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Distributed control strategy of hybrid energy storage system in the DC microgrid

机译:分布式控制策略在DC微电网中的混合能量存储系统

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摘要

In a DC microgrid, because the output of renewable energy such as photovoltaic is intermittent, hybrid energy storage system (HESS) combining ultracapacitors and batteries is usually used to solve this issue. According to the characteristics of ultracapacitors and batteries, the low-frequency power fluctuations are assigned to batteries, while the high-frequency power fluctuations are assigned to ultracapacitors. When considering an ultracapacitor group, state-of-charge (SoC) of the ultracapacitors will be unbalanced between each other, on account of the differences of initial states or attributes. A novel distributed control method is proposed in this study. In general, ultracapacitors control the DC bus voltage and batteries control SoC of the ultracapacitors. Additionally, the distributed control adds the difference between one ultracapacitor's SoC and the average SoC of the ultracapacitor group to its current control loop. As a result, the dynamic stability of SoC among the ultracapacitors can be achieved, and the issues of overcharging and/or over discharging of the ultracapacitors can be avoided. At last, the effectiveness of the proposed control strategy is validated by the simulation model built in MATLAB/Simulink.
机译:在DC微电网中,由于可再生能量的输出如光伏电池是间歇性的,混合能量存储系统(HESS)相结合的Ultracatopacitor和电池通常用于解决这个问题。根据超级电池和电池的特点,低频功率波动被分配给电池,而高频功率波动被分配给超级电容器。考虑超容器组时,由于初始状态或属性的差异,彼此之间的电荷(SOC)将在彼此之间不平衡。本研究提出了一种新型分布式控制方法。通常,UltraCapacitors控制Ultacapacitor的直流母线电压和电池控制SOC。另外,分布式控制将一个超容器的SoC和超容器组的平均SoC之间的差值增加到其当前控制回路。结果,可以实现超容器之间的SOC的动态稳定性,并且可以避免超接收器的过充电和/或过度放电的问题。最后,通过Matlab / Simulink中内置的模拟模型验证了所提出的控制策略的有效性。

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