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Voltage Quality Index Based Method to Quantify the Advantages of Optimal DG Placement

机译:基于电压索引的方法,量化最佳DG放置的优点

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This paper presents the advantages of the optimal DG placement during the operation stage of the radial distribution system. The method taken for optimal DG placement (ODGP) is considered from our previous work, which gives optimal locations based on Load Concentration Factor (LCF). Various cases of random DG placement (RDGP) are considered which are divided into two main categories. In first, the locations are varied and in second DG sizes are rotated on same locations found by LCF method. In all these cases, the total active power delivered by the DGs is kept same as for the case of ODGP. The load growth in network is considered to correspond to the future operational stage. A novel Voltage Quality Index (VQI) is proposed in this work which provides a straightforward method for quantifying the system's voltage quality status. Furthermore, two different scenarios, with and without a centralized voltage control algorithm, are considered for the comparison purpose. The advantages of ODGP in all these cases are highlighted by comparing the active power loss reduction, and voltage profile and quality improvement. The results showed that, in case of voltage problem, algorithm could improve voltage to a better limit, while keeping the losses reduced, in case of ODGP than RDGP cases.
机译:本文介绍了在径向分布系统的操作阶段期间最佳DG放置的优点。从我们以前的工作中考虑了用于最佳DG放置(ODGP)的方法,这为基于负载浓度因子(LCF)提供了最佳位置。考虑各种随机DG放置(RDGP)的情况,被分为两个主要类别。首先,在通过LCF方法发现的同一位置旋转位置,并且在第二DG尺寸下,位置处于各个位置。在所有这些情况下,DGS传递的总有效功率与ODGP的情况相同。网络中的负载增长被认为对应于未来的运营阶段。在该工作中提出了一种新颖的电压质量指数(VQI),提供了一种用于量化系统的电压质量状态的直接方法。此外,考虑比较目的,考虑两个不同的场景,具有和不具有集中电压控制算法。通过比较有源功率损耗减少和电压曲线和质量改进,突出了ODGP在所有这些情况下的优势。结果表明,在电压问题的情况下,算法可以将电压提高到更好的限制,同时保持损耗降低,例如ODGP而不是RDGP案例。

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