A New Railway Power Flow Control System Coupled With Asymmetric Double LC Branches

Facing the challenges of power quality problems and excessive neutral sections of conventional two-phase electric railway supply system, the way of adopting railway static power conditioner (RPC)-based single-phase supply system is a feasible solution. To enhance the cost-efficiency and reliability...

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Veröffentlicht in:IEEE transactions on power electronics 2015-10, Vol.30 (10), p.5484-5498
Hauptverfasser: Sijia Hu, Zhiwen Zhang, Yong Li, Longfu Luo, Pei Luo, Yijia Cao, Yuehui Chen, Guandong Zhou, Bin Wu, Rehtanz, Christian
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Sprache:eng
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Zusammenfassung:Facing the challenges of power quality problems and excessive neutral sections of conventional two-phase electric railway supply system, the way of adopting railway static power conditioner (RPC)-based single-phase supply system is a feasible solution. To enhance the cost-efficiency and reliability of RPC, a novel compensating system named asymmetric double LC-coupled railway power flow conditioner (ALC-RPFC) is proposed in this paper. The study indicates that compared with the conventional RPC, the proposed ALC-RPFC has an effective heavy-load compensating ability with lower power rating, which is benefit to enhance converter's operating efficiency and reliability. Besides, a design method for LC coupling branches mentioned in this paper is suitable for fluctuated railway loads, and is useful for designers of industrial applications as well. Finally, the good heavy-load compensating performance and power capacity decreasing ability of the ALC-RPFC are validated based on simulation and experiment results.
ISSN:0885-8993
1941-0107
DOI:10.1109/TPEL.2014.2369132