A rapid response method and system for linking optical power monitoring and fault testing
By establishing a three-dimensional coordinate system and a three-layer anchor network structure in the Spring-Cloud microservice architecture, the problem of data flow timing disorder in the optical power monitoring system was solved, enabling rapid response and high reliability in optical network fault handling, and improving the accuracy of fault detection and the system's self-optimization capability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- NANJING SUYI IND
- Filing Date
- 2025-08-01
- Publication Date
- 2026-05-26
AI Technical Summary
In the Spring-Cloud microservice architecture, the data flow timing disorder of the optical power monitoring system leads to insufficient reliability and response speed in optical network fault handling. In particular, when optical power is abnormal, the synchronous switching of the OTDR test service and the OLP switching service cannot be completed within a 25ms time difference, which affects the accuracy of fault handling.
By establishing a three-dimensional coordinate system to manage monitoring data spatially, a three-layer anchor point network structure is constructed, a decision link state mapping matrix is generated, and a time-series reconstruction buffer is used to ensure the precise and synchronous execution of switching commands, including the coordinated linkage of the trajectory monitoring module, network construction module, mapping module, feedback verification module, and switching control module.
It significantly improves the response speed and coordination accuracy of fault handling in distributed optical networks, ensures the reliability of the linkage response mechanism, realizes intelligent scheduling and precise timing control of optical line protection switching, and enhances the system's self-improvement capability.
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Figure CN120785418B_ABST