5 结论 中间抽头高频功率变压器付边交替工作,由于邻近效应,不工作绕组仍存在涡流损耗,不同于原付边同时工作的正激式变压器,这就使得两者的分析和测试方法有很大区别。通过电流分量分解,对付边电流的奇、偶次分量进行解耦,进而实现奇、偶次电流分量独立分析。得出变压器奇次磁势在原付边间平衡,偶次磁势在付边间平衡。从而使正激式变压器分析及测试方法也适用于中间抽头变压器。依据模型分析结果对中间抽头进行优化设计。实验验证该模型有效。 参考文献 [1]N.H Kutkut,"Minimizing Winding Losses in Foil Windings using Field Shaping Techniques,"PESC'97 [2]Wei Chen,Yipeng Yan,Yuequan Hu and Qing Lu,"Model and Design of PCB Parallel Winding for Planar Transformer,"IEEE Trans. On Magnetis, Vol.39,No.2,pp.3202-3204,2003 [3]陈为,毛行奎"高频电感器线圈损耗分析与交错气隙布置,"电工技术学报, 2003,18(6):72-76 [4]JianKun Hu,C.R Sullivan,"AC Resistance of Planar Power Inductors and the Quasidistributed Gap Technique,"IEEE Trans.On Power Electronics Vol.16,pp558-567 [5]P.Dowell,"Effects of Eddy Currents in Transformer Windings, "Proceeding of IEE, Vol.113,No.8,pp1387-1394,1966. [6]Bruce Carsten,"High Frequency Conductor Losses in Switching Mode Magnetics", Proceedings of HFPC,pp.155-175,1986 [7]P.S Venkatraman,"Winding eddy current losses in switch mode power transformer due to rectangular wave-currents,"Proc. Of Powercon. 11,pp.A1.1-11,1984 [8]W.G Hurley,"Optimizing the AC Resistance of Multilayer Transformer Windings with Arbitrary Current Waveforms,"IEEE Trans. On Power Electronics ,Vol.15,No.2,pp369-376,2000 [9]Chucheng Xiao,Gnag Chen,W.G Odendaal, "Overview of Power Loss Measurement Tech-