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Novel Single Inverter-Controlled Brushless Wound Field Synchronous Machine Topology

Authors
Bukhari, Syed Sabir HussainMemon, Ali AsgharMadanzadeh, SadjadSirewal, Ghulam JawadDoval-Gandoy, JesusRo, Jong-Suk
Issue Date
Aug-2021
Publisher
MDPI
Keywords
brushless topology; third harmonic flux; dc offset; wound field synchronous machines
Citation
MATHEMATICS, v.9, no.15
Journal Title
MATHEMATICS
Volume
9
Number
15
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/49602
DOI
10.3390/math9151739
ISSN
2227-7390
2227-7390
Abstract
This paper proposes a novel brushless excitation topology for a three-phase synchronous machine based on a customary current-controlled voltage source inverter (VSI). The inverter employs a simple hysteresis-controller-based current control scheme that enables it to inject a three-phase armature current to the stator winding which contains a dc offset. This dc offset generates an additional air gap magneto-motive force (MMF). On the rotor side, an additional harmonic winding is mounted to harness the harmonic power from the air gap flux. Since a third harmonic flux is generated in this type of topology, the machine structure is also modified to accommodate the third harmonic rotor winding to have a voltage induced as the rotor rotates at synchronous speed. Specifically, four-pole armature and field winding patterns are used, whereas the harmonic winding is configured for a twelve-pole pattern. A diode rectifier is also mounted on the rotor between the harmonic and field windings. Therefore, the generated voltage on the harmonic winding feeds the current to the field winding for excitation. A 2D-finite element analysis (FEA) in JMAG-Designer was carried out for performance evaluation and verification of the topology. The simulation results are consistent with the proposed theory. The topology could reduce the cost and stator winding volume compared to a conventional brushless machine, with good potential for various applications.
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Roh, Jong Suk
창의ICT공과대학 (전자전기공학부)
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