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Comparison of advanced power system operations models for large-scale renewable integration

机译:大规模可再生能源整合的高级电力系统运行模型的比较

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Increased renewable energy sources (RES) penetration requires significant changes in the short-term power system operations practice. Both current industry practices and relevant literature investigate models that operate on variable time scales to address RES uncertainty and variability. This paper presents a comparison of three different integrated short-term power system operations models regarding their ability to deal with large amounts of renewable penetration. The first model is a rolling unified unit commitment-economic dispatch (UUCED) model with variable time resolution, recently introduced by the authors. The second scheduling model comprises a rolling intraday unit commitment and a realtime dispatch with look-ahead capability (two-level model). The third model operates the system on a three-level hierarchy: it comprises a 48-h reliability unit commitment (deterministic or stochastic), a rolling intraday unit commitment and a real-time dispatch with look-ahead capability. The comparison is performed on the basis of an annual simulation of the Greek Interconnected Power System using 2013 historic wind power and load data. Simulation results demonstrate that the UUCED model better accommodates the increasing RES production by minimizing the system operating costs without jeopardizing system security. (C)) 2015 Elsevier B.V. All rights reserved.
机译:增加可再生能源(RES)的普及率要求在短期电力系统运营实践中做出重大改变。当前的行业实践和相关文献都研究了在可变时间尺度上运行的模型,以解决RES的不确定性和可变性。本文对三种不同的集成短期电力系统运行模型在处理大量可再生能源渗透方面的能力进行了比较。第一个模型是作者最近引入的具有可变时间分辨率的滚动统一单位承诺经济调度(UUCED)模型。第二调度模型包括滚动的日内单位承诺和具有超前能力的实时调度(两级模型)。第三个模型在三级层次结构上运行系统:它包括48小时可靠性单位承诺(确定性或随机性),日内滚动单位承诺以及具有超前功能的实时调度。比较是根据希腊互联电网的年度模拟,使用2013年历史风电和负荷数据进行的。仿真结果表明,UUCED模型通过在不损害系统安全性的情况下将系统运行成本降至最低,从而更好地适应了不断增加的RES产量。 (C))2015 Elsevier B.V.保留所有权利。

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