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Nonlinear vibrating system identification via Hilbert decomposition

机译:基于希尔伯特分解的非线性振动系统识别

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This paper deals with the identification of nonlinear vibration systems, based on measured signals for free and forced vibration regimes. Two categories of time domain signal are analyzed, one of a fast inter-modulation signal and a second as composed of several mono-components. To some extent, this attempts to imitate analytic studies of such systems, with its two major analysis groups - the perturbation and the harmonic balance methods. Two appropriate signal processing methods are then investigated, one based on demodulation and the other on signal decomposition. The Hilbert Transform (HT) has been shown to enable effective and simple methods of analysis. We show that precise identification of the nonlinear parameters can be obtained, contrary to other average HT based methods where only approximation parameters are obtained. The effectiveness of the proposed methods is demonstrated for the precise nonlinear system identification, using both the signal demodulation and the signal decomposition methods. Following the exposition of the tools used, both the signal demodulation as well as decomposition are applied to classical examples of nonlinear systems. Cases of nonlinear stiffness and damping forces are analyzed. These include, among other, an asymmetric Helmholtz oscillator, a backlash with nonlinear turbulent square friction, and a Duffing oscillator with dry friction.
机译:本文基于自由和强制振动状态的测量信号来处理非线性振动系统的识别。分析了两种时域信号,一种是快速互调信号,另一种是由几个单分量组成。在某种程度上,这试图模仿此类系统的分析研究,它具有两个主要的分析组-微扰法和谐波平衡法。然后研究了两种合适的信号处理方法,一种基于解调,另一种基于信号分解。希尔伯特变换(HT)已被证明可以实现有效而简单的分析方法。我们表明,可以得到非线性参数的精确识别,这与仅获得近似参数的其他基于平均HT的方法相反。通过信号解调和信号分解方法,证明了所提方法对精确的非线性系统识别的有效性。在展示了所使用的工具之后,信号解调以及分解均应用于非线性系统的经典示例。分析了非线性刚度和阻尼力的情况。其中包括非对称亥姆霍兹振荡器,带有非线性湍流方摩擦的反冲和具有干摩擦的Duffing振荡器。

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