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首页> 外文期刊>Electric Power Applications, IET >Twelve-slot two-saliency variable reluctance resolver with non-overlapping signal windings and axial flux excitation
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Twelve-slot two-saliency variable reluctance resolver with non-overlapping signal windings and axial flux excitation

机译:带有不重叠信号绕组和轴向磁通激励的十二槽二凸极可变磁阻旋转变压器

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摘要

In this study, a new 12-slot two-saliency variable reluctance (VR) resolver with simple non-overlapping windings is proposed. The excitation winding in the proposed resolver is replaced with one axial coil that is perpendicular to the signal windings. Both distributed and non-overlapping concentric windings with uniform coil turns are used. The rotor has two upper and lower saliencies located in front of each other. The shape and width of each saliency are determined based on the optimisation. Compared with conventional 12-slot VR resolvers, the proposed resolver has a simpler rotor structure and the advantages of two-saliency resolvers against eccentricity, absolute output position, and higher accuracy. The operation principle of the proposed resolver is analytically shown. Then, a three-dimensional time-stepping finite-element method (FEM) is used for the design, analysis, and optimisation of the proposed sensor. After optimisation, a prototype of the most accurate resolver is built. The good agreement obtained between the FEM and the practical results verifies the design and optimisation process.
机译:在这项研究中,提出了一种新的带有简单非重叠绕组的12槽两凸极可变磁阻(VR)旋转变压器。所提出的旋转变压器中的励磁绕组被一个垂直于信号绕组的轴向线圈代替。具有均匀线圈匝数的分布式和非重叠同心绕组都可以使用。转子具有位于彼此前面的两个上凸度和下凸度。每个显着性的形状和宽度是根据优化确定的。与常规的12槽VR分解器相比,所提出的分解器具有更简单的转子结构,以及具有两个凸极的分解器,可防止偏心,绝对输出位置和更高的精度。分析地显示了所提出的分解器的工作原理。然后,将三维时步有限元方法(FEM)用于所设计传感器的设计,分析和优化。经过优化后,将构建最精确的解析器原型。有限元法和实际结果之间的良好一致性验证了设计和优化过程。

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