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Nonlinear vibration control of a system with dry friction and viscous damping using the saturation phenomenon

机译:具有饱和现象的干摩擦和粘滞阻尼系统的非线性振动控制

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摘要

Application of saturation to provide active nonlinear vibration control was introduced not long ago. Saturation occurs when two natural frequencies of a system with quadratic nonlinearities are in a ratio of around 2:1 and the system is excited at a frequency near its higher natural frequency. Under these conditions, there is a small upper limit for the high-frequency response and the rest of the input energy is channeled to the low-frequency mode. In this way, the vibration of one of the degrees of freedom of a coupled 2 degrees of freedom system is attenuated. In the present paper, the effect of dry friction on the response of a system that implements this vibration absorber is discussed. The system is basically a plant with a permanent magnet DC (PMDC) motor excited by a harmonic forcing term and coupled with a quadratic nonlinear controller. The absorber is built in electric circuitry and takes advantage of the saturation phenomenon. The method of multiple scales is used to find approximate solutions. Various response regimes of the closed-loop system as well as the stability of these regimes are studied and the stability boundaries are obtained. Especial attention is paid on the effect of dry friction on the stability boundaries. It is shown that while dry friction tends to shrink the stable region in some parts, it enlarges other parts of the stable region. To verify the theoretical results, they have been compared with numerical solution and good agreement between the two is observed.
机译:不久前就介绍了使用饱和来提供主动非线性振动控制的方法。当具有二次非线性的系统的两个固有频率之比约为2:1,并且系统在接近其较高固有频率的频率下被激发时,就会发生饱和。在这些条件下,高频响应的上限很小,其余的输入能量被引导到低频模式。这样,耦合的2自由度系统的自由度之一的振动被衰减。在本文中,讨论了干摩擦对实现该减振器的系统响应的影响。该系统基本上是一个工厂,具有一个永磁直流(PMDC)电动机,该电动机由谐波强迫项激励,并与一个二次非线性控制器耦合。吸收器内置在电路中,并利用了饱和现象。多尺度法用于寻找近似解。研究了闭环系统的各种响应方式以及这些方式的稳定性,并获得了稳定性边界。要特别注意干摩擦对稳定性边界的影响。结果表明,尽管干摩擦倾向于使稳定区域的某些部分收缩,但会增大稳定区域的其他部分。为了验证理论结果,将它们与数值解进行了比较,并观察到两者之间的良好一致性。

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