Solar intelligent collision early warning mobile signal lamp

By integrating temperature sensors, acceleration sensors, and GPS positioning modules into mobile traffic lights, real-time monitoring and early warning of equipment status can be achieved. This solves the problem of the lack of abnormal monitoring in existing mobile traffic lights, improves the operational reliability and safety of the equipment, and is suitable for traffic safety control that requires real-time monitoring and remote management.

CN224052733UActive Publication Date: 2026-03-27HARBIN SHENGHE TRANSPORTATION FACILITIES TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing mobile traffic lights lack the ability to monitor and provide timely warnings for abnormal conditions such as temperature changes, collision damage, tipping, and displacement, leading to equipment malfunctions, misleading traffic information, and even secondary traffic accidents.

Method used

The device employs a solar-powered intelligent collision warning mobile signal light, integrating a temperature sensor, an acceleration sensor, and a GPS positioning module. It monitors the equipment status in real time and sends alarm information to a remote platform via a communication module. Combined with an integrated battery compartment and electronic control cabin, it achieves stable power supply and data processing for the equipment.

Benefits of technology

It improves the operational reliability and safety of the equipment, reduces the risk of secondary accidents, enhances the stability and management accuracy of the equipment in harsh environments, reduces energy consumption costs, and improves the applicability and ease of maintenance of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A solar intelligent collision early warning mobile signal lamp relates to the field of traffic safety. In order to solve the technical defect that a signal lamp capable of realizing effective monitoring and timely early warning is not disclosed in the prior art, the technical scheme provided by the utility model is as follows: the signal lamp comprises a signal lamp main body; the solar cell panel is used for converting solar energy into electric energy; the LED signal lamp module is used for displaying traffic indication signals; the battery compartment is used for storing electric energy converted by the solar cell panel, and an intelligent signal control machine, a sensor data acquisition module and a communication module are arranged in the electronic control cabin; the sensor module comprises a temperature sensor, an acceleration sensor and a GPS positioning module which are respectively arranged at different positions of the main body; the sensor module sends acquired monitoring data to the sensor data acquisition module. The method is suitable for mobile traffic signal lamp safety control work requiring real-time monitoring and remote management.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of traffic safety, in particular to a solar energy intelligent collision warning mobile signal lamp. BACKGROUND

[0002] As a flexible traffic management facility, mobile traffic signal lamps are widely used in road construction, temporary traffic control, traffic accident sites and other special scenarios to maintain traffic order and ensure road safety and smoothness. With the development of intelligent transportation technology, in recent years, mobile traffic signal lamps have gradually developed towards intelligence, and scholars and enterprises at home and abroad have conducted a lot of exploration in energy supply, state monitoring and intelligent management of signal lamps.

[0003] For example, some existing technologies have adopted solar panels as the energy supply means of mobile traffic signal lamps to realize green energy utilization and avoid the dependence of traditional signal lamps on power supply. In addition, in order to improve the automation and intelligence level of traffic management, some technical solutions try to apply GPS positioning modules to track and manage the position of mobile signal lamps in real time, so as to timely grasp the spatial position information of the equipment and ensure that the signal lamp is accurately deployed at the predetermined location.

[0004] Although the existing technology has made certain progress in signal lamp energy supply and positioning, in actual application, the environment where the mobile signal lamp is located is complex and changeable, and often faces sudden conditions such as equipment aging, external impact, strong wind and rain. However, most of the widely used mobile traffic signal lamps currently lack comprehensive monitoring and timely warning capability for their own state (such as temperature anomaly, collision damage, tilting, displacement, etc.). For example, when the mobile signal lamp is collided, tilted or displaced by external force, the management personnel cannot know the state of the equipment in the first time and take corresponding measures, which is easy to cause the signal lamp to malfunction, mislead traffic information and even cause serious secondary traffic accidents.

