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SIMULATION OF LONGITUDINAL TRAIN DYNAMICS: CASE STUDIES USING THE TRAIN ENERGY AND DYNAMICS SIMULATOR (TEDS)

机译:纵向列车动力学仿真:使用列车能量和动力学仿真器(TEDS)进行案例研究

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Longitudinal dynamics influence several measures of train performance, including schedules and energy efficiency, stopping distances, run-in/run-out forces, etc. Therefore, an effective set of tools for studying longitudinal dynamics is essential to improving the safety and performance of train operations. Train Energy and Dynamics Simulator (TEDS) is a state-of-the-art software program designed and developed by the Federal Railroad Administration (FRA), for studying and simulating train safety and performance, and can be used for modeling train performance under a wide variety of equipment, track, and operating configurations. Several case studies and real-world applications of TEDS, including the investigation of multiple train make-up and train handling related derailments, a study of train stopping distances, evaluations of the safety benefits of Electronically Controlled Pneumatic (ECP) brakes, Distributed Power operations, and a study of alternate train handling methodologies are described in this paper. These studies demonstrate the effectiveness of using the appropriate simulation tools to quantify and enhance a better understanding of train dynamics, and the resultant safety benefits.
机译:纵向动力学会影响列车性能的多种指标,包括时间表和能效,停车距离,驶入/驶出力等。因此,一套有效的研究纵向动力学的工具对于提高列车的安全性和性能至关重要。操作。火车能量和动力学模拟器(TEDS)是由美国联邦铁路管理局(FRA)设计和开发的最先进的软件程序,用于研究和模拟火车的安全性和性能,并且可用于在以下条件下对火车性能进行建模:各种各样的设备,轨道和操作配置。 TEDS的一些案例研究和实际应用,包括对多列火车编组和与火车操作相关的脱轨的调查,对火车停靠距离的研究,对电控气动(ECP)制动器安全益处的评估,分布式动力运行,并在本文中介绍了对其他火车处理方法的研究。这些研究证明了使用适当的仿真工具来量化和增强对列车动力学以及由此产生的安全性益处的更好理解。

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