单相直线起动永磁同步电动机的磁降估算

Liang Fang, Byeong-Hwa Lee, Jung-Pyo Hong, H. Nam
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引用次数: 9

摘要

本文介绍了在不影响电机转矩和效率性能的前提下,巧妙地指导单相线启动永磁电机(LSPMM)磁体减速设计的有效方法。通过改善独特的混合转矩特性,提高磁阻转矩与磁体转矩的平衡比,补偿了磁体转矩的减少。增加的磁阻转矩也有利于电机的效率性能。在现有LSPMM模型的基础上,提出了一种“转矩效率图”仿真方法,根据假设的显着比估计合适的磁体减速。然后,在估计磁体减少量的情况下,在给定转矩和效率约束下,对柔性双层内部永磁(IPM)转子结构进行优化。本文采用有限元分析与等效电路法相结合的方法对LSPMM的特性和性能进行了计算。通过减少磁体使用量的lspmm测试,验证了基于转矩效率图估计磁体减少量的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estimation of Magnet Reduction in Single-Phase Line-Start Permanent Magnet Synchronous Motor
This paper describes an efficient approach for skillfully guiding the magnet reduction design in a single-phase line-start permanent magnet motor(LSPMM) without worsening motor torque and efficiency performances. The relevant decrease of magnet torque due to magnet reduction is compensated by improving the unique hybrid torque characteristic, that enhancing the balance ratio of reluctance torque to magnet torque. The increased reluctance toque also benefits to motor efficiency performance. Based on an existing LSPMM model, a simulation method, "torque-efficiency map" is proposed to estimate proper reduction of magnet according to assumed saliency ratio. Then, with estimated reduced amount of magnet, a flexible double-layer interior-PM(IPM) rotor structure is optimized with given torque and efficiency constrains. In this paper, the finite element analysis(FEA) combined with equivalent circuit method is used to calculate the LSPMM characteristics and performances. The validity of estimation of magnet reduction based on torque-efficiency map is verified by testing LSPMMs with reduced magnet usage.
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