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Passive harmonic filter planning to overcome power quality issues in radial distribution systems

机译:被动谐波过滤器计划克服径向分布系统中的电能质量问题

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摘要

In power systems, power quality issues raised by various non-linear devices (NLD) might violate the allowable harmonic limits defined by IEEE-519 standard. In order to maintain the total harmonic distortion well below the allowable limits, passive harmonic filters are commonly used. This paper presents an algorithm to optimally plan passive harmonic filters in the distribution networks to minimize the total voltage harmonic distortion. The optimization considers the filter location, size, type, quality factor and tuned harmonic order with constraints of bus voltage magnitudes, total and individual harmonic limits and filter components design and operating limits. The proposed approach is developed by using Particle Swarm Optimization (PSO) algorithm and tested on IEEE 18-bus and IEEE 33-bus radial distribution systems. The evaluation demonstrates the effectiveness of the optimization solution in identifying the best filter location, capacity and type.
机译:在电力系统中,各种非线性设备(NLD)提出的电源质量问题可能违反IEEE-519标准定义的允许谐波限制。为了保持远低于允许限制的总谐波失真,通常使用被动谐波滤波器。本文介绍了一种算法,以最佳地规划分发网络中的被动谐波滤波器,以最小化总电压谐波失真。优化考虑了滤波器位置,大小,类型,质量因子和调谐谐波顺序,具有总线电压幅度,总和各个谐波限制和过滤组件设计和操作限制的约束。所提出的方法是通过使用粒子群优化(PSO)算法而开发的,并在IEEE 18总线和IEEE 33母线径向分配系统上进行测试。评估展示了优化解决方案在识别最佳滤波器位置,容量和类型时的有效性。

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