상세 보기
Multilevel Conditional Disturbance Rejection Control for Satellite Attitude Tracking
- Kim, Gwanyeon;
- Lim, Jonggeon;
- You, Sesun;
- Lee, Youngwoo;
- Won, Daehee;
- ... Kim, Wonhee;
- 외 1명
WEB OF SCIENCE
0SCOPUS
0초록
Recently, the conditional disturbance rejection controller (CDRC) was proposed to improve control performance by leveraging disturbances that have beneficial effects on the system. However, it only considers disturbances acting on the state variable directly influenced by them. Although fast convergence of this state can be achieved with the CDRC, it may unintentionally affect the convergence of the output (i.e., the primary state). In this article, a multilevel CDRC is proposed to enhance satellite attitude control performance by accounting for the effect of disturbances on both attitude (output) and angular velocity. The extended state observer is employed to estimate the lumped disturbance, including the modeling errors and external disturbances. Then, a backstepping-based controller with the multilevel disturbance rejection law (ML-DRL) is designed for attitude tracking. The ML-DRL is developed to improve the control performance by using a disturbance with a damping effect on both attitude and velocity. Faster convergence of attitude and velocity can be achieved by conditionally compensating for the disturbance. The stability of the proposed control method is analyzed by demonstrating that the errors are bounded as time tends to infinity. The attitude control performance of the proposed method is evaluated through numerical examples conducted using the MATLAB/Simulink Multibody tool.
키워드
- 제목
- Multilevel Conditional Disturbance Rejection Control for Satellite Attitude Tracking
- 저자
- Kim, Gwanyeon; Lim, Jonggeon; You, Sesun; Lee, Youngwoo; Won, Daehee; Gui, Yonghao; Kim, Wonhee
- 발행일
- 2026
- 유형
- Article
- 권
- 62
- 페이지
- 10234 ~ 10247