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Frequency response analysis of vibration system with parametric excitation of damping coefficient

机译:振动系统的频率响应分析,阻尼系数的参数激发

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This paper proposes a new method for the frequency response analysis of a vibration system with parametric excitation of damping coefficient. A base-excited single-degree-of-freedom model with a variable damper is considered. The variable damping coefficient can be changed to that in the case of a sine wave, i.e., a parametric excitation whose frequency can be arbitrarily selected. One of the external forces acting on the mass through the damper from the base is equivalent to the product of the damping coefficient and the input velocity. The product of the input sine wave and the frequency-controlled sine wave for variable damping, yields a new vibration that has a frequency different from the input frequency. Therefore, the oscillation of the damping coefficient at a suitable frequency can generate a new vibrational component that has the same frequency as that of the eigen-oscillation of the vibration system. As a result, the vibration amplitude increases because of resonance. In this study, first, we carry out theoretical analysis and obtain the frequency response of the proposed system. Subsequently, we confirm the effectiveness of the proposed analysis method by comparing the analysis result with previous simulation results.
机译:本文提出了一种新的振动系统频率响应分析的新方法,其参数激发阻尼系数的振动系统。考虑具有可变阻尼器的基本激发单度自由度模型。在正弦波的情况下,可以改变可变阻尼系数,即,可以任意选择频率的参数激励。通过阻尼器从基座上作用在质量上的外力之一相当于阻尼系数和输入速度的乘积。输入正弦波和用于可变阻尼的频率控制的正弦波的乘积产生了具有与输入频率不同的频率的新振动。因此,在合适的频率下阻尼系数的振荡可以产生具有与振动系统的特征振荡的频率相同的振动分量。结果,由于谐振,振动幅度增加。在本研究中,首先,我们进行理论分析并获得所提出的系统的频率响应。随后,我们通过将分析结果与先前的模拟结果进行比较来确认所提出的分析方法的有效性。

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