DocumentCode
2098249
Title
Synthesis of advanced Switched Reluctance Machine topologies using microscopic force density analysis
Author
Jiang, Wei ; Fahimi, Babak
Author_Institution
Dept. of Electr. Eng., Univ. of Texas at Arlington, Arlington, TX
fYear
2009
fDate
3-6 May 2009
Firstpage
999
Lastpage
1004
Abstract
Despite considerable progress in development of power electronic-based control of electromechanical energy converters (EMEC), relative small changes have been observed in the magnetic design of EMECs. A physically insightful understanding of mechanism of electromagnetic force generation can shed light into the process of design and control of EMECs, thereby creating new opportunities for EMEC performance enhancement. This paper starts with interpretation of Korteweg-Helmholtz force density formula and categorizes different factors which contribute to force generation in an EMEC. Switched reluctance machine (SRM) is chosen as the subject of present study; different approaches of improving force generation are identified and summarized as rules for topology synthesis. Through iterations of topology synthesis with aim at enhanced torque output, a novel hybrid airgap SRM topology is derived. Quantitative as well as qualitative analysis are conducted toward proposed topologies. Based on evaluations of steady state performance and variety of and performance indices, short flux path hybrid airgap SRM outperforms the other proposed topologies, hence proves the effectiveness of synthesis rules and process.
Keywords
Helmholtz equations; air gaps; electromagnetic forces; power convertors; power electronics; reluctance machines; Korteweg-Helmholtz force density formula; advanced switched reluctance machine topologies; electromagnetic force generation; electromechanical energy converter; magnetic design; microscopic force density analysis; power electronic-based control; short flux path hybrid airgap; topology synthesis iteration; Circuit topology; Electromagnetic forces; Force control; Lighting control; Magnetic analysis; Magnetic flux; Microscopy; Process design; Reluctance generators; Reluctance machines;
fLanguage
English
Publisher
ieee
Conference_Titel
Electric Machines and Drives Conference, 2009. IEMDC '09. IEEE International
Conference_Location
Miami, FL
Print_ISBN
978-1-4244-4251-5
Electronic_ISBN
978-1-4244-4252-2
Type
conf
DOI
10.1109/IEMDC.2009.5075326
Filename
5075326
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