Intelligent road monitoring and emergency linkage system

The intelligent road monitoring and emergency response system can monitor and automatically handle abnormal events in real time, solving the problems of low efficiency and insufficient safety of existing road patrols, and achieving rapid response and efficient road safety management.

CN121034075APending Publication Date: 2025-11-28ZHEJIANG KERUIPU TECH CO LTD
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Patent Information

Application Number
CN202511212498.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-28
Publication Date
2025-11-28

AI Technical Summary

Technical Problem

Existing road patrols suffer from problems such as high manpower requirements, high secondary accident rates, limited traffic data, restricted visibility, and delayed accident alarms.

Method used

The system employs an intelligent road monitoring and emergency response system, including an intelligent road condition monitoring module, a solar energy sensing module, a road condition sensing module, a camera module, and a cloud platform. By monitoring road conditions in real time, it automatically triggers light warnings, camera evidence collection, and data uploads. It supports edge computing and cloud-based review, enabling multi-mode warnings and emergency calls.

Benefits of technology

It improved the timeliness of alarms, reduced the workload of road patrols and the rate of secondary accidents, and enhanced response speed and safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses an intelligent road monitoring and emergency linkage system. Intelligent rescue road condition monitoring modules are sequentially arranged along the two sides of a road; the intelligent rescue road condition monitoring module is connected with a solar sensing module used for issuing a control instruction and uploading monitoring data; the road condition sensing module responds to instructions of the solar sensing module to monitor a road and feeds data back to the solar sensing module, and is in communication connection with the solar sensing module; the camera module is in communication connection with the cloud platform; the cloud platform is in communication connection with the intelligent rescue road condition monitoring module, the solar sensing module and the road condition sensing module. The method has the advantages that the alarm timeliness is improved, the road patrol workload is reduced, the secondary accident rate is reduced, the response is fast, and the safety and timeliness are further improved.
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Description

Technical Field

[0001] This invention patent relates to the field of intelligent traffic monitoring, and in particular to an intelligent road monitoring and emergency response system. Background Technology

[0002] Existing roads require road patrols to ensure road safety and rapid handling and rescue of accidents. Traditional road patrols suffer from problems such as high manpower input, high secondary accident rate, limited traffic data, many factors limiting visibility, and delayed accident alarms. Summary of the Invention

[0003] The purpose of this invention is to solve the existing technical problems by proposing an intelligent road monitoring and emergency response system.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: an intelligent road monitoring and emergency response system, comprising an intelligent road condition monitoring module, a solar energy sensing module, a road condition sensing module, a camera module, and a cloud platform, wherein the intelligent road condition monitoring module is arranged sequentially along both sides of the road; the solar energy sensing module, the road condition sensing module, and the camera module are arranged sequentially along the intelligent road condition monitoring module. The intelligent road condition monitoring module for real-time monitoring of road conditions is connected to the solar sensing module for issuing control commands and uploading monitoring data. The road condition sensing module, which responds to the instructions of the solar energy sensing module, monitors the road and feeds the data back to the solar energy sensing module, and is connected to the solar energy sensing module for communication. The camera module used for collecting and uploading evidence of abnormal events communicates with the cloud platform. A cloud platform that receives and processes data from the intelligent road condition monitoring module, issues control commands, and supports the review of abnormal events.

[0005] Furthermore, the intelligent road condition monitoring module includes: a millimeter-scale sensor monitoring unit for real-time monitoring of vehicle traffic on the road; a laser point cloud monitoring unit for high-precision environmental scanning when abnormal events are triggered; a multi-mode lighting warning unit that supports red and blue flashing, white light strobe, and yellow fog lights, responding to different event types; an infrared sensor monitoring unit that periodically collects environmental data to detect fog or low visibility conditions; and a one-click rescue unit for triggering emergency calls and uploading location information. All of these units are connected to the cloud platform.

[0006] Furthermore, when a vehicle is detected in motion, the solar-powered sensing module activates the road condition sensing module; when an abnormal event is detected, the solar-powered sensing module links with the camera module to collect evidence and triggers a light warning.

