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Advanced Soft- and Hard-Magnetic Material Models for the Numerical Simulation of Electrical Machines

机译:用于电机数值模拟的高级软磁和硬磁材料模型

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Accurate modeling of soft- and hard-magnetic materials for the numerical simulation of rotating electrical machines is required to allow predictions on the operational characteristics along the torque-speed map, already in the design stage. The full potential of most appropriate material selection and concurrent geometry adaption can only be utilized if models can represent actual material behavior. The accurate prediction of iron losses of soft-magnetic materials for various frequencies and magnetic flux densities, as well as the degradation due to manufacturing is eminent for the design of electrical machines. Therefore, advanced material models need to be adapted and their accuracy examined to further improve the modeling and enable progression. This paper will give an overview of the current modeling approaches applied at the Institute of Electrical Machines for soft- and hard-magnetic materials in the simulation of rotating electrical machines. A case example in the form of a traction drive is presented to which the models are applied. For the machine modeling, the inhouse solver pyMOOSE is utilized. In order to determine the losses with regard to manufacturing processes, the iron-loss model with material degradation is used in combination with a machine simulation scheme of the entire operating range of the machine. Here, various simulation approaches are combined to form the entire computational toolchain to obtain accurate results in the entire operational range.
机译:需要精确的软磁和硬磁材料建模以进行旋转电机的数值模拟,以允许已经在设计阶段就沿着转矩-速度图对运行特性进行预测。只有在模型可以代表实际材料行为的情况下,才可以利用最合适的材料选择和同时进行的几何调整的全部潜力。对于电机的设计,对于各种频率和磁通量密度的软磁材料的铁损以及由于制造引起的退化的准确预测非常重要。因此,需要对高级材料模型进行调整,并检查其准确性,以进一步改善建模并逐步进行。本文将概述电机研究所在旋转电机仿真中对软磁和硬磁材料应用的当前建模方法。给出了采用牵引驱动形式的案例示例。对于机器建模,使用内部求解器pyMOOSE。为了确定制造过程中的损失,将具有材料退化的铁损模型与机器整个工作范围的机器模拟方案结合使用。在此,将各种模拟方法结合起来以形成整个计算工具链,从而在整个操作范围内获得准确的结果。

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