Disaster Alert


For application scenarios such as highway corridors, railways, and bridges, this solution leverages a road-and-bridge disaster warning system. By employing differential interferometric measurement and high-precision deformation monitoring technology based on phased-array MIMO systems, it effectively addresses the limitations of traditional InSAR radar equipment—namely, its bulky size, lengthy mechanical scanning cycles, and cumbersome deployment procedures. This approach enables all-weather monitoring of highways, railways, and bridge conditions. The solution features a specially designed hierarchical early-warning mechanism that automatically triggers alerts when monitored data exceeds preset thresholds, simultaneously notifying the corresponding maintenance management departments. The monitoring terminals are engineered with low-power consumption and equipped with solar-powered modules, ensuring reliable long-term operation in remote field environments. This solution is ideally suited for both the full-lifecycle monitoring of newly constructed roads and the intelligent retrofitting of existing infrastructure. By integrating digital technologies, it significantly enhances the safety management capabilities of these facilities, providing a scientific foundation for proactive maintenance decisions and preventive strategies.

System Architecture Diagram of the Luqiao Disaster Warning System Solution is as follows:

System Diagram of the Solution

This solution integrates deformation monitoring radar, high-precision targets, wind speed sensors, rain gauges, solar panels, audio-visual alarm devices, and wireless network transmission equipment to establish an intelligent monitoring system for bridge collapse and slope landslides. The system enables multi-parameter coupled analysis, intelligent early warning, and self-organizing network communication, offering advantages such as all-weather monitoring, edge computing optimization, and visualized management. Additionally, it is supported by a comprehensive implementation, deployment, and operation & maintenance mechanism, effectively enhancing the safety and operational efficiency of infrastructure while significantly reducing the risk of major accidents.

Schematic Diagram of Lightweight Highway Bridge and Culvert Safety Monitoring Network

Application Case:

Hebei Infrastructure Technical Monitoring and Early Warning Project

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