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Optimization of the target profile for asymmetrical rail grinding in sharp-radius curves for high-speed railways:

机译:高速铁路尖锐半径曲线不对称轨道磨削目标轮廓的优化:

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Asymmetrical rail grinding in sharp-radius curves could reduce the side wear of railheads and enhance curve capacity of rail vehicles. The wheel/rail contact performance and curve capacity could be further improved by the optimization of the asymmetrical rail grinding target profile. In order to modify the target profile smoothly, the nonuniform rational B-spline curve with adjustable weight factors is used to establish a parameterized model of railhead curves in the asymmetrical grinding region. The indices of contact performance and curve capacity for different weight factors are obtained using experiment design and service performance simulation. Two Kriging surrogate models are proposed, in which the design variables are the adjustable weight factors, and the response parameters are the indices of contact performance and curve capacity, respectively. The multi-objective optimization model of the target profile is established, in which the objective functions are the two Kriging surrogate models of con...
机译:尖锐半径曲线中的不对称轨道磨削可以减少轨道的侧面磨损并增强轨道车辆的曲线容量。通过优化不对称轨道研磨目标轮廓,可以进一步提高车轮/轨道接触性能和曲线容量。为了平滑地修改目标轮廓,使用具有可调权重量的非均匀性B样条曲线来建立非对称研磨区域中的轨道曲线的参数化模型。使用实验设计和服务性能模拟获得了不同权重因子的接触性能和曲线容量的指标。提出了两个Kriging代理模型,其中设计变量是可调的权重因子,并且响应参数分别是接触性能和曲线容量的指标。建立了目标配置文件的多目标优化模型,其中目标函数是CON的两个Kriging代理模型

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