[0005] Therefore, how to realize effective monitoring and timely warning for the real-time state of the mobile signal lamp, especially the abnormal conditions such as temperature change, collision damage, tilting and displacement, has become an important technical problem to be solved in current traffic safety management. SUMMARY

[0006] In order to solve the technical defects in the prior art that there is no signal lamp capable of realizing effective monitoring and timely warning for the real-time state of the mobile signal lamp, especially the abnormal conditions such as temperature change, collision damage, tilting and displacement, the technical scheme provided by the present application is:

[0007] A solar energy intelligent collision warning mobile signal lamp, comprising:

[0008] a signal lamp body;

[0009] A solar panel arranged at the top of the signal lamp body for converting solar energy into electric energy;

[0010] An LED signal lamp module arranged in the middle of the signal lamp body for displaying traffic indication signals;

[0011] An electronic control cabin and a battery compartment arranged at the bottom of the signal lamp body, the battery compartment is used to store the electric energy converted by the solar panel, and the electronic control cabin is provided with an intelligent signal control machine, a sensor data acquisition module and a communication module;

[0012] A plurality of sensor modules, including temperature sensors, acceleration sensors and GPS positioning modules arranged at different positions of the body respectively;

[0013] The sensor modules send the collected monitoring data to the sensor data acquisition module, and the sensor data acquisition module sends alarm information to the remote monitoring platform through the communication module after identifying the abnormality.

[0014] Further, a preferred embodiment is provided, wherein the solar panel is a flat plate structure connected to the top of the signal lamp body, and the installation angle is between 15° and 45°.

[0015] Further, a preferred embodiment is provided, wherein the LED signal lamp module includes a group of red, yellow and green circular LED lights arranged vertically.

[0016] Further, a preferred embodiment is provided, wherein the electronic control cabin and the battery compartment adopt an integrated structure design and are directly connected through a circuit.

[0017] Further, a preferred embodiment is provided, wherein the temperature sensor is arranged at the top of the signal lamp body for real-time monitoring of the working temperature of the signal lamp.

[0018] Further, a preferred embodiment is provided, wherein the acceleration sensor is arranged at the middle upper part of the signal lamp body for real-time monitoring of whether the signal lamp is subjected to external force collision or dumping.

[0019] Further, a preferred embodiment is provided, wherein the GPS positioning module is arranged at the bottom area of the signal lamp body for real-time monitoring of the position change of the signal lamp.

[0020] Further, a preferred embodiment is provided, wherein the bottom of the body is connected with the base through a square support column, and the base is provided with a roller at the bottom.

[0021] Further, a preferred embodiment is provided, wherein the communication module supports GSM, Wi-Fi or LoRa wireless communication protocol.

[0022] Further, a preferred embodiment is provided, wherein the shell of the signal lamp body is made of high-strength weather-resistant material, and the protection level is IP67.

[0023] Compared with the prior art, the technical scheme provided by the present application has the advantages that:

[0024] The present application uses a solar panel as the main energy source of the signal lamp. The flat solar panel is installed on the top of the signal lamp, and the inclination angle can be adjusted within the range of 15° to 45° to maximize the absorption of sunlight and improve the energy collection efficiency. This design reduces the dependence on traditional power supply, significantly reduces energy consumption costs compared to existing mobile signal lamps that rely on fixed power grids or traditional battery power supply, and enhances the applicability of the signal lamp in remote areas or areas with unstable power supply.

[0025] A temperature sensor is provided on the signal lamp body to monitor the working temperature in real time and automatically analyze and determine whether there is overheating or abnormal temperature condition, thereby realizing early perception and rapid response of abnormal temperature. Compared with the mobile signal lamp of the prior art which lacks temperature monitoring and is prone to equipment damage or even shutdown in extreme environments, the present structure effectively improves the operation reliability of the equipment and ensures the stability and safety of the traffic signal system in harsh weather conditions.

[0026] By installing an acceleration sensor inside the signal lamp, the abnormal state of the mobile signal lamp encountering external force impact or falling is monitored in real time, and an alarm is quickly sent to the traffic management department, greatly improving the reaction speed after the accident. Compared with the conventional mobile signal lamp which cannot detect external force impact or falling state in time, the structure can timely detect the damage of the equipment and effectively prevent the occurrence of secondary traffic accidents.

