Cost-Reduced Inductor-Based Voltage Equalizers With Design of Free-Wheeling Networks for Li-Ion Battery Pack

IF 4.9 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal of Emerging and Selected Topics in Power Electronics Pub Date : 2024-11-12 DOI:10.1109/JESTPE.2024.3496818
Lei Wan;Longyun Kang
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Abstract

Inductor-based equalizers are characterized by high power, but current inductor-based equalizers rarely consider the cost of the isolated power supplies for driving switches and the design of free-wheeling networks for inductor current. To tackle these issues, two inductor-based voltage equalizers are proposed in this article. On the one hand, combining diodes and MOSFETs to form a switch array can achieve the common source electrode shared by MOSFETs on the same sides, reducing the required number of isolated power supplies and the circuit cost. On the other hand, free-wheeling networks with lower inductor current descent during the dead time are provided in the proposed equalizers; thus, the equalization speed and efficiency can be improved compared with the current inductor-based methods. Topological structures, operation principles, and mathematical modeling analysis are illustrated in detail first. Then, circuit parameters are selected based on the simulation results. Comparisons between the proposed and the existing methods over the equalization performance, cost, and size are also conducted. Finally, experiment platforms are established. The results verify the feasibility and high performance of the proposed equalizers.
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通过为锂离子电池组设计自由轮网络降低成本的电感器式电压均衡器
基于电感的均衡器具有高功率的特点,但目前基于电感的均衡器很少考虑驱动开关的隔离电源的成本和电感电流自由轮网络的设计。为了解决这些问题,本文提出了两种基于电感的电压均衡器。一方面,将二极管与mosfet组合形成开关阵列,可以实现同侧mosfet共用的公共源电极,减少所需的隔离电源数量,降低电路成本。另一方面,在所提出的均衡器中提供了在死区时间内电感电流下降较小的自由旋转网络;因此,与现有的基于电感的均衡方法相比,可以提高均衡速度和效率。首先详细说明了拓扑结构、工作原理和数学建模分析。然后,根据仿真结果选择电路参数。在均衡性能、成本和尺寸等方面,对所提出的方法与现有方法进行了比较。最后,搭建实验平台。实验结果验证了该均衡器的可行性和高性能。
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来源期刊
CiteScore
12.50
自引率
9.10%
发文量
547
审稿时长
3 months
期刊介绍: The aim of the journal is to enable the power electronics community to address the emerging and selected topics in power electronics in an agile fashion. It is a forum where multidisciplinary and discriminating technologies and applications are discussed by and for both practitioners and researchers on timely topics in power electronics from components to systems.
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