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首页> 外文期刊>Industry Applications, IEEE Transactions on >Self-Sensing Comparison of Fractional Slot Pitch Winding Versus Distributed Winding for FW- and FI-IPMSMs Based on Carrier Signal Injection at Very Low Speed
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Self-Sensing Comparison of Fractional Slot Pitch Winding Versus Distributed Winding for FW- and FI-IPMSMs Based on Carrier Signal Injection at Very Low Speed

机译:基于极低速载波信号注入的FW-和FI-IPMSM的小槽距绕组与分布式绕组的自检测比较

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摘要

This paper analyzes the effects of fractional pitch and distributed winding stators on the self-sensing performance of permanent-magnet machines. Three rotor configurations (i.e., a flux-weakened interior permanent-magnet synchronous machine (IPMSM) and two flux-intensified IPMSMs) and two stator designs (i.e., distributed and concentrated windings) are presented to analyze the cross saturation, secondary saliencies, saturation-induced saliencies, and saliency ratio, depending on the possible rotor and stator configurations. Finite-element modeling has been used to obtain a detailed understanding of the self-sensing performance of these machines.
机译:本文分析了分数螺距和分布绕组定子对永磁电机自感性能的影响。提出了三种转子配置(即磁通弱化的内部永磁同步电机(IPMSM)和两个磁通增强型IPMSM)和两种定子设计(即分布式绕组和集中绕组),以分析交叉饱和,次级显着性,饱和度-引起的显着性和显着性比,取决于可能的转子和定子配置。有限元建模已用于获得对这些机器的自感应性能的详细了解。

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