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Frequency-based control of islanded microgrid with renewable energy sources and energy storage

机译:利用可再生能源和储能对孤岛微电网进行基于频率的控制

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When a microgrid is mainly supplied by renewable energy sources (RESs), the frequency deviations may deteriorate significantly the power quality delivered to the loads. This paper proposes a frequency-based control strategy, ensuring the frequency among the strict limits imposed by the Standard EN 50160. The frequency of the microgrid common AC bus is determined by the energy storage converter, implementing a proposed droop curve among the state of charge (SoC) of the battery and the frequency. Therefore, the information of the SoC becomes known to every distributed energy resource (DER) of the microgrid and determines the active power injection of the converter-interfaced DERs. The active power injection of the rotating generators remains unaffected, while any mismatch among the power generation and consumption is absorbed by the energy storage system. Finally, in case of a solid short-circuit within the microgrid, the energy storage system detects the severe voltage decrease and injects a large current in order to clear the fault by activating the protection device closer to the fault. The proposed control methodology is applied in a microgrid with PVs, wind generators and a battery, while its effectiveness is evaluated by detailed simulation tests.
机译:当微电网主要由可再生能源(RES)提供时,频率偏差可能会严重降低输送到负载的电能质量。本文提出了一种基于频率的控制策略,确保该频率处于标准EN 50160所规定的严格限制之内。微电网公共AC总线的频率由储能转换器确定,并实现了建议的荷电状态之间的下垂曲线(SoC)的电池和频率。因此,SoC的信息对于微电网的每个分布式能源(DER)都是已知的,并确定转换器接口DER的有功功率注入。旋转发电机的有功功率注入不会受到影响,而电能存储和消耗之间的任何不匹配都会被能量存储系统吸收。最后,在微电网内发生固体短路的情况下,储能系统会检测到严重的电压下降并注入大电流,以便通过激活靠近故障的保护装置来清除故障。所提出的控制方法应用于带有光伏发电,风力发电机和电池的微电网,同时通过详细的模拟测试评估其有效性。

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