[0007] Furthermore, abnormal event handling: If any one of the solar energy sensing module, road condition sensing module, and camera module detects a collision or illegal parking event, the raw data is processed through edge computing; The solar energy sensing module reports the results data to the intelligent road condition monitoring module for emergency assistance. The intelligent road condition monitoring module for emergency rescue activates a multi-mode lighting warning unit, which provides red and blue light warnings as well as white light supplementary lighting. The intelligent road condition monitoring module activates the laser point cloud monitoring unit to scan and the camera module to collect evidence; and uploads the data to the cloud platform. After receiving and reviewing the data, the cloud platform issues an instruction to disable the alert.

[0008] Further, the fog warning process: The infrared sensor monitoring unit, which periodically collects environmental data and detects fog or low visibility conditions, collects environmental data every 10 minutes. When visibility is below a set threshold, the intelligent road condition monitoring module activates the yellow fog lights. The early warning information is simultaneously pushed to the adjacent intelligent road condition monitoring module and cloud platform.

[0009] Furthermore, the communication module includes: a main communication link: a 4G / 5G network; and a backup communication link: satellite communication, used for data transmission when the main link fails.

[0010] Furthermore, when the vehicle is detected to be in motion, the solar energy sensing module activates the road condition sensing module for more detailed monitoring. When one or more of the abnormal events and environmental changes occur, a linkage response is triggered, and the multi-mode lighting warning unit activates the lighting warning, the camera module collects and uploads evidence, and the cloud platform conducts manual and intelligent review. Users can initiate an emergency call through the one-click emergency assistance unit, which will automatically display their location and start a voice intercom.

[0011] Furthermore, it also includes a solar power supply module, which comprises: Photovoltaic panel units installed on the intelligent road condition monitoring module and solar energy sensing module to convert solar energy into electrical energy; Energy storage battery units are used to store the electrical energy generated by photovoltaic panels and provide power support for various modules of the system. A power management unit used for intelligent power distribution.

[0012] Furthermore, it supports red and blue flashing, white light strobe and yellow fog lights, and is a multi-mode lighting warning unit that responds to different event types. It automatically triggers different lighting modes according to the event type: red and blue flashing is used for accidents, and yellow lights are used for fog.

[0013] The beneficial effects of this invention are: improved alarm timeliness, reduced road patrol workload, lower secondary accident rate, faster response, and further improved safety and timeliness. Attached Figure Description

[0014] Figure 1 This is a flowchart for handling abnormal events.

[0015] Figure 2 This is a flowchart of the system startup process.

[0016] Figure 3 The flowchart for closing the system.

[0017] Figure 4 This is a flowchart for handling fog early warning.

[0018] Figure 5 This is a flowchart for one-click emergency response. Detailed Implementation

[0019] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0020] Example 1 combined with appendix Figure 1 An intelligent road monitoring and emergency response system includes an intelligent road condition monitoring module, a solar energy sensing module, a road condition sensing module, a camera module, and a cloud platform. The intelligent road condition monitoring module is set up sequentially along both sides of the road; the solar energy sensing module, the road condition sensing module, and the camera module are set up sequentially along the intelligent road condition monitoring module. The intelligent road condition monitoring module for real-time monitoring of road conditions is connected to the solar sensing module for issuing control commands and uploading monitoring data. The road condition sensing module, which responds to the instructions of the solar energy sensing module, monitors the road and feeds the data back to the solar energy sensing module, and is connected to the solar energy sensing module for communication. The camera module used for collecting and uploading evidence of abnormal events communicates with the cloud platform. The cloud platform receives and processes data from the intelligent road condition monitoring module, issues control commands, and supports abnormal event review. It communicates with the intelligent road condition monitoring module, solar energy sensing module, and road condition sensing module.

