一种利用状态反馈和极点放置稳定带输入滤波器的PWM dc-dc变换器的控制策略

M. Iftikhar, E. Godoy, P. Lefranc, D. Sadarnac, C. Karimi
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引用次数: 19

摘要

dc-dc变换器输入端的LC滤波器由于与变换器控制的相互作用而导致不稳定。解决这个问题的传统方法通常采用外部电阻来抑制滤波器振荡。然而,输入滤波器的这种耗散阻尼降低了变换器的效率。在本文中,我们提出了一种使用全状态反馈控制器与pi控制相结合的替代解决方案。该控制算法保证了系统的稳定性,而无需在滤波电路中使用任何无源元件,从而避免了任何不必要的损失。此外,它保证了足够的性能水平,使用变增益状态反馈和极点安置。仿真研究证实了所提控制策略在大扰动下的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A control strategy to stabilize PWM dc-dc converters with input filters using state-feedback and pole-placement
LC filters at the input of dc-dc converters can lead to instabilities due to filter interactions with the converter control. Conventional methods to remedy this issue usually employ external resistors to damp filter oscillations. However such dissipative damping of input filter degrades the converter efficiency. In this paper we propose an alternate solution to this problem using a full state-feedback controller combined with a PI-control. This control algorithm assures stability of the system without using any passive components in the filter circuit and thus avoiding any undesirable losses. Moreover it guarantees adequate level of performance using a varying gain state-feedback and pole-placement. Simulation studies are carried out to confirm the effectiveness of the suggested control strategy under large perturbations.
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