[0027] The built-in GPS positioning module is used to monitor the position change of the mobile signal lamp in real time, and automatically triggers the alarm mechanism when the equipment is displaced or deviated, reminding the management personnel to adjust in time. Compared with the traditional signal lamp which lacks position tracking function and is prone to traffic management confusion due to displacement, the structure effectively avoids the safety hazards caused by the deviation of the equipment position, and greatly improves the management accuracy and safety of the mobile signal lamp.

[0028] The electronic control cabin and the battery compartment are integrated in the base, realizing a compact and efficient structure design. The battery compartment is directly connected with the solar panel, ensuring stable storage and supply of electric energy, while the electronic control cabin realizes centralized analysis and processing of sensor data and communication interaction. Compared with the prior art in which the control module and the battery unit are dispersedly arranged, leading to difficult maintenance and reduced system stability, the integrated design significantly improves the stability and maintenance convenience of the overall operation of the equipment.

[0029] It is suitable for real-time monitoring and remote management of mobile traffic signal lamp safety control work. BRIEF DESCRIPTION OF DRAWINGS

[0030] Fig. 1 It is a front view of a solar energy intelligent collision warning mobile signal lamp.

[0031] Fig. 2 It is a working process schematic diagram of a solar energy intelligent collision warning mobile signal lamp.

[0032] Among them, 1 represents a solar panel, 2 represents a temperature sensor, 3 represents an acceleration sensor, 4 represents an electronic control cabin, 5 represents a battery compartment, and 6 represents a base. DETAILED DESCRIPTION

[0033] In order to make the advantages and benefits of the technical solutions provided by the present application more clear, the technical solutions provided by the present application are further described in detail in combination with the drawings, and the specific embodiments are as follows:

[0034] Embodiment one, the embodiment provides a solar energy intelligent collision warning mobile signal lamp, which comprises:

[0035] A signal lamp body;

[0036] A solar panel 1 arranged at the top of the signal lamp body, used for converting solar energy into electric energy;

[0037] An LED signal lamp module arranged in the middle of the signal lamp body, used for displaying traffic indication signals;

[0038] An electronic control cabin 4 and a battery compartment 5 arranged at the bottom of the signal lamp body, the battery compartment 5 is used for storing the electric energy converted by the solar panel 1, and the electronic control cabin 4 is provided with an intelligent signal control machine, a sensor data acquisition module and a communication module;

[0039] A plurality of sensor modules, including temperature sensors 2, acceleration sensors 3 and GPS positioning modules arranged at different positions of the body respectively;

[0040] The sensor module sends the collected monitoring data to the sensor data acquisition module, and the sensor data acquisition module identifies the abnormality and sends alarm information to the remote monitoring platform through the communication module.

[0041] Embodiment two, the embodiment is a further limitation of the solar energy intelligent collision warning mobile signal lamp provided by the first embodiment, the solar panel 1 is a flat plate structure, connected to the top of the signal lamp body, and the installation angle is between 15° and 45°.

[0042] Embodiment three, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the LED signal lamp module includes the vertical arrangement of red, yellow, green three color round LED lamp group.

[0043] Embodiment four, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the electronic control cabin 4 and battery compartment 5 adopt integrated structure design, are directly connected through circuit.

[0044] Embodiment five, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the temperature sensor 2 is arranged at the top of the signal lamp main body, for real-time monitoring the working temperature of the signal lamp.

[0045] Embodiment six, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the acceleration sensor 3 is arranged in the upper middle position of the signal lamp main body, for real-time monitoring whether the signal lamp is subjected to external force collision or dumping.

[0046] Embodiment seven, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the GPS positioning module is arranged in the bottom area of the signal lamp main body, for real-time monitoring the position change of the signal lamp.

[0047] Embodiment eight, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the bottom of the main body is connected with the base 6 through the square support column, and the bottom of the base 6 is provided with a rolling wheel.

[0048] Embodiment nine, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the communication module supports GSM, Wi-Fi or LoRa wireless communication protocol.

[0049] Embodiment ten, the embodiment is one kind for the further limitation of the solar energy intelligent collision warning mobile signal lamp provided in embodiment one, the shell of the signal lamp main body is made of high-strength weather-resistant material, and the protection level is IP67.

