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An Improved Statistical Approach to Generation Shift Keys: Lessons Learned from an Analysis of the Austrian Control Zone

机译:一种改进的统计方法来发电键:从奥地利控制区分析中汲取的经验教训

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摘要

During market coupling, trading of electricity across borders is subject to capacity limits, provided by transmission system operators. Flow-based market coupling is the preferred method of the EU for cross-border capacity calculations. It is part of the EU's design for a single electricity market to maintain security of supply and achieve competitive energy prices while integrating growing shares of renewable energy to reach the reduction targets for greenhouse gas emissions. The algorithm of flow-based market coupling incorporates the physical restrictions of critical network elements during market clearing. For this, Generation Shift Keys are required to translate nodal into zonal information by predicting, which generating units participate in import-export balance changes. This analysis presents an improvement of an existing approach to Generation Shift Keys, further developed within a study for the Austrian transmission system operators, Austrian Power Grid. The proposed method allows for Generation Shift Key estimations based on regression analysis and actual dispatch decisions, decoupled from fixed power plant characteristics and merit-order assumptions. The unit selection process based on economic significance leads to statistically significant and robust Generation Shift Keys in the majority of cases. The results highlight the importance of computing time-dependent, but not necessarily hourly Generation Shift Keys and indicate a limited positive correlation between participation in zonal changes and power plant capacities. Both aspects confirm the purpose of the developed model's flexible and data-based properties.
机译:在市场耦合期间,跨境电力的交易受到传输系统运营商提供的容量限制。基于流动的市场耦合是欧盟用于跨境容量计算的优选方法。它是欧盟为单一电力市场设计的一部分,以维护供应的安全性并实现竞争性能源价格,同时整合可再生能源的持续股份,达到温室气体排放的减少目标。基于流量的市场耦合算法在市场清算期间包含关键网络元件的物理限制。为此,需要通过预测将节点转换为区域信息来将Nodal转换为区域信息,该生成单元参与导入 - 导出余额更改。该分析提出了一种改善了现有的发电键方法,进一步开发了奥地利传输系统运营商奥地利电网的研究。所提出的方法允许基于回归分析和实际调度决策的发电键估计,从固定的电厂特征分离和优点假设。基于经济意义的单位选择过程导致大多数情况下的统计上显着和强大的发电键。结果突出了计算时间依赖性的重要性,但不一定是每小时发电的换档键,并指示参与区内变化和发电能力之间的有限的正相关性。这两个方面都证实了开发模型的灵活和基于数据的属性的目的。

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