Motion-to-Risk: Physics-Guided Multi-Source State Assessment for High-Voltage Vacuum Circuit Breakers
Song Gao, Kaikai Zhang, Xin Jin, Hui Wang, Hui Wang, Zengjie Zhao, Huan Wang, Huan Wang
Henan University of Science and Technology Luoyang Institute of Science and Technology
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摘要与影响
High-voltage vacuum circuit breakers are critical switching devices in power systems, and their reliable condition assessment is essential for safe operation and maintenance decision-making. However, breaker abnormalities are often reflected by heterogeneous operation-related evidence, and existing methods based on single-source measurements or generic feature fusion may weaken source-specific diagnostic roles and limit the recognition of compound abnormal conditions. To address this problem, this paper proposes the Physics-Guided Multi-Source State Assessment Network (PMSA-Net), a reliability-aware framework that integrates mechanical motion, opening- and closing-position limit events, and infrared thermography. Source-specific encoders first extract dynamic, end-position, and thermal representations. Reliability-aware Asymmetric Selective Interaction (RASI) then calibrates primary and auxiliary evidence, using mechanical motion as the operational context and the other sources as complementary constraints. Thermal Frequency-aware Selective Modulation (TFSM) stabilizes the low-frequency thermal field and enhances high-frequency hotspot responses. Task-conditioned evidence allocation jointly predicts state category, travel anomaly, limit-event consistency, thermal risk, and overall risk. On a laboratory-simulated benchmark covering 15 operating conditions, PMSA-Net achieved 90.18±0.36% state-category accuracy and an 80.00±0.50% overall-risk macro-F1 score over five independent runs. Under cross-source abnormalities, it exceeded the variational-fusion baseline by 2.59 and 3.05 percentage points on these metrics, respectively. These results indicate that reliability-aware calibration improves multi-task assessment of compound breaker abnormalities.
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学科主题
工程Power System Reliability and Maintenance
Vacuum and Plasma Arcs · Thermal Analysis in Power Transmission
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