Railway Infrastructure Management: Selection of Overhead Contact Line Ampacity Considering Operational and Design Factors

Author:

Kuznetsov Valeriy1ORCID,Hubskyi Petro1,Rojek Artur1ORCID,Ciekanowski Zbigniew2

Affiliation:

1. Railway Research Institute, 04-275 Warsaw, Poland

2. Department of Security, Faculty of Legal Sciences, Administration and Security, Warsaw Management University, 03-772 Warsaw, Poland

Abstract

This paper presents a novel approach to determining the ampacity of DC and AC railway overhead contact lines, considering both operational and design factors. The ampacity of contact lines is influenced by several design parameters, including materials, cross section and the number of catenary and contact wires, etc. Additionally, the permissible long-term and short-term current values, which correspond to the permissible temperatures defined by EN 50119:2020, are affected by operational factors such as ambient temperature, solar radiation, heat exchange conditions, wind speed, wear of contact wires. Existing methods for determining the ampacity of overhead contact lines often fail to account adequately for these critical factors and lack the necessary procedures to calculate the 30 min ampacity required by EN 50119:2020. In response, the method proposed in this study adapts the procedures of IEEE 738-2012 to the specific needs of railway contact lines, taking into account the effect of contact wire wear on current distribution and overall ampacity. The proposed method offers a more realistic and practical approach to determining the ampacity of contact lines, thereby enhancing the reliability and efficiency of the traction power supply infrastructure. This method could be useful for railway infrastructure managers to ensure the safe and efficient operation under varying environmental and operational conditions.

Funder

PKP PLK S.A

Publisher

MDPI AG

Reference43 articles.

1. (2014). Commission Regulation (EU) No 1301/2014 of 18 November 2014 on the Technical Specifications for Interoperability Relating to the ‘Energy’ Subsystem of the Rail System in the Union (TSI Energy), European Union.

2. (2023). Commission Implementing Regulation (EU) 2023/1694 of 10 August 2023 amending Regulations (EU) No 321/2013, (EU) No 1299/2014, (EU) No 1300/2014, (EU) No 1301/2014, (EU) No 1302/2014, (EU) No 1304/2014 and Implementing Regulation (EU) 2019/777, European Union.

3. (2022). Railway Applications—Fixed Installations and Rolling Stock—Technical Criteria for the Coordination between Electric Traction Power Supply Systems and Rolling Stock to Achieve Interoperability—Part 1: General: EN 50388-1:2022 (Standard No. EN 50388-1:2022).

4. Current ampacity of overhead contact line//Technical Journal;Rojek;Elektrotechnika,2007

5. Mikheev, V.P. (2003). Contact Lines and Power Lines: Textbook for Universities of Railway Transport, Marshrut. (In Russian).

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