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A long-term capacity expansion planning model for an electric power system integrating large-size renewable energy technologies

机译:集成了大型可再生能源技术的电力系统的长期容量扩展计划模型

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The recent interest in reducing greenhouse gas emissions and the recent technical evolution of energy networks to smart grids have facilitated the integration of renewable energy technologies (RETs) into the electricity sector around the world. Although renewable energy provides substantial benefits for the climate and the economy, the large-size deployment of RETs could possibly hurt the level of power system reliability because of the RETs' technical limitations, intermittency, and non-dispatchability. Many power system planners and operators consider this a critical problem. This paper proposes a possible solution to this problem by designing a new stochastic optimization model for the long-term capacity expansion planning of a power system explicitly incorporating the uncertainty associated with RETs, and develops its solution by using the sample average approximation method. A numerical analysis then shows the effects of the large-scale integration of RETs on not only the power system's reliability level but also, and consequentially, its long-term capacity expansion planning. From the results of the numerical analysis, we show that our proposed model can develop a long-term capacity expansion plan that is more robust with respect to uncertain RETs and quantify the capacity the system requires to be reliable. (C) 2017 Elsevier Ltd. All rights reserved.
机译:最近对减少温室气体排放的兴趣以及对智能电网的能源网络的最新技术发展,促进了可再生能源技术(RET)融入全球电力行业。尽管可再生能源为气候和经济带来了巨大好处,但由于RET的技术局限性,间歇性和不可调度性,大规模部署RET可能会损害电力系统的可靠性。许多电力系统规划人员和操作人员都认为这是一个关键问题。本文针对电力系统的长期容量扩展计划设计了一个新的随机优化模型,为该问题提供了可能的解决方案,该模型明确地包含了与RETs相关的不确定性,并使用样本平均逼近方法来开发其解决方案。数值分析然后显示了可再生能源的大规模集成不仅对电力系统的可靠性水平,而且对电力系统的长期容量扩展计划产生了影响。从数值分析的结果来看,我们表明,我们提出的模型可以制定一个长期的容量扩展计划,该计划对于不确定的RET更稳健,并且可以量化系统可靠的容量。 (C)2017 Elsevier Ltd.保留所有权利。

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