Lithium-ion battery pack arrays for lifespan enhancement

Aramis Pérez, Vanessa L. Quintero, Heraldo Rozas, Diego Jimenez, Francisco Jaramillo, M. Orchard
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引用次数: 7

Abstract

Depending on the application, power and energy requirements may differ significantly and, most likely, a single lithium-ion cell will not suffice. Battery packs offer cell interconnections that allow to obtain several possible voltage and discharge current ratings. Typically, the battery packs are designed to meet the specifications of the application within a certain range, and sometimes they are oversized just to consider degradation effects that may affect battery performance in the long term. However, operating a battery pack at different ranges for the state-of-charge and temperature, among other variables, might have a major impact on its lifespan. This paper, introduces a technique on how a modular battery pack can be designed in terms of extending the lifespan of the energy storage device, where each battery module has different capacity ratings. The available energy on each module of the battery pack is constrained and controlled to meet the electric demand, ensuring optimal ranges for the state-of-charge. Also, the article shows that it is possible to meet energy requirements with the modular battery pack at a lower cost than just a single module battery pack.
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用于延长寿命的锂离子电池组阵列
根据不同的应用,功率和能量需求可能会有很大的不同,而且很可能单个锂离子电池是不够的。电池组提供电池互连,允许获得几种可能的电压和放电电流额定值。通常,电池组的设计是为了在一定范围内满足应用的规格,有时它们的尺寸过大只是为了考虑可能影响电池长期性能的退化效应。然而,在不同的充电状态和温度范围内操作电池组,以及其他变量,可能会对其使用寿命产生重大影响。本文介绍了如何设计模块化电池组的技术,以延长储能设备的使用寿命,其中每个电池模块具有不同的额定容量。电池组的每个模块上的可用能量受到约束和控制,以满足电力需求,确保充电状态下的最佳范围。此外,文章还表明,与单个模块电池组相比,模块化电池组可以以更低的成本满足能源需求。
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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