Development of an Ultracapacitor-Based Intermediate Energy Storage System

J. Locker, T. Wolfe
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引用次数: 8

Abstract

In recent years, a number of military applications intended to run from automotive power systems have been developed. Such applications can require pulsed power of several kilowatts at a voltage level of several kilovolts, characteristics that make it impossible to run from such a source. In these applications, an energy storage system can be used to reduce the peak power demand from the automotive batteries and to boost the working voltage to kilovolt levels. The ultracapacitor intermediate energy storage system (UCIS) has been designed to provide an interface between a 24 V, 600 A battery and a 10 kV, 25 kJ capacitor bank. During each of three cycles, the UCIS charges the capacitor bank to 10 kV in two seconds, at which time the load discharges the capacitor bank. This paper includes the development of the UCIS, including modeling results, and system design.
基于超级电容器的中间储能系统的研制
近年来,已经开发了许多旨在从汽车动力系统运行的军事应用。这样的应用可能需要几千瓦的脉冲功率在几千伏的电压水平上,这些特性使得它不可能从这样的电源运行。在这些应用中,储能系统可用于降低汽车电池的峰值功率需求,并将工作电压提高到千伏水平。超级电容器中间储能系统(UCIS)的设计目的是提供24v, 600a电池和10kv, 25kj电容器组之间的接口。在三个周期中的每一个周期中,UCIS在两秒钟内将电容器组充电到10千伏,此时负载将电容器组放电。本文介绍了UCIS的开发过程,包括建模结果和系统设计。
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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