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首页> 外文期刊>Dyna >HIGH PERFORMANCE CONTROL OF A THREE-PHASE PWM RECTIFIER USING ODD HARMONIC HIGH ORDER REPETITIVE CONTROL
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HIGH PERFORMANCE CONTROL OF A THREE-PHASE PWM RECTIFIER USING ODD HARMONIC HIGH ORDER REPETITIVE CONTROL

机译:使用奇次谐波高阶重复控制的三相PWM整流器的高性能控制

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摘要

The control goal for three-phase pulse width-modulated rectifiers focuses on generating sinusoidal input currents and regulating the DC output voltage. Despite the fact that control strategies such as resonant and repetitive control have been proposed in recent works, with many notable results on the area, they have significant performance decay when the frequency changes in the exogenous signal. In this paper, it is shown that the use of an Odd Harmonic High Order Repetitive Controller can be used to control the three-phase rectifier current loops with a performance that is considerably superior to traditional alternatives developed in this field. This compensator?s Odd Harmonic property keeps a computational complexity similar to that of the conventional repetitive controllers but it has the advantage of increasing the robustness when the signal frequency varies. Simulation and experimental results show the high performance that was obtained even in the case of deviation of network frequency from its nominal value.
机译:三相脉宽调制整流器的控制目标集中在产生正弦输入电流和调节直流输出电压。尽管最近的工作中已经提出了诸如共振和重复控制之类的控制策略,但在该领域取得了许多显著成果,但当外源信号的频率发生变化时,它们的性能会明显下降。本文表明,可以使用奇次谐波高阶重复控制器来控制三相整流器电流环路,其性能明显优于该领域中开发的传统替代产品。该补偿器的奇次谐波特性使计算复杂度与传统的重复控制器类似,但具有在信号频率变化时提高鲁棒性的优点。仿真和实验结果表明,即使在网络频率偏离其标称值的情况下,也可以获得高性能。

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