Optimal Control Implementation of Three Phase-Four Wire Active Power Filter on dSPACE 1103 DSP Board

C. Suru, M. Popescu, M. Linca
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引用次数: 1

Abstract

The aim of this paper is the implementation of the optimal control of four-wire, shunt active power filters, designed for industrial use. The experimental setup consists of the active power filter controlled by means of a dSPACE DS1103 prototyping board, tested in a real industrial environment. The latter is characterized by high load variation both regarding the harmonic content of the currents on the three phases as well as the phase load balance. This leads to a difficult imbalance current compensation for the three-wire active filters, difficulty which is overcome by the four-wire active filters. At the same time, high harmonic (and reactive) current imposes high compensating capacitor working voltage. The variable harmonic content of the load current, makes unpractical to maintain a high capacitor voltage, so the adaptive control reduces the switching power loss without affecting the compensation performance. The performance of the control algorithm was quantitatively proved by analyzing the data sampled by the prototyping board analog to digital converters in the Matlab Simulink environment. The compensation results were also qualitatively confirmed by a Metrix 7042 oscilloscope.
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三相四线有源电力滤波器在dSPACE 1103 DSP板上的最优控制实现
本文的目的是实现工业用四线并联有源电力滤波器的最优控制。实验装置由dSPACE DS1103原型板控制的有源电力滤波器组成,并在实际工业环境中进行了测试。后者的特点是在三相电流的谐波含量和相负载平衡方面的负载变化很大。这导致三线制有源滤波器难以补偿不平衡电流,而四线制有源滤波器克服了这一困难。同时,高谐波(和无功)电流施加高补偿电容器工作电压。负载电流谐波含量的变化使得维持较高的电容电压变得不切实际,因此自适应控制在不影响补偿性能的情况下降低了开关功率损耗。通过在Matlab Simulink环境下对原型板模数转换器的采样数据进行分析,定量地验证了控制算法的性能。通过Metrix 7042示波器对补偿结果进行了定性验证。
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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