Robust Controller Design of a Single-Phase AC/DC PWM Converter

Soo-Cheol Kim, Hyoung-Chul Kim, Jinmok Lee, Jaemoon Lee, Hun-Suk Jung, Jaeho Choi
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Abstract

This paper proposes a robust digital controller for a single phase PWM converter. The proposed controller is based on a characteristic ratio assignment (CRA) method which has the ability to deal with the overshoot and response speed of an all-pole system directly. The error-space feedback control scheme to carry out the robust AC current tracking is used which is well known as an analytic state-feedback method to give a controller the ability to track a non-decaying input perfectly and to reject a non-decaying disturbance such as a sinusoidal input firstly. And then, the CRA design formulates a model matching problem whose reference model is selected from a target polynomial. So the state feedback gains can be determined by the CRA method instead of the pole-placement method. Finally, the validity of the proposed control technique is verified through the PSiM simulation and experimental results.
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单相交/直流PWM变换器的鲁棒控制器设计
提出了一种用于单相PWM变换器的鲁棒数字控制器。该控制器基于特征比分配(CRA)方法,能够直接处理全极系统的超调量和响应速度。采用误差空间反馈控制方案进行鲁棒交流电流跟踪,该方法被称为解析状态反馈方法,使控制器能够完美地跟踪非衰减输入,并首先抑制非衰减输入(如正弦输入)的干扰。然后,CRA设计制定了一个模型匹配问题,参考模型从目标多项式中选择。因此,状态反馈增益可以用CRA法来确定,而不是用极点放置法。最后,通过PSiM仿真和实验结果验证了所提控制技术的有效性。
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