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Design and Analysis of a New Permeability-Modulated Interior Permanent-Magnet Synchronous Machine

机译:新型渗透调制内部永磁同步机的设计与分析

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In this article, to improve the adjustment ability of air gap flux, a new interior permanent magnet (IPM) synchronous machine with permeability modulation characteristics is proposed for electric vehicles’ (EVs) potential applications. The main trait of the machine structure is that a bridge between the rotor poles is intentionally established, which can produce a smooth magnetic path for the leakage flux. Thus, the flux leakage state can be adjusted by controlling the magnetic saturation of the bridge according to the machine load current. To clarify this feature, the machine performances are investigated by theoretical analysis and finite-element method. Finally, the designed machine is manufactured and its performances are verified by experiments. Both the simulation and experimental results prove that the torque of the proposed machine under loaded conditions can be flexibly adjusted by the magnetic permeability modulation without any complex control strategy.
机译:在本文中,为了提高气隙通量的调节能力,为电动车辆(EVS)潜在应用提出了一种具有渗透性调制特性的新型内部永磁体(IPM)同步机。机器结构的主要特征是有意建立转子杆之间的桥梁,这可以产生用于泄漏通量的平滑磁路。因此,可以通过根据机器负载电流控制桥的磁饱和来调节磁通泄漏状态。为了澄清此功能,通过理论分析和有限元方法来研究机器性能。最后,制造了设计的机器,并通过实验验证了其性能。仿真和实验结果证明,在加载条件下所提出的机器的扭矩可以通过无任何复杂的控制策略的磁导率调节灵活地调节。

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