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Titlebook: Iterative Learning Control for Flexible Structures; Tingting Meng,Wei He Book 2020 Tsinghua University Press, Beijing and Springer Nature

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Conclusion,eams and Timoshenko beams in Chaps. .–.; (II) rigid-flexible coupled structures, for instance flexible single-link manipulators in Chap. .; and even (III) the structures composed of more than one flexible component, for example flapping wing micro aerial vehicles in Chap. . and flexible two-link manipulators in Chap. ..
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ILC for Vibration Suppression, and Output Regulation and Tracking,This chapter first addresses three control problems of flexible structures: vibration control, output regulation and output tracking. In Sect. ., a PD-type ILC scheme is designed for the flexible string system, and the closed-loop system converges towards zero.
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2195-9862 esents iterative learning control (ILC) to address practical issues of flexible structures. It is divided into four parts: Part I provides a general introduction to ILC and flexible structures, while Part II proposes various types of ILC for simple flexible structures to address issues such as vibra
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ILC for Input Nonlinearities,antee the learning convergence of the Euler–Bernoulli beam in the presence of input dead-zone. In Sect. ., two adaptive ILC laws are designed to smoothly cope with the non-differentiability of input backlash for a Timoshenko beam system.
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