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Active Charge Equalizer of Li-Ion Battery Cells Using Double Energy Carriers

机译:使用双能量载体的锂离子电池电池有源电荷均衡器

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摘要

In this work, a new active balancing circuit is proposed. This circuit consists of a cell-access network and an energy-transfer network. The cell-access network requires 2n + 6 switches, where n is the number of cells, and creates an energy-transfer path between unbalanced cells and the energy-transfer network. The energy-transfer network has double energy carriers and simultaneously implements cell-to-pack and pack-to-cell balancing operations without overlapping. As a result, a high power rate and fast balancing operation can be achieved by using two energy carriers in a single balancing circuit. The prototype of a proposed balancing circuit was built for six cells and then tested under various conditions; all cells in the state of charge (SOC) region of 70% to 80% were equalized after 93 min, and one charging/discharging period in the SOC region of 10% to 90% was increased by 8.58% compared to the non-balancing operation. These results show that the proposed circuit is a good way to balance charges among batteries in a battery pack.
机译:在这项工作中,提出了一种新的主​​动平衡电路。该电路由细胞接入网络和能量传输网络组成。电池访问网络需要2n + 6个交换机,其中n是小区的数量,并在不平衡单元和能量传输网络之间创建能量传输路径。能量转移网络具有双能载波,同时实现单元到包装和包装到电池平衡操作而不重叠。结果,通过在单个平衡电路中使用两个能量载波,可以实现高功率率和快速平衡操作。建议平衡电路的原型为六个细胞构建,然后在各种条件下进行测试;在93分钟后,70%至80%的电荷状态(SoC)区域的所有细胞均衡,与非平衡相比,10%至90%的SoC区域的一个充电/放电时期增加了8.58%手术。这些结果表明,所提出的电路是平衡电池组中电池的充电的好方法。

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