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Study on the Resonant Suppression of Electrohydraulic Servo Shaking Table of a 2-Mass Dynamic System

机译:2质量动态系统电液伺服伺服振动台的共振抑制研究

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Since the load of electrohydraulic servo shaking table is an elastic load, there is a mutual coupling effect that exists between the experimental object and the shaking table, forming the resonance to weaken the dynamic characteristics, and producing resonant peak and resonant valley in the bandwidth required by the system, in which the amplitude is often larger than the stability range of acceleration’s amplitude. In this paper, the mathematical modeling of hydraulic power mechanism in a two-mass dynamic system is established based on electrohydraulic servo shaking table, yielding the frequency characteristic curve in accordance with the transfer function of the model. A multifrequency adaptive notch filter based on the least mean square algorithm is proposed to suppress the resonance, and the suppression effect of the resonance is simulated and verified in line with various values of load stiffness. Finally, the power spectrum is used to demonstrate the effectiveness of the multifrequency adaptive notch filter in the resonant suppression.
机译:由于电液伺服振动台的负载是弹性负载,因此存在实验对象和振动台之间存在的相互耦合效果,形成振荡以削弱动态特性,并在需要带宽中产生共振峰值和谐振谷通过系统,其中振幅通常大于加速度幅度的稳定范围。本文基于电液伺服振动台建立了双质量动态系统中液压动力机构的数学建模,根据模型的传递函数产生频率特性曲线。提出了一种基于最小均方算法的多频自适应缺口滤波器来抑制谐振,并逐渐模拟谐振的抑制效果,并根据负载刚度的各种值验证。最后,功率谱用于证明在谐振抑制中的多频自适应陷波滤波器的有效性。

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