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Battery Energy Storage to Mitigate Rapid Voltage/Power Fluctuations in Power Grids Due to Fast Variations of Solar/Wind Outputs

机译:由于太阳能/风输出的快速变化,电池储能减轻了电网中的快速电压/功率波动

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摘要

Passing clouds and wind gusts can create unacceptable rapid voltage/power variations in power networks. Simulation results using a real Australian distribution feeder with real load demand and PV output profile show that with a high penetration of PV the voltage variations can increase beyond the allowable limit given by the standards. Similarly, wind gusts can create wind power output variations. This paper addresses the rapid voltage/power variations caused by solar or wind power outputs and presents a control strategy using the energy buffer in energy storage for their impact mitigation. By controlling the discharging/charging operation of the energy storage based on the available energy buffer in the storage unit, not only the rate of power output variations can be maintained at the desired level, but also the voltage variations can be controlled within acceptable limits. An experimental setup, consisting of a PV emulator, inverter, and grid simulator, demonstrates the potential threat of unacceptable voltage variations. The proposed mitigation strategy using energy buffer in the storage for smoothing the power outputs of solar/wind is tested and validated through simulation. Simulation results show that with the proposed control, the fast variations of the voltage/power variations instigated by solar/wind can be maintained within the acceptable limits.
机译:通过云和风阵容可以在电网中产生不可接受的快速电压/功率变化。使用具有实际负载需求和PV输出轮廓的实际澳大利亚分配馈线的仿真结果表明,具有高渗透PV的电压变化可以超出标准给出的允许极限。同样,风阵容可以产生风力输出变化。本文解决了由太阳能或风力输出引起的快速电压/功率变化,并使用能量存储器中的能量缓冲器提供控制策略,以实现其影响。通过基于存储单元中的可用能量缓冲器控制能量存储的放电/充电操作,不仅可以保持所需水平的功率输出变化的速率,而且可以在可接受的限度内控制电压变化。由PV仿真器,逆变器和电网模拟器组成的实验设置展示了不可接受电压变化的潜在威胁。通过仿真测试并验证使用存储器中使用能量缓冲器进行平滑的能量缓冲器的建议缓解策略。仿真结果表明,利用所提出的控制,太阳能/风吹过的电压/功率变化的快速变化可以保持在可接受的限度内。

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