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Exponential stabilization of a non-uniform rotating disk-beam system via a torque control and a finite memory type dynamic boundary control

机译:通过转矩控制和有限记忆型动态边界控制实现非均匀旋转圆盘梁系统的指数稳定

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This paper is consecrated to the feedback stabilization of the rotating disk-beam system. The beam is assumed to be non-uniform and clamped at its left-end to the center of the disk where a torque control takes place, while a memory boundary control is acting at the right-end of the beam. First, the usual torque control is proposed, whereas the boundary control is designed by taking into account a special type of a memory phenomenon, as well as the dynamic features of the input. Sufficient conditions on the angular velocity of the disk and the memory term are derived to guarantee the existence and uniqueness of solutions of the system. Furthermore, the frequency domain method is utilized in order to achieve the exponential stability of the closed-loop system. The relevance of the theoretical outcomes is shown through several numerical simulations. (C) 2019 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:本文致力于旋转盘梁系统的反馈稳定。假定梁是不均匀的,并在其左端夹紧到发生扭矩控制的磁盘中心,而内存边界控制作用在梁的右端。首先,提出了通常的转矩控制,而边界控制是通过考虑特殊类型的记忆现象以及输入的动态特征来设计的。导出了磁盘角速度和存储项的充分条件,以保证系统解的存在性和唯一性。此外,利用频域方法来实现闭环系统的指数稳定性。理论结果的相关性通过几个数值模拟得到了证明。 (C)2019富兰克林研究所。由Elsevier Ltd.出版。保留所有权利。

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