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Defining the suitable adjacent microgrids to form a temporary system of coupled microgrids

机译:定义合适的相邻微电网以形成耦合微电网的临时系统

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Majority of the remote areas have self-sufficient and isolate electricity systems. These systems are preferred to generate the majority of the electricity from renewable energy resources if they are available in the area to reduce the cost of electricity production. Thereby, they can be assumed as sustainable islanded microgrids. Large remote areas may be supplied by multiple adjacent microgrids, each with a different operator. The adjacent microgrids may couple and exchange power temporarily to support each other under emergencies such as overloading, generation shortfalls, or faults. Defining the suitable nearby microgrid(s) to be coupled is a challenging task. This paper uses a heuristic-based optimization approach to evaluate the suitability of the connection of nearby microgrids and the minimum technical impacts on the newly generated system. The impact of the developed approach is assessed by MATLAB-based numerical analyses under a stochastic environment.
机译:大多数偏远地区具有自给自足的电力系统。如果这些系统在该地区可用,则可以从可再生能源中产生大部分电力,从而降低电力生产成本。因此,它们可以被认为是可持续的岛上微电网。较大的偏远地区可能由多个相邻的微电网供电,每个微电网都有不同的运营商。相邻的微电网可以临时耦合并交换功率,以在诸如过载,发电不足或故障之类的紧急情况下相互支持。定义合适的附近微电网以进行耦合是一项艰巨的任务。本文使用基于启发式的优化方法来评估附近微电网连接的适用性以及对新生成的系统的最小技术影响。在随机环境下,通过基于MATLAB的数值分析评估了开发方法的影响。

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