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SoC-based droop method for distributed energy storage in DC microgrid applications

机译:直流微电网应用中基于SoC的分布式能量存储的下垂方法

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摘要

With the progress of distributed generation nowadays, microgrid is employed to integrate different renewable energy sources into a certain area. For several kinds of renewable sources have DC outputs, DC microgrid has drawn more attention recently. Meanwhile, to deal with the uncertainty in the output of microgrid system, distributed energy storage is usually adopted. Considering that the state-of-charge (SoC) of each battery may not be the same, decentralized droop control method based on SoC is shown in this paper to reach proportional load power sharing. With this method, the battery with higher SoC supplies more load power, while the one with lower SoC supplies less load power. Different kinds of relationship between SoC and droop coefficient are selected and their performance of power sharing speed is evaluated. Small signal model of SoC-based droop method is reached to test the system stability. Theoretical analysis is validated by both simulation and experimental results.
机译:随着当今分布式发电的发展,微电网被用于将不同的可再生能源整合到某个区域。对于具有直流输出的几种可再生资源,直流微电网最近引起了更多关注。同时,为应对微电网系统产量的不确定性,通常采用分布式储能。考虑到每个电池的充电状态(SoC)可能不同,本文提出了一种基于SoC的分散下垂控制方法,以实现成比例的负载功率共享。通过这种方法,具有较高SoC的电池可提供更多的负载功率,而具有较低SoC的电池可提供更少的负载功率。选择SoC与下垂系数之间的不同关系,并评估它们的功率共享速度性能。建立了基于SoC下垂方法的小信号模型来测试系统的稳定性。理论分析得到了仿真和实验结果的验证。

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