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Analysis of Novel Hybrid-Magnet-Circuit Variable Flux Memory Machines with Different Magnet Arrangements

机译:具有不同磁体布置的新型混合磁电路可变磁通存储器的分析

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This paper presents two novel hybrid-magnetic-circuit variable flux memory machines (HMC-VFMMs) with different permanent magnet (PM) configurations. The proposed HMC-VFMMs are both characterized by a combination of series and parallel circuit topologies, but with different positions of series and parallel PM branches. The proposed HMC design can combine the merits of wide flux adjustment range in parallel structure and excellent unintentional demagnetization (UD) withstand capability in series structure. The topologies, features and working principles of the proposed HMC-VFMMs with different magnet arrangements are introduced, respectively. The magnetic circuit model is utilized to reveal the underlying working mechanism and performance metrics of the proposed HMC-VFMMs having different PM types. The electromagnetic characteristics of the HMC-VFMMs having radially-magnetized (RM) and circumferentially-magnetized (CM) LCF PM types are evaluated and compared by the finite-element (FE) method. The experiments on a 21-slot/4-pole prototype with RM-structure are carried out to validate the FE analyses.
机译:本文呈现了两种新型混合磁路可变磁通存储器(HMC-VFMMS),具有不同的永磁体(PM)配置。所提出的HMC-VFMMS都是通过串联和平行电路拓扑的组合来表征,但是具有不同的串联位置和平行PM分支。所提出的HMC设计可以将宽磁通调节范围的优点与平行结构和优异的无意的解除磁化(UD)串行结构相结合。介绍了具有不同磁体布置的提出的HMC-VFMM的拓扑,特征和工作原理。磁路模型用于揭示具有不同PM类型的所提出的HMC-VFMM的基础工作机制和性能度量。通过有限元(Fe)方法评估具有径向磁化(RM)和周向磁化(CM)LCF PM类型的HMC-VFMM的电磁特性。采用RM结构进行21插槽/ 4极原型的实验以验证FE分析。

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