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Development of a Self-Healing Strategy to Enhance the Overloading Resilience of Islanded Microgrids

机译:制定自我修复策略以增强孤岛微电网的过载弹性

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摘要

This paper proposes a self-healing strategy for two neighboring islanded microgrids (MGs) that are connected together through a normally open interconnecting static switch (ISS). Each MG is expected to support the other during power deficiencies, which is facilitated by the developed self-healing agent. This agent operates based on either a centralized approach, when data communication system is available, or a decentralized approach, when data communication system does not exist or is temporarily unavailable. The necessity and possibility of the MGs interconnection or isolation is determined based on instantaneous power generation of the distributed energy resources in both MGs (in the centralized approach) and local frequency measurements at either side of ISS (in the decentralized approach). The dynamic performance of the MGs with the proposed strategies is evaluated by PSCAD simulation studies. Furthermore, the stability of the system of coupled MGs is investigated through small-signal stability and modal analyses in MATLAB.
机译:本文提出了一种通过两个常开互连静态开关(ISS)连接在一起的相邻的两个岛状微电网(MG)的自愈策略。预计每个MG在电力不足时也可以互相支持,这是由开发的自愈剂促进的。当数据通信系统可用时,该代理基于集中式方法运行,或者在数据通信系统不存在或暂时不可用时,该代理基于分散式方法运行。 MG互连或隔离的必要性和可能性是基于MG中的分布式能源的瞬时发电(在集中式方法中)和ISS两侧的本地频率测量(在分散式方法中)来确定的。通过PSCAD仿真研究评估了采用所提出策略的MG的动态性能。此外,通过MATLAB中的小信号稳定性和模态分析,研究了耦合MG系统的稳定性。

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