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首页> 外文期刊>International journal of power & energy systems >PROBABILISTIC DISTRIBUTION BASED INTERVAL ARITHMETIC LOAD FLOW ALGORITHM FOR RADIAL DISTRIBUTION SYSTEM
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PROBABILISTIC DISTRIBUTION BASED INTERVAL ARITHMETIC LOAD FLOW ALGORITHM FOR RADIAL DISTRIBUTION SYSTEM

机译:基于概率分布的径向分布系统区间算术负荷流算法。

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摘要

Load flow is an essential tool for the study of radial distribution systems (RDS). The inputs to load flow solutions are subject to uncertainties due to load and line parameter variations. Unfortunately, load flow research has to date considered only fixed load and line parameters; inherent uncertainties of the inputs were overlooked. In this article probabilistic distribution-based interval arithmetic approach is proposed to incorporate variations in load parameter. The uncertainties of load variation are represented as Gaussian distribution function. The proposed load flow is tested on standard test systems; the authors find that solutions obtained provide much wider information and all possible solution states are obtained in the closed bounded interval form. It is suggested that proposed power flow could be useful for planning and expansion planning of RDS, where future data always carry a high degree of uncertainties. Composite load model is also incorporated in the algorithm.
机译:潮流是径向分布系统(RDS)研究的重要工具。由于负载和线路参数的变化,潮流解决方案的输入存在不确定性。不幸的是,迄今为止,潮流研究只考虑了固定的负载和线路参数;输入的内在不确定性被忽略了。本文提出了一种基于概率分布的区间算术方法,以结合负载参数的变化。负荷变化的不确定性表示为高斯分布函数。建议的潮流在标准测试系统上进行测试;作者发现,获得的解提供了更广泛的信息,并且所有可能的解状态都以封闭的有界区间形式获得。建议提出的潮流对于RDS的规划和扩展规划可能是有用的,因为RDS的未来数据始终带有高度的不确定性。复合载荷模型也被纳入算法中。

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