[0021] An intelligent road monitoring and emergency response system includes an intelligent road condition monitoring module: a millimeter-scale sensor monitoring unit for real-time monitoring of vehicle traffic on the road; a laser point cloud monitoring unit for high-precision environmental scanning when abnormal events are triggered; a multi-mode lighting warning unit that supports red-blue flashing, white light strobe, and yellow fog lights, responding to different event types; an infrared sensor monitoring unit that periodically collects environmental data and detects fog or low visibility conditions; and a one-click rescue unit for triggering emergency calls and uploading location information. All of the above units are connected to a cloud platform.

[0022] An intelligent road monitoring and emergency response system is disclosed. When a vehicle is detected, the solar-powered sensing module activates the road condition sensing module. When an abnormal event is detected, the solar-powered sensing module activates the camera module to collect evidence and triggers a light warning.

[0023] An intelligent road monitoring and emergency response system for abnormal event handling: any one of the solar energy sensing module, road condition sensing module and camera module detects a collision or illegal parking event and processes the raw data through edge computing. The solar energy sensing module reports the results data to the intelligent road condition monitoring module for emergency assistance. The intelligent road condition monitoring module for emergency rescue activates a multi-mode lighting warning unit, which provides red and blue light warnings as well as white light supplementary lighting. The intelligent road condition monitoring module activates the laser point cloud monitoring unit to scan and the camera module to collect evidence; and uploads the data to the cloud platform. After receiving and reviewing the data, the cloud platform issues an instruction to disable the alert.

[0024] A smart road monitoring and emergency response system, fog warning process: The infrared sensor monitoring unit, which periodically collects environmental data and detects fog or low visibility conditions, collects environmental data every 10 minutes. When visibility is below a set threshold, the adjacent intelligent road condition monitoring module activates its yellow fog lights; the adjacent solar sensor module lights up. The early warning information is simultaneously pushed to the adjacent intelligent road condition monitoring module and cloud platform.

[0025] An intelligent road monitoring and emergency response system includes a communication module comprising: a main communication link: a 4G / 5G network; and a backup communication link: satellite communication, used for data transmission in the event of a failure of the main link.

[0026] An intelligent road monitoring and emergency response system, when a vehicle is detected in motion, the solar-powered sensing module activates the road condition sensing module for refined monitoring; When one or more of the abnormal events and environmental changes occur, a linkage response is triggered, and the multi-mode lighting warning unit activates the lighting warning, the camera module collects and uploads evidence, and the cloud platform conducts manual and intelligent review. Users can initiate an emergency call through the one-click emergency assistance unit, which will automatically display their location and start a voice intercom.

[0027] An intelligent road monitoring and emergency response system further includes a solar power supply module, the solar power supply module comprising: Photovoltaic panel units installed on the intelligent road condition monitoring module and solar energy sensing module to convert solar energy into electrical energy; Energy storage battery units are used to store the electrical energy generated by photovoltaic panels and provide power support for various modules of the system. A power management unit used for intelligent power distribution, prioritizing power supply to the core monitoring and communication modules.

[0028] An intelligent road monitoring and emergency response system supports red and blue flashing, white light strobe and yellow fog lights, and a multi-mode lighting warning unit that responds to different event types. It automatically triggers different lighting modes according to the event type: red and blue flashing for accidents and yellow lights for fog.

[0029] An intelligent road monitoring and emergency response system includes an intelligent road condition monitoring module deployed at key road nodes to monitor road conditions and visibility in real time, including vehicle driving status, abnormal events, and environmental data. The solar energy sensing module is communicatively connected to the intelligent road condition monitoring module for issuing control commands and uploading monitoring data; The road condition sensing module, in response to the instructions of the solar energy sensing module, monitors road surface vibration or abnormal events and feeds the data back to the solar energy sensing module; The camera module is used for evidence collection of abnormal events and to upload image frame data to the cloud platform; The cloud platform receives and processes data from the intelligent road condition monitoring module, issues control commands, and supports manual or AI review of abnormal events.

