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Control strategy and site selection of a shunt active filter for damping of harmonic propagation in power distribution systems

机译:用于抑制配电系统谐波传播的并联有源滤波器的控制策略和选址

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This paper deals with a shunt active filter which will be installed by an electric utility, putting much emphasis on the control strategy and the best point of installation of the shunt active filter on a feeder in a power distribution system. The objective of the shunt active filter is to damp harmonic propagation, which results from harmonic resonance between many capacitors for power factor improvement and line inductors in the feeder, rather than to minimize voltage distortion throughout the feeder. Harmonic mitigation is a welcome "by-product" of the shunt active filter, which comes from damping of harmonic propagation. This paper concludes that the shunt active filter based on detection of voltage at the point of installation is superior in stability to others, and that the best site selection is not the beginning terminal but the end terminal of the primary line in the feeder. Computer simulation is performed to verify the validity and effectiveness of the shunt active filter by means of an analog circuit simulator, which is characterized by installing it on a feeder of a radial distribution system in a residential area.
机译:本文讨论了将由电力公司安装的并联有源滤波器,重点放在配电系统馈线中的控制策略和并联有源滤波器的最佳安装点。并联有源滤波器的目的是抑制谐波传播,该谐波传播是由许多电容器(用于提高功率因数)和馈线中的线路电感器之间的谐波谐振引起的,而不是使整个馈线中的电压失真最小。谐波抑制是并联有源滤波器的一个受欢迎的“副产品”,它来自于谐波传播的阻尼。本文得出的结论是,基于安装点电压检测的并联有源滤波器在稳定性方面优于其他并联滤波器,并且最佳的选址不是馈线主线路的始端,而是终端。通过模拟电路模拟器执行计算机仿真,以验证并联有源滤波器的有效性和有效性,该模拟电路模拟器的特征在于将其安装在住宅区的径向分配系统的馈线上。

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