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플라잉 커패시터 멀티레벨 컨버터의 계산 부담 저감을 위한 일반화된 계층구조 단목적 모델 예측 제어기법
- 박동환;
- 안정훈;
- 김래영
초록
This paper proposes a generalized control method to reduce computational burden based on finite control set-model predictive control(FCS-MPC) in a single-phase flying capacitor multilevel converter(FCMC). The proposed method consists of FCS-MPC with a hierarchical structure, which controls the grid current and flying capacitor voltage step-by-step using their respective cost functions. The proposed method reduces the number of calculations by segmenting power devices into groups and sequentially finding the optimal state using a round-robin priority. In addition, the optimal state is found simply through calculation without comparison due to the single-objective cost function. Therefore, the amount of calculation is significantly reduced compared with the conventional method and leads to a shortened execution time. By reducing execution time, the sampling period can be shortened, thereby increasing the switching frequency. Furthermore, by using a smaller inductor, the total harmonic distortion(THD) of the grid current can be reduced. The effectiveness of the proposed method is verified through simulation and experiment using a single-phase 6-level FCMC at the laboratory scale.
키워드
- 제목
- 플라잉 커패시터 멀티레벨 컨버터의 계산 부담 저감을 위한 일반화된 계층구조 단목적 모델 예측 제어기법
- 제목 (타언어)
- Generalized Single-objective FCS-MPC with Hierarchical Structure to Reduce Computational Burden in Flying Capacitor Converter
- 저자
- 박동환; 안정훈; 김래영
- 발행일
- 2024-02
- 저널명
- 전력전자학회 논문지
- 권
- 29
- 호
- 1
- 페이지
- 1 ~ 10