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Advantages of using supercapacitors and silicon carbide on hybrid vehicle series architecture

机译:在混合动力汽车系列架构上使用超级电容器和碳化硅的优势

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摘要

In recent years enormous growth has taken place in the hybrid vehicle sector; parallel architecture is the most widespread configuration regarding medium size cars. At the same time, storage systems and power electronics have experienced some important innovations. The development of supercapacitors has permitted management of high power with elevated efficiency. Moreover, the availability on the market of silicon carbide components has allowed a significant reduction of power electronic losses. These improvements may challenge the hybrid architecture used in medium size cars nowadays. On one hand, series architecture would relevantly benefit from an electric powertrain efficiency increase, on the other hand, these innovations would generate low benefits in parallel architectures. The aim of this paper is to evaluate electric component average efficiency over different road missions, in order to estimate fuel economy over various working conditions and finally to establish which hybrid configuration is most efficient in vehicle applications.
机译:近年来,混合动力汽车领域发生了巨大的增长。并行架构是有关中型汽车的最广泛配置。同时,存储系统和电力电子技术经历了一些重要的创新。超级电容器的发展已允许以提高的效率管理高功率。而且,市场上可获得的碳化硅部件已经大大降低了功率电子损耗。这些改进可能会挑战当今中型汽车中使用的混合动力架构。一方面,串联架构将从电力传动系统效率的提高中受益,另一方面,这些创新将在并行架构中产生较低的收益。本文的目的是评估不同道路任务下的电气部件平均效率,以估计各种工况下的燃油经济性,并最终确定哪种混合动力配置在车辆应用中最有效。

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