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Flywheel-based Micro Energy Grid for Reliable Emergency Back-up Power for Nuclear Power Plant

机译:基于飞轮的微电网,为核电站提供可靠的应急备用电源

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The Emergency Power Supply (EPS) is an inevitable part for the reliability of a Nuclear Power Plant (NPP). In case of failure of the power supply to electrical equipment in the NPP, the backup EPS plays a vital role. This paper proposes an innovative approach, with Flywheel-based Fast Charging Station (FFCS) along with Micro Energy Grid (MEG), to confirm the continuous power supply to the electrical system during the emergency in NPP. The paper focuses on the emergency diesel generator and battery system, which are connected to the Class III and Class I power of the NPP respectively for emergency purpose. The proposed model will eliminate the drawbacks of the battery system and the diesel generator. The MEG can operate in both mode; grid-connected mode (normal mode) and islanded mode (emergency mode). In normal mode, the electricity will be generated, stored in the main grid via an energy storage system or supplied to the consumer end. Under the emergency condition, the MEG will be disconnected from the main grid and will be connected to the FFCS depending on the requirements. The simulation results intend to show the novelty of the proposed model.
机译:应急电源(EPS)是确保核电站(NPP)可靠性的必不可少的部分。在NPP中电气设备的电源故障的情况下,备用EPS起着至关重要的作用。本文提出了一种创新的方法,该方法与基于飞轮的快速充电站(FFCS)以及微能源网格(MEG)一起使用,以确认NPP紧急情况下向电气系统的持续供电。本文重点介绍了应急柴油发电机和电池系统,它们分别连接到NPP的III级和I级电源以用于应急目的。提出的模型将消除电池系统和柴油发电机的缺点。 MEG可以在两种模式下运行;并网模式(普通模式)和孤岛模式(紧急模式)。在正常模式下,将产生电能,通过能量存储系统将其存储在主电网中,或者将其提供给用户端。在紧急情况下,MEG将与主电网断开连接,并将根据要求连接到FFCS。仿真结果旨在证明所提出模型的新颖性。

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