...
首页> 外文期刊>IEEE Transactions on Industrial Electronics >A New Relieving-DC-Saturation Hybrid Excitation Vernier Machine for HEV Starter Generator Application
【24h】

A New Relieving-DC-Saturation Hybrid Excitation Vernier Machine for HEV Starter Generator Application

机译:用于HEV启动器发生器应用的新型缓解-DC饱和混合激励游标机器

获取原文
获取原文并翻译 | 示例

摘要

Benefiting from flexible flux control and short-circuit withstand ability, the hybrid excitation machine is an emerging starter generator solution for hybrid electric vehicle propulsion. However, to realize a brushless hybrid design in conventional permanent magnet machines, a three-dimensional magnetic circuit is usually adopted, leading to complicated mechanical structure and torque density sacrifice. To address this issue, a new relieving-dc-saturation hybrid excitation Vernier machine is proposed in this article, which integrates good torque density and bidirectional flux control within a simple and brushless structure. The key is to artificially construct reluctance effect in a consequent-pole Vernier permanent magnet machine (CP-VPMM) by introducing extra dc field excitation equipped with the relieving-dc-saturation ability. In this way, the advantages of bidirectional flux control in stator-dc-excited reluctance machine and good torque density in CP-VPMM are well combined in this topology, making it especially suitable for multimode starter generator application. In this article, the machine structure and its design mechanism are introduced, with its electromagnetic performance evaluated by the finite-element simulation. A prototype is manufactured and tested. Experiment results verify the feasibility of this new topology.
机译:有益于灵活的磁通控制和短路耐受能力,混合励磁机是一种用于混合动力电动汽车推进器的新兴启动器解决方案。然而,为了实现传统的永磁机中无刷混合动力设计,通常采用三维磁路,导致机械结构复杂和扭矩密度牺牲。为了解决这个问题,在本文中提出了一种新的缓解-DC饱和混合励磁Vernier机器,其在简单而无刷的结构内集成了良好的扭矩密度和双向通量控制。关键是通过引入配备有缓解-DC饱和能力的额外直流场励磁来人为地构建在随后的极值游标永磁机(CP-VPMM)中的不情愿效应。以这种方式,在该拓扑中,在定子-DC激发磁阻机中的双向通量控制和CP-VPMM中的良好扭矩密度的优点在这种拓扑中良好地结合,使其特别适用于多模启动发生器应用。在本文中,引入了机器结构及其设计机制,其电磁性能通过有限元模拟评估。制造和测试原型。实验结果验证了这种新拓扑的可行性。

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