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Experimental evaluation of active force vibration control of a flexible structure using smart material

机译:智能材料对柔性结构主动力振动控制的实验评估

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摘要

Active Vibration Control (AVC) has recently emerged as a superior technique in vibration suppression of flexible structures. Due to the complexity of the dynamics system of flexible structures, the development of its vibration control algorithm is a very challenging aspect. This paper describes the development and experimental evaluation of an Active Force Control (AFC) and high gain active vibration controller (AVC-P) strategies for vibration control of the flexible structure. The performance of both algorithms in vibration suppression of flexible structure is evaluated experimentally utilizing smart materials as the sensor and actuator of the system. The dynamic model of the flexible structure system considering the collocated placement of the piezoelectric sensor and actuator is derived within the LabVIEW environment in both time and frequency domains. The first five modes of vibration were obtained and the attenuation achieved at these modes of vibration using both AFC and AVC-P methodologies were tabulated. The experimental results indicated comparable result of AFC algorithm in comparison to AVC-P in the vibration suppression of the flexible structure.
机译:主动振动控制(AVC)最近成为一种抑制柔性结构振动的高级技术。由于柔性结构动力学系统的复杂性,其振动控制算法的发展是一个非常具有挑战性的方面。本文介绍了用于柔性结构振动控制的主动力控制(AFC)和高增益主动振动控制器(AVC-P)策略的开发和实验评估。利用智能材料作为系统的传感器和执行器,通过实验评估了两种算法在抑制柔性结构中的性能。在时域和频域内的LabVIEW环境中,导出了考虑压电传感器和执行器并置放置的柔性结构系统的动力学模型。获得了前五个振动模式,并使用AFC和AVC-P方法在这些振动模式下获得的衰减列表了。实验结果表明,在柔性结构的减振方面,AFC算法与AVC-P相比具有可比性。

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