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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Algebraic Parameter Identification of Nonlinear Vibrating Systems and Non Linearity Quantification Using the Hilbert Transformation
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Algebraic Parameter Identification of Nonlinear Vibrating Systems and Non Linearity Quantification Using the Hilbert Transformation

机译:非线性振动系统的代数参数识别和使用Hilbert转化的非线性定量

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A novel algebraic scheme for parameters’ identification of a class of nonlinear vibrating mechanical systems is introduced. A nonlinearity index based on the Hilbert transformation is applied as an effective criterion to determine whether the system is dominantly linear or nonlinear for a specific operating condition. The online algebraic identification is then performed to compute parameters of mass and damping, as well as linear and nonlinear stiffness. The proposed algebraic parametric identification techniques are based on operational calculus of Mikusiński and differential algebra. In addition, we propose the combination of the introduced algebraic approach with signals approximation via orthogonal functions to get a suitable technique to be applied in embedded systems, as a digital signals’ processing routine based on matrix operations. A satisfactory dynamic performance of the proposed approach is proved and validated by experimental case studies to estimate significant parameters on the mechanical systems. The presented online identification approach can be extended to estimate parameters for a wide class of nonlinear oscillating electric systems that can be mathematically modelled by the Duffing equation.
机译:引入了用于参数的一类非线性振动机械系统的参数的新代数方案。基于Hilbert转换的非线性指数被应用为有效标准,以确定系统是否是特定操作条件的主要线性或非线性。然后执行在线代数识别以计算质量和阻尼的参数,以及线性和非线性刚度。所提出的代数参数识别技术基于Mikusiński和差分代数的操作微积分。另外,我们提出了通过正交功能的信号近似的引入代数方法的组合,以获得在嵌入式系统中应用的合适技术,作为基于矩阵操作的数字信号的处理例程。通过实验性案例研究证明和验证了所提出的方法的令人满意的动态性能,以估计机械系统上的显着参数。所呈现的在线识别方法可以扩展到可以通过Duffing方程数学建模的广泛非线性振荡电系统的估计参数。

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