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Decision support system for optimal location of HIFDs in real distribution network using an integrated EPSO-fuzzy AHP model

机译:使用集成的EPSO-FIZZY AHP模型实现决策支持系统,以实现HIFDS在实际分配网络中的最佳位置

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摘要

Distribution overhead line network faults with the potential threats to public safety are of extreme importance. High-impedance faults (HIFs) occur on distribution feeders with close proximity to the population. Advanced technology has enabled power distribution utilities to detect a high percentage of HIFs. However, the application of HIF detectors (HIFDs) should meet both operational and economic requirements due to expense and a large number of distribution feeders. Installation of these devices on overhead feeders among several candidate feeders seems to be a challenging issue. Therefore, ranking of feeders is essential for equipping them with HIFDs. This study proposes a practical approach which is an improved fuzzy analytic hierarchy process (AHP), accompanied by a constrained non-linear optimisation model to extract optimal crisp priorities from fuzzified inputs, considering various criteria with a degree of inconsistency in their real data. This improved integrated model is also able to adequately evaluate both qualitative and subjective parts of the location-allocation problems. In this study, enhanced particle swarm optimisation (EPSO) is used to deal with the optimisation problem for criteria weight ratio and also finding the individual feeder preference weighting to optimally locate HIFDs in distribution feeders. The proposed model is applied on a real network and then sensitivity analysis is performed in the optimal solution.
机译:分销架空线路网络故障具有对公共安全的潜在威胁具有极端重要性。高阻抗故障(HIF)发生在分配馈线上,靠近人口。先进的技术使配电实用程序能够检测高百分比的HIF。然而,HIF探测器(HIFDS)的应用应符合费用和大量分配馈线的运营和经济要求。在几个候选馈人的架空馈线上安装这些设备似乎是一个具有挑战性的问题。因此,饲养者的排名对于将它们用Hifds装备来说是必不可少的。本研究提出了一种实用的方法,该方法是一种改进的模糊分析层次处理(AHP),附带由受约束的非线性优化模型提取从模糊输入中提取最佳的清晰优先级,考虑到其实际数据中具有不一致程度的标准。这种改进的集成模型还能够充分评估位置分配问题的定性和主观部分。在该研究中,增强的粒子群优化(EPSO)用于处理标准重量比的优化问题,并且还发现各个进料偏好加权以最佳地定位在分配馈线中的束缚。所提出的模型应用于实际网络,然后在最佳解决方案中进行敏感性分析。

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