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February 2, 2026Processes0 citationsOpen Access

Emergency Power Supply Restoration Strategy of Distribution Network Considering Operational Risk of Islanded Microgrid

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JZJuan ZuoCXChongxin XuWWWenbo Wang

Key Points

  • The central aim is to develop a strategy for restoring power supply in distribution networks while managing operational risks associated with islanded microgrids.
  • Constructed a distribution network emergency power restoration model for islanded microgrids
  • Integrated power supply restoration problem with generalized island power distribution
  • Applied chance constraints to account for operational risks in microgrid operations
  • Conducted simulations using an improved IEEE-33 node distribution network
  • Increased power supply restoration rate from 83.4% to 97.8%
  • Ensured stability of all islanded microgrids under a specified confidence level for operational risk
  • Demonstrated superiority over strategies ignoring operational risks

Abstract

This paper proposes an emergency power supply restoration strategy for a distribution network that considers the operational risk of an islanded microgrid in response to the issues of voltage exceeding limits and power imbalance faced during their operation. Firstly, a distribution network emergency power supply restoration model supported by a generalized dynamic islanded microgrid is constructed. By equating the alternate tie line with a virtual distributed generator (DG), the integrated power supply restoration problem of distribution network is transformed into a generalized island power distribution network division problem based on DGs. Then, the risk of islanded microgrid operation is considered and restricted by chance constraints. Finally, simulation results based on the improved IEEE-33 node distribution network show that, compared to the generalized island partitioning strategy which ignores operational risks, the proposed strategy increases the power supply restoration rate from 83.4% to 97.8% while successfully ensuring the stability of all islanded microgrids under the specified confidence level for operational risk.

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Cite This Study

Zuo et al. (2026) studied this question.

synapsesocial.com/papers/6980fd3cc1c9540dea80ef31https://doi.org/10.3390/pr14030480
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