Title :
A New Railway Power Flow Control System Coupled With Asymmetric Double LC Branches
Author :
Sijia Hu ; Zhiwen Zhang ; Yong Li ; Longfu Luo ; Pei Luo ; Yijia Cao ; Yuehui Chen ; Guandong Zhou ; Bin Wu ; Rehtanz, Christian
Author_Institution :
Coll. of Electr. & Inf. Eng., Hunan Univ., Changsha, China
Abstract :
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.
Keywords :
load flow control; railway engineering; RPFC; asymmetric double LC branches; fluctuated railway loads; heavy-load compensating ability; heavy-load compensating performance; railway power flow conditioner; railway power flow control system; Design methodology; Employee welfare; Integrated circuits; Optimized production technology; Power quality; Rail transportation; Reactive power; Asymmetric LC-coupling branches; electrical railway power system; parameter design; power capacity analysis; power flow control;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2369132