一种新的混合有源电力滤波器控制器原理图

Emad Samadaei, S. Lesan, S. Cherati
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引用次数: 12

摘要

目前电网的电能质量要求在现有设备的基础上采用高性能、低成本的补偿装置,如改进补偿装置和提高效率的方法,以减少对电网的破坏作用。有源电力滤波器在网络和工业中越来越受到重视和重视。它依赖于检测器算法和切换技术。提出了一种新的有源电力滤波算法原理图。该算法基于谐波提取,分为反馈环和前馈环两部分。与同类算法相比,由于消除了电压计算和参考信号从电压基准转换为电流基准,减少了隔离器计算,提高了谐波提取的精度。这种变化也导致它可以与基于电流的开关技术一起使用,因为它们更简单,更有效。在该算法中,考虑了开关损耗有助于提高精度。因此,将该算法与电流开关技术相结合,提高了原有结构的精度,降低了复杂度,从而提高了有源电力滤波器的控制效率。仿真结果清楚地显示了该模型的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new Schematic for hybrid active power filter controller
Nowadays power quality in power network requests using from existing equipments as high-performance and low cost such as improvement of compensator equipment and ways of efficiency increasing can be reduced destroyer effect on network. Active power filters is more importance and finance in network and industrial. It has depended detector algorithm and switching technique. This paper presents a novel Schematic for active power filter algorithm. This algorithm based on harmonic extraction is divided into two parts as feedback loop and feedforward loop. Also it increases accuracy of harmonic extraction by reducing of isolator calculation due to elimination of voltage calculation and changing of reference signal from voltage reference to current reference than similar algorithms. Also this changing cause that it can be used with switching techniques that work base on current as they are simpler and efficacy. In this algorithm, switching losses are considered that it helps to increase accuracy. Thus using the combination of this algorithm and current switching technique increases accuracy and decreases complication of previous structures that consequently, it increases controller efficacy of active power filter. Simulation result shows performance this model clearly.
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