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Control strategy to improve load/power sharing, DC bus voltage restoration, and batteries SOC balancing in a DC microgrid

机译:在DC微电网中提高负载/功率共享,直流母线恢复和电池SOC平衡的控制策略

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摘要

DC microgrids are well known as a proper solution to link different DC sources, such as photovoltaic panels and wind turbines, directly to DC loads. Along with their advantages, they suffer from an imbalance state of charge (SOC) in their energy storage units (ESUs), improper current-sharing between ESUs, and DC bus voltage deviation. This study proposes a novel control strategy for DC microgrids, which not only balances ESUs SOC and shares current between ESUs proportional to their capacity but also, reduces DC bus voltage deviation significantly. In this way, the same droop curve is defined. Then, three virtual resistances are considered. The first one is set based on the lines resistance and ESUs capacity to share current among the ESUs properly. As the lines resistance changes affect the proportional current-sharing, the second virtual resistance is intended to relieve this effect. The third one is suggested to balance the ESUs SOC. The small-signal stability analysis is performed, which demonstrates that the proposed method has stability in all operating conditions. Simulation results in MATLAB/Simulink confirm that with the aid of the proposed control method, not only proper current-sharing and ESUs SOC balancing are obtained, but also DC bus voltage deviation is effectively diminished.
机译:DC MicroGrids是众所周知的适当解决方案,将不同的DC源(例如光伏板和风力涡轮机)直接连接到DC负载。随着它们的优点,它们在其能量存储单元(eSUS)中遭受不平衡的电荷状态(SOC),ESU和DC总线电压偏差之间的不当电流共享。本研究提出了一种用于DC微电网的新型控制策略,其不仅余额余公司SOC和澳洲之间的电流与其容量成比例,而且可以显着降低直流母线电压偏差。以这种方式,定义了相同的下垂曲线。然后,考虑了三个虚拟电阻。第一个是基于线路电阻和esus容量正确共享eSus之间的电流。随着线路电阻变化影响比例电流共享,第二个虚拟电阻旨在缓解这种效果。第三个建议平衡esus soc。进行小信号稳定性分析,这表明所提出的方法在所有操作条件下具有稳定性。 Matlab / Simulink的仿真结果证实,借助于所提出的控制方法,不仅获得了适当的电流共享和esUS SoC平衡,而且DC总线电压偏差也有效地降低。

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