DocumentCode :
43040
Title :
30 kW, 200 V/900 V, Thyristor LCL DC/DC Converter Laboratory Prototype Design and Testing
Author :
Hajian, Masood ; Robinson, John ; Jovcic, Dragan ; Bin Wu
Author_Institution :
Eng. Sch., Univ. of Aberdeen, Aberdeen, UK
Volume :
29
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
1094
Lastpage :
1102
Abstract :
This paper details design, development, and testing of a prototype 30 kW, 200 V/900 V resonant dc/dc converter. The converter achieves stepping ratio of 4.5 without internal ac transformer, and is capable of bidirectional dc power flow as well as fast dc power reversal. Very importantly, it has capability of dc fault isolation on either side, which is of extreme importance for high-power dc applications. The design and selection of the individual passive and active components are presented. A 30-kW test setup including one 900 V voltage source converter (VSC), one 200 V VSC, and one 200 V current source converter (CSC) are designed and built to provide a test rig for dc/dc converter. The analytical studies of efficiency are compared with the converter measured efficiency. The prototype shows overall efficiency of around 92% at full power and weight of around 32 kg, which is promising for scaling to high-power applications. The converter operation at full power in step up mode as well as step down mode, and fast power reversal when connected to CSC on its low voltage side, are demonstrated by experimental results. Severe pole-to-pole dc faults are applied on 900 V and 200 V dc terminals and the inherent dc fault isolation capability is confirmed.
Keywords :
DC-DC power convertors; constant current sources; fault diagnosis; load flow; resonant power convertors; thyristors; CSC; DC fault isolation; VSC; active component; bidirectional dc power flow; current source converter; fast DC power reversal; high-power DC application; inherent DC fault isolation capability; internal AC transformer; passive component; pole-to-pole DC fault; power 30 kW; resonant DC-DC converter; thyristor LCL DC-DC converter laboratory prototype design; voltage 200 V; voltage 900 V; voltage source converter; Capacitors; Circuit faults; Inductors; Power conversion; Prototypes; Thyristors; DC/DC power conversion; HVDC converters; dc power transmission; efficiency; resonant power conversion;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2013.2260564
Filename :
6511974
Link To Document :
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