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Design and Investigation of Axial Flux Permanent Magnet Synchronous Machine for electric vehicles

机译:电动汽车轴向磁通永磁同步机的设计与研究

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Vehicle emissions explosively increase in the number of vehicles. Therefore, it is essential to find a solution to reduce (or eliminate) pollution of the environment. When public transport (trains, buses and trams) offer ecological (electric) solutions for private transport, the electrification of vehicles is one of the solutions proposed by car manufacturers. Studies show that most of the pollution in urban areas are due to this matter. The Axial Flux and Permanent Magnet Machine (MFAP) represent a serious issue for electric traction because of its high density and mass density of torque. In this article we have designed the permanent flux permanent machine FLP (AFPM), without the TORN NS topology. The purpose of the research is to determine the flow density of the model, especially gaps through a numerical method. Analysis of the slotless machine (AFPM) using the finite element method (FEM). The form of the machine was implemented on the commercial code Maxwell 16.0. The result obtained is illustrated and in the paper and numerical quality is relatively good agreement with those of literature.
机译:车辆排放爆炸性地增加了车辆数量。因此,必须找到减少(或消除)环境污染的解决方案。当公共交通工具(火车,公共汽车和电车)为私人运输提供生态(电动)解决方案时,车辆的电气化是汽车制造商提出的解决方案之一。研究表明,城市地区大部分污染都是由于此事。由于其高密度和扭矩密度,轴向通量和永磁机(MFAP)代表了电牵引的严重问题。在本文中,我们设计了永久性通量永久性机器FLP(AFPM),没有撕裂的NS拓扑。该研究的目的是确定模型的流量密度,尤其是通过数值方法的间隙。使用有限元法(FEM)分析无路放机(AFPM)。机器的形式在商业代码麦克斯韦16.0上实施。所得到的结果示出并在纸张中,与文学人员相对吻合的数值。

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