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AILC of Nonlinear Time-Delay Systems with Unknown Control Direction

Jianming Wei (), Hong Wang () and Fang Liu ()
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Jianming Wei: Naval University of Engineering, College of Weapons Engineering
Hong Wang: Naval Aviation University
Fang Liu: Naval University of Engineering, College of Weapons Engineering

Chapter Chapter 4 in Iterative Learning Control for Nonlinear Time-Delay System, 2022, pp 81-109 from Springer

Abstract: Abstract This chapter presents an adaptive iterative learning control scheme for a class of nonlinear systems with unknown time-varying delays and control direction preceded by unknown nonlinear backlash-like hysteresis. Boundary layer function is introduced to construct an auxiliary error variable, which relaxes the identical initial condition assumption of iterative learning control. For the controller design, integral Lyapunov function candidate is used, which avoids the possible singularity problem by introducing hyperbolic tangent function. After compensating for uncertainties with time-varying delays by combining appropriate Lyapunov-Krasovskii function with Young's inequality, an adaptive iterative learning control scheme is designed through neural approximation technique and Nussbaum function method. On the basis of the hyperbolic tangent function’s characteristics, the system output is proved to converge to a small neighborhood of the desired trajectory by constructing Lyapunov-like composite energy function (CEF) in two cases, while keeping all the closed-loop signals bounded. Finally, a simulation example is presented to verify the effectiveness of the proposed approach.

Date: 2022
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Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-981-19-6317-9_4

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DOI: 10.1007/978-981-19-6317-9_4

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