Unified constant-frequency integration control of active power filters

Luowei Zhou, K. Smedley
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引用次数: 60

Abstract

An active power filter (APF) is a device that is connected in parallel to and cancels the reactive and harmonic currents from a group of nonlinear loads so that the resulting total current drawn from the AC mains is sinusoidal. This paper presents a unified constant-frequency integration (UCI) APF control method based on one-cycle control. This method employs an integrator with reset as its core component to control the pulse width of an AC-DC converter so that its current draw is precisely opposite to the reactive and harmonic current draw of the nonlinear loads. In contrast to previously proposed methods, there is no need to generate a current reference for the control of the converter current, thus no need for a multiplier and no need to sense the AC line voltage, the APF current, or the nonlinear load current. Only one current sensor and one voltage sensor are used to sense the AC main current and the DC capacitor voltage. The control method features carrier free, constant switching frequency operation, minimum reactive and harmonic current generation, and simple analog circuitry. It provides a low cost and high performance solution for power quality control. Detailed analysis and design were conducted using a two-level AC-DC boost topology. A prototype was developed to demonstrate the performance of the proposed APF. This control method is generalized to control a family of converters that are suitable for APF applications. All findings are supported by experiments and simulation.
有源电力滤波器的统一恒频积分控制
有源电力滤波器(APF)是一种与一组非线性负载并联并消除无功和谐波电流的装置,从而使交流电源输出的总电流为正弦电流。提出了一种基于单周期控制的统一恒频积分(UCI)有源滤波器控制方法。该方法采用以复位为核心元件的积分器来控制交直流变换器的脉宽,使其电流消耗与非线性负载的无功电流和谐波电流消耗正好相反。与之前提出的方法相比,不需要产生电流参考来控制变换器电流,因此不需要乘法器,也不需要检测交流线路电压、APF电流或非线性负载电流。只有一个电流传感器和一个电压传感器用于检测交流主电流和直流电容电压。该控制方法具有无载波、恒定开关频率运行、无功和谐波电流产生最小、模拟电路简单等特点。为电能质量控制提供了一种低成本、高性能的解决方案。采用两电平交流-直流升压拓扑进行了详细的分析和设计。开发了一个原型来验证所提出的APF的性能。这种控制方法被推广到适用于APF应用的一系列变换器。所有的研究结果都得到了实验和模拟的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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