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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >Function Development With an Electric-Machine-in-the-Loop Setup: A Case Study
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Function Development With an Electric-Machine-in-the-Loop Setup: A Case Study

机译:电动机器在环设置的功能开发:一个案例研究

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摘要

In order to reduce automotive development times and costs, particular development tasks are rescheduled to earlier program phases (frontloading) by applying hardware-in-the-loop (HiL) tests. However, there is a shortage of studies considering HiL tests for function developments considering the thermal behavior of electric drives. This article shall be a first step toward closing this gap. A real-time co-simulation of a battery electric vehicle and a driver model are developed and connected to an electric traction machine at a laboratory test bench. A thermal derating function is designed and calibrated at this test setup. In particular, linear derating functions with different gradients are implemented and tested for high load performances during a track race, and the trade-off between energy demand and the lap time is determined. Larger gradients of thermal derating functions lead to shorter lap times and higher energy demands. Thus, for this case study, an increase of the gradient of the thermal derating function by a factor of two results in a lap time improvement of 2.3 and a higher energy demand of 4.7. The test results demonstrate how HiL setups offer a favorable testing scenario to calibrate thermal derating functions of electrified powertrains in early development phases.
机译:为了减少汽车开发时间和成本,通过应用硬件在环(HiL)测试将特定的开发任务重新安排到较早的程序阶段(前载)。但是,缺乏考虑HiL测试的功能开发的研究,其中考虑了电驱动器的热行为。本文将是弥合这一差距的第一步。开发了电池电动汽车和驾驶员模型的实时协同仿真,并将其连接到实验室测试台上的电动牵引机。在此测试设置中设计并校准了热降额功能。特别是,在田径比赛期间,针对高负载性能实施并测试了具有不同梯度的线性降额功能,并确定了能量需求与圈速之间的权衡。热降额功能的梯度越大,圈速越短,对能量的需求越高。因此,对于此案例研究,将热降额函数的梯度增加两倍,可以使单圈时间提高2.3,并提高能量需求4.7。测试结果表明,HiL设置如何提供良好的测试方案,以在开发的早期阶段校准电气化动力总成的热降额功能。

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