Robust and resilient state-dependent control of discrete-time nonlinear systems with general performance criteria

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Abstract

A novel state-dependent control approach for discrete-time nonlinear systems with general performance criteria is presented. This controller is robust for unstructured model uncertainties, resilient against bounded feedback control gain perturbations in achieving optimality for general performance criteria to secure quadratic optimality with inherent asymptotic stability property together with quadratic dissipative type of disturbance reduction. For the system model, unstructured uncertainty description is assumed, which incorporates commonly used types of uncertainties, such as norm-bounded and positive real uncertainties as special cases. By solving a state-dependent linear matrix inequality (LMI) at each time step, sufficient condition for the control solution can be found which satisfies the general performance criteria. The results of this paper unify existing results on nonlinear quadratic regulator, H∞ and positive real control to provide a novel robust control design. The effectiveness of the proposed technique is demonstrated by simulation of the control of inverted pendulum.

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Wang, X., Yaz, E. E., & Long, J. (2014). Robust and resilient state-dependent control of discrete-time nonlinear systems with general performance criteria. Systems Science and Control Engineering, 2(1), 48–54. https://doi.org/10.1080/21642583.2013.877858

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