详细信息
电池储能系统三相交错型DC-DC变换器控制策略研究 ( EI收录)
RESEARCH ON CONTROL STRATEGY OF THREE-PHASE INTERLEAVED DC-DC CONVERTER FOR BATTERY ENERGY STORAGE SYSTEM
文献类型:期刊文献
中文题名:电池储能系统三相交错型DC-DC变换器控制策略研究
英文题名:RESEARCH ON CONTROL STRATEGY OF THREE-PHASE INTERLEAVED DC-DC CONVERTER FOR BATTERY ENERGY STORAGE SYSTEM
作者:常雨芳[1];高鹏[1];罗国澳[1];张闯闯[1];严怀成[2];黄文聪[1]
机构:[1]湖北工业大学太阳能高效利用及储能运行控制湖北省重点实验室,武汉430068;[2]华东理工大学信息科学与工程学院,上海200237
年份:2025
卷号:46
期号:5
起止页码:706
中文期刊名:太阳能学报
外文期刊名:Acta Energiae Solaris Sinica
收录:;EI(收录号:20252418589394);北大核心:【北大核心2023】;
基金:国家自然科学基金(62473133)。
语种:中文
中文关键词:电池储能系统;DC-DC变换器;滑模控制;有限时间扩张状态观测器;均流移相
外文关键词:battery energy storage system;DC-DC converters;sliding mode control;finite-time extended state observer;current sharing and phase shifting
摘要:针对电池储能系统中直流母线电压易波动以及电池组端电流纹波较大的问题,提出一种电池储能系统三相交错并联双向DC-DC变换器电压电流双环复合控制方法。首先,建立三相交错并联双向DC-DC变换器数学模型;其次,设计电压外环基于有限时间扩张状态观测器的滑模控制方法,通过改进有限时间扩张状态观测器估计出系统总扰动并反馈到滑模控制器进行补偿,可提高系统的响应速度和抗扰动能力;然后,设计电流内环自适应PI均流移相控制方法,将总电流均分并分别控制,可降低电流纹波量;最后,搭建仿真模型和实验平台进行验证,结果表明所提控制方法可有效抑制直流母线电压波动、降低电流纹波量,可提高电池储能系统抗扰动能力和动态响应性能。
In response to the issues of voltage fluctuations in the DC bus and significant current ripple at the battery terminal in battery energy storage systems,this paper proposes a voltage and current dual-loop control strategy for the three-phase interleaved parallel bidirectional DC-DC converter of the battery energy storage system.Firstly,a mathematical model of the three-phase interleaved parallel bidirectional DC-DC converter is established.Secondly,a sliding mode control strategy based on a finite-time extended state observer for the voltage outer loop is designed.Through an improved finite-time extended state observer,the total disturbance of the system is estimated and feed it back to the sliding mode controller for compensation,which improves the response speed and disturbance rejection ability of the system.Next,an adaptive PI current sharing and phase shifting control method in the current inner loop is designed,which divides the total current into three equal parts and controls them individually,reducing the amount of current ripple.Finally,a simulation model and experimental platform are built for validation.The results show that the control method proposed in this paper can effectively suppress DC bus voltage fluctuations and reduce current ripple,and improve the disturbance rejection ability and dynamic response performance of the battery energy storage system.
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