[0050] Embodiment eleven, in combination Figs. 1-2 The embodiment is described in detail by specific examples, and the specific:

[0051] The embodiment provides a solar intelligent collision warning mobile signal lamp, and the overall structure comprises a signal lamp body, a solar cell panel 1 at the top, an LED signal lamp module at the middle, an electronic control cabin 4 at the bottom, a battery compartment 5, a supporting column and a base 6, and sensor modules distributed at different positions of the body, wherein the sensor modules comprise a temperature sensor 2 and an acceleration sensor 3. The signal lamp body is in a rectangular column structure, is made of high-strength weather-resistant material, has an overall protection level of IP67, and has waterproof and dustproof functions.

[0052] First, the top of the signal lamp body is provided with the solar cell panel 1. Specifically, the solar cell panel 1 is in a flat plate structure, is connected to the top of the body through a rotating shaft, and the installation angle can be adjusted between 15° and 45° to adapt to the sunlight incidence requirements of different latitude regions and seasons and to optimize the collection efficiency of solar energy. The solar cell panel 1 is connected to the battery compartment 5 at the bottom through a line, converts the absorbed solar energy into electric energy, and stores the electric energy in the lithium battery in the battery compartment 5, so as to continuously provide power support for the whole device.

[0053] Second, the LED signal lamp module is installed in the middle of the signal lamp body. The LED signal lamp module is composed of red, yellow and green circular lamp groups and is vertically arranged in the traditional traffic signal lamp mode, wherein the red lamp is located at the uppermost position, the yellow lamp is located in the middle, and the green lamp is located at the lowermost position. The LED signal lamp module is connected to the electronic control cabin 4 at the bottom through an internal line, and the intelligent signal control machine in the electronic control cabin 4 is responsible for controlling each lamp group to work according to a preset program, thereby effectively guiding the traffic flow and realizing compatibility with the existing traffic management system.

[0054] Third, the electronic control cabin 4 and the battery compartment 5 are arranged at the bottom of the signal lamp body. Specifically, the electronic control cabin 4 is in a rectangular structure and is internally provided with an intelligent signal control machine, a sensor data acquisition module, a communication module and a control unit. The battery compartment 5 is also in a rectangular structure and is designed in an integrated manner with the electronic control cabin 4, is directly connected to the solar cell panel 1 at the top through a line, is responsible for stably storing the electric energy collected by the solar cell panel 1, and continuously supplies power to the electronic control cabin 4, the signal lamp module and the sensor module. The electronic control cabin 4 is directly arranged adjacent to the battery compartment 5 through a connecting line, facilitates maintenance and improves the integration and stability of the device.

[0055] Then, the sensor data acquisition module in the electronic control cabin 4 is connected with multiple sensor modules arranged at different positions of the signal lamp body. Specifically, the sensor modules include a temperature sensor 2, an acceleration sensor 3, and a GPS positioning module. The temperature sensor 2 is arranged at the top of the device to monitor the working temperature of the signal lamp and the environment in real time; the acceleration sensor 3 is arranged at the middle upper part of the device body to monitor whether the device is collided or tilted in real time; and the GPS positioning module is installed at the bottom area of the device to monitor the position change of the device in real time, so as to ensure that the signal lamp works normally at the predetermined position.

[0056] Furthermore, a square support column is connected with the base 6 at the bottom of the device body, and the support column and the base 6 are firmly connected through threads to form a stable support structure. The base 6 is designed as a detachable structure, and a roller and a brake device are installed at the bottom. The roller structure facilitates flexible movement and transportation of the device, and the brake device ensures stable fixation of the device at the specified position, thereby providing reliable support and operation flexibility.

[0057] Next, a communication module is arranged in the electronic control cabin 4 and connected with the top of the device through a wireless communication antenna to realize the data transmission function. The communication module supports wireless communication protocols such as GSM, Wi-Fi, or LoRa, and uploads the monitoring data such as temperature, collision, tilting, and displacement collected by the sensor module to the remote monitoring platform in real time, so that the management personnel can remotely view the running state of the device and control it in real time through a mobile phone or a computer terminal.

