Robust Fault-tolerant Iterative Learning Control for Discrete Systems via Linear Repetitive Processe

来源 :International Journal of Automation and Computing | 被引量 : 0次 | 上传用户:lewy540
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This paper addresses the problem of robust iterative learning control design for a class of uncertain multiple-input multipleoutput discrete linear systems with actuator faults. The stability theory for linear repetitive processes is used to develop formulas for gain matrices design, together with convergent conditions in terms of linear matrix inequalities. An extension to deal with model uncertainty of the polytopic or norm bounded form is also developed and an illustrative example is given. This paper addresses the problem of robust iterative learning control design for a class of uncertain multiple-input multiple output discrete linear systems with actuator faults. The stability theory for linear repetitive processes is used to develop formulas for gain matrices design, together with convergent conditions in terms of linear matrix inequalities. An extension to deal with model uncertainty of the polytopic or norm bounded form is also developed and an illustrative example is given.
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