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Stochastic day-ahead scheduling of thermal and hybrid units in insular power systems with high wind penetration

机译:具有高风渗透的绝大动力系统中热和混合单元的随机日期调度

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Global targets for reduced CO emissions along with guaranteed energy supply have motivated governments to take drastic steps towards the large-scale integration of Renewable Energy Sources (RES). With the levels of wind integration constantly increasing, more sophisticated methods are required to ensure the economic, secure and sustainable energy provision, especially in insular power systems, where the only energy source is the local generation mix. Hybrid Power Stations (HPS), comprising both wind farms and hydro storage facilities, can help in this direction. In this work, a two-stage stochastic model is presented, for the joint optimization of energy and reserves required from both conventional units and HPS. The proposed methodology is tested on a real-world system, the insular power system of Crete, for the examination of the HPS's integration impact on the day-ahead scheduling process.
机译:减少共同排放的全球目标以及保证能源供应具有激励的政府,以便对可再生能源(RES)进行大规模集成的急剧措施。随着风体集成的水平不断增加,需要更复杂的方法来确保经济,安全和可持续的能量提供,特别是在唯一的能源是局部一代混合的情况下。混合动力站(HPS),包括风电场和水力储存设施,可以帮助这种方向。在这项工作中,提出了一种两级随机模型,用于常规单位和HPS所需的能量和储备的联合优化。拟议的方法在真实世界的系统上进行了测试,克里特岛的绝大电力系统,用于检查HPS对现代调度过程的一体化影响。

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