Abstract:In order to explore the three-level PWM rectifier high-performance control method when inductor and equivalent resistance parameters mismatch, a novel multi-model predictive control strategy is proposed combining multi-model adaptive control with model predictive control. In this control strategy a multi-model control system is designed for the three-phase PWM rectifier based on the parameter measurements and range of disturbance. Several sub-models are selected by judging the deviation between each sub-model predicted output and actual output. The optimal system parameters are determined through a weighted sum. To solve online computational burden caused by the combination of multi-model adaptive control and model predictive control, comme a simplified algorithm is designed by optimizing the moving subset and designing multi-level fast predictive control method. The experimental results demonstrate the validity of the proposed method and the feasibility of the control strategy.
曹晓冬, 谭国俊, 王从刚, 李浩. 三电平PWM整流器多模型预测控制方法[J]. 电工技术学报, 2014, 29(8): 142-150.
Cao Xiaodong, Tan Guojun, Wang Conggang, Li Hao. Research on Multi-model Predictive Control Strategy of Three-Level PWM Rectifier. Transactions of China Electrotechnical Society, 2014, 29(8): 142-150.
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