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Comprehensive Drive Train Efficiency Analysis of Hybrid Electric and Fuel Cell Vehicles Based on Motor-Controller Efficiency Modeling

机译:基于电动机-控制器效率建模的混合动力电动和燃料电池汽车综合动力传动系统效率分析

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From the point of view of overall hybrid electric vehicle (HEV) and fuel cell vehicle (FCV) drive train efficiency, the research focus is mainly on the efficiency analysis of the power train components, which prove to be an integral part of modern HEV and FCV drive trains. The critical portion of any HEV electrical system consists of a power electronic converter (inverter) and a suitable traction motor. Thus, the efficiency analysis of the inverter/motor is of prime importance for the calculation of the overall efficiency of the drive trains. This paper aims at modeling the efficiencies of the traction motor/controller through efficiency maps. Efficiency maps are a convenient way to represent motor drive systems of large and complex systems, like that of a HEV. The paper uses the advanced vehicle simulator (ADVISOR) software for the simulations of a large-sized car, similar to a Chevy Lumina, over the urban dynamometer-driving schedule and highway fuel economy test drive cycles. Furthermore, the paper investigates the traction motor efficiency maps and consequent overall drive train efficiencies of commercially available Honda Insight and Toyota Prius HEVs. In all the case studies, the aim is to analyze the overall drive train efficiency over the city and highway drive cycles based on the inverter/motor efficiency maps.
机译:从混合动力电动汽车(HEV)和燃料电池汽车(FCV)的总传动效率来看,研究重点主要是动力总成部件的效率分析,事实证明这是现代HEV和HEV不可或缺的一部分。 FCV传动系统。任何HEV电气系统的关键部分均由功率电子转换器(逆变器)和合适的牵引电动机组成。因此,逆变器/电动机的效率分析对于计算传动系统的整体效率至关重要。本文旨在通过效率图对牵引电动机/控制器的效率进行建模。效率图是表示大型和复杂系统(例如HEV)的电动机驱动系统的便捷方法。本文使用先进的车辆模拟器(ADVISOR)软件在城市测功机驾驶时间表和高速公路燃油经济性测试驾驶周期上模拟类似于Chevy Lumina的大型汽车。此外,本文还研究了市售的本田Insight和丰田普锐斯HEV的牵引电机效率图以及由此产生的整体传动系统效率。在所有案例研究中,目标都是基于逆变器/电机效率图来分析整个城市和高速公路行驶周期中的整体传动系统效率。

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