DocumentCode
3175429
Title
Optimal core dimensional ratios for minimizing winding loss in high-frequency gapped-inductor windings
Author
Jensen, Robert A. ; Sullivan, Charles R.
Author_Institution
Dartmouth Coll., Hanover, NH, USA
Volume
2
fYear
2003
fDate
9-13 Feb. 2003
Firstpage
1164
Abstract
Numerical techniques are used to find the inductor core dimensional ratios that minimize winding loss. It is shown that common core shapes result in significant excess losses, even if the shape of the wire winding is optimized. A design example demonstrates the practical implications of this technique for choosing cores-a standard core with dimensional ratios close to optimum provides a 32 % savings in power loss compared to another popular core shape. Further improvements in power loss could be achieved by using optimized core shapes. Improvements to software for shape-optimization of windings are described, including accounting for different turn lengths at different radii, the ability to select gaps in different core legs, and better approximations of three-dimensional field geometry.
Keywords
electrical engineering computing; inductors; losses; magnetic cores; numerical analysis; optimisation; windings; core leg gap; core shapes; high-frequency gapped-inductor winding; numerical techniques; optimal core dimensional ratio; power loss; shape-optimization software; standard core; three-dimensional field geometry; turn length; winding loss; wire winding optimization; Educational institutions; Geometry; Helium; Inductors; Leg; Magnetic fields; Magnetic losses; Optimization methods; Shape; Wire;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Power Electronics Conference and Exposition, 2003. APEC '03. Eighteenth Annual IEEE
Conference_Location
Miami Beach, FL, USA
Print_ISBN
0-7803-7768-0
Type
conf
DOI
10.1109/APEC.2003.1179363
Filename
1179363
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