Optimal Energy Efficiency in a Mass Rapid Transit System Through DC Traction Substation Voltage Control Utilizing Particle Swarm Optimization

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Authors/Editors


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Publication Details

Author listWaiard Saikong , Banri Khemkladmuk , Chaiyut Sumpavakup , Chanchai Techawatcharapaikul and Thanatchai Kulworawanichpong

PublisherInstitution of Engineering and Technology (IET)

Publication year2025

Journal acronymIET Electrical Systems in Transportation

Volume number2025

Start page1

End page14

Number of pages14

ISSN2042-9738

eISSN2042-9746

URLhttps://ietresearch.onlinelibrary.wiley.com/doi/10.1049/els2/5531109

LanguagesEnglish-United States (EN-US)


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Abstract

This article discusses voltage level modifications in urban mass transit traction substations, focusing on DC railway substations, to reduce power consumption and improve energy efficiency. Substation voltage settings are usually adjusted by a skilled designer using practical judgment and design acumen. To maximize operations, all traction substation voltage levels are automatically adjusted to the same value. This arrangement works well and may not have affected the power supply system. This design often causes operations to deviate from optimal performance, perhaps reducing energy efficiency. This research seeks to determine the optimal traction substation voltage setting that minimizes total energy consumption of DC electric railways. A simulation-based approach is applied using train movement data and voltage variation scenarios. The proposed designs are linear, V-shaped, and f ixed-voltage. Additionally, particle swarm optimization (PSO) is an effective way to find the best design. The Bangkok Transit System (BTS) Sukhumvit line is used for testing. Reduction by the linear framework, energy consumption may be 2.341% lower than the base case. By the PSO, the results in 30 trial test runs suggest a 6.107% energy consumption reduction from baseline.


Keywords

Energy managementVoltage control


Last updated on 2025-29-09 at 12:00