An approach to improve battery run-time in mobile applications with supercapacitors

L. Palma, P. Enjeti, J. Howze
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引用次数: 32

Abstract

In this paper an approach to improve battery run-time in mobile applications with supercapacitors is explored. The performance of a battery-supercapacitor combination is analytically described using simplified equivalent circuit models. It is shown that there is an overall reduction in the internal losses and this translates into increased run-time. Three possible approaches are explored: (a) supercapacitors connected directly across the battery; (b) battery-inductor-supercapacitor connection; and (c) supercapacitor, and battery connected via a DC-DC converter. Analytical models, simulation and experimental results on a typical laptop computer are presented. These results show an increase in runtime of 4-12% is achievable. Also from these results it is shown that the use of a DC-DC converter appears to be a cost effective option, since it allows the use of reduced number of capacitors while maintaining a comparable performance.
一种利用超级电容器改善移动应用中电池运行时间的方法
本文探讨了一种利用超级电容器改善移动应用中电池运行时间的方法。用简化的等效电路模型对电池-超级电容器组合的性能进行了解析描述。结果表明,内部损失总体上减少了,这转化为增加了运行时间。研究人员探索了三种可能的方法:(a)在电池上直接连接超级电容器;(b)电池-电感-超级电容器连接;(c)超级电容器和通过DC-DC转换器连接的电池。给出了典型笔记本电脑的分析模型、仿真和实验结果。这些结果表明,运行时间增加4-12%是可以实现的。此外,从这些结果中可以看出,使用DC-DC转换器似乎是一种具有成本效益的选择,因为它允许使用减少数量的电容器,同时保持相当的性能。
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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