Abridgment of reduction of eddy current losses by the inverted turn transposition and the twisted lead transposition

J. Lyons
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引用次数: 1

Abstract

The first section of the paper contains a brief review of the general theory underlying the determination of extra copper losses in armature windings carrying alternating current. Simplified methods of calculation are then described. The second part extends the study of the inverted turn transposition to the special case of three-phase windings, with two phases connected in series to form a single-phase winding and the third phase left idle. Formulas and tables are presented to show what reductions in copper losses may be expected for this connection, and to aid in deciding what type of transposition is best for a given winding. The final section of the paper deals with the twisted lead transposition, and presents formulas and tables showing reductions in extra losses to be gained from this method of inversion and connection. Details of the derivations of the formulas and examples of the use of the twisted lead transposition are contained in appendixes at the end of the paper.
通过反匝换位和绞引线换位来减少涡流损耗
本文的第一部分简要回顾了确定电枢绕组中携带交流电的额外铜损耗的一般理论。然后介绍了简化的计算方法。第二部分将反匝换位的研究扩展到三相绕组的特殊情况,两相串联形成单相绕组,第三相闲置。给出了公式和表格来说明这种连接可以减少多少铜损耗,并有助于确定对给定绕组哪种类型的换位是最好的。论文的最后一节讨论了扭曲引线换位,并给出了公式和表格,显示了从这种反转和连接方法中获得的额外损失的减少。详细的推导公式和实例的使用扭曲引线转置包含在附录在论文的末尾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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