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Uncertainty Analysis Using Fuzzy Transformation Method: An Application in Power-Flow Studies

机译:模糊变换法的不确定性分析:潮流研究中的应用

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This paper is concerned with a fuzzy analysis of power-flow (PF) involving uncertainties of load demands and network parameters. The crux of this paper is to propose an advanced fuzzy arithmetic. Fuzzy transformation method merges with backward-forward sweep in order to evaluate the contribution and propagation of uncertainty in IEEE 33-bus and 69-bus distribution systems. Results are validated by true intervals and random ranges. To determine true intervals, Global Optimization Problems (GOPs) are defined and solved through derivative-based and free techniques. To estimate random ranges, Monte-Carlo Simulations (MCSs) are employed. Our findings confirm that the sharpness of fuzzy intervals, tractability of computations, and applicability of possibility distributions. Following scenario-based evaluations, this paper discusses new implications of power losses, voltage profiles, optimal re-configuration, feeder extension, and reactive power compensation so that results would be beneficial to system planners and operators. Altogether, this paper provides a blueprint for a new way to handle uncertainties in a wide variety of power system problems without global optimization, linearization, and randomized simulations.
机译:本文关注的是潮流分析(PF)的模糊分析,其中涉及负载需求和网络参数的不确定性。本文的重点是提出一种先进的模糊算法。模糊变换方法与后向扫频合并,以评估IEEE 33总线和69总线配电系统中不确定性的贡献和传播。通过真实的时间间隔和随机范围验证结果。为了确定真实的时间间隔,通过基于导数的自由技术定义和解决了全局优化问题(GOP)。为了估计随机范围,采用了蒙特卡洛模拟(MCS)。我们的发现证实了模糊区间的清晰度,计算的可处理性以及可能性分布的适用性。在基于方案的评估之后,本文讨论了功率损耗,电压曲线,最佳重新配置,馈线扩展和无功功率补偿的新含义,因此其结果将对系统规划人员和运营商有利。总而言之,本文为无需全局优化,线性化和随机模拟的情况下处理各种电力系统问题中的不确定性提供了一种新方法的蓝图。

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