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首页> 外文期刊>Renewable & Sustainable Energy Reviews >A comprehensive overview of the dc-dc converter-based battery charge balancing methods in electric vehicles
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A comprehensive overview of the dc-dc converter-based battery charge balancing methods in electric vehicles

机译:电动车辆中的直流电电池电量均衡方法全面概述

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摘要

With the development of electric vehicle (EV) technologies, efficient and reliable use of rechargeable batteries (RBs) has become the key subject for automotive manufacturers. Among RBs, lithium-ion battery technology is the most prominent about high specific energy and specific power. The lithium-ion battery pack consists of battery cells with low terminal voltage connected in series to meet the voltage requirement of the EV system. However, the useable capacity of the battery pack is restricted by the low charge cell among the string. The manufacturing inconsistency and different operating conditions of each cell cause the charge imbalances in the battery pack. These imbalances lead to the reduction of the useable capacity, acceleration of cell degradation, and, more importantly, serious safety hazards like overcharging. In all EVs and hybrid electric vehicles (HEVs) using lithium-ion battery systems, the cell balancing controller is an essential task which managed by the battery management system (BMS) to improve battery life cycle and safety. This paper presents a comprehensive overview of the DC-DC converter-based battery balancing system because of the impactful contribution to the charge balancing control and the design of balancing control algorithms. Moreover, other BMS functions such as state of charge (SOC) estimation, which affects balancing performance, are handled in this review.
机译:随着电动汽车(EV)技术的发展,可充电电池(RBS)的高效可靠地使用(RBS)已成为汽车制造商的关键主题。在RBS中,锂离子电池技术是对高特定能源和特定功率最突出的。锂离子电池组由具有串联连接的低端电压的电池单元,以满足EV系统的电压要求。然而,电池组的可用容量受到弦中的低电荷单元的限制。制造不一致和每个细胞的不同操作条件导致电池组中的电荷不平衡。这些不平衡导致降低可用容量,细胞降解加速,更重要的是,严重的安全危险就像过度充电一样。在使用锂离子电池系统的所有EVS和混合动力电动车辆(HEV)中,电池平衡控制器是由电池管理系统(BMS)管理的重要任务,以提高电池续航循环和安全性。本文提出了基于DC-DC转换器的电池平衡系统的全面概述,因为对电荷平衡控制和平衡控制算法的设计有影响贡献。此外,在本次审查中处理了影响平衡性能的充电状态(SOC)估计的其他BMS功能。

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