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Performance Map Calculation of a Salient-Pole Synchronous Motor with Hairpin Winding

机译:带发夹绕组的凸极同步电动机的性能图计算

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Leveraged by the increasing interest in electrical drives for automotive applications, variable speed drives for vehicle traction have gained more attention recently. However, this industry sector sets challenging demands on the manufacturing process of electric machines regarding scalability, repeatability and total manufacturing time. Hairpin windings are a promising option to meet these requirements. However, since hairpin windings are usually characterized by the use of large solid conductors and a low number of turns per coil, eddy-current effects should be considered. In automotive applications, the operating point an electric motor works on varies considerably. Thus, it is advisable to assess the machine's performance for a range of possible operating points. Performance maps give a clear overview of physical quantities of an electric drive for different steady-state torque-speed operating points. This work will give insight into a workflow developed to calculate performance maps for quantities such as ohmic losses and total efficiency as functions of the demanded operating point numerically. A salient-pole, wound-rotor synchronous machine is chosen as an example traction machine in the analyses. The workflow is used to evaluate the frequency-dependent losses for different points of operation.
机译:利用对用于汽车应用的电驱动器的日益增长的兴趣,用于车辆牵引的变速驱动器近来受到越来越多的关注。然而,该工业部门对电机的制造过程提出了关于可伸缩性,可重复性和总制造时间的挑战性要求。发夹绕组是满足这些要求的有前途的选择。但是,由于发夹式绕组通常的特点是使用较大的实心导体,每个线圈的匝数较少,因此应考虑涡流效应。在汽车应用中,电动机工作的工作点差异很大。因此,建议在一系列可能的工作点上评估机器的性能。性能图清楚地概述了不同稳态转矩-速度工作点下电驱动器的物理量。这项工作将深入研究开发的工作流,以计算诸如欧姆损耗和总效率之类的数量的性能图,以数值形式反映所需的工作点。在分析中选择凸极绕线转子同步电机作为牵引电机的示例。该工作流用于评估不同操作点的频率相关损耗。

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