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Voltage scheduling droop control for State-of-Charge balance of distributed energy storage in DC microgrids

机译:直流微电网中分布式能量存储的充电状态平衡的电压调度下降控制

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Due to higher power quality, lower conversion loss, and more DC loads, there has been an increasing awareness on DC microgrid. Previous emphasis has been on equal power sharing among different units in the DC microgrid, while overlooking the coordination of the energy storage units to maintain the State-of-Charge balance. In this paper, a new droop method based on voltage scheduling for State-of-Charge balance is proposed to keep the SoC balance for the energy storage units. The proposed method has the advantage of avoiding the stability problem existed in traditional methods based on droop gain scheduling. Simulation experiment is taken in Matlab on a DC microgrid with two distributed energy storage units. The simulation results show that the proposed method has successfully achieved SoC balance during the load changes while maintaining the DC bus voltage within the allowable range.
机译:由于更高的电能质量,更低的转换损耗和更多的直流负载,人们对直流微电网的认识日益提高。以前的重点是直流微电网中不同单元之间的平均功率分配,而忽略了储能单元的协调以维持充电状态的平衡。本文提出了一种基于电压调度的荷电状态下垂的新方法,以保持储能单元的SoC平衡。所提出的方法具有避免传统的基于下垂增益调度的方法中存在的稳定性问题的优点。在Matlab上,在带有两个分布式储能单元的直流微电网上进行了仿真实验。仿真结果表明,该方法成功地实现了负载变化时的SoC平衡,同时将直流母线电压保持在允许范围内。

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