Research on uninterruptable power supply technology for auxiliary winding of electric locomotive while passing the neutral section

Author:

Du YuliangORCID

Abstract

PurposeAuxiliary power system is an indispensable part of the train; the auxiliary systems of both electric locomotives and EMUs mainly are powered by one of the two ways, which are either from auxiliary windings of traction transformers or from DC-link voltage of traction converters. Powered by DC-link voltage of traction converters, the auxiliary systems were maintained of uninterruptable power supply with energy from electric braking. Meanwhile, powered by traction transformers, the auxiliary systems were always out of power while passing the neutral section of power supply grid and control system is powered by battery at this time.Design/methodology/approachUninterrupted power supply of auxiliary power system powered by auxiliary winding of traction transformer was studied. Failure reasons why previous solutions cannot be realized are analyzed. An uninterruptable power supply scheme for the auxiliary systems powered by auxiliary windings of traction transformers is proposed in this paper. The validity of the proposed scheme is verified by simulation and experimental results and on-site operation of an upgraded HXD3C type locomotive. This scheme is attractive for upgrading practical locomotives with the auxiliary systems powered by auxiliary windings of traction transformers.FindingsThis scheme regenerates braking power supplied to auxiliary windings of traction transformers while a locomotive runs in the neutral section of the power supply grid. Control objectives of uninterrupted power supply technology are proposed, which are no overvoltage, no overcurrent and uninterrupted power supply.Originality/valueThe control strategies of the scheme ensure both overvoltage free and inrush current free when a locomotive enters or leaves the neutral section. Furthermore, this scheme is cost low by employing updated control strategy of software and add both the two current sensors and two connection wires of hardware.

Publisher

Emerald

Reference18 articles.

1. 2×25-kV 50Hz high-speed traction power system: Short-circuit modeling;IEEE Transactions on Vehicular Technology,2001

2. Digital control and simulation for power electronic apparatus in dual voltage railway locomotive;IEEE Transactions on Power Electronics,2003

3. Smart electrical infrastructure for AC-Fed railways with neutral zones;IEEE Transactions on Intelligent Transportation Systems,2015

4. Protection scheme using SFCL for electric railways with automatic power changeover switch system;IEEE Transactions on Applied Superconductivity,2012

5. Synchronous controlled switching by vacuum circuit breaker(VCB) with electromagnetic operation mechanism,2004

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