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Pulsed Elevated Rate Discharge of Electrochemical Energy Storage Devices

机译:电化学储能装置的脉冲高倍率放电

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摘要

A number of electrochemical energy storage devices have been developed and used widely to power portable applications. Lithium-ion batteries are extremely popular for use in portable devices as a result of their high energy density. Despite their high energy density, most commercial off-the-shelf cells are only modestly power dense, limiting them from being used to drive high power or pulsed power applications. Recently, new high power lithium-ion battery technologies such as the Saft VL5U cell have been developed, which are not readily available off the shelf, with power densities as high as 28.5 kW/kg [1] that are an attractive means for driving pulsed power systems. Additionally, advanced energy storage capacitors, such as electric double layer capacitors and lithium-ion capacitors, have been developed with high energy and power densities that also make them a suitable candidate for use in pulsed power applications. Previous research using these types of devices in applications other than as storage in hybrid electric vehicles and renewable energy platforms has been limited. The University of Texas at Arlington is currently engaged in research to understand the limitations of these types of devices and to understand their future potential for use in pulsed high current experiments. A test stand, similar to that of Chen [2], but with a higher electrical action capability, has been developed and used to further characterize the performance of these types of devices when they are discharged at rates 10's to 100's of times their rated C values in pulsed fashion. This paper describes the rationale behind the experiments, the experimental setup developed, and the research progress made thus far.
机译:已经开发了许多电化学能量存储装置并将其广泛用于为便携式应用供电。由于其高能量密度,锂离子电池在便携式设备中非常受欢迎。尽管它们具有高能量密度,但大多数商用现成的电池仅具有适度的功率密度,从而使其无法用于驱动高功率或脉冲功率应用。最近,已经开发出了新的高功率锂离子电池技术,例如Saft VL5U电池,这种技术不易获得,功率密度高达28.5 kW / kg [1],是驱动脉冲驱动的一种有吸引力的方法。电力系统。另外,已经开发出具有高能量和功率密度的先进的储能电容器,例如双电层电容器和锂离子电容器,这也使其成为脉冲功率应用中的合适候选者。以前的研究将这些类型的设备用于混合动力汽车和可再生能源平台中的存储以外的应用领域受到了限制。德克萨斯大学阿灵顿分校目前正在从事研究,以了解这些类型的设备的局限性,并了解它们在脉冲大电流实验中的潜在用途。已开发出一种与Chen [2]类似的试验台,但具有更高的电动作能力,并已用于进一步表征这些类型的设备在以额定C的10到100倍的速率放电时的性能。脉冲形式的值。本文介绍了实验背后的原理,开发的实验装置以及迄今为止的研究进展。

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