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首页> 外文期刊>Journal of aerospace engineering >Substructural Identification Methods for Parameter Estimation of Railway Track Dynamic Systems
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Substructural Identification Methods for Parameter Estimation of Railway Track Dynamic Systems

机译:铁路轨道动态系统参数估计的子结构识别方法

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摘要

Real-time identification and monitoring of the railway track dynamic parameters are necessary to ensure the safe operation of the railway transportation systems. Traditional global structural parameter identification methods have the problem of low efficiency in identifying structural parameters of railway track dynamic systems. To tackle the inefficiency problem, this paper proposes a new parameter identification method for railway track systems on the basis of the substructural identification algorithm. First, the railway track system is divided into several substructures depending on the vehicle loads. The parametric expression of the interface forces of the target substructure is constructed by the Chebyshev polynomials. Then, the sensitivity of the dynamic responses to the structural parameters and the interface force parameters can be obtained. The substructure parameters and the load parameters are identified simultaneously by the coupled iterative optimization algorithm based on the sensitivity analysis. The proposed substructural identification method greatly improves computational efficiency in the iterative process of parameter identification because the proposed method significantly reduces the number of parameters to be identified. Finally, a numerical example for a railway track dynamic system is employed to demonstrate the effectiveness of the proposed substructural identification method. The results from the numerical study show that changes in the structural parameters of rail track systems can be accurately identified using the proposed substructural identification method.
机译:需要实时识别和监控铁路轨道动态参数,以确保铁路运输系统的安全运行。传统的全局结构参数识别方法具有识别铁路轨道动态系统结构参数的低效率问题。为了解决效率效率问题,本文提出了基于子结构识别算法的铁路轨道系统的新参数识别方法。首先,根据车辆负载,铁路轨道系统被分成几个子结构。目标子结构的界面力的参数表达由Chebyshev多项式构成。然后,可以获得对结构参数和界面力参数的动态响应的灵敏度。基于灵敏度分析的耦合迭代优化算法同时识别子结构参数和负载参数。所提出的子结构识别方法极大地提高了参数识别过程中的计算效率,因为所提出的方法显着减少了要识别的参数的数量。最后,采用了铁路轨道动态系统的数值示例来证明所提出的下结构识别方法的有效性。来自数值研究的结果表明,可以使用所提出的子结构识别方法精确地识别轨道轨道系统结构参数的变化。

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