基于双向CuK变换器的串联电池能量平衡电路设计

IF 1.8 Q4 ENERGY & FUELS AIMS Energy Pub Date : 2022-01-01 DOI:10.3934/energy.2022012
Chi Van Nguyen, T. Vinh
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引用次数: 2

摘要

本文在改进双向CuK变换器原理的基础上,提出了电池组中相邻两个锂离子电池的能量平衡电路设计。本设计仅使用一个MOSFET在第一个继电器控制的方向上在两个单元之间传递能量,第二个继电器控制切割能量平衡电路,当它们具有相同的能量水平时关闭单元。管理电池系统(BMS)通过RS485通信协议向能量平衡电路发送控制命令,控制能量的传递方向、平衡电流的幅值、PWM的频率和占空率,将PWM信号应用于MOSFET由微处理器PIC18F2685编程。本设计克服了采用双向CuK变换器原理设计能量平衡电路所带来的一些缺点,即需要一个多电平直流源来打开mosfet以及能量平衡电路元件的能量损耗问题。这种设计对于电池数量较多的电池组也易于扩展。能量平衡控制策略可以通过各能量平衡电路直接实现,也可以通过BMS通过RS485通信远程实现。通过对07个串联的三星22P电池进行基于荷电状态反馈的在线最优能量平衡控制实验,验证了本文所提出的相邻两个电池能量平衡电路设计的有效性。
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Design of energy balancing circuit for battery cells connected in series based on modifying the bidirectional CuK converter
This paper proposes a design of energy balance circuit for two adjacent Lithium-ion battery cells in the cell string based on the modifying of the bidirectional CuK converter principle. This design only uses one MOSFET to transfer energy between two cells in a direction controlled by the first relay, second relay controls the cutting energy balance circuit off the cells when they have the same energy level. The control command sent by the management battery system (BMS) to the energy balance circuit via an RS485 communication protocol controls the direction of transferring energy, the amplitude of the balance current, the frequency and duty of PWM, the PWM signal applied to MOSFET is programmed by a microprocessor PIC18F2685. This design overcomes some disadvantages caused by applying the principle of bidirectional CuK converter to design the energy balancing circuit, these are the need for a multiple level DC source to open MOSFETs and issue of the energy loss on the elements of energy balance circuit. This design is also easy to expand for the battery string with a large number of cells. The energy balance control strategy can be implemented directly by each the energy balance circuit or remotely by BMS using RS485 communication. The experimental results of online optimal energy balance control based on state of charge (SoC) feedback for 07 SAMSUNG 22P battery cells connected in series are presented to prove the efficiency of the energy balance circuit design for two adjacent cells proposed in this paper.
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来源期刊
AIMS Energy
AIMS Energy ENERGY & FUELS-
CiteScore
3.80
自引率
11.10%
发文量
34
审稿时长
12 weeks
期刊介绍: AIMS Energy is an international Open Access journal devoted to publishing peer-reviewed, high quality, original papers in the field of Energy technology and science. We publish the following article types: original research articles, reviews, editorials, letters, and conference reports. AIMS Energy welcomes, but not limited to, the papers from the following topics: · Alternative energy · Bioenergy · Biofuel · Energy conversion · Energy conservation · Energy transformation · Future energy development · Green energy · Power harvesting · Renewable energy
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