Current Harmonic Suppression of Dual Three-phase PMSM Based on An H_∞ and CCS-MPC Hybrid Control Framework
            
                编号:95
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                                    更新:2025-05-06 15:11:03                浏览:115次
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                摘要
                This paper proposes a novel hybrid current control architecture for dual three-phase permanent magnet synchronous motors (DTP-PMSMs). The state-feedback H∞ control employed in fundamental subspace enhances the anti-interference ability of the system to ensure stable energy conversion. The continuous control set model predictive control (CCS-MPC) with parameter adaptation is implemented in harmonic subspace, which expands the control system bandwidth to achieve superior dynamic response characteristics. Compared to conventional multi-synchronous reference frame PI-based harmonic suppression strategies, the method in this paper exhibits better dynamic and steady-state performance. Finally, the simulation results validate the enhanced robustness of this proposed H∞-MPC hybrid control architecture.
             
            
                关键词
                dual three-phase permanent magnet synchronous motors (DTP-PMSMs),continuous control set model predictive control (CCS-MPC),H_∞ control,Current Harmonic Suppression
             
            
            
                    稿件作者
                    
                        
                                    
                                                                                                                        
                                    YONGBO LI
                                    Beijing Institute of Technology
                                
                                    
                                                                                                                        
                                    Shusen Ni
                                    Tsinghua University
                                
                                    
                                        
                                                                            
                                    Hongwei Ma
                                    Beijing Institute of Technology
                                
                                    
                                                                                                                        
                                    Zedong Zheng
                                    Tsinghua University
                                
                                             
                          
    
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