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储能电池运行数据的拼接与重构

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针对现有电池管理系统(battery management system,BMS)采集的电池运行数据质量低、运行工况复杂、缺乏完整的充放电周期数据、多源异构等问题,运用梯度下降算法研究了锂离子储能电池运行数据的拼接与重构机理,提出了适用于锂离子储能电池运行工况特征的数据拼接与重构方法.基于电池工况转变时的暂态与稳态特性分析,揭示了锂离子储能电池运行数据拼接与重构的机理,联合电压、电流和容量等主要运行参数建立经验性数学方程.明晰储能电池运行数据拼接与重构机理的相关经验值和边界条件,研究运行工况和电流倍率的演变规律,在此基础上提出了运行数据拼接与重构的新方法,经过实验数据与真实运行数据的验证,表明该方法具有较高的精确度和适应性.
Splicing and Reconstruction of Energy Storage Battery Operation Data
Aiming at the problems of low quality,complex operating conditions,lack of complete charging and discharging cycle data and multi-source heterogeneity of the energy storage battery operation data collected by the existing battery management system(BMS),we studied the mechanism of splicing and reconstruction for lithium-ion energy storage bat-tery operation data by using the gradient descent algorithm,and proposed a method of data splicing and reconstruction suitable for the characteristics of lithium-ion energy storage battery operation conditions.Based on the analysis for the transient and steady state characteristics of the battery when the operating conditions change,the mechanism of splicing and reconstruction for the lithium-ion energy storage battery operation data are revealed.The empirical mathematical equations are established by combining the main operating parameters such as voltage,current and capacity.The empiri-cal values and boundary conditions related to the mechanism of battery operation data splicing and reconstruction are clarified,and the evolution law of operating conditions and current rate is studied.On this basis,a new method of splicing and reconstruction for the lithium-ion energy storage battery operation data is proposed.The experimental data and real operation data verify that the method has high accuracy and adaptability.

energy storage batteryenergy storage operation datadata splicing and reconstructiondata-drivendata processinglithium-ion battery

赵伟森、王继业、李相俊

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合肥工业大学电气与自动化工程学院,合肥 230009

可再生能源并网全国重点实验室(中国电力科学研究院有限公司),北京 100192

储能电池 储能运行数据 数据拼接与重构 数据驱动 数据处理 锂离子电池

2024

高电压技术
中国电力科学研究院 中国电机工程学会

高电压技术

CSTPCD北大核心
影响因子:2.32
ISSN:1003-6520
年,卷(期):2024.50(12)