Service restoration of distribution systems under distributed generation scenarios

A novel extended network for service restoration optimization problem under distributed generation scenarios is presented in which the main network restoration and DG island restoration problems are integrated into a unified spanning-tree problem. The proposed technique is aimed to realize synchrono...

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Published inCSEE Journal of Power and Energy Systems Vol. 2; no. 3; pp. 43 - 50
Main Authors Huang, Xianchao, Yang, Yu, Taylor, Gareth A
Format Journal Article
LanguageEnglish
Published Beijing Chinese Society for Electrical Engineering Journal of Power and Energy Systems 01.09.2016
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ISSN2096-0042
2096-0042
DOI10.17775/CSEEJPES.2016.00034

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Abstract A novel extended network for service restoration optimization problem under distributed generation scenarios is presented in which the main network restoration and DG island restoration problems are integrated into a unified spanning-tree problem. The proposed technique is aimed to realize synchronous optimization of both main network and island restorations, and thus ensure the algorithms that are used find the global optimization solution. A fast loop-breaking technique is also proposed in this paper. Based on the circuit-branch correlation matrix, the proposed technique can break the loops in the distribution systems through matrix operations that significantly improve calculation speeds. Simulation results verify the correctness and advantage of the proposed algorithms: the proposed integrated optimization strategy based on the extended network has better performance compared with a two-step restoration strategy; also, the proposed loop-breaking technique has faster calculation speed compared with prim algorithm and DFS based on adjacent matrix.
AbstractList A novel extended network for service restoration optimization problem under distributed generation scenarios is presented in which the main network restoration and DG island restoration problems are integrated into a unified spanning-tree problem. The proposed technique is aimed to realize synchronous optimization of both main network and island restorations, and thus ensure the algorithms that are used find the global optimization solution. A fast loop-breaking technique is also proposed in this paper. Based on the circuit-branch correlation matrix, the proposed technique can break the loops in the distribution systems through matrix operations that significantly improve calculation speeds. Simulation results verify the correctness and advantage of the proposed algorithms: the proposed integrated optimization strategy based on the extended network has better performance compared with a two-step restoration strategy; also, the proposed loop-breaking technique has faster calculation speed compared with prim algorithm and DFS based on adjacent matrix.
Author Huang, Xianchao
Taylor, Gareth A
Yang, Yu
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CorporateAuthor Brunel Institute of Power Systems, Brunel University, UK, UB8 3PH
Huadian Electric Power Research Institute, Hangzhou 310030, China
North China Electric Power University, Beijing 102206, China
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StartPage 43
SubjectTerms Algorithms
Computer simulation
Correlation analysis
Distributed generation
Global optimization
Mathematical analysis
Optimization
Restoration strategies
Service restoration
Title Service restoration of distribution systems under distributed generation scenarios
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