[0030] The one-click emergency unit includes a physical button and a communication unit, used to trigger an emergency call and upload location information; after the user triggers the physical button, it automatically dials a preset phone number and displays real-time location information; the cloud platform receives the call and starts the voice intercom function; it supports 4G / 5G and satellite communication redundancy to ensure communication reliability in remote areas.

[0031] An intelligent road monitoring and emergency response system also includes regularly calibrating sensors and maintaining communication modules to ensure data accuracy and system stability.

[0032] An intelligent road monitoring and emergency response system The photovoltaic panel is made of monocrystalline silicon and has a conversion efficiency of ≥22%. The energy storage battery unit is a lithium-ion battery pack, which supports a wide operating temperature range of -30℃ to 60℃. The power management unit has a low-power mode and automatically switches to an energy-saving operation strategy in rainy weather.

[0033] During the day, it is charged via photovoltaic panels and supplies power to the energy storage battery units and system loads; At night or in rainy weather, the energy storage battery unit provides power, and a low-power mode is triggered when the battery charge is below 50%. In low-power mode, only basic monitoring and communication functions are maintained.

[0034] An intelligent road monitoring and emergency response system Comprehensive real-time monitoring capabilities Multi-sensor fusion: Through infrared sensing monitoring units, millimeter-scale sensing monitoring units, laser point cloud monitoring units, and vibration detection multi-dimensional perception technologies, it achieves all-weather monitoring of road vehicle status, visibility, fog, and abnormal events such as collisions / illegal parking, with comprehensive data coverage.

[0035] Periodic environmental scanning: The infrared sensor monitoring unit collects environmental data every 10 minutes to ensure a rapid response to sudden low visibility situations such as fog.

[0036] Highly efficient emergency response mechanism Intelligent graded early warning: Automatically triggers different light modes according to the type of event: red and blue flashing for accidents, yellow light for fog, to improve the warning effect.

[0037] One-click emergency assistance: The physical button and satellite communication redundancy design ensure that emergency calls can still be connected in remote areas and share location information in real time, shortening rescue time.

[0038] Automated evidence collection process: After an abnormal event is triggered, the system automatically starts laser point cloud monitoring unit scanning, camera module evidence collection, and edge computing processing to improve event handling efficiency.

[0039] Reliability and robustness Dual communication link protection: The main 4G / 5G link is combined with backup satellite communication to avoid data loss due to network interruption.

[0040] Solar power supply + wide temperature energy storage: Monocrystalline silicon photovoltaic panels with a conversion rate of ≥22% and lithium-ion battery packs, operating at -30℃~60℃ to ensure continuous operation of the system in extreme environments, and low power consumption mode to further extend the battery life.

[0041] Edge computing capability: Raw data is processed locally and then uploaded, reducing cloud load and improving response speed.

[0042] Intelligent management and maintenance Cloud platform collaborative decision-making: Supports dual review of abnormal events by AI and human review to reduce false alarms; after review, it automatically closes the warning or generates a handling report to reduce the cost of human intervention.

[0043] Self-maintenance design: Regularly calibrate sensors and communication modules to ensure data accuracy; the power management unit intelligently allocates power, prioritizing core functions.

[0044] Energy saving, environmental protection and economy Solar power systems reduce wiring costs and energy consumption, and are suitable for remote roads without grid coverage.

[0045] On-demand activation strategy: Activate relevant modules such as road condition perception only when a vehicle or abnormal event is detected, thereby reducing energy consumption.

[0046] Scalability and compatibility Modular design: Each functional unit, such as the light warning and communication module, can be upgraded or replaced independently, which facilitates technological iteration.

[0047] Multi-scenario adaptation: Suitable for various environments such as highways, mountain roads, and urban traffic, especially suitable for road sections with frequent fog or high accident rates.

