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首页> 外文期刊>Advances in Mechanical Engineering >Stability Analysis of a Linear Friction-Induced Vibration Model and Its Prevention Using Active Force Control
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Stability Analysis of a Linear Friction-Induced Vibration Model and Its Prevention Using Active Force Control

机译:线性摩擦诱发振动模型的稳定性分析及其主动力控制的预防

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This paper presents friction-induced vibration (FIV) caused by combined mode-coupling and negative damping effects in a simple FIV model. In doing so, a new four-degree-of-freedom linear model which consists of a slider and a block is proposed and then simulated using MATLAB/Simulink. Stability or instability of the FIV model is defined by the convergence or divergence of time domain responses of the slider and the block. Having found critical slope of friction-velocity characteristics that generate instabilities in the model, a conventional closed loop proportional-integral-derivative (PID) controller is first introduced into the main model in order to attenuate the vibration level and subsequently to suppress it. Later, the model is integrated with the active force control (AFC) element to effectively reject the disturbance and reduce the vibrations. It is found that the integrated PID-AFC scheme is effective in reducing vibration compared to the pure PID controller alone. Thus, the proposed control scheme can be one of the potential solutions to suppress vibration in a friction-induced vibration system.
机译:本文介绍了在简单的FIV模型中组合模式耦合和负阻尼效应引起的摩擦感应振动(FIV)。为此,提出了一个新的由滑块和块组成的四自由度线性模型,然后使用MATLAB / Simulink进行了仿真。 FIV模型的稳定性或不稳定性由滑块和块的时域响应的收敛或发散来定义。在发现摩擦速度特性的临界斜率会在模型中产生不稳定性后,首先将常规的闭环比例积分微分(PID)控制器引入主模型中,以衰减振动水平并随后对其进行抑制。随后,该模型与主动力控制(AFC)元素集成在一起,可以有效地消除干扰并减少振动。发现与单独的纯PID控制器相比,集成的PID-AFC方案在减少振动方面有效。因此,所提出的控制方案可以是抑制摩擦引起的振动系统中的振动的潜在解决方案之一。

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