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Experiments on Optimal Vibration Control of a Flexible Beam Containing Piezoelectric Sensors and Actuators

机译:包含压电传感器和执行器的柔性梁的最佳振动控制实验

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In this paper, a digital regulator is designed and experimentally implemented for a flexible beam type structure containing piezoelectric sensors and actuators by using optimal control design techniques. The controller consists of a linear quadratic regulator with a state estimator, namely a Kalman observer. The structure is a cantilever beam containing a set of sensor/actuator PVDF/PZT ceramic piezoelectric patches bonded to the beam surface at the optimal location obtained for the first three vibration modes. The equations of motion of the beam are developed by using the assumed modes technique for flexible structures in infinite-dimensional models. This paper uses a method of minimizing the effect of the removed higher order modes on the low frequency dynamics of the truncated model by adding a zero frequency term to the low order model of the system. A measure of the controllability and observability of the system based on the modal cost function for flexible structures containing piezoelectric elements (intelligent structures) is used. The observability and controllability measures are determined especially to guide the placement of sensors and actuators, respectively. The experimental and numerical transfer functions are adjusted by using an optimization procedure. Experimental results illustrate the optimal control design of a cantilever beam structure.
机译:在本文中,通过使用最佳控制设计技术为包含压电传感器和执行器的柔性梁式结构设计并通过实验实现了数字调节器。该控制器由一个线性二次调节器和一个状态估计器组成,即卡尔曼观测器。该结构是一个悬臂梁,其中包含一组传感器/执行器PVDF / PZT陶瓷压电贴片,这些贴片在前三个振动模式获得的最佳位置处结合到梁表面。梁的运动方程是通过使用假定的模态技术开发的,用于无限维模型中的柔性结构。本文使用一种方法,通过向系统的低阶模型添加零频率项,以最小化去除的高阶模式对截断模型的低频动力学的影响。对于包含压电元件的柔性结构(智能结构),使用基于模态成本函数的系统可控性和可观察性的度量。确定可观察性和可控制性措施特别是分别指导传感器和执行器的放置。实验和数值传递函数通过使用优化程序进行调整。实验结果说明了悬臂梁结构的最优控制设计。

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