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Development of an inverse simulation method for the analysis of train performance

机译:列车性能分析的逆模拟方法研究

摘要

Conventional methods of computer-based simulation allow prediction of output variables, often as a function of time, for a given model of a physical system for a given set of initial conditions and input variables. In the case of train performance simulation models, the possible output variables include train speed or distance travelled, both expressed as functions of time. The corresponding input variables, also expressed as functions of time, are the tractive force or power levels for given train characteristics and route information such as gradients, track curvature and speed restrictions. Inverse simulation methods, on the other hand, allow selected model variables (such as the tractive force at any time instant) to be found from other specified model variables applied as input (such as the train speed or distance travelled versus time) for a given set of route conditions and train characteristics. The specific inverse simulation method presented in the paper is based on feedback principles. Illustrative results are used to verify this inverse simulation approach for train performance applications, and further cases are used to show that the inverse formulation provides an insight that is different from that obtained using more conventional forward simulation techniques.
机译:基于计算机的模拟的传统方法允许针对给定的一组初始条件和输入变量,为物理系统的给定模型,通常作为时间的函数来预测输出变量。在列车性能仿真模型的情况下,可能的输出变量包括列车速度或行进距离,均表示为时间的函数。相应的输入变量(也表示为时间的函数)是给定列车特性和路线信息(例如坡度,轨道曲率和速度限制)的牵引力或功率水平。另一方面,逆向仿真方法允许从给定给定值的其他指定模型变量(例如列车速度或行驶距离随时间变化)中找到选定的模型变量(例如随时的牵引力)。路线条件和火车特性的集合。本文提出的具体逆仿真方法基于反馈原理。说明性结果用于验证这种反模拟方法在火车性能应用中的作用,进一步的情况用于显示反公式提供的见解与使用更常规的正向模拟技术所获得的见解不同。

著录项

  • 作者

    Murray-Smith D.J.;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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