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Modeling for performance analysis of electromagnetic zero-sequence suppressor

机译:电磁零序抑制器性能分析建模

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The purpose of this work is to present a frequency domain model to demonstrate the operation of an electromagnetic arrangement for controlling the injection of zero-sequence currents in the electrical system. Considering the diversity of sequential distribution of harmonic components of a current, the device proposed can be used in the process of mitigation of zero-sequence components. This device, here called electromagnetic suppressor, consists of a blocker and filter both electromagnetic, whose joint operation can provide paths of high and low impedances that can be conveniently adjusted in order to search for a desired performance. This study presents physical considerations, mathematical modeling and computer simulations that clearly demonstrate the viability of this application as a more viable alternative in the conception of filtering systems. The performance analysis is based on the frequency response of harmonic transmittances. The efficacy of this technique in direct actions to maximize the harmonic mitigation process is demonstrated.
机译:该工作的目的是呈现频域模型,以证明用于控制电气系统中的零序电流的喷射的电磁装置的操作。考虑到电流谐波分量的顺序分布的多样性,所提出的器件可用于零序组件的减轻过程中。该装置中,这里称为电磁抑制器,由一个阻断剂和过滤器两者电磁,其联合操作可以提供可以在为了方便地调整,以搜索期望的性能高和低阻抗路径的。本研究提出了物理考虑因素,数学建模和计算机模拟,清楚地证明了本申请的可行性作为过滤系统概念中的更加可行的替代方案。性能分析基于谐波透射率的频率响应。证明了这种技术在直接动作中最大化谐波缓解过程的功效。

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