Design Improvement and Comparison of Hybrid Excitation FSM Using Segmental Rotor

H. Ali, E. Sulaiman, M. Jenal, F. Amin, I. Ali, Asadullah
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Abstract

In the recent ages, Aircrafts and airplanes are furnished by electrical equipment’s are distinguished as all electric aircraft (AEA). By meant for aerospace thrust method, where, electrical drives deliver higher torque densities, which are foremost for the feasibility of direct-drive electrical impulsion of airplane applications. Due to these reasons, in recent, a new machine has been familiarized in last decade and known as flux switching machine (FSM). FSMs exhibit all flux producing sources on stator side with single piece robust structure of rotor. FSMs are divided in to three categories, which are, 1) permanent magnet PM FSM, 2) field excitation FE FSM and 3) hybrid excitation HE FSM. PMFSM and FEFSM contain PMs and FE coils for their flux producing sources separately, whereas both PMs and FE coils are used in HEFSM for excitation sources. These machines have shown high efficiency and higher torque-to-weight ratios throughout research in the last decade. The challenge of designing a machine appropriate for these application goes beyond the electromagnetic designs and the mechanical designs are much deeper than traditional designs. Hence, in this paper, the design improvement and comparison of topologies of segmented rotor hybrid excitation (HE) FSM are presented for aircraft applications. PMs and field FE coils are used as primary and secondary magnetic flux producing sources on the stator core respectively. Besides, the magnetic performances of various segmented rotor HE-FSMs at different positions of PMs are presented, analyzed and compared based on the 2D finite element analysis (FEA) using JMAG ver.14
分段转子混合激励FSM的设计改进与比较
近年来,由电气设备提供的飞机和飞机被称为全电动飞机(AEA)。在航空航天推力方法中,电力驱动提供更高的扭矩密度,这对于飞机应用的直接驱动电脉冲的可行性至关重要。由于这些原因,近十年来,人们熟悉了一种新的机器,即磁通开关机(FSM)。fsm的所有磁通源均集中在定子侧,转子为单片坚固结构。FSM分为三类:1)永磁永磁FSM; 2)场激励FE FSM; 3)混合激励HE FSM。PMFSM和FEFSM分别包含pm和FE线圈作为其磁通源,而在hemfsm中使用pm和FE线圈作为励磁源。在过去十年的研究中,这些机器显示出高效率和更高的扭矩重量比。设计适合这些应用的机器的挑战超越了电磁设计,机械设计比传统设计要深刻得多。因此,本文提出了用于飞机的分段转子混合激励(HE) FSM的设计改进和拓扑结构比较。在定子铁心上分别采用永磁线圈和磁场磁场线圈作为一次磁通源和二次磁通源。此外,基于JMAG ver.14软件的二维有限元分析(FEA),对各转子分段he - fsm在电机不同位置的磁性能进行了分析和比较
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