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Design microgrid for a distribution network: A case study of the University of Queensland

机译:为配电网设计微电网:以昆士兰大学为例

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With more and more distributed generators (photovoltaic and wind) and distributed energy resources being integrated into power networks, traditional electricity grids may be replaced by smaller and more efficient grids called microgrids. Especially in recent years, there has been a significant increase in photovoltaic (PV) installations in Australia. As such, potential for microgrids to continue supply power to loads during a blackout was evident. However, microgrids have posed a concern for utilities as they do not provide utilities the same ability as the conventional grid to regulate microgrid voltage and frequency, and later possibly interfere with restoration of normal electricity supply. This paper investigates the feasibility of forming a microgrid in the University of Queensland for continuous electricity supply during power outage by utilizing its PV and storage systems. A simple but effective load shedding algorithm based on existing schemes and future technologies has been implemented. It also demonstrates how microgrid resynchronization can be achieved.
机译:随着越来越多的分布式发电机(光伏和风能)和分布式能源被集成到电网中,传统的电网可能会被称为“微电网”的更小,更高效的电网所取代。尤其是近年来,澳大利亚的光伏(PV)装置已大大增加。这样,在停电期间,微电网有可能继续为负载供电。然而,微电网已经引起了公用事业的关注,因为它们没有提供与常规电网相同的调节微电网电压和频率的能力,并且随后可能干扰正常电力供应的恢复。本文研究了利用昆士兰大学的光伏和储能系统在停电期间形成微电网以持续供电的可行性。已经实现了一种基于现有方案和未来技术的简单而有效的减载算法。它还演示了如何实现微电网重新同步。

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