Battery voltage optimization of a variable DC bus voltage control powertrain for medium duty delivery trucks for various drive cycles

Ali Najmabadi, Kieran Humphries, B. Boulet, T. Rahman
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引用次数: 2

Abstract

One of the most commonly used electric drive topologies for electric vehicles is that of a permanent magnet motor powered by a two-level inverter and a high voltage battery (system S1). An alternative to this topology is to replace the high voltage battery with a low voltage battery and a DC-DC boost converter (system S2). Previous work has shown that such a design is beneficial for vehicles that usually follow daily drive cycles with low average speed and many start and stop cycles. One category of vehicles that meet these criteria are medium duty delivery trucks. It has been demonstrated that the target modulation index of system S2 can be optimized in order to minimize the energy consumption over a specific drive cycle. This paper focuses on the effect of the battery voltage on system efficiency and demonstrates that the battery voltage can be used as an optimization parameter along with the previously studied target modulation index.
中型货车不同驱动循环下可变直流母线电压控制动力系统的电池电压优化
电动汽车最常用的电驱动拓扑之一是由双电平逆变器和高压电池供电的永磁电机(系统S1)。该拓扑的另一种替代方案是将高压电池替换为低压电池和DC-DC升压转换器(系统S2)。先前的工作表明,这种设计对于通常遵循低平均速度和多次启动和停止循环的日常驾驶循环的车辆是有益的。符合这些标准的一类车辆是中型货运卡车。研究表明,可以对系统S2的目标调制指数进行优化,以使特定驱动周期内的能耗最小化。本文重点研究了电池电压对系统效率的影响,并证明了电池电压可以与先前研究的目标调制指标一起作为优化参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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