[0048] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. An intelligent road monitoring and emergency response system, comprising an intelligent road condition monitoring module, a solar energy sensing module, a road condition sensing module, a camera module, and a cloud platform, characterized in that: The intelligent road condition monitoring module for emergency rescue is set up along both sides of the road; the solar energy sensing module, road condition sensing module, and camera module are set up along the intelligent road condition monitoring module. The intelligent road condition monitoring module for real-time monitoring of road conditions is connected to the solar sensing module for issuing control commands and uploading monitoring data. The road condition sensing module, which responds to the instructions of the solar energy sensing module, monitors the road and feeds the data back to the solar energy sensing module, and is connected to the solar energy sensing module for communication. The camera module used for collecting and uploading evidence of abnormal events communicates with the cloud platform. A cloud platform that receives and processes data from the intelligent road condition monitoring module, issues control commands, and supports the review of abnormal events.

2. The intelligent road monitoring and emergency response system according to claim 1, characterized in that: The intelligent road condition monitoring module includes: a millimeter-level sensor monitoring unit for real-time monitoring of vehicle traffic on the road; a laser point cloud monitoring unit for high-precision environmental scanning when abnormal events are triggered; a multi-mode lighting warning unit that supports red and blue flashing, white light strobe, and yellow fog lights to respond to different event types; an infrared sensor monitoring unit that periodically collects environmental data to detect fog or low visibility conditions; and a one-click rescue unit for triggering emergency calls and uploading location information. All of the above units are connected to the cloud platform.

3. The intelligent road monitoring and emergency response system according to claim 2, characterized in that: When a vehicle is detected in motion, the solar-powered sensing module activates the road condition sensing module; when an abnormal event is detected, the solar-powered sensing module works with the camera module to collect evidence and triggers a light warning.

4. The intelligent road monitoring and emergency response system according to claim 3, characterized in that: Abnormal event handling: If any one of the solar energy sensing module, road condition sensing module, and camera module detects a collision or illegal parking event, the raw data is processed through edge computing; The solar energy sensing module reports the results data to the intelligent road condition monitoring module for emergency assistance. The intelligent road condition monitoring module for emergency rescue activates a multi-mode lighting warning unit, which provides red and blue light warnings as well as white light supplementary lighting. The intelligent road condition monitoring module activates the laser point cloud monitoring unit to scan and the camera module to collect evidence; and uploads the data to the cloud platform. After receiving and reviewing the data, the cloud platform issues an instruction to disable the alert.

5. The intelligent road monitoring and emergency response system according to claim 3, characterized in that: Fog warning process: The infrared sensor monitoring unit, which periodically collects environmental data and detects fog or low visibility conditions, collects environmental data every 10 minutes. When visibility is below a set threshold, the intelligent road condition monitoring module activates the yellow fog lights. The early warning information is simultaneously pushed to the adjacent intelligent road condition monitoring module and cloud platform.

6. The intelligent road monitoring and emergency response system according to claim 3, characterized in that... The communication module includes: a main communication link (4G / 5G network) and a backup communication link (satellite communication) for data transmission in case the main link fails.

7. The intelligent road monitoring and emergency response system according to claim 3, characterized in that: When a vehicle is detected in motion, the solar energy sensing module activates the road condition sensing module for detailed monitoring. When one or more of the abnormal events and environmental changes occur, a linkage response is triggered, and the multi-mode lighting warning unit activates the lighting warning, the camera module collects and uploads evidence, and the cloud platform conducts manual and intelligent review. Users can initiate an emergency call through the one-click emergency assistance unit, which will automatically display their location and start a voice intercom.

8. The intelligent road monitoring and emergency response system according to claim 3, characterized in that: It also includes a solar power module, which comprises: Photovoltaic panel units installed on the intelligent road condition monitoring module and solar energy sensing module to convert solar energy into electrical energy; Energy storage battery units are used to store electrical energy generated by photovoltaic panels and provide power support for various modules of the system. A power management unit used for intelligent power distribution.

9. The intelligent road monitoring and emergency response system according to claim 3, characterized in that: It supports red and blue flashing, white light strobe and yellow fog lights, and is a multi-mode lighting warning unit that responds to different event types. It automatically triggers different lighting modes according to the event type: red and blue flashing is used for accidents, and yellow lights are used for fog.