Dynamic Compatibility Analysis of Pantograph and Overhead Conductor Rail Considering Aerodynamic Effects During High-Speed Tunnel Passage

Stable current collection of pantograph–overhead conductor rail (POCR) systems becomes increasingly challenging during high-speed tunnel entry and exit because tunnel-induced aerodynamic loads and stiffness discontinuities in transition sections jointly affect the pantograph–OCR interaction. This study develops a framework linking train–pantograph aerodynamics with POCR dynamics for operation at 200 km/h. Three typical pantographs are compared in terms of aerodynamic response and current collection performance, after which the effects of key pantograph and OCR parameters are investigated. A semi-analytical indicator based on the complex modulus of the harmonic force is used to screen candidate pantograph parameters near the OCR span-passing frequency. A gradual support stiffness arrangement is further introduced in the transition section. Based on these analyses, an integrated parameter-matching scheme is established and evaluated numerically. In the comparison reported for the proposed scheme, the standard deviation of contact force decreases from 21.57 N to 9.46 N, the maximum contact force decreases from 182.32 N to 114.35 N, and the contact-loss rate decreases from 0.48% to 0.00%. The reported improvements apply to the investigated 200 km/h tunnel-passage configuration.

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Publication Details

Journal
Machines
Published
2026-10-09
DOI
https://doi.org/10.3390/machines14101168
Primary Topic
Electrical Contact Performance and Analysis
Type
article
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Dynamic Compatibility Analysis of Pantograph and Overhead Conductor Rail Considering Aerodynamic Effects During High-Speed Tunnel Passage

Duan Fuchuan, Yang Song, Dong Cheng, Fengyuan Li et al.
Machines
Electrical Contact Performance and Analysis
article

Dynamic Compatibility Analysis of Pantograph and Overhead Conductor Rail Considering Aerodynamic Effects During High-Speed Tunnel Passage

Duan Fuchuan, Yang Song, Dong Cheng, Fengyuan Li, Zhigang Liu, Zheng Zhu, Jinlong Gao
article en

Abstract

Stable current collection of pantograph–overhead conductor rail (POCR) systems becomes increasingly challenging during high-speed tunnel entry and exit because tunnel-induced aerodynamic loads and stiffness discontinuities in transition sections jointly affect the pantograph–OCR interaction. This study develops a framework linking train–pantograph aerodynamics with POCR dynamics for operation at 200 km/h. Three typical pantographs are compared in terms of aerodynamic response and current collection performance, after which the effects of key pantograph and OCR parameters are investigated. A semi-analytical indicator based on the complex modulus of the harmonic force is used to screen candidate pantograph parameters near the OCR span-passing frequency. A gradual support stiffness arrangement is further introduced in the transition section. Based on these analyses, an integrated parameter-matching scheme is established and evaluated numerically. In the comparison reported for the proposed scheme, the standard deviation of contact force decreases from 21.57 N to 9.46 N, the maximum contact force decreases from 182.32 N to 114.35 N, and the contact-loss rate decreases from 0.48% to 0.00%. The reported improvements apply to the investigated 200 km/h tunnel-passage configuration.

MachinesVol. 14(10)
China Railway Design Corporation (China) (CN), Southwest Jiaotong University (CN)
Openalex Percentile: Top 22%
Electrical Contact Performance and Analysis
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Dynamic Compatibility Analysis of Pantograph and Overhead Conductor Rail Considering Aerodynamic Effects During High-Speed Tunnel Passage — Duan Fuchuan, Yang Song, et al. · Machines (2026) | TGRS Research Map | TGRS