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A multi-criteria decision analysis-based approach for dispatch of electric microgrids

机译:基于多准则决策分析的微电网调度方法

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This paper presents a decision support system (DSS) for multi-objective dispatch of an electric microgrid considering cost of operation, peak load reduction, and emissions. Discrete compromise programming (DCP) is used as the multi-criteria decision analysis (MCDA) technique for providing the decision support to the distribution system operator (DSO) by ranking various alternatives based on preference of the objectives. The focus of this paper is the application of DCP-based MCDA to select feasible dispatch solutions closest to the preference of the DSO when multiple objectives are considered in the microgrid dispatch. This technique obtains non-dominated solutions in case of conflicting objectives without generating a Pareto front, and hence avoiding prohibitive computational cost. DCP can be used for MCDA in both exact and metaheuristic dispatch algorithms. Uncertainty in renewable energy forecasting and load demand is included through a scenario-based approach by sampling empirical distributions. The dispatch algorithm considers a two hour look-ahead time horizon. Simulations are performed on a notional electric microgrid with diesel generator, solar photovoltaic, and energy storage. The microgrid is based on the IEEE 13-node test feeder and the results are presented. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于电力微电网多目标调度的决策支持系统(DSS),其中考虑了运营成本,峰值负荷降低和排放。离散折衷规划(DCP)用作多准则决策分析(MCDA)技术,用于通过基于目标的偏好对各种备选方案进行排名,从而为配电系统运营商(DSO)提供决策支持。本文的重点是当在微电网调度中考虑多个目标时,基于DCP的MCDA在选择最接近DSO偏好的可行调度解决方案中的应用。该技术在目标冲突的情况下获得非支配解,而不会产生Pareto前沿,因此避免了过高的计算成本。 DCP可以在精确和元启发式调度算法中用于MCDA。通过基于场景的方法通过对经验分布进行抽样,可再生能源预测和负荷需求的不确定性包括在内。调度算法考虑了两个小时的提前时间范围。在带有柴油发电机,太阳能光伏发电和储能的概念性微电网上进行仿真。该微电网基于IEEE 13节点测试馈线,并给出了结果。 (C)2016 Elsevier Ltd.保留所有权利。

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