Differential parametrization of rail vehicle properties and its impact on hunting

S. Vishnu, Shaswat Garg, S.P. Singh, SK Saha
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引用次数: 1

Abstract

In this work, we have developed a serial-chain multibody model of a rail vehicle, using the Decoupled Natural Orthogonal Complement matrices. The governing equations of the system were linearized, and the start of hunting was identified by finding the Smallest Bifurcation Point (SBP) of the trivial solution. Uneven wear creates differences in the properties of similar components in a rail vehicle. It was found that such variations are neglected in the hunting analysis. Hence, we introduce these differences by independently changing 32 parameters. The study found that these variations lead to unique trends. Then, these trends were used to recommend design changes for a rail vehicle, which could be thought of, in order to improve the hunting characteristics. For this purpose, an interactive software tool was created to easily visualize, and manipulate the hunting behavior of a rail vehicle.
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轨道车辆性能的微分参数化及其对狩猎的影响
在这项工作中,我们利用解耦的自然正交补矩阵开发了轨道车辆的串行链多体模型。对系统的控制方程进行线性化处理,并通过寻找平凡解的最小分岔点(SBP)来确定寻优起点。在轨道车辆中,不均匀磨损会造成相似部件的性能差异。在狩猎分析中发现这些变化被忽略了。因此,我们通过独立改变32个参数来引入这些差异。研究发现,这些变化导致了独特的趋势。然后,将这些趋势用于建议轨道车辆的设计变更,可以想到,以提高狩猎特性。为此目的,创建了一个交互式软件工具,以方便地可视化和操纵轨道车辆的狩猎行为。
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来源期刊
CiteScore
4.80
自引率
10.00%
发文量
91
审稿时长
7 months
期刊介绍: The Journal of Rail and Rapid Transit is devoted to engineering in its widest interpretation applicable to rail and rapid transit. The Journal aims to promote sharing of technical knowledge, ideas and experience between engineers and researchers working in the railway field.
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