A Systematic Approach for Rapid Battery State of Charge Measurement and Estimation

Chuan Jiang, Hao Zhou
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Abstract

The rapid development of a wide variety of energy storage devices has given prominence to the importance of battery State of Charge (SOC) measurement techniques. To eliminate power shortage concerns and improve energy efficiency, users cannot know the real-time battery power usage without measuring the remaining battery SOC timely and accurately. This paper proposes a systematic approach on rapid battery SOC measurement and estimation, which includes a reconfigurable control and measurement platform as well as a data-driven model to deal with rapid battery SOC estimation. The data-driven model consists of several intelligent algorithms that can estimate battery SOC using data acquired from pre-defined quick tests. It is demonstrated that the estimation error of this approach is within 3%. More importantly, the SOC estimation results can be obtained in less than one minute.
一种系统的电池电量状态快速测量与估计方法
随着各种储能器件的快速发展,电池荷电状态(SOC)测量技术的重要性日益凸显。为了消除电力短缺的担忧,提高能源效率,用户必须及时准确地测量剩余的电池SOC,才能实时了解电池的使用情况。本文提出了一种系统的电池荷电状态快速测量与估计方法,包括可重构控制与测量平台和数据驱动模型。数据驱动模型由几种智能算法组成,这些算法可以使用从预定义的快速测试中获取的数据来估计电池SOC。结果表明,该方法的估计误差在3%以内。更重要的是,SOC的估计结果可以在不到一分钟的时间内得到。
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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