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基于 l1-TSXKF 的航天器姿控系统状态偏差估计

Translated title of the contribution: State and bias estimation of spacecraft attitude control system based on l1-TSXKF
  • Harbin Institute of Technology
  • Harbin Institute of Technology Shenzhen

Research output: Contribution to journalArticlepeer-review

Abstract

The state and bias estimation problem of spacecraft attitude control system considering non-Gaussian noise characteristics is studied. Firstly,a spacecraft attitude control system model with bias is established,and the ex⁃ pression for the non-Gaussian characteristic noise is given. Then,through l1-norm Kalman Filtering(l1-KF)algorithm and mathematical simulation,it is verified that the introduction of l1-norm into the Kalman filtering algorithm can avoid the influence of non-Gaussian process noise. However,the l1-KF algorithm cannot achieve simultaneous estimation of state and bias,and is only suitable for estimation of attitude stability control process. Therefore,on the basis of l1-KF algorithm,considering the complex situation of time-varying moment of inertia and time-varying bias of the system,as well as real-time identification of time-varying moment of inertia,an l1-norm Two-Stage eXogenous Kalman Filtering(l1-TSXKF)algorithm is designed to estimate the state and bias of the spacecraft during attitude maneuver. The math⁃ ematical simulation results show that the l1-TSXKF algorithm can reduce the influence of non-Gaussian characteristics of the system and obtain high precision attitude and bias estimation results quickly in the process of spacecraft attitude maneuver,which is conducive to the application of spacecraft in orbit.

Translated title of the contributionState and bias estimation of spacecraft attitude control system based on l1-TSXKF
Original languageChinese (Traditional)
Article number329678
JournalHangkong Xuebao/Acta Aeronautica et Astronautica Sinica
Volume45
Issue number16
DOIs
StatePublished - 25 Aug 2024

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