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Power Scheduling of Distributed Generators for Economic and Stable Operation of a Microgrid

机译:分布式发电机的功率调度,实现微电网的经济稳定运行

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This paper is concerned with the power dispatch problem of distributed generators (DGs) for optimal operation of a microgrid. The objective is to minimize the fuel cost during the grid-connected operation, while ensuring stable operation after islanding. To achieve this goal, the economic dispatch (ED) problem and related constraints are formulated. The constraints considered in this study are: i) reserve for variation in load demand, ii) reserve for variation in the power outputs of non-dispatchable DGs, iii) flow limits between two adjacent areas, and iv) reserve for the stable islanded operation. The first three constraints, which have been employed in ED problem for conventional power systems, are modified to apply to Microgrids. We also provide a detailed formulation of the constraint for stable islanded operation in accordance with two power-sharing principles: i) fixed droop and ii) adjustable droop. The problem is solved using a modified direct search method, and the effect of the constraints on the operational cost is investigated via numerical simulations.
机译:本文关注的是分布式发电机(DG)的功率分配问题,以实现微电网的最佳运行。目的是使并网运行期间的燃料成本最小化,同时确保孤岛后的稳定运行。为了实现此目标,制定了经济调度(ED)问题和相关约束。本研究中考虑的约束包括:i)负载需求变化的储备; ii)不可分配DG的功率输出变化的储备; iii)两个相邻区域之间的流量限制;以及iv)稳定孤岛运行的储备。在常规电源系统的ED问题中采用的前三个约束条件已修改为适用于微电网。我们还根据两个功率共享原理提供了稳定孤岛运行约束的详细公式:i)固定下垂和ii)可调下垂。使用改进的直接搜索方法解决了该问题,并通过数值模拟研究了约束条件对运营成本的影响。

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