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Computing Base Train Equivalents for Delay-Based Capacity Analysis with Multiple Types of Trains

Tzu-Ya Lin
Department of Civil Engineering National Taiwan University, Civil Engineering Building, Taipei, Taiwan

Ying-Chun Lin
Department of Civil Engineering National Taiwan University, Civil Engineering Building, Taipei, Taiwan

Yung-Cheng Lai
Department of Civil Engineering National Taiwan University, Civil Engineering Building, Taipei, Taiwan

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Ingår i: RailNorrköping 2019. 8th International Conference on Railway Operations Modelling and Analysis (ICROMA), Norrköping, Sweden, June 17th – 20th, 2019

Linköping Electronic Conference Proceedings 69:50, s. 766-775

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Publicerad: 2019-09-13

ISBN: 978-91-7929-992-7

ISSN: 1650-3686 (tryckt), 1650-3740 (online)

Abstract

Different types of trains may have substantially dissimilar characteristics, resulting in various capacity impacts. The concept of base train equivalent (BTE) was proposed to standardize different train types into a universal unit, namely, base train unit (BTU). However, the previously developed delay-based model suffers from consistency issue, and its application is limited to only two train types. Thus, this study proposes a new concept of delay-based BTE computation and corresponding BTE models. The dynamic BTE model considers volume and heterogeneity and aims to reflect fully the actual capacity impact of non-base trains. The fixed BTE model identifies the most appropriate BTE value at a particular traffic heterogeneity. Results from the case studies demonstrate that the proposed method can address scenarios with all types of traffic mixes and multiple train types. The unit of delay-based rail capacity can be converted into a standard unit using the proposed models. The effect of an additional train can be easily assessed, and the capacity measurements from different lines or systems can be compared and evaluated.

Nyckelord

Rail Transport, Capacity Analysis, Base Train Equivalent

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