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Calculation of nonlinear flux linkage and torque for permanent magnet DC motors

机译:永磁直流电动机的非线性磁链和转矩的计算

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This paper presents a virtual rapid analysis model (VRAM) replacing the conventional reduced order systems model for physical value calculation of permanent magnet DC brush motors. The VRAM accomplishes calculations while considering magnetic circuit saturation. Dynamic coil (current, voltage, flux linkage) and motor values (current, voltage, speed and torque) are calculated quickly and with high accuracy. In former research, the VRAM utilized 1D look-up tables to calculate each coil's flux linkage, whereas this paper investigates enhanced magnetic circuit computation with 2D tables. This new method enables the virtual work principle to compute the torque more accurately for high motor currents. Nonlinear flux linkage and torque values are almost identical to validated 3D finite element analysis, therefore verifying the model's accuracy. The VRAM can be used to optimize nonmagnetic parameters, determine torque curves or develop control algorithms. The VRAM's relative calculation speed versus conventional methods is an inexpensive alternative for research and development.
机译:本文提出了一种虚拟快速分析模型(VRAM),它代替了常规的降阶系统模型来计算永磁直流有刷电动机的物理值。 VRAM在考虑磁路饱和的同时完成计算。动态线圈(电流,电压,磁链)和电动机值(电流,电压,速度和转矩)可以快速,高精度地计算出来。在以前的研究中,VRAM利用一维查找表来计算每个线圈的磁链,而本文研究了利用二维表来增强磁路计算的方法。这种新方法使虚拟工作原理能够针对大电机电流更准确地计算扭矩。非线性磁链和扭矩值与经过验证的3D有限元分析几乎相同,因此可以验证模型的准确性。 VRAM可用于优化非磁性参数,确定扭矩曲线或开发控制算法。与传统方法相比,VRAM的相对计算速度是研发的廉价替代方案。

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