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Impact of Large-Scale Wind and Solar Power Integration on Operating Reserve Requirements of an Islanded Power System

机译:大规模风能和太阳能集成对孤岛电力系统运行储备要求的影响

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Many nations have shown their support to a battle against environmental pollution by integrating large scale solar and wind energy resources, to their respective grids. Although these commendable efforts have paved the way for a greener future, it has to be noted that non-conventional renewable energy (NCRE) possess their own inherent drawbacks. Their availability is highly dependent on the prevalent weather conditions, which means that they are subjected to uncontrollable variability. With the rise of intermittent renewable resources, it is important to have appropriate amounts of operating reserves to provide back-up to the system. This will ensure that the system will be stable under variable power conditions and thus, improve the reliability of the system. This paper is focused in quantifying additional operating reserves requirements to stabilize the system under intermittent conditions with the large penetration of renewables into an islanded power system. It assesses the spinning reserve requirement during the high wind and low wind seasons.
机译:通过将大规模的太阳能和风能资源整合到各自的电网中,许多国家已经表示出对打击环境污染的支持。尽管这些值得称赞的努力为更绿色的未来铺平了道路,但必须指出的是,非常规可再生能源(NCRE)具有其自身的固有缺点。它们的可用性高度依赖于普遍的天气条件,这意味着它们的变化不受控制。随着间歇性可再生资源的增加,重要的是要有适当数量的操作储备来为系统提供备份。这将确保系统在可变功率条件下保持稳定,从而提高系统的可靠性。本文着重于量化额外的运行储备要求,以在间歇性条件下稳定系统,并使可再生能源大量渗透到孤岛电力系统中。它评估在高风和低风季节的旋转储备需求。

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