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Exploring the meteorological potential for planning a high performance European Electricity Super-grid: optimal power capacity distribution among countries

机译:探索规划高性能欧洲气象超级电网的气象潜力:各国之间的最佳电力分配

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摘要

The concept of a European Super-grid for electricity presents clear advantages for a reliable and affordable renewable power production (photovoltaics and wind). Based on the mean-variance portfolio optimization analysis, we explore optimal scenarios for the allocation of new renewable capacity at national level in order to provide to energy decision-makers guidance about which regions should be mostly targeted to either maximize total production or reduce its day-to-day variability.ududThe results show that the existing distribution of renewable generation capacity across Europe is far from optimal: i.e., a 'better' spatial distribution of resources could have been achieved with either a ~31% increase in mean power supply (for the same level of day-to-day variability) or a ~37.5% reduction in day-to-day variability (for the same level of mean productivity). Careful planning of additional increments in renewable capacity at the European level could, however, act to significantly ameliorate this deficiency. The choice of where to deploy resources depends, however, on the objective being pursued – on the one hand, if the goal is to maximize average output, then new capacity is best allocated in the countries with highest resources, whereas investment in additional capacity in a north/south dipole pattern across Europe would act to most reduce daily variations and thus decrease the day-to-day volatility of renewable power supply.
机译:欧洲超级电网的概念为可靠且负担得起的可再生能源生产(光伏和风能)提供了明显的优势。在均值方差组合优化分析的基础上,我们探索了在国家一级分配新可再生能源容量的最佳方案,以便为能源决策者提供有关哪些地区应主要针对以最大化总产量或减少其日产量的指导 ud ud结果表明,欧洲现有的可再生能源发电能力分布还远未达到最佳状态:即,可以实现资源“更好”的空间分布,且均值可增加约31%电源(用于相同水平的日常可变性)或大约37.5%的日常可变性减少(用于相同水平的平均生产率)。但是,仔细计划在欧洲范围内增加可再生能源发电量的增量可以显着缓解这种不足。但是,在何处配置资源取决于所追求的目标–一方面,如果目标是最大程度地提高平均产出,则最好在资源最多的国家中分配新的产能,而在其他地区投资更多产能欧洲各地的南北偶极子格局将最大程度地减少每日变化,从而减少可再生能源供应的日常波动。

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