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首页> 外文期刊>Electric Power Components and Systems >Probabilistic and Multi-Objective Placement of D-STATCOM in Distribution Systems Considering Load Uncertainty
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Probabilistic and Multi-Objective Placement of D-STATCOM in Distribution Systems Considering Load Uncertainty

机译:考虑负载不确定性的配电系统中D-STATCOM的概率和多目标放置

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摘要

Advanced technologies such as distribution static compensator (D-STATCOM) are broadly deployed in distribution systems (DSs) to tackle different issues. Successful deployment of such technologies requires their adaption to stochastic nature of DS. This paper proposes a new method for allocation of D-STATCOM in DSs considering load uncertainty. Monte Carlo simulation (MCS) technique is utilized to cope with uncertain attribute of loads. To do so, output of MCS is considered as a deterministic case which is solved by backward-forward sweep power flow approach. The objective functions of the proposed model include total voltage deviation, total active losses, and voltage stability metrics. These metrics are combined in a multi-objective optimization formulation and solved by non-dominated sorting genetic algorithm-II (NSGA-II). Lastly, the best compromise solution is determined by Pareto front technique taking advantage of fuzzy decision making (FDM) engine. Comprehensive simulation studies are carried out on IEEE 33-bus standard distribution system as well as on Portuguese 94-bus real-world distribution system. Simulation studies confirm the accuracy of the proposed method in determining proper location of D-STATCOM in DSs by fulfilling the objectives.
机译:诸如配电静态补偿器(D-STATCOM)之类的先进技术广泛应用于配电系统(DSs)中,以解决不同的问题。这种技术的成功部署要求它们适应DS的随机性。提出了一种考虑负荷不确定性的DS中D-STATCOM分配的新方法。蒙特卡罗模拟(MCS)技术用于应对载荷的不确定属性。为此,将MCS的输出视为确定性情况,可以通过后向扫频潮流方法解决。该模型的目标函数包括总电压偏差,总有功损耗和电压稳定性指标。这些指标被组合成一个多目标优化公式,并通过非支配排序遗传算法II(NSGA-II)进行求解。最后,最佳折衷解决方案是利用模糊决策(FDM)引擎的帕累托前沿技术确定的。在IEEE 33总线标准配电系统以及葡萄牙94总线实际配电系统上进行了全面的仿真研究。仿真研究证实了该方法通过实现目标确定DS中D-STATCOM正确位置的准确性。

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