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Investigation of post-fault voltage recovery performance with battery-based energy storage system in a microgrid

机译:微电池中基于电池的电池的能量存储系统对故障电压恢复性能的研究

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摘要

Robust and resilient delivery are two principal features of future smart grids and energy storage can play a significant role in meeting these challenges. With increased renewable penetration, energy storage can improve the operating capabilities of hybrid microgrids. However, capability of storage system to support voltage and frequency in microgrids largely depends on its proper placement and size. In this paper, battery-based energy storage system (BESS) has been placed in a renewable integrated microgrid depending on the voltage sensitivity factors of the network buses. Then, impact of such a placement on post-fault voltage recovery in a 43 bus industrial microgrid has been investigated. Results show that distributed placement of BESS across highly sensitive buses results in grid compatible and faster voltage recovery in comparison to centralised placement.
机译:强大而有弹性的交付是未来智能电网的两个主要特征,能量存储可以在满足这些挑战方面发挥重要作用。随着可再生渗透率的增加,能量储存可以改善混合微电网的操作能力。然而,存储系统在微电网中支持电压和频率的能力在很大程度上取决于其适当的放置和尺寸。在本文中,基于电池的能量存储系统(BESS)已经放置在可再生集成的微电网中,这取决于网络总线的电压灵敏度因子。然后,研究了这种放置在43总线工业微电网中对故障后电压恢复的影响。结果表明,与集中放置相比,跨越高度敏感总线的BESS对高敏感总线的分布式放置导致电网兼容和更快的电压恢复。

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