一种改进型电动汽车可重构电池有源平衡电路

K Gunalan, A JesilRibaBharathi, N MadhuShree, C. Ezhilarasi, R LeenaPriyadharshini
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摘要

电池在电动汽车中起着至关重要的作用。在电池组中,由于充电和放电循环,电压总是存在差异。它导致锂离子电池组的荷电状态(SoC)不平衡。充电状态是电池相对于其容量的充电水平。电压不平衡通过减少电池的寿命和使用时间导致电池的退化。因此,平衡电路是必要的,以保持相同的电压水平在所有的电池。此外,根据电池的SoC水平和负载要求对电池进行重新配置可以增加电池组的使用时间和寿命。本文提出了一种基于电感和开关网络耦合的重构和主动均衡电路,该电路可以动态地将电荷从高电压单元转移到低电压单元,同时传递负载。因此,电池的SoC可以通过耦合电感的优势来平衡,确保比其他平衡技术更快的平衡时间。
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An Enhanced Active Balancing Circuit with Reconfigurable Battery for Electric Vehicles
Batteries play a vital role in Electrical Vehicles (EV). In a battery pack, voltage differences always exist due to charging and discharging cycles. It leads to an imbalance in the State of Charge (SoC) of Li-Ion battery packs. State of charge is the level of charge of an electric battery relative to its capacity. The voltage imbalances lead to the degradation of the cells by reducing their life span and usage time. Thus, a balancing circuit is necessary to maintain the same voltage level in all the cells. Also, a reconfiguration of the battery cells depending on their SoC levels and the requirement of the load can increase the usage time and life span of a battery pack. In this paper, a circuit for reconfiguration and active equalization is proposed based on a coupled inductor and switch network which can dynamically transfer charge from the cells with higher voltage to the ones with lower voltage while simultaneously delivering the load. Thus, the SoC of the cells can be balanced with an advantage of the coupled inductor ensuring faster equalization time than other balancing techniques.
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