Reliability evaluation in multi-microgrids under probabilistic optimum operation using heuristic algorithm

N. Nikmehr, S. Najafi-Ravadanegh
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引用次数: 5

Abstract

In this paper, Multi-Microgrids (MMG) are considered as future smart distribution grids, in which small scale energy resources (SSER) are main power generation units with small scales. Optimal operation of microgrids in defined intervals is carried out to achieve economic conditions in distribution systems. The defined operating problem is optimized using a heuristic algorithm considering uncertainties in loads and renewable energy resources (RERs). The probability density functions (PDFs) are used to encounter with the uncertainties. The total cost of the network is minimized by the algorithm. Then the reliability evaluation is done for each MG. Some new introduced reliability indices in the literature for MGs are used to evaluate the MGs reliability and costs. In proposed structure, the MGs are in interconnected mode and there is power exchanging between MGs. The particle swarm optimization (PSO) algorithm is applied to optimal power dispatch and the obtained results are compared by Monte Carlo simulation (MCS) method.
基于启发式算法的概率优化多微电网可靠性评估
本文将多微电网(MMG)视为未来的智能配电网,其中小规模能源(SSER)是主要的小规模发电单元。为实现配电网的经济运行,对微电网进行定间隔优化运行。考虑负荷和可再生能源的不确定性,采用启发式算法对已定义的运行问题进行优化。概率密度函数(pdf)用于处理不确定性。该算法使网络的总开销最小化。然后对每个MG进行可靠性评估。本文采用文献中引入的新可靠性指标来评价燃气轮机的可靠性和成本。在该结构中,各主控模块处于互联模式,并在主控模块之间进行功率交换。将粒子群优化(PSO)算法应用于电力最优调度,并用蒙特卡罗仿真(MCS)方法对所得到的结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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