Optimizing DER Aggregate Flexibility via Network Reconfiguration

Fuente: arXiv
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Main Authors: Zhang, Feixiang, Li, Hongyi, Cui, Bai, Wang, Zhaoyu
Format: Preprint
Published: 2025
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author Zhang, Feixiang
Li, Hongyi
Cui, Bai
Wang, Zhaoyu
author_facet Zhang, Feixiang
Li, Hongyi
Cui, Bai
Wang, Zhaoyu
contents The aggregate flexibility region of distributed energy resources (DERs) quantifies the aggregate power shaping capabilities of DERs. It characterizes the distribution network's potential for wholesale market participation and grid service provision at the transmission level. To enhance flexibility and fully exploit the potential of DERs, this paper proposes a method to optimize the aggregate flexibility region through distribution network reconfiguration. First, we formulate the ellipsoidal aggregate flexibility region characterization problem as a two-stage adaptive robust optimization problem and derive an exact convex reformulation with a large number of second-order cone constraints. By exploiting the problem structure, we propose a scalable Benders decomposition algorithm with provable finite convergence to the optimal solution. Finally, we propose an optimal reconfiguration problem for aggregate flexibility region optimization and solve it using the custom Benders decomposition. Numerical simulations on the IEEE 123-bus test feeder demonstrate that, compared to existing approaches, substantial improvements in the aggregate flexibility region can be achieved over multiple scenarios with the optimized topology.
format Preprint
id arxiv_https___arxiv_org_abs_2512_04472
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimizing DER Aggregate Flexibility via Network Reconfiguration
Zhang, Feixiang
Li, Hongyi
Cui, Bai
Wang, Zhaoyu
Systems and Control
The aggregate flexibility region of distributed energy resources (DERs) quantifies the aggregate power shaping capabilities of DERs. It characterizes the distribution network's potential for wholesale market participation and grid service provision at the transmission level. To enhance flexibility and fully exploit the potential of DERs, this paper proposes a method to optimize the aggregate flexibility region through distribution network reconfiguration. First, we formulate the ellipsoidal aggregate flexibility region characterization problem as a two-stage adaptive robust optimization problem and derive an exact convex reformulation with a large number of second-order cone constraints. By exploiting the problem structure, we propose a scalable Benders decomposition algorithm with provable finite convergence to the optimal solution. Finally, we propose an optimal reconfiguration problem for aggregate flexibility region optimization and solve it using the custom Benders decomposition. Numerical simulations on the IEEE 123-bus test feeder demonstrate that, compared to existing approaches, substantial improvements in the aggregate flexibility region can be achieved over multiple scenarios with the optimized topology.
title Optimizing DER Aggregate Flexibility via Network Reconfiguration
topic Systems and Control
url https://arxiv.org/abs/2512.04472