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Real-time simulation of scaled propulsion unit for light electric vehicles

机译:轻型电动汽车缩放推进装置的实时模拟

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This paper presents the implementation in a real-time simulation the Buckingham Pi theorem scaling method applied to a small surface-mounted permanent-magnet synchronous motor (PMSM) and a low-power battery pack. The goal is the entire system to behave as a light electric vehicle traction motor of 9 kW with a power supply of 652 Wh. In order to determine the optimum size of the motor and the battery pack, this method is a valuable tool. This scaling flexibility can be used to build a relatively low-cost test bench where a propulsion unit can be tested for different motors and batteries, using the same components but with different scaling gains. The scaling method is applied to calculate the appropriate scaling gains. For the PMSM traction motor, the field-oriented control is applied. The models of the control PMSM and the battery are built using MATLAB/Simulink and converted into a dynamic-link library file in order to be uploaded into the real-time processor of the Embedded Controller NI PXIe-8135 2.3 GHz Quad-Core. Different simulation scenarios are applied using NI VeriStand. In LMS Amesim software, a model for the vehicle was built. In the model, the traction motor used is the scaled PMSM and the power supply is the scaled battery. For the complete vehicle, the urban dynamometer driving schedule was applied to test the complete system.
机译:本文介绍了实时仿真中的实现,施加到小型表面安装的永磁同步电动机(PMSM)和低功耗电池组的Buckingham PI定理缩放方法。目标是整个系统,以表现为9 kW的光电动车辆牵引电动机,电源为652wh。为了确定电机和电池组的最佳尺寸,该方法是有价值的工具。这种缩放灵活性可用于构建相对低成本的测试台,其中可以使用相同的组件对不同的电动机和电池进行推进单元,但具有不同的缩放增长。缩放方法应用于计算适当的缩放增量。对于PMSM牵引电动机,应用面向现场的控制。控制PMSM和电池的模型使用MATLAB / Simulink构建,并转换为动态链接库文件,以便上传到嵌入式控制器NI PXIe-8135 2.3 GHz四核的实时处理器。使用NI Veristand应用不同的仿真方案。在LMS Amesim软件中,建立了车辆的模型。在该模型中,所使用的牵引电机是缩放的PMSM,电源是缩放电池。对于完整的车辆,应用城市测力计驾驶计划来测试完整的系统。

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