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Robust adaptive cruise control of high speed trains
Mohammadreza Faieghi1, Aliakbar Jalali2, Seyed Kamal-e-ddin Mousavi Mashhadi2
1Department of Electrical Engineering, Miyaneh Branch, Islamic Azad University, Miyaneh, Iran.
Abstract:
The cruise control problem of high speed trains in the presence of unknown parameters and external disturbances is considered. In particular a Lyapunov-based robust adaptive controller is presented to achieve asymptotic tracking and disturbance rejection. The system under consideration is nonlinear, MIMO and non-minimum phase. To deal with the limitations arising from the unstable zero-dynamics we do an output redefinition such that the zero-dynamics with respect to new outputs becomes stable. Rigorous stability analyses are presented which establish the boundedness of all the internal states and simultaneously asymptotic stability of the tracking error dynamics. The results are presented for two common configurations of high speed trains, i.e. the DD and PPD designs, based on the multi-body model and are verified by several numerical simulations.
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