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Analysis of the Behavior of the Grid-Connected Flywheel in Presence of Different Faults

机译:在不同断层存在下网格连接飞轮的行为分析

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Uncertainty of electricity generation is a big issue of renewable distributed generation units. One of the efficient solutions is using energy storage (ES) systems to damp any under/over shoots in energy flow in the micro grids. Another application of ES is improvement of power quality in the network in conditions such as voltage sags. In this paper, the behavior of a Flywheel energy storage system is analyzed considering different fault types. Because of high inertia constant of the mechanical part of Flywheel, the reaction of this equipment is different from other equipment in the network. So it is important to study any malfunction of the flywheels to avoid damages to flywheel and also other parts of the network. All important types of faults are applied to the point of common coupling (PCC). The time domain simulation package is employed for better analysis and results are presented in detail.
机译:发电的不确定性是可再生分布式发电单位的大问题。 其中一个有效的解决方案是使用能量存储系统来抑制微网格中的能量流中的任何下面/过度射击。 在诸如电压凹凸的条件下,ES的另一个应用是在网络中的电力质量提高。 本文考虑了不同故障类型的分析了飞轮能量存储系统的行为。 由于飞轮的机械部分的高惯性常数,该设备的反应与网络中的其他设备不同。 因此,重要的是研究Flywheels的任何故障,以避免损坏飞轮以及网络的其他部分。 所有重要类型的故障都适用于公共耦合点(PCC)。 采用时域仿真包以进行更好的分析,并详细介绍了结果。

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