Virtually coupled train set coordinated station stopping control based on contractive model predictive control

Virtual coupling (VC) is an emerging technology, and cooperative stopping is a critical scenario for virtually coupled train sets (VCTS) in urban rail transit. To safely and smoothly reduce inter-train spacing and minimize stopping-time differences, this paper proposes a coordinated station stopping control method for VCTS. Initially, to characterize train braking, the unit-train dynamic model incorporates running resistance and the electro-pneumatic blending phase. Subsequently, a contractive model predictive control (CMPC) framework is developed, employing a contraction constraint to guarantee uniform asymptotic stability of the closed-loop tracking system. Furthermore, to reduce the conservatism of standard CMPC near the stopping point, a switching strategy using reachable sets is introduced. Finally, numerical simulations show that the proposed method suppresses high-frequency control chattering, improves passenger comfort, and reduces stopping-time differences by 40.9%–55.6% compared with standard CMPC. Sensitivity analyses verify robustness to unmodeled low-speed friction and V2V prediction errors while maintaining safety and synchronization.

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Publication Details

Journal
International Journal of Rail Transportation
Published
2026-09-16
DOI
https://doi.org/10.1080/23248378.2026.2730145
Primary Topic
Railway Systems and Energy Efficiency
Type
article
Field-Weighted Citation Impact
0.00
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Virtually coupled train set coordinated station stopping control based on contractive model predictive control

Xiangyue Zhang, Shuai Su, L. P. Wang, Yeshu Li et al.
International Journal of Rail Transportation
Railway Systems and Energy Efficiency
article

Virtually coupled train set coordinated station stopping control based on contractive model predictive control

Xiangyue Zhang, Shuai Su, L. P. Wang, Yeshu Li, Haochen Zhang
article en

Abstract

Virtual coupling (VC) is an emerging technology, and cooperative stopping is a critical scenario for virtually coupled train sets (VCTS) in urban rail transit. To safely and smoothly reduce inter-train spacing and minimize stopping-time differences, this paper proposes a coordinated station stopping control method for VCTS. Initially, to characterize train braking, the unit-train dynamic model incorporates running resistance and the electro-pneumatic blending phase. Subsequently, a contractive model predictive control (CMPC) framework is developed, employing a contraction constraint to guarantee uniform asymptotic stability of the closed-loop tracking system. Furthermore, to reduce the conservatism of standard CMPC near the stopping point, a switching strategy using reachable sets is introduced. Finally, numerical simulations show that the proposed method suppresses high-frequency control chattering, improves passenger comfort, and reduces stopping-time differences by 40.9%–55.6% compared with standard CMPC. Sensitivity analyses verify robustness to unmodeled low-speed friction and V2V prediction errors while maintaining safety and synchronization.

International Journal of Rail Transportation
Beijing Jiaotong University (CN), China Academy of Railway Sciences (CN)
Openalex Percentile: Top 11%
Railway Systems and Energy Efficiency
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