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Reducing friction-induced vibration using intelligent active force control (AFC) with piezoelectric actuators

机译:使用带有压电执行器的智能主动力控制(AFC)来减少摩擦引起的振动

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摘要

In this paper, a novel approach to reduce the effect of mode coupling that causes friction induced vibration (FIV) is proposed by applying an intelligent active force control (AFC)-based strategy employing piezoelectric actuators with hysteresis effect to a simplified two degree-of-freedom mathematical model of a friction-induced vibration system. At first, the model is simulated and analysed using a closed loop pure Proportional-Integral-Derivative (PID) controller. Later, it is integrated with the intelligent AFC with fuzzy logic (FL) estimator and simulated under similar operating condition. After running several tests with different sets of operating and loading conditions, the results both in time and frequency domains show that the PID controller with the intelligent AFC is much more effective in reducing the vibration, compared to the pure PID controller alone.
机译:在本文中,通过将基于智能主动力控制(AFC)的策略(具有滞后效应的压电致动器)应用于简化的两级振动,提出了一种新颖的方法来减少引起摩擦感应振动(FIV)的模式耦合效应摩擦振动系统的自由数学模型。首先,使用闭环纯比例积分微分(PID)控制器对模型进行仿真和分析。后来,它与带有模糊逻辑(FL)估计器的智能AFC集成在一起,并在相似的工作条件下进行了仿真。在使用不同组的操作和负载条件进行了几次测试之后,时域和频域的结果都表明,与纯PID控制器相比,具有智能AFC的PID控制器在减少振动方面更为有效。

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