Adaptive control for attitude coordination of leader-following rigid spacecraft systems with inertia parameter uncertainties

Xiaokui YUE, Xianghong XUE, Haowei WEN, Jianping YUAN

Research output: Contribution to journalReview articlepeer-review

27 Scopus citations

Abstract

This paper studies the leader-following attitude coordination problems of multiple spacecraft in the presence of inertia parameter uncertainties. To achieve attitude coordination in the situation that even the leader's attitude is only applicable to a part of the following spacecraft, a non-linear attitude observer is proposed to obtain an accurate estimation of the leader's attitude and angular velocity for all the followers. In addition, a distributed control scheme based on non-certainty equivalence principle is presented for multiple spacecraft’ attitude synchronization. With a dynamic scaling, attitude consensus can be achieved asymptotically without any information of the bounds of the uncertain inertia parameters. Furthermore, once the estimations of inertia parameters reach their ideal values, the estimation process will stop and the ideal value of inertia parameter will be held. This is a special advantage of parameter estimation method based on non-certainty equivalence. Numerical simulations are presented to demonstrate that the proposed non-certainty equivalence-based method requires smaller control toque and converges faster compared with the certainty equivalence-based method.

Original languageEnglish
Pages (from-to)688-700
Number of pages13
JournalChinese Journal of Aeronautics
Volume32
Issue number3
DOIs
StatePublished - Mar 2019

Keywords

  • Adaptive control
  • Attitude coordination
  • Leader-following consensus
  • Non-certainty equivalence
  • Spacecraft formation flying

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