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Frequency control through BESS and SOFC based fuel cell in a Multi source Microgrid

机译:基于BESS和SOFC的燃料电池在多源微电网中的频率控制

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Modern day Power System Network with various Renewable and Non-conventional sources play a major role in real scenario. Being intermittent in nature these RE sources requires Energy storage devices like BESS, Fly wheel as a prerequisite for sophisticated operation of Power System. Penetration of these intermittent sources introduces huge challenge for safe frequency operation of Power System in Isolated mode of operation of DC Microgrid. In Grid Tied mode of operation the frequency can easily maintained with the help of Grid but in isolated mode maintaining the safe limit of frequency is a difficult task for power system Engineers. This paper discusses about the application of BESS in frequency control in an isolated DC Microgrid and a performance indicator-based Power Distribution Error (PDE) for Solid Oxide Fuel cell (SOFC). The novelty of the paper is to maintain the frequency of the system through Battery Energy Storage System (BESS) and SOFC based Fuel cell, whenever there is an integral action failure in case of Governor of Diesel Generator.
机译:具有各种可再生和非传统消息来源的现代电力系统网络在实际情况下发挥着重要作用。在大自然中间歇性这些重新来源需要像贝斯这样的能量存储装置,飞轮作为电力系统复杂操作的先决条件。这些间歇性源的渗透引起了DC微电网的隔离操作模式下电力系统安全频率运行的巨大挑战。在网格绑定操作模式中,频率可以在网格的帮助下容易地维护,但在孤立模式下,保持安全限制是电力系统工程的艰巨任务。本文讨论了BESS在隔离直流微电网中频率控制的应用和固体氧化物燃料电池(SOFC)的性能指标基配电误差(PDE)。每当柴油发电机调速器的情况下,每当在柴油机调速器时,可以通过电池储能系统(BESS)和基于SOFC的燃料电池来维持系统的频率。

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