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Detent Force Analysis and Optimization for Vertical Permanent-magnet Linear Synchronous Motor with Fractional-slot Windings

机译:具有分数槽绕组的垂直永磁线性同步电动机的阻力力分析与优化

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—This paper investigates the detent force modeling and optimization of a iron-core type 16-pole 15-slot permanent magnet linear synchronous motor (PMLSM) for ropeless elevator applications. Variable network non-linear magnetic equivalent circuit (VNMEC) model is established to predict the detent force of PMLSM. The topology structure of equivalent magnetic circuit is developed and the permeance are derived and calculated. The end effect of two end teeth is essential for detent force analysis and it is focused in the modeling. Magnetic saturation of primary tooth also is taken into account and nonlinear permanence is calculated. Some 3-D finite-element numerical calculations are used to validate the feasibility of the proposed method. Then proposed VNMEC is employed to calculate and optimize the detent force considering the end tooth dimensions. In final, experimental results are further used to verify the validation of proposed model.
机译:- 这篇论文研究了铁芯型16极15槽永磁线性同步电动机(PMLSM)的制动力建模和优化,用于无绳电梯应用。建立可变网络非线性磁性等效电路(VNMEC)模型以预测PMLSM的阻力。开发了等效磁路的拓扑结构,渗透和计算了渗透性。两端牙齿的最终效果对于制动力分析至关重要,并且它的重点是在建模中。还考虑原牙的磁饱和度,并计算非线性持久性。一些3-D有限元数值计算用于验证所提出的方法的可行性。然后采用所提出的VNMEC来计算和优化考虑到末端齿尺寸的制动力。在最终的情况下,实验结果进一步用于验证所提出的模型的验证。

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