Nonlinear optimal position control with observer for position tracking of surfaced mounded permanent magnet synchronous motors

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초록

Previous control methods were designed based on cascade structure and consist of position and current controllers for permanent magnet-synchronous motors (PMSMs). Thus, the structures of the previous methods are necessarily complex although the stability is guaranteed. Thus, the gain tuning is difficult to obtain for the desired control performance for the PMSMs. To overcome this problem, this paper proposes a nonlinear optimal position control method with an observer to improve the position tracking performance of PMSMs. The proposed method consists of a desired state generator, controller, and nonlinear observer. The desired states and inputs are derived using the PMSM model. Then, the state feedback controller is designed based on the whole tracking error dynamics including both mechanical and electrical dynamics. The nonlinear observer is designed to estimate the velocity and load torque. The closed-loop stability is proven using the input-to-state stability. The proposed method is not designed based on the cascade structure. Furthermore, the control and observer gains are chosen using an optimal control method to obtain the desired performance for the PMSMs. This approach simplifies the design process such that the control algorithm is suitable for real-time control. The performance of the proposed method is validated via simulations and experiments.

키워드

surface mounded permanent magnet synchronous motornonlinear position controlnonlinear observerLQ methodSTEPPER MOTORPERFORMANCE
제목
Nonlinear optimal position control with observer for position tracking of surfaced mounded permanent magnet synchronous motors
저자
Ha, Dong HyunKim, Raeyoung
DOI
10.3390/app112210992
발행일
2021-11
유형
Article
저널명
APPLIED SCIENCES-BASEL
11
22
페이지
1 ~ 13

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