Micro-satellite angular rate estimation using second-order sliding mode observer


Autoria(s): Pal, Madhumita; Bhat, Seetharama M
Data(s)

2016

Resumo

Development of computationally efficient and accurate attitude rate estimation algorithm using low-cost commercially available star sensor arrays and processing unit for micro-satellite mission is presented. Our design reduces the computational load of least square (LS)-based rate estimation method while maintaining the same accuracy compared to other rate estimation approaches. Furthermore, rate estimation accuracy is improved by using recently developed fast and accurate second-order sliding mode observer (SOSMO) scheme. It also gives robust estimation in the presence of modeling uncertainties, unknown disturbances, and measurement noise. Simulation study shows that rate estimation accuracy achieved by our LS-based method is comparable with other methods for a typical commercially available star sensor array. The robustness analysis of SOSMO with respect to measurement noise is also presented in this paper. Simulation test bench for a practical scenario of satellite rate estimation uses moment-of-inertia variation and environmental disturbances affecting a typical micro-satellite at 500km circular orbit. Comparison studies of SOSMO with 1-SMO and pseudo-linear Kalman filter show that satisfactory estimation accuracy is achieved by SOSMO.

Formato

application/pdf

Identificador

http://eprints.iisc.ernet.in/53309/1/Jou_Aer_Eng_230-2_244_2016.pdf

Pal, Madhumita and Bhat, Seetharama M (2016) Micro-satellite angular rate estimation using second-order sliding mode observer. In: PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 230 (2). pp. 244-258.

Publicador

SAGE PUBLICATIONS LTD

Relação

http://dx.doi.org/10.1177/0954410015591043

http://eprints.iisc.ernet.in/53309/

Palavras-Chave #Aerospace Engineering (Formerly, Aeronautical Engineering)
Tipo

Journal Article

PeerReviewed