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TOTAL TRANSFER CAPABILITY EVALUATION OF A POWER SYSTEM WITH RENEWABLE ENERGY

机译:具有可再生能源的电力系统的总输电能力评估

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摘要

Over recent years, it has been witnessed a fast development of renewable energy throughout the world. Motivated by rising environmental concerns, renewable energy is expected to be a clean and sustainable energy source for the future electricity production. Japan also pushes toward the renewable energy development by setting out a target of 6610 MW wind power and 53 GW photovoltaic (PV) by 2030. This target results in extensive research conducted throughout Japan to study the impacts of a large renewable energy penetration on the system. This paper is a part of this ongoing research with the objective to develop a method suitable to evaluate the total transfer capability (TTC) and examine how it changes as renewable energy penetration level increases. The proposed method integrates both Monte Carlo simulation and transient stability assessment to deal with the uncertainty and transient stability constraints. The validity of the proposed method is illustrated through the numerical simulation conducted on the modified IEEE 30-bus test system.
机译:近年来,全世界见证了可再生能源的快速发展。由于人们日益关注环境问题,可再生能源有望成为未来电力生产的清洁和可持续能源。日本还通过制定到2030年实现6610 MW风力发电和53 GW光伏(PV)的目标来推动可再生能源的发展。这一目标导致了在日本进行的广泛研究,以研究大规模可再生能源渗透对系统的影响。本文是正在进行的研究的一部分,目的是开发一种方法,以评估总转移能力(TTC),并研究其随着可再生能源渗透水平的提高如何变化。所提出的方法结合了蒙特卡洛模拟和暂态稳定评估,以处理不确定性和暂态稳定约束。通过在改进的IEEE 30总线测试系统上进行的数值模拟,说明了该方法的有效性。

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