Present and future applications of supercapacitors in electric and hybrid vehicles

A. Burke, Hengbing Zhao
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引用次数: 47

Abstract

This paper is concerned with supercapacitors (electrochemical capacitors) and their applications in electric drive vehicles in place of or in combination with batteries. The electric drive vehicles considered are hybrid vehicles and fuel cell vehicles. The first section of the paper presents recent test data for advanced proto-type devices. The data for the new carbon/carbon device from Skeleton Technologies showed an energy density of 9 Wh/kg and 95% efficient power capability of 1730 W/kg. Both of these characteristics are significantly better than those of commercially available devices. Test data are shown for a hybrid supercapacitor from Vunasko that has an energy density greater than 30 Wh/kg and a 95% efficient power capability of 3120 W/kg. This device has the best performance of any supercapacitor device tested at TIC Davis to date. Various vehicle applications of supercapacitors have been reviewed in detail. Simulation results are presented for light duty vehicles using supercapacitors in place of lithium batteries in hybrid and fuel cell vehicles. It was found in all cases that the vehicles using the supercapacitors had the same as or better performance than those using batteries and in general were more efficient. The cost of supercapacitors compared to lithium batteries was discussed briefly. It was shown that when one recognizes that the energy stored in the capacitors is less than 1/10 that in the batteries for hybrid applications, the price of supercapacitors needs to decrease to about .5.1 cent Farad for capacitors to be cost competitive with high power batteries at $500-700/kWh. In addition, there is a good possibility that the life of the capacitors would be equal to that of the hybrid vehicles.
超级电容器在电动和混合动力汽车上的现状和未来应用
本文介绍了超级电容器(电化学电容器)及其在电力驱动车辆中代替电池或与电池结合使用的应用。考虑的电动汽车是混合动力汽车和燃料电池汽车。论文的第一部分介绍了先进原型装置的最新测试数据。Skeleton Technologies的新碳/碳装置的数据显示,能量密度为9 Wh/kg, 95%的有效功率容量为1730 W/kg。这两个特性都明显优于市售设备。Vunasko的混合超级电容器的测试数据显示,其能量密度大于30 Wh/kg, 95%的有效功率容量为3120 W/kg。该设备具有迄今为止在TIC Davis测试的任何超级电容器设备的最佳性能。综述了超级电容器在汽车上的各种应用。给出了在混合动力汽车和燃料电池汽车中使用超级电容器代替锂电池的轻型汽车的仿真结果。研究发现,在所有情况下,使用超级电容器的车辆与使用电池的车辆具有相同或更好的性能,并且总体上效率更高。简要讨论了超级电容器与锂电池的成本比较。研究表明,当人们认识到电容器中储存的能量不到混合应用电池的1/10时,超级电容器的价格需要降低到约0.5.1美分法拉,电容器才能在500-700美元/千瓦时的成本上与高功率电池竞争。此外,电容器的寿命很有可能与混合动力汽车的寿命相等。
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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