Stability Assessment of PMSG Wind Farm SSO Based on Negative Gradient of Dynamic Energy
            
                编号:47
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                                    更新:2021-12-03 10:32:21                浏览:797次
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                摘要
                Concerning sub/super synchronous oscillation(SSO) caused by the integration of PMSGs to weak power grid, a method to assess system stability level quantitatively based on the negative gradient of dynamic energy is proposed. First, the function of dynamic energy of PMSG is built. And then, by calculating the negative gradient of dynamic energy of PMSG, which can quantitatively characterize the accumulation or consumption of dynamic energy during oscillation, the stability criteria of SSO can be established. On this basis, the detailed expressions of the negative gradient that contain PLL parameters, equivalent transmission line and stable operating point are derived, and the pattern where system parameters affect the stability of SSO is revealed. Finally, a model of PMSG wind farm is built in RT-LAB for hardware-in-the-loop tests. Simulation results verify that, in different system parameter variation cases, the proposed method can accurately assess system stability quantitatively.
             
            
                关键词
                PMSG wind power system; sub/super synchronous oscillation; negative gradient of energy; stability assessment
             
            
            
                    稿件作者
                    
                        
                                    
                                                                                                                        
                                    Yaqi Shen
                                    North China Electric Power University
                                
                                    
                                        
                                                                            
                                    Jing Ma
                                    North China Electric Power University
                                
                                             
                          
    
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