Random Forest Approach to Resilience-Oriented Infrastructure Post-Disruption Repair Optimization
Yang, Xiaozhou, Shen, Lijuan, and Zhou, Jian (2022) Random Forest Approach to Resilience-Oriented Infrastructure Post-Disruption Repair Optimization. In: Proceedings of the 4th International Conference on System Reliability and Safety Engineering. pp. 543-548. From: SRSE 2022: 4th International Conference on System Reliability and Safety Engineering, 15-18 December 2022, Guangzhou, China.
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Abstract
Resilient critical infrastructure systems should be able to quickly recover from disruptions to ensure sustained service deliveries. To speed up the recovery process, optimal recovery strategy is crucial for better situational awareness. Current research on sequencing the repair of disrupted power system components either use a generic network model as an approximation or rely on rule-based methods which might not produce recovery strategies that minimize resilience loss. We propose a random forest-based recovery sequencing optimization strategy based on stochastic disruption simulation data obtained from realistic system simulations. The strategy is shown to be more effective in limiting resilience loss compared to existing methods when tested with six-line and ten-line disruption scenarios from the IEEE 39 test system. Having a fast and effective repair sequencing strategy with the explicit goal of limiting resilience loss could provide valuable service to operators responding to disruptions in power systems.
| Item ID: | 93252 |
|---|---|
| Item Type: | Conference Item (Research - E1) |
| ISBN: | 978-1-6654-7388-0 |
| Copyright Information: | © 2022 IEEE |
| Date Deposited: | 13 Aug 2026 00:30 |
| FoR Codes: | 40 ENGINEERING > 4010 Engineering practice and education > 401006 Systems engineering @ 60% 46 INFORMATION AND COMPUTING SCIENCES > 4611 Machine learning > 461199 Machine learning not elsewhere classified @ 40% |
| SEO Codes: | 17 ENERGY > 1703 Energy storage, distribution and supply > 170306 Energy transmission and distribution (excl. hydrogen) @ 100% |
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