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An adaptive PID-like controller for vibration suppression of piezo-actuated flexible beams

机译:用于振动抑制压电致动柔性梁的自适应PID样控制器

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摘要

Flexible structures have been increasingly utilized in many applications because of their light-weight and low production cost. However, being flexible leads to vibration problems. Vibration suppression of flexible structures is a challenging control problem because the structures are actually infinite-dimensional systems. In this paper, an adaptive control scheme is proposed for the vibration suppression of a piezo-actuated flexible beam. The controller makes use of the configuration of the prominent proportional-integral-derivative controller and is derived using an infinite-dimensional Lyapunov method. In contrast to existing schemes, the present scheme does not require any approximated finite-dimensional model of the beam. Thus, the stability of the closed loop system is guaranteed for all vibration modes. Experimental results have illustrated the feasibility of the proposed control scheme.
机译:由于光重量和低的生产成本,许多应用程序越来越多地利用柔性结构。 然而,灵活导致振动问题。 柔性结构的振动抑制是一个具有挑战性的控制问题,因为结构实际上是无穷大的系统。 在本文中,提出了一种用于压电致动柔性梁的振动抑制的自适应控制方案。 控制器利用突出比例积分衍生控制器的配置,并使用无限维Lyapunov方法导出。 与现有方案相比,本方案不需要光束的任何近似的有限维模型。 因此,为所有振动模式保证闭环系统的稳定性。 实验结果说明了所提出的控制方案的可行性。

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