卢志刚, 苗泽裕, 蔡瑶. 考虑时变线阻的多储能SOC稳定均衡控制策略[J]. 高电压技术, 2024, 50(1): 127-137. DOI: 10.13336/j.1003-6520.hve.20230066
引用本文: 卢志刚, 苗泽裕, 蔡瑶. 考虑时变线阻的多储能SOC稳定均衡控制策略[J]. 高电压技术, 2024, 50(1): 127-137. DOI: 10.13336/j.1003-6520.hve.20230066
LU Zhigang, MIAO Zeyu, CAI Yao. Stable Equilibrium Control Strategy for Multi-energy Storage SOC Considering Time-varying Linear Resistance[J]. High Voltage Engineering, 2024, 50(1): 127-137. DOI: 10.13336/j.1003-6520.hve.20230066
Citation: LU Zhigang, MIAO Zeyu, CAI Yao. Stable Equilibrium Control Strategy for Multi-energy Storage SOC Considering Time-varying Linear Resistance[J]. High Voltage Engineering, 2024, 50(1): 127-137. DOI: 10.13336/j.1003-6520.hve.20230066

考虑时变线阻的多储能SOC稳定均衡控制策略

Stable Equilibrium Control Strategy for Multi-energy Storage SOC Considering Time-varying Linear Resistance

  • 摘要: 在直流微电网中,由于线路阻抗大小差异的复杂化,难以保证各储能单元之间达到荷电状态(state-of-charge, SOC)均衡。为此,提出一种考虑时变线阻的SOC均衡改进控制策略。首先,通过线路阻抗和SOC幂指数构造的平衡因子来修正控制系数,提高SOC的辨识度。同时,利用输出电流来约束平衡因子,提高系统的抗扰能力。在SOC均衡之后,SOC平衡因子G变为1,此时依赖线路阻抗信息但不受线路阻抗变化影响,可平稳地保持电流分配。并且结合输出电流构造的电压补偿环节有效地解决了母线电压质量和SOC均衡控制效果之间的矛盾。其次,针对基于SOC均衡的改进控制策略易受恒功率负载影响的问题,利用混合势函数理论进行建模,得到稳定性判据,有利于保障系统的稳定运行。最后,仿真结果表明,所提出的改进下垂控制能够有效地消除线路阻抗的影响,提高电流分配精度,实现SOC均衡,并验证了在各种突发扰动及极端情况下所提控制策略的有效性和正确性。

     

    Abstract: In DC microgrids, it is difficult to ensure the state of charge (SOC) balance among energy storage units due to the complexity of line impedance. Therefore, an improved SOC equalization control strategy considering time-varying linear resistance is proposed. Firstly, the control coefficient is modified by the balance factor which is constructed by line impedance and SOC power index to improve the identification of SOC. At the same time, the output current is used to constrain the balance factor and improve the anti-disturbance ability of the system. After SOC equalization, G becomes 1. At this time, the current distribution can be maintained smoothly by relying on the line impedance information without being affected by line impedance changes. The contradiction between bus voltage quality and SOC equalization control effect is solved by voltage compensation link combined with output current. Secondly, for the problem that the improved control strategy based on SOC balancing is susceptible to constant power load, the mixed potential function theory is used for modeling to obtain the stability criterion, which is conducive to ensuring the stable operation of the system. Finally, the simulation results show that the improved drooping control proposed in this paper can effectively eliminate the influence of line impedance, improve the accuracy of current distribution, achieve the balance of SOC, and verify the effectiveness and correctness of the proposed control strategy under various sudden disturbances and extreme conditions.

     

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