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Stability analysis of high power factor Vienna rectifier based on reduced order model in d-q domain

Stability analysis of high power factor Vienna rectifier based on reduced order model in d-q domain
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摘要 For a DC distributed power system, system stability can be predicted by dividing it into source and load subsystems, and then applying the Nyquist criterion to the impedance interaction between the source and load model.However, the generalized Nyquist criterion is extremely complicated and cannot directly reveal effective control strategies to reduce interaction problems of cascade threephase AC systems.Specifically, as a current force rectifier,this characteristic makes it difficult to judge the stability of a cascade three-phase Vienna AC system.To deal with the aforementioned problems, a simplified small signal stability criterion is presented for an AC distributed power system.Based on the criterion, the small signal model and impedance based on the reduced order model in the dq domain are studied theoretically.For the instability issue,an impedance regulator design method is presented.The correctness of the simplified stability criterion and the effectiveness of the proposed impedance regulator method are validated by extensive simulation and experiment. For a DC distributed power system, system stability can be predicted by dividing it into source and load subsystems, and then applying the Nyquist criterion to the impedance interaction between the source and load model.However, the generalized Nyquist criterion is extremely complicated and cannot directly reveal effective control strategies to reduce interaction problems of cascade threephase AC systems.Specifically, as a current force rectifier,this characteristic makes it difficult to judge the stability of a cascade three-phase Vienna AC system.To deal with the aforementioned problems, a simplified small signal stability criterion is presented for an AC distributed power system.Based on the criterion, the small signal model and impedance based on the reduced order model in the dq domain are studied theoretically.For the instability issue,an impedance regulator design method is presented.The correctness of the simplified stability criterion and the effectiveness of the proposed impedance regulator method are validated by extensive simulation and experiment.
出处 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2019年第1期200-210,共11页 现代电力系统与清洁能源学报(英文)
基金 supported by the National Natural Science Fund of China (No.51677151) National Natural Science Youth Fund of China (No.51507138) the Major Scientific and Technological Innovation Projects of Shaanxi Province, China (No.2015ZKC02-01) International Exchange And Cooperation Project of Key R&D Program in Shaanxi (No.2017KW-035)
关键词 THREE-LEVEL VIENNA RECTIFIER Small-signal stability NYQUIST criterion Grid IMPEDANCE IMPEDANCE REGULATOR Three-level Vienna rectifier Small-signal stability Nyquist criterion Grid impedance Impedance regulator
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