矢量有源滤波器没有电流迟滞控制器

A. Nava-Segura, J. Linares-Flores, G. Mino-Aguilar
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引用次数: 1

摘要

本文介绍了一种控制策略严格基于矢量的三相电力有源滤波器的理论基础和数字仿真。该矢量控制策略首先确定逆变器电压矢量六边形内补偿电流偏差瞬时空间矢量/spl Delta/i/sub c/所在的区域。然后,矢量控制计算所需的逆变器输出电压矢量e/sub 0/,使该电流偏差等于零。在了解这些矢量区域的情况下,建立一组逆变器开关换流表,以产生最佳开关动作。这种控制的矢量性质使得“传统”使用可变开关频率的三个电流迟滞控制器来补偿逆变器输出电流变得不必要。因此,这种基于矢量的控制产生的逆变器开关频率在稳态和暂态状态下都是固有常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vector active filter without current hysteresis controllers
This paper presents the theoretical fundamentals and the digital simulation of a three-phase power active filter, whose control strategy is strictly vector-based. This vector control strategy determines first the region, within the inverter voltage vector hexagon, where the compensation current deviation instantaneous space vector /spl Delta/i/sub c/ is located. Afterwards the vector control computes the required inverter output voltage vector, e/sub 0/, that makes this current deviation equal to zero. Under the knowledge of these vector regions, a set of inverter switching commutation tables are created to produce the best switching action. The vector nature of this control makes unnecessary the "conventional" use of the three current hysteresis controllers of the variable switching frequency for the compensating inverter output currents. Therefore, the inverter switching frequency produced by this vector-based-control is inherently constant both for steady and transient states.
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