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Prediction of efficiency-optimized salient-pole synchronous machines' operating range using a coupled numerical-analytical method

机译:耦合数值分析方法预测效率优化的凸极同步电机的工作范围

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In this paper, a novel method for predicting the torque-speed characteristics of salient-pole synchronous machines (SPSM) is presented. These characteristics are commonly used as the basis for evaluating drives with variable operating ranges, e.g. traction drives for electric and hybrid electric vehicles. Such vehicles are often powered by permanent magnet synchronous machines (PMSM) which contain economically challenging rare earth materials. An interesting alternative to PMSMs are electrically excited synchronous machines which feature conventional materials and offer various advantages over PMSMs, such as lower losses in field weakening operation and the possibility to control the field excitation. To evaluate the use of SPSMs for different areas of application with wide operating ranges, a fast and precise method for prediction of the torque-speed characteristics is needed. For this reason a coupled numerical-analytical calculation method has been developed, combining the advantages of both approaches. The method is implemented into two software tools with different objectives. The calculation results of these two tools are compared to measurements of an industrial SPSM.
机译:本文提出了一种新的凸极同步电机转矩速度特性预测方法。这些特性通常用作评估具有可变工作范围(例如,工作范围)的驱动器的基础。电动和混合动力电动汽车的牵引驱动器。这种车辆通常由永磁同步电机(PMSM)供电,永磁同步电机包含经济上具有挑战性的稀土材料。 PMSM的一个有趣替代方案是电激励同步电机,该电机具有常规材料,并且具有优于PMSM的各种优势,例如,在磁场弱化操作中损失较小,并且可以控制励磁。为了评估SPSM在宽工作范围的不同应用领域中的使用,需要一种快速而精确的方法来预测转矩-速度特性。因此,结合了两种方法的优点,开发了一种耦合的数值分析计算方法。该方法被实现为具有不同目标的两个软件工具。将这两个工具的计算结果与工业SPSM的测量结果进行比较。

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