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A two stage algorithm for optimal management of isolated microgrid

机译:孤立的微电网最优管理的两个阶段算法

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摘要

The critical issues in a renewable energy based microgrid are ensuring continuous availability of power to the critical loads, and to provide supply to the maximum possible portion of the system under any abnormal conditions by topology management. An intelligent load shedding and fast reconfiguration of the system is therefore necessary in order to serve the critical loads and to maintain a proper power balance in the microgrid. This paper presents a novel two stage strategy for load shedding and reconfiguration of microgrid using Binary Firefly Algorithm (BFA). In the first stage, the BFA determines the optimal load configuration with minimum load shedding. Reconfiguration of the microgrid with minimum number of switching operations to serve maximum load is done in the second stage using BFA. The strength of the proposed strategy is that reconfiguration is done only if necessary and is illustrated with MATLAB results on modified Consortium for Electric Reliability Technology Solutions(CERTS) microgrid.
机译:可再生能源基础微电网中的关键问题是确保临界负载的电力的持续可用性,并通过拓扑管理在任何异常条件下为系统的最大可能部分提供供应。因此,需要一种智能负载脱落和系统的快速重新配置,以便为临界负载服务并在微电网中保持适当的功率平衡。本文介绍了使用二进制萤火虫算法(BFA)负载脱落和重新配置的新型两个阶段策略。在第一阶段,BFA确定具有最小负载脱落的最佳负载配置。使用BFA在第二阶段进行最小开关操作的MicroGrid的重新配置,以满足最大负载。该策略的优势在于重新配置过程仅在必要时,并与改性联盟MATLAB结果电力可靠性技术解决方案(CERTS)微电网所示。

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