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The centrifugal delayed resonator as a tunable torsional vibration absorber for multi-degree-of-freedom systems

机译:离心延迟共振器作为多自由度系统的可调扭转减振器

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摘要

The centrifugal delayed resonator (CDR) is a novel active vibration absorption technique for eliminating undesired torsional oscillations in rotating mechanical structures. The key idea is to reconfigure the dynamics of a damped centrifugal pendulum arrangement so that it mimics an ideal real-time tunable absorber. This objective is achieved by applying a control torque based on proportional position feedback with variable gain and time delay. Theoretical fundamentals of the technique are explained, its implementation on a multi-degree-of-freedom primary structure is presented, stability of the controlled system is discussed, and real-time tuning ability is elaborated upon and demonstrated via simulations. The strengths of the CDR control consist of complete vibration elimination of the fundamental frequency component of torsional oscillations at the location where the absorber is attached to the rotating structure, automatic tuning to time-varying frequencies, decoupling of the feedback control from the mechanical and dynamic properties of the rotating structure, relatively simple implementation of the control algorithm, and fault-tolerant performance in the case of control failure. [References: 20]
机译:离心延迟共振器(CDR)是一种新颖的主动振动吸收技术,用于消除旋转机械结构中不希望的扭转振动。关键思想是重新配置阻尼离心摆装置的动力学,使其模仿理想的实时可调吸收器。通过基于具有可变增益和时间延迟的比例位置反馈施加控制转矩来实现此目的。阐述了该技术的理论基础,介绍了其在多自由度一级结构上的实现,讨论了受控系统的稳定性,并通过仿真阐述和演示了实时调谐能力。 CDR控制的优势在于,可以完全消除振动,将吸收体固定在旋转结构上的位置处的扭转振荡的基本频率分量消除,自动调谐到时变频率,将反馈控制从机械和动态中分离出来。旋转结构的特性,控制算法的相对简单实现以及控制失败情况下的容错性能。 [参考:20]

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