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Comparison of synchronous machine designs with displaced reluctance axis considering losses and iron saturation

机译:考虑损耗和铁饱和的磁阻轴同步电机设计比较

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Synchronous machines with displaced reluctance axis promise improved performance due to the optimized utilization of reluctance and synchronous torque. Their torque characteristics make these machines interesting for applications which mostly require just one operation mode, i.e. motoring or generating, such as traction drives for electric vehicles. First of all, this paper shows that arbitrarily displaced reluctance axes are difficult to realize with pure permanent magnet and pure electrically excited synchronous machines and yield disadvantageous machine properties. In the second part, a hybrid synchronous machine topology which incorporates a displaced reluctance axis is introduced and its conceptual advantages compared to conventional machine designs are shown.
机译:由于磁阻和同步转矩的优化利用,磁阻轴同步的同步电机有望提高性能。它们的扭矩特性使这些机器对于大多数只需要一种操作模式(即电动或发电)的应用非常有趣,例如电动汽车的牵引驱动器。首先,本文表明,使用纯永磁体和纯电励磁同步电机很难实现任意位移的磁阻轴,并且会产生不利的电机性能。在第二部分中,介绍了一种混合同步电机拓扑结构,该拓扑结构包含一个位移磁阻轴,并显示了其与常规电机设计相比的概念优势。

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