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Active vibration control of a compliant structure using a magnetostrictive actuator

机译:使用磁致伸缩执行器对柔性结构进行主动振动控制

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Abstract: This paper presents work in progress concerning the development of a controller for active vibration control of a compliant structure using a magnetostrictive actuator. The paper describes the approach used to develop a model of the plant that includes both the actuator and cantilever beam considered for controller design. The active vibration control capabilities of a magnetostrictive actuator attached to a damped structure are considered. A linear model is assumed and adaptive filtering is used to identify actuator parameters. In addition, a Galerkin method is used to discretize the weak model of the compliant beam, which includes the influence of the attached magnetostrictive actuator. Special attention is paid to the interaction of the actuator and beam during the system identification efforts. An estimation of the model parameters is made through minimization of the beam's free end acceleration cost function. Finally, discussion of the initial observer and controller design effort is included.!14
机译:摘要:本文介绍了有关使用磁致伸缩致动器对柔性结构进行主动振动控制的控制器的开发工作。本文介绍了用于开发工厂模型的方法,该模型包括为控制器设计考虑的致动器和悬臂梁。考虑了附接到阻尼结构上的磁致伸缩致动器的主动振动控制能力。假定为线性模型,并且使用自适应滤波来识别执行器参数。此外,使用Galerkin方法离散化柔顺梁的弱模型,其中包括附加的磁致伸缩执行器的影响。在系统识别过程中,应特别注意执行器和光束的相互作用。通过最小化梁的自由端加速度成本函数来估算模型参数。最后,讨论了最初的观察者和控制器设计工作。14

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