A multi-source electric circuit state monitoring and risk signal early warning system
By combining the multi-source perception layer and the topology association layer, and utilizing the spatiotemporal risk evolution model of the edge computing gateway, cross-loop risk early warning signals are generated. This solves the problem that traditional systems cannot predict complex hidden risks, and enables early warning and proactive defense for distributed electrical circuits, thereby improving the system's security and reliability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XIAMEN MUNICIPAL PIPE GALLERY INVESTMENT MANAGEMENT CO LTD
- Filing Date
- 2026-06-11
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional stand-alone loop monitoring and status monitoring systems lack the ability to predict the domino-like chain reaction evolution path of complex hidden risks. They are unable to intercept cross-temporal and spatial trends during the early golden intervention window for system-level risk diffusion, making it difficult to meet the inherent safety and early warning and control needs of high-risk distributed loops and accurate risk profiling.
The system employs a multi-source sensing layer to collect electrical and non-electrical parameters in real time, establishes a risk transmission matrix through a topology association layer, and combines the spatiotemporal risk evolution model of the edge computing gateway to generate a predicted risk index and risk profile signal. Furthermore, it generates a proactive safety linkage command before the target fault circuit triggers substantial physical damage, thereby achieving proactive defense against cross-circuit risks.
Within 25 minutes before the fault circuit triggers substantial damage, a point-to-point ultra-low latency pre-linkage command is sent to drive the downstream intelligent control terminal to implement current limiting and temperature reduction, cut off the cascading fault propagation path, and improve the all-time dynamic status early warning capability and abnormal state pre-prevention performance of the distributed electrical circuit system.
Smart Images

Figure CN122418985A_ABST