DocumentCode
1533105
Title
Fault-tolerant operation of single-phase SR generators
Author
Sawata, Tadashi ; Kjaer, Philip C. ; Cossar, Calum ; Miller, T.J.E. ; Hayashi, Yoichi
Author_Institution
Dept. of Electron. & Electr. Eng., Glasgow Univ., UK
Volume
35
Issue
4
fYear
1999
Firstpage
774
Lastpage
781
Abstract
This paper studies fault-tolerant operation of multipole single-phase switched reluctance generators (SRGs), in particular, an 8/8-pole switched reluctance machine. The multipole single-phase SRG system is advantageous for reduced cost and higher efficiency compared to polyphase equivalents. However, using the classical phase-leg topology, a phase fault may prevent generating operation completely, since redundancy in the number of phases does not exist like polyphase systems. A new power converter topology which connects two coil banks in parallel is proposed for higher fault tolerance with minimum additional cost. Faulty coils can be disconnected with the proposed converter and the SRG can continue generating operation after coil faults with reduced output power. Output power per coil current under faults is studied. Open- and short-circuit coils are studied through linear analysis, finite-element analysis and static torque measurement. Generated currents under faults with the proposed converter are measured. The capability of the system to disconnect faulty coils dynamically is also shown
Keywords
coils; electrical faults; fault tolerance; finite element analysis; machine testing; machine theory; machine windings; power convertors; reluctance generators; torque measurement; classical phase-leg topology; coil banks; coil faults; fault-tolerant operation; finite-element analysis; linear analysis; multipole single-phase switched reluctance generators; open-circuit coils; parallel connection; power converter topology; short-circuit coils; static torque measurement; Coils; Costs; Fault tolerance; Finite element methods; Power generation; Redundancy; Reluctance generators; Reluctance machines; Strontium; Topology;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/28.777184
Filename
777184
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