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Comparison of Powertrain Configuration Options for Plug-in HEVs from a Fuel Economy Perspective

机译:燃油经济性的插件HEV动力总成配置选项的比较

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The first commercially available plug-in hybrid electric vehicle (PHEV), the General Motors (GM) Volt, was introduced into the market in mid-December 2010. The Volt uses a series-split powertrain architecture, which provides benefits over the series architecture that typically has been considered for use in electric-range extended vehicles (EREVs). A specialized EREV powertrain, called the Voltec, drives the Volt through its entire range of speed and acceleration with battery power alone and within the limit of battery energy, thereby displacing more fuel with electricity than a PHEV, which characteristically blends electric and engine power together during driving. This paper assesses the benefits and drawbacks of these two different plug-in hybrid electric architectures (series versus series-split) by comparing component sizes, system efficiency, and fuel consumption over urban and highway drive cycles. Based on dynamic models, a detailed component control algorithm was developed for each PHEV. In particular, for the GM Voltec, a control algorithm was proposed for both electric machines to achieve optimal engine operation. The powertrain components were sized to meet all-electric-range, performance, and grade capacity requirements. This paper presents and compares the impact of these two different powertrain configurations on component size and fuel consumption.
机译:第一个可商购的插入式混合动力电动车(PHEV),通用电机(GM)Volt,于2010年12月中旬被引入市场。Volt使用系列 - 拆分动力总成架构,这提供了系列架构的好处通常已经被认为用于电线延长车辆(EREV)。一个称为VOLTEC的专用Erev动力总成,通过其整个速度和单独的电池电量和电池电量的加速度和电池能量极限,从而使电力高于PHEV的燃料,其特征在于将电气和发动机功率置换更多的电池在驾驶期间。本文评估了这两种不同的插件混合动力电动架构(系列与系列分割)的益处和缺点通过比较了城市和公路驱动周期的组件尺寸,系统效率和燃料消耗。基于动态模型,为每个PHEV开发了一种详细的组件控制算法。特别地,对于GM电压,提出了一种用于实现最佳发动机操作的电机的控制算法。动力总成组件尺寸为满足全电范围,性能和等级能力要求。本文介绍并比较了这两种不同动力总成配置对元件尺寸和燃料消耗的影响。

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