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| Content Provider | IEEE Xplore Digital Library | 
|---|---|
| Author | Stranges, N. Findlay, R.D. Dymond, J.H. | 
| Copyright Year | 1996 | 
| Description | Author affiliation: McMaster Univ., Hamilton, Ont., Canada (Stranges, N.) | 
| Abstract | This paper compares two forms of the finite element method (FEM) for the purpose of studying rotating magnetic flux in machine cores. The authors compare the use of a series of time-stepped magnetostatic solutions and a single time-harmonic formulation. The development of analysis tools for determining the amount of rotational flux and degree of flux density polarization in a machine core is of great importance to machine designers. A significant portion of the total core loss in an AC machine is caused by flux which rotates in the plane of the machine laminations. This rotating flux results in a polarized flux density at the roots of the stator teeth and all along the inner periphery of the stator core. The total iron loss in the material caused by rotating magnetic flux may be much larger than the iron loss due to alternating flux. A method of determining the amount of rotational flux will aid the designer in predicting no-load core loss and locating potential hot spots in the machine core. | 
| Starting Page | 943 | 
| Ending Page | 946 | 
| File Size | 370317 | 
| Page Count | 4 | 
| File Format | |
| ISBN | 0780331435 | 
| ISSN | 08407789 | 
| DOI | 10.1109/CCECE.1996.548309 | 
| Language | English | 
| Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) | 
| Publisher Date | 1996-05-26 | 
| Publisher Place | Canada | 
| Access Restriction | Subscribed | 
| Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) | 
| Subject Keyword | Finite element methods Magnetic flux Magnetic cores Stator cores Polarization Core loss Iron Magnetic materials Magnetostatics Magnetic analysis | 
| Content Type | Text | 
| Resource Type | Article | 
| Subject | Electrical and Electronic Engineering Hardware and Architecture | 
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