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Distributed real-time simulation and on-site development of a micro-grid with renewable energy sources

机译:具有可再生能源的微电网的分布式实时仿真和现场开发

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Micro-grid is a new concept gained significant attentions due to the increasing distributed energy sources. Several micro-grid test beds in the forms of either hardware or software simulation have been developed around the world. In Taiwan, one 20KVA 3W3Ø micro-grid test bed has been conducted in National Tsing Hua University (NTHU). This micro-grid consists of various fundamental power system components, including two synchronous generators (SG), one fixed speed induction generator (FSIG), and one doubly-fed induction generator (DFIG). In this paper, simulation results on two different scenarios: (a) transition from the grid-connected mode to the islanding mode, and (b) load variation in the islanding mode of the NTHU micro-grid system in distributed real-time simulation platform OPAL-RT are reported. Also, on-site development of the micro-grid system is illustrated.
机译:由于随着分布式能源的增加,微电网是一种新的概念,其显着的关注。在世界各地开发了几种具有硬件或软件模拟形式的微网格试验床。在台湾,一台20kVA3W3Ø微网试验床一直在国家青花大学(Nthu)进行。这种微电网由各种基本电力系统组件组成,包括两个同步发电机(SG),一个固定速度感应发电机(FSIG)和一个双馈感应发生器(DFIG)。在本文中,仿真结果在两种不同的场景上:(a)从网格连接模式转换到孤岛模式,(b)分布式实时仿真平台中Nthu微电网系统的岛屿模式中的负载变化报告了蛋白石-T。此外,示出了微电网系统的现场开发。

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