Modeling and control of a rotating flexible spacecraft: A port-hamiltonian approach
Authors
IEEE Transactions on Control Systems Technology , vol. 27 , no. 1 , pp. 355-362 , Article 8118292
ISSN: 10636536
Abstract
© 1993-2012 IEEE.In this brief, we develop a mathematical model of a flexible spacecraft system composed of a hub and two symmetrical beams using the port-Hamiltonian framework. This class of system has favorable properties, such as passivity for controller synthesis and stability analysis, where the global Hamiltonian plays the role of a Lyapunov function candidate. The spacecraft model is viewed as a power-conserving interconnection between an infinite (beam) and finite (hub) dimensional system. We show that the interconnection result has a port-Hamiltonian structure and is passive. The introduction of a nonlinear feedback term, which takes into account the beam's flexibility, is developed using the control by an interconnection approach. The closed-loop stability is proven; then, through explicitly solving the partial differential equations of the system, asymptotic stability is obtained. Finally, the experimental results are carried out to assess the validity of the proposed design methodology.
Keywords
2-s2.0-85035769140
