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Emulating On-Road Operating Conditions for Electric-Drive Propulsion Systems

机译:模拟电动推进系统的公路运行条件

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摘要

This paper provides a new approach for emulating road load conditions for an electric-drive vehicle (EDV) system on a test bench setup consisting of a drive motor (DM) connected to a dynamometer. Two different methods of EDV emulation are discussed, which are based on a predefined drive cycle and unpredictable driving behavior. The effect of total vehicle inertia is considered for both scenarios, and a control scheme is developed for each case based on vehicle equivalent rotational inertia. This method of EDV emulation not only takes into account all of the stress imposed on the DM due to vehicle inertia effect, but also allows electric vehicle emulation for any standard drive cycle, as well as undefined driving scenarios. Simulations are conducted for each case using a MATLAB/Simulink test bench model, and the results are validated using ADVISOR, a well-proven software package, to confirm the effectiveness of the proposed method. To investigate hardware-in-the-loop real-time performance, each method is applied to the experimental test platform, and the accuracy of the experimental results is compared to the results obtained from simulation.
机译:本文提供了一种新方法,可以在由安装到测功机的驱动电机(DM)组成的测试台上模拟电动车辆(EDV)系统的道路负载情况。讨论了两种不同的EDV仿真方法,它们基于预定义的驾驶周期和不可预测的驾驶行为。在两种情况下都考虑了总车辆惯性的影响,并根据车辆等效转动惯量为每种情况开发了一种控制方案。这种EDV仿真方法不仅考虑了由于车辆惯性效应而施加在DM上的所有应力,而且还允许电动车仿真任何标准驾驶循环以及未定义的驾驶场景。使用MATLAB / Simulink测试平台模型对每种情况进行了仿真,并使用成熟的软件包ADVISOR对结果进行了验证,以确认所提出方法的有效性。为了研究硬件在环实时性能,将每种方法应用于实验测试平台,并将实验结果的准确性与从仿真获得的结果进行比较。

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