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Use of Measured Vibration of In-Situ Sleeper for Detecting Underlying Railway Ballast Damage

机译:利用实测轨枕振动检测潜在的铁路道ast损伤

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The identification of railway ballast damage under a concrete sleeper is investigated by following the Bayesian approach. The use of a discrete modeling method to capture the distribution of ballast stiffiness under the sleeper introduces artificial stiffiness discontinuities between different ballast regions. This increases the effects of modeling errors and reduces the accuracy of the ballast damage detection results. In this paper, a continuous modeling method was developed to overcome this diffculty. The uncertainties induced by modeling error and measurement noise are the major difficulties of vibration-based damage detection methods. In the proposed methodology, Bayesian probabilistic approach is adopted to explicitly address the uncertainties associated with the identified model parameters. In the model updating process, the stiffiness of the ballast foundation is assumed to be continuous along the sleeper by using a polynomial of order N. One of the contributions of this paper is to calculate the order N conditional on a given set of measurement utilizing the Bayesian model class selection method. The proposed ballast damage detection methodology was verified with vibration data obtained from a segment of full-scale ballasted track under laboratory conditions, and the experimental verification results are very encouraging showing that it is possible to use the Bayesian approach along with the newly developed continuous modeling method for the purpose of ballast damage detection.
机译:采用贝叶斯方法研究了混凝土枕木下铁路道ast破坏的识别。使用离散建模方法来捕获枕木下压载物刚度的分布会在不同压载区域之间引入人为的刚度不连续性。这增加了建模错误的影响,并降低了镇流器损坏检测结果的准确性。在本文中,开发了一种连续建模方法来克服这一难题。由建模误差和测量噪声引起的不确定性是基于振动的损伤检测方法的主要困难。在提出的方法中,采用贝叶斯概率方法来明确解决与确定的模型参数相关的不确定性。在模型更新过程中,通过使用N阶多项式,假定道ast基础的刚度沿着枕木是连续的。本文的贡献之一是,使用给定的一组测量条件来计算N阶条件。贝叶斯模型类别选择方法。拟议的压载损伤检测方法已在实验室条件下用一段满载压载轨道的振动数据进行了验证,实验验证结果令人鼓舞,表明可以将贝叶斯方法与新开发的连续模型一起使用镇流器损坏检测方法。

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