基于DSP的三相四线并联无负载有源滤波器控制算法及滤波器电流测量

N. Gupta, S. P. Dubey, S. Singh
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引用次数: 5

摘要

本文提出了一种不测量负载的三相四线并联有源电力滤波器控制算法,并提出了不同负载条件下的滤波器电流控制算法。控制理论和参考源电流信号的产生基于瞬时无功功率理论。该思想不同于传统的基于传感负载和/或补偿器电流的控制方法,因此减少了电流传感器的数量。采用从源到负载的控制体系结构计算净基功率。经补偿器补偿后,源电流与电源电压完全同相,具有正弦特性。利用MATLAB/Simulink对所提出的控制技术进行了仿真,并在TMS320F28335浮点数字信号处理器上采用环中处理器(PIL)工艺进行了测试。结果表明,所提出的控制方案符合IEEE 519-1992推荐的谐波标准限值。
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DSP based control algorithm for three-phase four-wire shunt active filter without load and filter current measurement
In this paper, a novel control algorithm for three-phase four-wire shunt active power filter is proposed without measuring load and filter current with different load condition is proposed. The control theory and reference source current signal generation is based on Instantaneous Reactive Power theory. The idea is different from the conventional control approach based on sensing load and/or compensator current, hence reduces the number of current sensors. The net fundamental power is calculated by using control architecture which should be flow from source to load. The source currents are exactly in-phase with supply voltages and having sinusoidal nature after providing the compensation by the compensator. The proposed control technique has been simulated using MATLAB/Simulink and tested on TMS320F28335 floating point digital signal processor using processor-in-loop (PIL) process. The results demonstrate the viability of the proposed control scheme as per IEEE 519–1992 recommended harmonic standard limits.
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