Exponential Stability and Design of Sensor Feedback Amplifiers for Fast Stabilization of Magnetizable Piezoelectric Beam Equations

IF 7 1区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS IEEE Transactions on Automatic Control Pub Date : 2024-09-17 DOI:10.1109/TAC.2024.3462917
Ahmet Özkan Özer;Ahmet Kaan Aydın;Rafi Emran
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Abstract

The dynamic partial differential equation model governing longitudinal oscillations in magnetizable piezoelectric beams exhibits exponentially stable solutions when subjected to two boundary state feedback controllers. An analytically established exponential decay rate by the Lyapunov approach ensures the stabilization of the system to equilibrium, although the actual decay rate could potentially be improved. The decay rate of the closed-loop system is highly sensitive to the choice of material parameters and the design of the state feedback amplifiers. This article focuses on investigating the design of state feedback amplifiers to achieve a maximal exponential decay rate, which is essential for effectively suppressing oscillations in these beams. Through this design process, we explicitly determine the safe intervals of feedback amplifiers that ensure the theoretically found maximal decay rate, with the potential for even better rates. Our numerical results reaffirm the robustness of the decay rate within the chosen range of feedback amplifiers, while deviations from this range significantly impact the decay rate. To underscore the validity of our results, we present various numerical experiments.
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用于快速稳定可磁化压电束方程的指数稳定性和传感器反馈放大器设计
控制可磁化压电梁纵向振动的动态偏微分方程模型在两个边界状态反馈控制器作用下呈现指数稳定解。通过Lyapunov方法建立的指数衰减率可以确保系统稳定到平衡状态,尽管实际衰减率可能会有所提高。闭环系统的衰减率对材料参数的选择和状态反馈放大器的设计高度敏感。本文重点研究状态反馈放大器的设计,以实现最大的指数衰减率,这是有效抑制这些光束振荡的必要条件。通过这个设计过程,我们明确地确定了反馈放大器的安全间隔,以确保理论上发现的最大衰减率,并有可能获得更好的衰减率。我们的数值结果重申了在所选反馈放大器范围内衰减率的鲁棒性,而偏离该范围会显著影响衰减率。为了强调我们的结果的有效性,我们提出了各种数值实验。
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来源期刊
IEEE Transactions on Automatic Control
IEEE Transactions on Automatic Control 工程技术-工程:电子与电气
CiteScore
11.30
自引率
5.90%
发文量
824
审稿时长
9 months
期刊介绍: In the IEEE Transactions on Automatic Control, the IEEE Control Systems Society publishes high-quality papers on the theory, design, and applications of control engineering. Two types of contributions are regularly considered: 1) Papers: Presentation of significant research, development, or application of control concepts. 2) Technical Notes and Correspondence: Brief technical notes, comments on published areas or established control topics, corrections to papers and notes published in the Transactions. In addition, special papers (tutorials, surveys, and perspectives on the theory and applications of control systems topics) are solicited.
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