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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Novel Hybrid-Magnetic-Circuit Variable Flux Memory Machine
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A Novel Hybrid-Magnetic-Circuit Variable Flux Memory Machine

机译:一种新型混合磁路可变磁通存储器

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摘要

This article proposes a novel hybrid-magnetic-circuit variable flux memory machine (HMC-VFMM) by combining series and parallel hybrid magnet structures. Thus, the synergies of wide flux regulation range in parallel type and excellent on-load demagnetization withstand capability in series type can be simultaneously obtained with the proposed HMC design. Meanwhile, two sets of the permanent magnets (PMs) with high coercive force and low coercive force (LCF), i.e., NdFeB and AlNiCo PMs, are employed to achieve high torque density and energy-efficient magnetization state adjustment. The topologies and tradeoffs of traditional parallel and series VFMMs are addressed first. In addition, the structure evolution, features and operating principle of the proposed HMC-VFMM are described, respectively. A simplified equivalent magnetic circuit is modeled to reveal the performance improvement of the machine. Then, the design improvements with q-axis barriers are presented to elevate the LCF PM working point for preventing the on-load demagnetizing effect, while maintaining the torque capability. The electromagnetic characteristics of the HMC design are investigated and compared with the parallel/series counterparts. Finally, the experiments have been carried out to validate the finite-element analyses.
机译:本文通过组合串联和并联混合磁体结构提出了一种新型混合磁路可变磁通存储器(HMC-VFMM)。因此,可以通过所提出的HMC设计同时地获得并联型和串联型串联型串联的载荷去磁的宽焊磁范围耐受能力的协同作用。同时,采用两组具有高矫顽力和低矫顽力(LCF)的永磁体(PMS),即NdFeB和Alnico PMS,以实现高扭矩密度和节能磁化状态调节。传统平行和系列VFMMS的拓扑和权衡首先得到解决。此外,分别描述了所提出的HMC-VFMM的结构演化,特征和操作原理。简化的等效磁路模拟以揭示机器的性能改进。然后,提出了利用Q轴屏障的设计改进,以提升LCF PM工作点,以防止负载退磁效果,同时保持扭矩能力。研究了HMC设计的电磁特性,并与并联/串联对应物进行了比较。最后,已经进行了实验以验证有限元分析。

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