基于直接功率控制的三相四开关PWM电压源整流器建模及确定性鲁棒控制

Xin Zhou, Hongjun Chen, Hao Xu, Lin Li
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引用次数: 3

摘要

提出了一种基于直接功率控制(DPC)的三相四开关脉宽调制电压源整流器(VSR)的数学模型。该模型具有物理意义明确、通用性强、精度高的优点,大多数六开关VSR的非线性控制策略均可用于四开关VSR。通过分析所提出的模型,将两个电容器之间的电压差动态视为二阶动态。采用补偿算法安排其过渡过程,以平衡两个电容器的电压。滤波器电感可能是不确定的,栅极角频率变化缓慢。这将导致不希望的高阶动态,产生更多的谐波并影响系统的稳定性。引入确定性鲁棒控制(DRC),在不确定非线性或上述参数不确定的动态情况下提供可承受的性能。实验结果表明,基于该模型的确定性鲁棒控制具有良好的性能和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and deterministic robust control of a three-phase four-switch PWM voltage-source rectifier based on direct power control
This paper proposes a mathematical model of the three-phase four-switch pulse width modulated (PWM) voltage-source rectifier (VSR) based on direct power control (DPC). The derived model has the advantages of specific physical meaning, more versatile and precise, and most nonlinear control strategies of six-switch VSR could be utilized for four-switch VSR. By analyzing the proposed model, the dynamic of voltage difference between the two capacitors is considered a second-order dynamic. A compensation algorithm is applied to arrange its transition process to balance the voltage of the two capacitors. The filter inductors may be uncertain and the grid angular frequency changes slowly. That would lead to undesired high-order dynamic which generates more harmonics and affects the stability of the system. Deterministic robust control (DRC) is introduced to provide affordable performance under the dynamic of uncertain nonlinearities or above-mentioned parameters uncertainty. Test result shows the deterministic robust control based on proposed model is of excellent performance and robustness.
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