashing warning light. The infrared detector is used to sense whether a person has entered a dangerous area using infrared light. The LED screen is used to display safety warning signs.

[0024] The controller is an STM32F103C8T6 with 48 pins. The controller is connected to the power supply component via pin 4, to the communication component via pin 15, to the alarm triggering component via pin 33, and to the video monitoring component via pin 38.

[0025] The power supply component is a solar panel, which is directly connected to the controller; the solar panel is a monocrystalline silicon solar panel.

[0026] The communication component is a wireless transceiver, which builds a 4G network for data interaction.

[0027] The video monitoring component is a camera, which has a fixed lens and a rotatable lens to achieve multi-angle and multi-range control of the culvert and nearby channels.

[0028] The metal pole is made of steel pipe and is used to provide an installation platform for the power supply components, integrated enclosure and video surveillance components.

[0029] The metal poles are supported by a concrete foundation, with a steel cage installed inside the concrete foundation and fixed using a mortise and tenon joint.

[0030] The controller can establish communication transmissions with the PC side and the mobile phone side respectively, understand the device status through the presentation of background data, and regularly inspect the device to ensure its normal operation and use.

[0031] The induction probe of the infrared detector has an induction distance of 16m and an induction angle of 150°, and has three levels of sensitivity that can be adjusted.

[0032] The working principle of an in-line video monitoring device for sluice gates in an embodiment of the present utility model is as follows: Based on the integrated control function of the controller, in cooperation with various types of electrical components and functional components, an electrical environment and a network environment can be built at the sluice gate site to cover the sluice gate area, and real-time supervision and effective warning can be carried out on illegal acts that damage engineering facilities and dangerous acts such as illegally climbing over the guardrail to take water, fish, swim, etc. Eliminate monitoring blind spots, effectively defend and supervise safety incidents and dangerous acts at the sluice gate site, and effectively trace illegal, dangerous and other acts and safety incidents involved at the sluice gate site, which is convenient for the management of the sluice gate site and security warning.

[0033] In the overall solution, the monitoring device includes a metal vertical pole, on which a controller is provided, and a power supply component, a communication component, a trigger alarm component and a video monitoring component are electrically connected to the controller; the power supply component is used to provide power supply at the sluice gate site, the communication component is used to build a communication network at the sluice gate site, the trigger alarm component is used to achieve linkage alarm, shouting and warning, and sense the intrusion of people into the dangerous area; the video monitoring component is used to conduct multi-angle and multi-range control over the situation of the sluice gate and the nearby channels; the trigger alarm component includes an integrated box body, in which a horn, a warning light, an infrared detector and an LED screen are联动设置; the horn and the warning light cooperate to achieve horn alarm and warning light flashing; the infrared detector is used to sense whether a person has entered the dangerous area by using infrared rays; the LED screen is used to present safety warning slogans.

[0034] Specifically, two solar panels and a wireless transceiver are respectively used for the power supply and network at the site, which can provide uninterrupted power supply for 7 - 10 days in bad weather, and at the same time use the 4G network to trigger warnings for on-site events.

[0035] For the trigger alarm component, in actual use, the horn alarms and the warning light flashes in联动, realizing event linkage alarm; the sound output by the horn can be customized to edit the prompt message and import it, for example: "Dangerous depth of water, do not approach", "You have entered a dangerous area, please leave immediately"; the warning lights on the box body flash in联动, which is especially suitable for night.

[0036] It should be noted that there is an unclear expression "联动设置" in the original text. I have translated it as "联动设置" for now. You may need to clarify its specific meaning for a more accurate translation.Infrared detectors can sense when a person enters a dangerous area, triggering alarms on controllers, PCs, and mobile devices. They can also broadcast messages, provide reminders, and urge people to leave, thus jointly preventing accidents. Combined with safety warning signs displayed on LED screens, this enhances the warning effect.

[0037] For the video surveillance components, a 4-megapixel dual-lens system is used, consisting of one fixed lens and the other rotatable lens, to provide multi-angle and multi-range control of the culvert and nearby channels. The specific model is a Hikvision 3-inch dual 4-megapixel PT dome camera with a resolution of up to 2560×1440@25fps. It supports digital wide dynamic range, backlight compensation, strong light suppression, 3D digital noise reduction, and dual infrared and white light supplementary lighting. It also supports intelligent supplementary lighting, with a maximum range of 30m for both white and infrared light. It supports motion detection, anomaly detection, and sound alarm output, has strong anti-interference capabilities, and meets IP66 waterproof, dustproof, and heavy rain protection design standards.

