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Islanding and Dynamic Reconfiguration for Resilience Enhancement of Active Dstribution Systems

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Increasingly frequent extreme weather events cause power outages in active distribution systems. Islanding and fault reconfiguration are effective approaches to service restoration and resilience enhancement. This paper proposes a multi-stage switch strategy based on dynamic programming (DP), considering both islanding and fault reconfiguration. First, numerous expected fault scenarios are constructed based on meteorological forecast and vulnerability analysis of system components, from which typical ones are selected by their information entropy. Second, for each typical scenario, a multi-stage switch strategy considering both islanding and fault reconfiguration is developed through DP. The objective is to make a tradeoff between minimizing total power shortage and minimizing the number of switching operations over the whole event’s duration. The constraints comprise power flow limits, nodal voltage limits, and distributed generators’ capabilities. Finally, a risk-based resilience assessment is performed and the resilience improvement is presented. Tests on the IEEE 33-bus distribution system demonstrate the effectiveness of the proposed method.

Author(s):

Jianchun Xu    
Key Laboratory of Power System Intelligent Dispatch and Control of Ministry of Education , Shandong University
China

Tingting Zhang    
Key Laboratory of Power System Intelligent Dispatch and Control of Ministry of Education , Shandong University
China

Yaxin Du    
Key Laboratory of Power System Intelligent Dispatch and Control of Ministry of Education , Shandong University
China

Wen Zhang    
Key Laboratory of Power System Intelligent Dispatch and Control of Ministry of Education , Shandong University
China

Tianyou Yang    
State Grid Qingdao Power Supply Co. Ltd.
China

Jifu Qiu    
State Grid Qingdao Power Supply Co. Ltd.
China

 

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