首页> 外文会议>IEEE Workshop on control and modeling for power electronics >Litz wire losses: Effects of twisting imperfections
【24h】

Litz wire losses: Effects of twisting imperfections

机译:利兹线损:扭曲缺陷的影响

获取原文

摘要

High-Frequency (HF) litz wires are extensively used for the windings of Medium-Frequency (MF) magnetic components in order to reduce the impact of eddy current losses that originate from skin and proximity effects. Literature documents different methods to calculate eddy current losses in HF litz wires, however, most of the computation methods rely on perfect twisting of the strands, which is often not present in practice. This paper analyzes the implications of imperfect twisting on the current distribution among the different strands of HF litz wires and the corresponding losses by means of a fast 2.5D PEEC (Partial Element Equivalent Circuit) method. The effects of different types of twisting imperfections (at the bundle-, sub-bundle-, or strand-level) are examined. It is found that imperfect twisting can lead to increased losses (more than 100 %). However, perfect twisting of the strands, which is difficult to achieve, is often not required, i.e. suboptimal twisting is sufficient. Analytical expressions are given for distinguishing between critical and uncritical imperfections. The experimental results, conducted with a 7.5kHz/65kW transformer, reveal a reduction of the error on the predicted losses from 52 % (ideal HF litz wire model) to 8 % (presented model) and, thus, confirm the accuracy improvement achieved with the proposed approach.
机译:高频(HF)绞合线被广泛用于中频(MF)磁性组件的绕组,以减少由趋肤效应和邻近效应引起的涡流损耗的影响。文献记录了用于计算HF绞合线中涡流损耗的不同方法,但是,大多数计算方法依赖于绞合线的完美绞合,这在实践中通常不存在。本文通过快速的2.5D PEEC(部分等效电路)方法分析了不完全绞合对HF利兹线不同股之间电流分布的影响以及相应的损耗。检查了不同类型的扭曲缺陷的影响(在束层,子束层或束层)。发现不正确的扭曲会导致损耗增加(超过100%)。但是,通常不需要很难实现的绞合线的完美加捻,即,次佳的加捻就足够了。给出了用于区分关键缺陷和非关键缺陷的解析表达式。用7.5kHz / 65kW变压器进行的实验结果表明,预测损耗的误差从52 \%(理想的HF利兹线模型)降低到8 \%(现有模型),从而证实了精度的提高通过建议的方法实现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号