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Dual Cell Links for Battery-Balancing Auxiliary Power Modules: A Cost-Effective Increase of Accessible Pack Capacity

机译:电池平衡辅助电源模块的双电池链接:经济有效地增加了可访问电池组的容量

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摘要

This article focuses on the design of a half-full bridge (HFB) balancing link that can reduce the cost of redistributive battery balancer in electrified vehicle applications by combining the functionalities of a battery balancer and auxiliary power module (APM). The benefits of redistributive balancing are quantified based on existing datasets of commercial battery cells. The power rating for the electric vehicle's APM and balancing capability are discussed. A HFB module prototype is designed to validate the proposed concept. How to reduce the current ripple on the battery cells is presented in order to minimize the degradation of the cells due to highly dynamic current. Nickel-manganese-cobalt cells are installed on the module to investigate the balancing performance in real life. The efficiency map is also given for the prototype. Compared with existing balancing methods, the improvement under the same driving cycle is shown in the long-term simulation.
机译:本文重点介绍半满桥(HFB)平衡链路的设计,该功能可通过结合电池平衡器和辅助电源模块(APM)的功能来降低电动车辆应用中的电池分配器平衡成本。基于商业电池单元的现有数据集,可以重新分配平衡的好处。讨论了电动汽车的APM额定功率和平衡能力。设计了HFB模块原型来验证所提出的概念。为了减小由于高动态电流引起的电池单元的退化,提出了如何减小电池单元上的电流纹波。镍锰钴电池安装在模块上,以研究现实生活中的平衡性能。效率图也给出了原型。与现有的平衡方法相比,长期模拟显示了在相同驾驶周期下的改进。

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