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Multi-Step Transmission Effect on Interior Permanent Magnet Synchronous Motor for Electric Vehicle due to Winding Connection Method

机译:绕组连接法对电动汽车内装永磁同步电动机的多级传动效应

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Recently, intransitive industrial research has gradually changed the main drive source as an electric motor from the engine due to environmental and resource exhaustion problems. It is very important to increase driving range per charge of electric vehicle. Expansion of the average high efficiency area of electric vehicle is more important than maximum efficiency point. Electric vehicle do not use mechanical transmission unlike a conventional combustion engine vehicle. Shifts are required to increase average efficiency. In this paper, we have studied the improvement of the average efficiency of the interior permanent magnet synchronous motor (IPMSM) for traction by applying the electromagnetic changeover of the stator winding such as method of the number of serial turns per a phase and wye-connection at low speed and delta-connection at high speed switching method and parallel branches conversion method through the finite element method.
机译:最近,由于环境和资源枯竭的问题,不介入工业研究逐渐改变了主要驱动源作为发动机的电动机。增加电动汽车每次充电的续驶里程非常重要。电动汽车的平均高效率区域的扩展比最大效率点更重要。电动车辆不像传统的内燃机车辆那样使用机械变速器。需要进行换档以提高平均效率。在本文中,我们研究了通过应用定子绕组的电磁转换(例如每相串联匝数和星形连接的方法)来提高内部永磁同步电动机(IPMSM)牵引平均效率的方法低速时采用三角形连接,高速时采用三角形连接方法,并通过有限元方法进行并行分支转换。

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