TY - GEN
T1 - Optimized Predictive Power Control of PMSG with Horizon Disturbance Observer
AU - Cheng, Zhenxing
AU - Li, Liyi
AU - Li, Xiaopeng
AU - Zhong, Chengbao
AU - Liu, Jiaxi
N1 - Publisher Copyright:
© 2024 The Institute of Electrical Engineers of Japan.
PY - 2024
Y1 - 2024
N2 - This paper proposes an improved predictive control strategy for permanent magnet synchronous generators with disturbance compensation. Traditional power predictive control strategies, due to the limitations in the number of converter levels, they exhibit significant steady-state error fluctuations, affecting the stability of the load-side bus voltage. This paper introduces an optimized switching sequence predictive power control strategy based on the synthesis of multiple vectors. By utilizing the synthesis of multi-vector voltages and optimization of switching sequences, fluctuations in bus voltage are reduced. The operating parameters of PMSG are prone to change, and disturbances occur during the operation of the generation system, further affecting the quality of electrical energy on the load side. To address these issues, this paper uses a rolling horizon observer to observe and compensate for disturbances within the predictive power control strategy. Simulation and experimental results verify the feasibility and effectiveness of the strategy proposed in this paper.
AB - This paper proposes an improved predictive control strategy for permanent magnet synchronous generators with disturbance compensation. Traditional power predictive control strategies, due to the limitations in the number of converter levels, they exhibit significant steady-state error fluctuations, affecting the stability of the load-side bus voltage. This paper introduces an optimized switching sequence predictive power control strategy based on the synthesis of multiple vectors. By utilizing the synthesis of multi-vector voltages and optimization of switching sequences, fluctuations in bus voltage are reduced. The operating parameters of PMSG are prone to change, and disturbances occur during the operation of the generation system, further affecting the quality of electrical energy on the load side. To address these issues, this paper uses a rolling horizon observer to observe and compensate for disturbances within the predictive power control strategy. Simulation and experimental results verify the feasibility and effectiveness of the strategy proposed in this paper.
KW - Predictive power control
KW - disturbance observer
KW - multi-vector
KW - permanent magnet synchronous generator
UR - https://www.scopus.com/pages/publications/105002375253
U2 - 10.23919/ICEMS60997.2024.10921155
DO - 10.23919/ICEMS60997.2024.10921155
M3 - 会议稿件
AN - SCOPUS:105002375253
T3 - 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024
SP - 1611
EP - 1616
BT - 2024 27th International Conference on Electrical Machines and Systems, ICEMS 2024
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 27th International Conference on Electrical Machines and Systems, ICEMS 2024
Y2 - 26 November 2024 through 29 November 2024
ER -