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首页> 外文期刊>IEEE Transactions on Industry Applications >Design and Evaluation of a Variable-Flux Flux-Intensifying Interior Permanent-Magnet Machine
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Design and Evaluation of a Variable-Flux Flux-Intensifying Interior Permanent-Magnet Machine

机译:变通量磁通增强型内部永磁电机的设计与评估

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摘要

This paper presents a design approach for interior permanent-magnet (IPM) machines with variable-flux characteristics using low-coercive-force magnets for improved efficiency and extended operating speed range. A flux-intensifying IPM type with $L_{d} > L_{q}$ is used in the design due to positive $I_{d}$ operation and reduced loaded $I_{q}$ effects. Design considerations of machine structures and variable-flux machine attributes are discussed. In addition, leakage flux in a rotor is particularly designed to also obtain another flux-varying capability. Evaluation of the designed machine is provided by finite-element analysis simulations and experiments on a proof-of-principle machine. The designed machine shows benefits in increasing efficiency and speed range in a low-torque region when variable magnetization control of the low-coercive-force magnets or the design of the leakage flux proposed in this paper is implemented.
机译:本文提出了一种使用低矫顽力磁体的具有可变通量特性的内部永磁体(IPM)机器的设计方法,以提高效率并扩展运行速度范围。设计中使用$ L_ {d}> L_ {q} $的通量增强IPM类型,这是由于$ I_ {d} $的正运算和减小的$ I_ {q} $负载效应。讨论了机器结构和可变通量机器属性的设计注意事项。另外,转子中的漏磁通被特别设计为还获得另一种改变磁通的能力。通过原理验证机器上的有限元分析模拟和实验,可以对设计的机器进行评估。当实施本文提出的低矫顽力磁体的可变磁化控制或漏磁通设计时,所设计的机器在提高低扭矩区域的效率和速度范围方面显示出优势。

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