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Reliability evaluation of multi-microgrids considering optimal operation of small scale energy zones under load-generation uncertainties

机译:考虑负荷产生不确定性的小规模能源区最优运行的多微电网可靠性评估

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A Microgrid (MG) is a scaled down version of the centralized power system that generates, distributes, and regulates the flow of electricity and efficiently serves the local demand. It can operate either grid connected or islanded and, if required, can switch between two modes. In this paper the optimal operation of interconnected MGs considering market operation and network reliability based on MGs is discussed. In supposed structure of MGs, each MG is considered as small scale energy zone (SSEZ) and energy sources within MGs play a role of small scale energy resources (SSER). Because of unpredictable behavior of some SSERs and consumption power of MGs, the probabilistic analysis is impossible to ignore. So, the reliability evaluation is done under uncertain behavior of MGs components. Some recently introduced reliability indices in the literature for MGs are used to evaluate the MGs reliability. The reliability in the proposed paper is evaluated in two different structures of MGs. In first structure, the MGs are interconnected and in second structure, all MGs in islanded mode. The imperialist competitive algorithm (ICA) is applied to optimal power dispatch problem and the obtained results are compared by Monte Carlo Simulation (MCS) method. (C) 2015 Elsevier Ltd. All rights reserved.
机译:微电网(MG)是集中式电源系统的按比例缩小版本,该集中式电源系统生成,分配和调节电力流,并有效地满足当地需求。它可以在并网或孤岛模式下运行,如果需要,可以在两种模式之间切换。本文讨论了基于MG的互联MG的最优运营,考虑了市场运营和网络可靠性。在假定的MG结构中,每个MG被视为小规模能源区(SSEZ),MG中的能源起着小规模能源(SSER)的作用。由于某些SSER的行为无法预测以及MG的消费能力,因此概率分析是无法忽略的。因此,可靠性评估是在MG组件的不确定行为下进行的。 MG文献中最近引入的一些可靠性指标用于评估MG的可靠性。在两种不同结构的MG中评估了提出的论文的可靠性。在第一结构中,MG是互连的,在第二结构中,所有MG都处于孤岛模式。将帝国主义竞争算法(ICA)应用于最优电力分配问题,并通过蒙特卡罗模拟(MCS)方法对所得结果进行比较。 (C)2015 Elsevier Ltd.保留所有权利。

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