← 返回
虚拟同步发电机控制微电网中退役非等容量锂电池的一致性算法SOC均衡方案
Consistency Algorithm-Based SOC Balancing Scheme of Retired Non-Equal Capacity Lithium Battery in Virtual Synchronous Generator Controlled Microgrids
| 作者 | Qingfeng Wu · Xiaolin Chu · Yamin Fan · Liqun Liu · Xiaofeng Sun |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 虚拟同步机VSG 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 退役锂电池 微电网 SOC均衡 VSG控制 非等容量 |
语言:
中文摘要
退役电动汽车锂电池可用于微电网以充分利用锂电池剩余容量。由于使用寿命和环境差异,微电网中退役锂电池包的荷电状态和容量难以完全一致,SOC均衡是延长退役锂电池寿命的重要手段。然而传统虚拟同步发电机控制方案和现有基于虚拟同步发电机的SOC均衡方案无法实现虚拟同步发电机控制微电网中非等容量退役锂电池的SOC均衡。因此提出基于虚拟同步发电机控制的非等容量退役锂电池SOC均衡方案。分析传统虚拟同步发电机控制和退役锂电池容量差异在SOC均衡中的影响机制,通过修正传统虚拟同步发电机控制参数和线路阻抗消除容量对SOC均衡的影响。在虚拟同步发电机中添加SOC均衡因子调节逆变器输出有功功率实现SOC均衡。计算SOC均衡因子过程中引入一致性算法,在较少通信和保证频率质量前提下实现非等容量退役锂电池SOC均衡。建立虚拟同步发电机小信号模型分析控制参数对系统稳定性影响。仿真和实验结果验证所提方案有效性,相比传统基于虚拟同步发电机的SOC均衡方案,所提SOC均衡差异仅0.0023、频率偏差仅0.02Hz、能量损失降低2.13%。
English Abstract
Retired electric vehicle lithium batteries can be used in microgrids to fully utilize the remaining capacity of lithium batteries. Due to differences in service life and usage environment, the state of charge (SOC) and capacity of retired lithium battery packs in microgrids are difficult to be completely consistent. SOC balancing is an important means to extend the lifespan of retired lithium battery (RLB). However, the traditional virtual synchronous generator (VSG) control scheme and the existing VSG-based SOC balancing scheme fail to achieve the SOC balancing of non-equal capacity RLB in VSG-controlled microgrids. Therefore, a VSG control-based SOC balancing scheme for non-equal capacity RLB is proposed. This paper analyzes the influence mechanism of traditional VSG control and RLB capacity difference in SOC balancing. The influence of capacity on SOC balancing can be eliminated by correcting the traditional VSG control parameters and line impedance. Then, a SOC balancing factor is added to the VSG to regulate the output active power of inverter and achieve SOC balancing. The consistency algorithm is introduced in the process of calculating the SOC balancing factor, which realizes the SOC balancing of the non-equal capacity RLB under the premise of fewer communications and guaranteed frequency quality. In addition, a small signal model for VSG is established to analyze the influence of control parameters on system stability. Finally, the simulation and experimental results verify the effectiveness of the proposed scheme. Compared with the traditional SOC balancing scheme based on VSG, the proposed SOC balancing difference is only 0.0023, the frequency deviation is only 0.02Hz, and the energy loss is reduced by 2.13%, which reflects the advancement of the proposed scheme.
S
SunView 深度解读
该退役电池SOC均衡技术与阳光电源储能系统梯次利用战略高度契合。阳光在电池梯次利用领域布局储能系统,该虚拟同步机和一致性算法方案可优化非等容量电池包的能量管理。阳光可将该技术应用于ST系列储能系统的BMS和EMS协同控制,实现梯次利用电池的高效均衡和寿命延长,降低储能成本,提升系统经济性,推进循环经济和可持续发展。