Fast Feeder Reconfiguration via Mesh Adaptive Direct Search in Black-Box Distribution System Environments

Fuente: arXiv
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Main Authors: Zheng, Junyuan, Shi, Wenlong, Wang, Zhaoyu
Format: Preprint
Published: 2025
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author Zheng, Junyuan
Shi, Wenlong
Wang, Zhaoyu
author_facet Zheng, Junyuan
Shi, Wenlong
Wang, Zhaoyu
contents Feeder reconfiguration is a critical operational strategy in power distribution systems. However, existing optimization approaches typically rely on explicit mathematical formulations and analytical models, which are often infeasible in practical utility environments characterized by heterogeneous, proprietary, and black-box simulation modules. To address this challenge, this paper proposes a fast feeder reconfiguration framework based on Mesh Adaptive Direct Search (MADS). The proposed approach requires only performance metric evaluations through simulation modules used for power flow, protection, and voltage regulation analysis. A bi-objective formulation is adopted to jointly minimize active power loss and operational constraint violations. A Pareto-based frontier filter is integrated into the MADS algorithm to efficiently guide the search toward high-quality configurations while systematically pruning dominated solutions. The approach adaptively refines the search space around promising candidates using local polling strategies and convergence aware updates. Case studies on the IEEE-123 node test feeder demonstrate that the proposed approach achieves near-optimal configurations with significantly fewer evaluations compared to heuristic methods.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16027
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Fast Feeder Reconfiguration via Mesh Adaptive Direct Search in Black-Box Distribution System Environments
Zheng, Junyuan
Shi, Wenlong
Wang, Zhaoyu
Systems and Control
Feeder reconfiguration is a critical operational strategy in power distribution systems. However, existing optimization approaches typically rely on explicit mathematical formulations and analytical models, which are often infeasible in practical utility environments characterized by heterogeneous, proprietary, and black-box simulation modules. To address this challenge, this paper proposes a fast feeder reconfiguration framework based on Mesh Adaptive Direct Search (MADS). The proposed approach requires only performance metric evaluations through simulation modules used for power flow, protection, and voltage regulation analysis. A bi-objective formulation is adopted to jointly minimize active power loss and operational constraint violations. A Pareto-based frontier filter is integrated into the MADS algorithm to efficiently guide the search toward high-quality configurations while systematically pruning dominated solutions. The approach adaptively refines the search space around promising candidates using local polling strategies and convergence aware updates. Case studies on the IEEE-123 node test feeder demonstrate that the proposed approach achieves near-optimal configurations with significantly fewer evaluations compared to heuristic methods.
title Fast Feeder Reconfiguration via Mesh Adaptive Direct Search in Black-Box Distribution System Environments
topic Systems and Control
url https://arxiv.org/abs/2507.16027