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Identifying the stiffness and damping of a nonlinear system using its free response perturbed with Gaussian white noise

机译:用自由反应扰乱高斯白噪声的非线性系统识别非线性系统的刚度和阻尼

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摘要

Measurement uncertainty can affect the accuracy of estimating parameters of vibrating systems. This article is concerned with the development of a method for estimating parameters from the free vibration response of a nonlinear system in which the response signal is contaminated with Gaussian white noise. The backbone curve and envelope of the response are first estimated from the free vibration signal. An algorithm based on the Bayesian approach is then used to identify the stiffness and damping parameters of a nonlinear system excited at a single resonant frequency. A numerical example is provided to illustrate the proposed method, which is then applied to the experimental data from a nonlinear vibration absorber system that was excited at its first resonant frequency. The proposed approach provides the distribution and confidence intervals of the parameter estimates, which is an improvement on methods that provide a single number for each estimate. As the signal-to-noise ratio decreases, the variances of the posterior distributions increase as do the confidence intervals, reflecting greater uncertainty in the parameter estimates. The approach is effective provided that the signal-to-noise ratio is greater than about 10.
机译:测量不确定度会影响振动系统估计参数的准确性。本文涉及开发用于估计来自非线性系统的自由振动响应的参数的方法,其中响应信号被高斯白噪声污染。首先从自由振动信号估计响应的骨干曲线和包络。然后,基于贝叶斯方法的算法识别以单个谐振频率激发的非线性系统的刚度和阻尼参数。提供了一个数值示例以说明所提出的方法,然后将其从在其第一谐振频率上激发的非线性振动吸收体系应用于实验数据。所提出的方法提供了参数估计的分布和置信区间,这是对每个估计提供单个号码的方法的改进。随着信噪比减小,后部分布的变化随着置信区间而增加,反映了参数估计中的更大的不确定性。该方法是有效的,条件是信噪比大于约10。

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