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Vibration Attenuation in Rotating Machines Using Smart Spring Mechanism

机译:使用智能弹簧机构的旋转机器振动衰减

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摘要

This paper proposes a semiactive vibration control technique dedicated to a rotating machine passing by its critical speed during the transient rotation, by using a Smart Spring Mechanism (SSM). SSM is a patented concept that, using an indirect piezoelectric (PZT) stack actuation, changes the stiffness characteristics of one or more rotating machine bearings to suppress high vibration amplitudes. A Genetic Algorithm (GA) optimization technique is used to determine the best design of the SSM parameters with respect to performance indexes associated with the control efficiency. Additionally, the concept of ecologically correct systems is incorporated to this work including the PZT stack energy consumption in the indexes considered for the optimization process. Simulation carried out on Finite Element Method (FEM) model suggested the feasibility of the SSM for vibration attenuation of rotors for different operating conditions and demonstrated the possibility of incorporating SSM devices to develop high-performance ecologic control systems.
机译:本文提出了一种专用于瞬态旋转期间通过其临界速度的旋转机械的半视振控制技术,通过使用智能弹簧机构(SSM)。 SSM是一种专利的概念,,使用间接压电(PZT)堆叠致动,改变一个或多个旋转机轴承的刚度特性以抑制高振动幅度。遗传算法(GA)优化技术用于确定与控制效率相关联的性能指标的SSM参数的最佳设计。另外,将生态校正系统的概念纳入本工作,包括所考虑的索引中的PZT堆栈能量消耗。在有限元方法(FEM)模型上进行的模拟表明SSM用于不同的操作条件的转子振动衰减的可行性,并证明了利用SSM器件开发高性能生态控制系统的可能性。

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