首页> 外文会议>2019 IEEE 5th Conference on Knowledge Based Engineering and Innovation >Cogging Torque Reduction of 6/13 Hybrid Excited Flux Switching Machine with Rotor Step Skewing
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Cogging Torque Reduction of 6/13 Hybrid Excited Flux Switching Machine with Rotor Step Skewing

机译:带转子阶偏的6/13混合励磁磁通切换机的齿槽转矩减小

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摘要

Hybrid excited flux switching machines (HEFSM) are appropriate candidates for hybrid electric vehicles (HEV) application owing to their high torque/power density, robust rotor structure as well as flux weakening capability by DC excitation windings. However they exhibit relatively high cogging torque due to their high air-gap flux density and their doubly salient structure which is a major problem of employing HEFSM in HEVs application; hence the cogging torque reduction is a required approach in HEFSM design. Due to the relatively simple rotor structure of HEFSM in comparison with stator structure, optimal rotor design techniques are much more preferable to reduce the cogging torque and torque ripple of flux switching machine. In this paper, the rotor step skewing method is employed to reduce cogging torque and torque ripple of 6/13 HEFSM. In order to evaluate the effectiveness of the employed method finite element analysis is employed.
机译:混合励磁通量开关机(HEFSM)由于其高扭矩/功率密度,坚固的转子结构以及直流励磁绕组的弱磁能力而成为混合动力电动汽车(HEV)应用的合适候选者。然而,由于它们的高气隙通量密度和双凸结构,它们表现出相对较高的齿槽转矩,这是在HEV应用中采用HEFSM的主要问题。因此,降低齿槽转矩是HEFSM设计中必需的方法。由于HEFSM的转子结构与定子结构相比相对简单,因此最佳的转子设计技术更可取,以减少磁通量开关机的齿槽转矩和转矩脉动。在本文中,采用转子步进偏斜方法来减小齿槽转矩和6/13 HEFSM的转矩脉动。为了评估所采用方法的有效性,采用了有限元分析。

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