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Stochastic optimal sizing of distributed energy resources for a cost-effective and resilient Microgrid

机译:随机优化分布式能源的规模,从而获得经济高效且具有弹性的微电网

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Recent developments and advances in distributed energy resources (DERs) make them more affordable, accessible, and prevalent in microgrids. Research on designing and operating a microgrid with various DERs has received increasing attention during the past few years. This paper proposes a two-stage stochastic mixed-integer programming method for jointly determining optimal sizes of various DERs, considering both economic benefits and resilience performance. The proposed method explicitly models the interaction between DER sizing at the planning stage and hourly or sub-hourly microgrid dispatch at the operating stage in both grid-connected and island modes, considering stochastic grid disturbances, load, and renewable generation. A formulation method is then proposed to convert the stochastic sizing problem to an equivalent mix-integer linear programming problem, which can be efficiently solved even with a large number of system operating conditions. Using the proposed stochastic sizing method, a resource planning analysis for a military base in the U.S. is presented. It is found that the proposed method can effectively determine the optimal DER sizes to meet a required resilience goal at the maximum net-benefit. Impacts of several key factors including tariff rates, discount rate, and surviv-ability level on optimal DER sizes are analyzed through case studies.
机译:分布式能源(DERs)的最新发展和进步使它们在微电网中更便宜,更容易获得和普及。在过去的几年中,有关设计和操作具有各种DER的微电网的研究受到越来越多的关注。本文提出了一种两阶段随机混合整数规划方法,该方法可综合考虑经济效益和弹性性能,共同确定各种DER的最佳尺寸。考虑到随机的电网干扰,负荷和可再生能源发电,提出的方法显着地模拟了规划阶段的DER规模与运营阶段的每小时或每小时以下微电网调度之间的相互作用,并网和孤岛模式。然后提出了一种公式化方法,将随机大小问题转换为等效的混合整数线性规划问题,即使在大量系统工作条件下也可以有效地解决该问题。使用提出的随机规模估算方法,对美国军事基地的资源计划进行了分析。发现所提出的方法可以有效地确定最佳DER尺寸,以在最大净收益下满足所需的弹性目标。通过案例分析,分析了关税,折现率和生存能力水平等几个关键因素对最佳DER规模的影响。

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