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Current hybrid-electric powertrain architectures:Applying empirical design data to life cycle assessment and whole-life cost analysis

机译:当前的混合动力动力总成体系结构:将经验设计数据应用于生命周期评估和整个生命周期成本分析

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摘要

The recent introduction of hybrid-electric powertrain technology has disrupted the automotive industry, causing significant powertrain design divergence. As this radical powertrain innovation matures, will hybrid vehicles dominate the future automotive market and does this represent a positive shift in the environmental impact of the industry? The answer to this question is sought within this paper. It seeks to take advantage of the position that the industry has reached, replacing previous theoretical studies with the first extensive empirical models of life cycle emissions and whole-life costing. A comprehensive snapshot of today’s hybrid market is presented, with detailed descriptions of the various hybrid powertrain architectures. Design data has been gathered for 44 hybrid passenger cars currently available in the US. The empirical data is used to explore the relative life cycle greenhouse gas emissions and whole-life costing of different hybrid powertrain architectures. Potential dominant designs are identified and their emissions are shown to be reduced. However, both the emissions and economic competitiveness of different hybrid powertrains are shown to vary significantly depending on how the vehicle is used.
机译:混合动力电动动力总成技术的最新引入已扰乱了汽车工业,导致了动力总成设计上的重大分歧。随着动力总成创新技术的不断成熟,混合动力汽车是否会在未来的汽车市场上占据主导地位,这是否代表着该行业对环境的积极影响?在本文中寻求该问题的答案。它试图利用该行业所处的位置,用生命周期排放和整个生命成本的第一个广泛的经验模型代替以前的理论研究。呈现了当今混合动力市场的全面概况,并详细描述了各种混合动力总成架构。已经收集了目前在美国可用的44辆混合动力乘用车的设计数据。经验数据用于探索不同混合动力总成架构的相对生命周期温室气体排放量和整个生命周期成本。确定了潜在的主导设计,并证明了它们的排放减少了。然而,不同的混合动力总成的排放和经济竞争力均显示出显着变化,这取决于车辆的使用方式。

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