[0058] Finally, in combination with the above structure, the workflow in the embodiment is as follows:

[0059] After the signal lamp starts running, the temperature sensor 2, the acceleration sensor 3, and the GPS module continuously monitor the temperature, collision, tilting, and displacement to generate monitoring data in real time. The monitoring data is preliminarily analyzed by the sensor data acquisition module. If the detection data is normal, continuous monitoring is performed; if the detection data is abnormal (such as device temperature exceeding the limit, collision, tilting, or device displacement), the data acquisition module immediately sends the abnormal data to the communication module. After receiving the abnormal data, the communication module quickly uploads it to the remote monitoring platform through the wireless network; the remote monitoring platform automatically identifies the device abnormal type and position according to the received abnormal data, immediately sends an alarm notice to the management personnel, and informs the type, position, and device state of the abnormal situation. After receiving the alarm notice, the management personnel quickly goes to the abnormal device site to troubleshoot and repair; after the processing is completed, the device state is updated in real time by the remote monitoring platform and the normal monitoring and running state is restored.

[0060] Through the reasonable design and configuration of the above structure, the embodiment effectively realizes real-time monitoring and abnormal early warning of the temperature, collision, dumping and displacement of the mobile signal lamp, greatly improves the reliability and safety of the equipment, and reduces the risk of secondary accidents. At the same time, the solar power supply design significantly reduces the energy consumption cost, realizes the goal of environmental protection and energy saving, improves the application universality and maintenance convenience of the mobile signal lamp, and is suitable for traffic safety management needs in different regions, especially in areas where power supply is inconvenient or remote.

[0061] The above description of the technical solutions provided by the present application through several specific embodiments is to highlight the advantages and benefits of the technical solutions provided by the present application, but the above several specific embodiments are not used as a limitation of the present application, any reasonable modification and improvement of the present application, combination and equivalent replacement of the embodiments, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A solar powered intelligent collision warning mobile signal light, characterized in that, The utility model relates to a solar energy signal lamp, including: A signal lamp body; A solar panel arranged on the top of the signal lamp body for converting solar energy into electric energy; An LED signal lamp module arranged in the middle of the signal lamp body for displaying traffic signals; An electronic control cabin and a battery compartment arranged at the bottom of the signal lamp body, the battery compartment is used for storing the electric energy converted by the solar panel, and the electronic control cabin is internally provided with an intelligent signal control machine, a sensor data acquisition module and a communication module; A plurality of sensor modules including temperature sensors, acceleration sensors and GPS positioning modules arranged at different positions of the body respectively; The sensor modules send the monitoring data collected to the sensor data acquisition module, and the sensor data acquisition module sends alarm information to a remote monitoring platform through the communication module after identifying an abnormality.

2. The solar intelligent collision warning mobile signal light according to claim 1, wherein, The solar panel is in a flat plate structure and is connected to the top of the signal lamp body with an installation angle of 15-45 degrees.

3. The solar intelligent collision warning mobile signal light according to claim 1, wherein, The LED signal lamp module includes vertically arranged red, yellow and green circular LED lamp groups.

4. The solar intelligent collision warning mobile signal light of claim 1, wherein The electronic control cabin and the battery compartment adopt an integrated structure design and are directly connected through a circuit.

5. The solar powered intelligent collision warning mobile signal light of claim 1, wherein The temperature sensor is arranged on the top of the signal lamp body for real-time monitoring of the working temperature of the signal lamp.

6. The solar powered intelligent collision warning mobile signal light of claim 1, wherein The acceleration sensor is arranged at an upper middle position of the signal lamp body for real-time monitoring of whether the signal lamp is subjected to external force collision or dumping.

7. The solar powered intelligent collision warning mobile signal light of claim 1, wherein, The GPS positioning module is arranged in the bottom area of the signal lamp body for real-time monitoring of the position change of the signal lamp.

8. The solar powered intelligent collision warning mobile signal light of claim 1, wherein, The bottom of the body is connected to a base through a square support column, and the base is provided with a roller at the bottom.

9. The solar powered intelligent collision warning mobile signal light of claim 1, wherein, The communication module supports GSM, Wi-Fi or LoRa wireless communication protocols.

10. The solar powered intelligent collision warning mobile signal light of claim 1, wherein, The shell of the signal lamp body is made of high-strength weather-resistant material with an IP67 protection level.