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Geometric Attitude Control of Spacecraft with Time Delays on the Left-error Function of SO(3)

  • Cheng Fu*
  • , Jie Guo
  • , Zhongzhong Zheng
  • , Yangyang Wan
  • , Shengjing Tang
  • *Corresponding author for this work
  • Beijing Institute of Technology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

To address spacecraft attitude control problems caused by external disturbances and remaining lumped system dynamics on SO(3), which can significantly deteriorate attitude tracking accuracy, system stability, and robustness of control system, a finite-time geometric sliding-mode control (FTGSMC) method using time delay estimation (TDE) on SO(3) is proposed. First, this modeling scheme provides a global, compact, and unique representation of attitude, avoiding the singularity problem of Euler angles and the "unwinding"phenomenon of quaternions. By introducing the left attitude error function defined on SO(3), the designed TDE scheme is capable of estimating and compensating for the lumped uncertainties and external disturbances within the SO(3) manifold. Then, a FTGSMC controller based on TDE is designed, guaranteeing the system error converges to 0. Finally, simulation experiment is carried out by comparing with FTGSMC method without TDE, which verifies effectiveness and superiority of the control method of this paper.

Original languageEnglish
Title of host publication2026 Joint International Conference on Automation-Intelligence-Safety, ICAIS 2026 and International Symposium on Autonomous Systems, ISAS 2026
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9798319531193
DOIs
Publication statusPublished - 2026
Event2026 Joint International Conference on Automation-Intelligence-Safety, ICAIS 2026 and International Symposium on Autonomous Systems, ISAS 2026 - Xuzhou, China
Duration: 8 May 202610 May 2026

Publication series

Name2026 Joint International Conference on Automation-Intelligence-Safety, ICAIS 2026 and International Symposium on Autonomous Systems, ISAS 2026

Conference

Conference2026 Joint International Conference on Automation-Intelligence-Safety, ICAIS 2026 and International Symposium on Autonomous Systems, ISAS 2026
Country/TerritoryChina
CityXuzhou
Period8/05/2610/05/26

Keywords

  • External disturbances
  • Finite time sliding mode control
  • SO(3)
  • Spacecraft
  • Time delay estimation

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