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Sliding Mode Controller Based on Disturbance Separation Dynamic Model for Offshore 6-Dof Parallel Platform With Active Wave Compensation

  • Liqun Fang
  • , Heng Yang
  • , Yong Zhao
  • , Zhiyong Qu
  • , Junwei Han
  • School of Mechatronics Engineering, Harbin Institute of Technology
  • Ltd.

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The parallel platform has been increasingly employed in offshore crane and active wave compensation systems, as it offers excellent load-bearing capacity and six-degree-of-freedom (6-dof) motion capability. However, the uncertainty of the load, the motion of the ship caused by the wave, and the interference forces caused by wind pose challenges to the controller design. This research proposes a sliding mode controller (DSM-SMC) based on a dynamic model with interference force and load inertia uncertainty separation, aiming to enhance the system’s robustness and trajectory tracking performance. Based on the model developed using the Newton-Euler method, the uncertainty in the load inertia and the external interference forces are uniformly separated. Furthermore, by reformulating the model in terms of relative motion within a non-inertial reference frame, a disturbance-separated dynamic model (DSM) is ultimately derived. Then, a robust sliding mode controller is designed, and its asymptotic stability under bounded disturbances is theoretically proven using Lyapunov stability theory. To validate the proposed DSM-SMC, a simulation model is constructed using the MWORKS software platform. The simulation results demonstrate satisfactory trajectory tracking performance and validate the effectiveness of the proposed control strategy.

源语言英语
主期刊名Advances in Mechanical Design - Proceedings of The 2025 International Conference on Mechanical Design ICMD 2025
编辑Jianrong Tan, Zhenyu Liu, Weifei Hu
出版商Springer Science and Business Media B.V.
683-695
页数13
ISBN(印刷版)9789819579037
DOI
出版状态已出版 - 2027
已对外发布
活动International Conference on Mechanical Design, ICMD 2025 - Hangzhou, 中国
期限: 9 5月 202511 5月 2025

出版系列

姓名Mechanisms and Machine Science
206
ISSN(印刷版)2211-0984
ISSN(电子版)2211-0992

会议

会议International Conference on Mechanical Design, ICMD 2025
国家/地区中国
Hangzhou
时期9/05/2511/05/25

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