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Study of light electric vehicles propulsion solutions by means of finite element method based co-simulations

机译:基于有限元法的共模借用电动汽车推进溶液研究

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The paper deals with the analysis of two solutions for light electric vehicles propulsion units. The propulsion machines taken into study are the switched reluctance and variable reluctance synchronous machines. Variable reluctance machines were chosen because there are cheep and reliable machines, these being key points for such applications. The analysis is performed by means of finite element method program coupled with MATLAB-Simulink in order to simulate the machine controlled by its electronic converter. The co-simulation is chosen in order to create realistic simulation conditions for both machines. The propulsion unit in study can be used for light electric vehicles, in particular for an electric vehicle used for people with disabilities. In the paper the two possible propulsion solutions are analyzed and compared, emphasizing benefits and drawbacks for each of them. This study will help designers in future decisions to be taken when the proper solution for such applications has to be selected. The study is focused on the torque development and machines performances point of view.
机译:本文涉及分析光电汽车推进装置的两种解决方案。采用研究的推进机是开关磁阻和可变磁阻同步机。选择可变磁阻机器,因为有吱吱声和可靠的机器,这些是这种应用的关键点。通过与MATLAB-SIMULINK耦合的有限元方法程序进行分析,以模拟由其电子转换器控制的机器。选择共模,以便为两台机器创造现实的仿真条件。研究中的推进单元可用于轻型电动车辆,特别是对于用于残疾人的电动车辆。在本文中,分析并比较了两种可能的推进溶液,强调每一个的益处和缺点。本研究将帮助设计师在未来的决定中,当必须选择此类应用程序的正确解决方案时。该研究专注于扭矩开发和机器表演的观点。

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