Charger Structure with Transistor Based Isolator for Parallel Charging of Series Connected Battery Cells

Omer Faruk Goksu, Revna Acar Vural
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Abstract

A new generation of highly efficient batteries is being developed to be used as a power source for electronic devices. Basic battery management systems do not charge the battery cells and require external chargers. For a flexible charging system, the built-in chargers are located into each battery management module. Thus, charging systems can be independent of the number of battery cells. For the health of the battery cell, battery charging methods are as important as usage limits. The aim of the proposed study is to eliminate the energy consuming excess energy and to apply the newly developed and more efficient charging algorithms to the designed structure. For this purpose, a new circuit structure has been developed instead of relay elements which activate the charging line in order to charge the battery cells in parallel. As a result of this study, proposed structure provided faster charging and higher energy efficiency.
基于晶体管隔离器的串联电池并联充电充电器结构
新一代高效电池正在开发中,它将被用作电子设备的电源。基本的电池管理系统不给电池充电,需要外部充电器。对于一个灵活的充电系统,内置充电器位于每个电池管理模块。因此,充电系统可以独立于电池单元的数量。为了电池的健康,电池充电方法与使用限制同样重要。研究的目的是为了消除耗能过剩的能量,并将新开发的更高效的充电算法应用于设计的结构。为此,开发了一种新的电路结构,取代了激活充电线的继电器元件,以便并联充电。研究结果表明,该结构提供了更快的充电速度和更高的能源效率。
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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