[0038] Furthermore, the metal pole, as a basic component of this application, is made of steel pipe and serves as an installation platform for the power supply components, integrated enclosure, and video surveillance components; the metal pole has a concrete foundation, in which a steel cage is installed and fixed using a farrdle plate.

[0039] The pole is fixed to the concrete foundation with a flange, and then the grounding is installed: the top of the grounding electrode protrudes 300mm from the bottom of the pit, and is welded to the center of the ground cage with 40×4mm galvanized flat steel and extended; then the ground cage is fixed: the ground cage is temporarily welded and fixed, with the top surface of the flange 100mm below the ground surface, to ensure that the direction of the cross arm is perpendicular to the road.

[0040] The concrete is poured in two stages: the first stage is poured to 3 / 4 of the depth and vibrated to compact it. After the second stage, only the flange, bolts and pipeline interfaces are exposed. The curing period is ≥7 days. Watering is prohibited when the temperature is below 5℃.

[0041] It should be noted that the integrated enclosure is made of stainless steel.

[0042] For platforms that establish communication connections with the controller, you can view the number of online devices, device operation logs, monitoring time periods, solar voltage, battery power, battery type, charging current, dynamic power, today's playback count, cumulative playback count, and map location.

[0043] The platform allows users to configure device parameters, including battery type, audio playback time interval, camera working time, LED text, audio file, volume up, volume down, single track loop, sequential loop, clear cumulative playback count, LED screen settings, and camera settings. It also supports simultaneous connection and display of two cameras from different brands and allows for setting four time intervals to control voice playback.

[0044] In summary, the online video monitoring device for culverts in this embodiment of the present invention, based on the integrated control function of the controller and in conjunction with various types of electrical components and functional modules, can establish an electrical and network environment at the culvert site, covering the culvert area. It can provide real-time monitoring and effective warnings for illegal acts that damage engineering facilities and dangerous behaviors such as illegally climbing over guardrails to fetch water, fishing, or swimming, eliminating monitoring blind spots, effectively preventing and monitoring safety incidents and dangerous behaviors at the culvert site, and effectively tracing illegal and dangerous behaviors and safety incidents involved at the culvert site, facilitating on-site management and security early warning of the culvert.

[0045] The above specific embodiments should not be construed as limiting the scope of protection of this utility model. For those skilled in the art, any alternative improvements or modifications made to the embodiments of this utility model shall fall within the scope of protection of this utility model.

[0046] Any aspects of this utility model not described in detail are known to those skilled in the art.

Claims

1. A culvert gate online video monitoring device, characterized in that: The monitoring device includes a metal pole, on which a controller is mounted, and a power supply component, a communication component, a trigger alarm component, and a video monitoring component are electrically connected to the controller. The power supply component is used to provide power at the culvert site; the communication component is used to build a communication network at the culvert site; the alarm triggering component is used to realize linkage alarm, announcement and warning, and to sense human intrusion into the danger zone; the video monitoring component is used to monitor the culvert and nearby channels from multiple angles and in multiple ranges. The alarm triggering component includes an integrated housing, within which are a horn, a warning light, an infrared detector, and an LED screen that are interconnected. The horn and warning light work together to trigger an alarm and a flashing warning light. The infrared detector uses infrared light to sense whether a person has entered a dangerous area. The LED screen displays safety warning signs.

2. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The controller is an STM32F103C8T6 with 48 pins. The controller is connected to the power supply component via pin 4, to the communication component via pin 15, to the alarm triggering component via pin 33, and to the video monitoring component via pin 38.

3. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The power supply component is a solar panel, which is directly connected to the controller; the solar panel is a monocrystalline silicon solar panel.

4. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The communication component is a wireless transceiver, which builds a 4G network for data interaction.

5. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The video monitoring component is a camera, which has a fixed lens and a rotatable lens to achieve multi-angle and multi-range control of the culvert and nearby channels.

6. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The metal pole is made of steel pipe and is used to provide an installation platform for the power supply components, integrated enclosure and video surveillance components. The metal poles are supported by a concrete foundation, with a steel cage installed inside the concrete foundation and fixed using a mortise and tenon joint.

7. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The controller can establish communication with both PC and mobile devices, and can monitor the device status through background data presentation, perform regular checks on the device, and ensure that the device operates normally.

8. The online video monitoring device for culverts and gates according to claim 1, characterized in that: The infrared detector's sensing probe has a sensing distance of 16m, a sensing angle of 150°, and three adjustable sensitivity levels.