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논문 기본 정보

자료유형
학술저널
저자정보
Md. Parvez Akter (University of Malaya) Saad Mekhilef (University of Malaya) Nadia Mei Lin Tan (Universiti Tenaga Nasional, Kajang) Hirofumi Akagi (Tokyo Institute of Technology)
저널정보
전력전자학회 JOURNAL OF POWER ELECTRONICS JOURNAL OF POWER ELECTRONICS Vol.15 No.1
발행연도
2015.1
수록면
202 - 215 (14page)

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This paper investigates the stability and performance of model predictive controlled active-front-end (AFE) rectifiers for energy storage systems, which has been increasingly applied in power distribution sectors and in renewable energy sources to ensure an uninterruptable power supply. The model predictive control (MPC) algorithm utilizes the discrete behavior of power converters to determine appropriate switching states by defining a cost function. The stability of the MPC algorithm is analyzed with the discrete z-domain response and the nonlinear simulation model. The results confirms that the control method of the active-front-end (AFE) ectifier is stable, and that is operates with an infinite gain margin and a very fast dynamic response. Moreover, the performance of the MPC controlled AFE rectifier is verified with a 3.0 kW experimental system. This shows that the MPC controlled AFE rectifier operates with a unity power factor, an acceptable THD (4.0 %) level for the input current and a very low DC voltage ripple. Finally, an efficiency comparison is performed between the MPC and the VOC-based PWM controllers for AFE rectifiers. This comparison demonstrates the effectiveness of the MPC controller.

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Abstract
Ⅰ. INTRODUCTION
Ⅱ. AFE RECTIFIER TOPOLOGY
Ⅲ. FORMULATION OF THE MPC ALGORITHM
Ⅳ. STABILITY ANALYSIS
Ⅴ. PERFORMANCE INVESTIGATION
Ⅵ. CONCLUSION
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