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Long Term analysis of submarine transmission grid extensions between the Greek islands and the mainland

机译:希腊岛屿与大陆潜艇传输网格延伸的长期分析

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Interconnections' infrastructure is considered fundamental to implement the common rules for the internal electricity market according to 2009/72/EU. Greece currently consists of 29 non-interconnected island systems, experiencing frequent forced outages and high generation costs. A number of interconnection plans are in the pipeline between the Greek islands in the Aegean Sea archipelago and the Greek bulk continental grid. This paper investigates interconnection scenarios and their impact in terms of security of supply, costs and renewable energy integration into the system. PLEXOS? Simulation Software by Energy Exemplar is used to simulate the Greek electricity system. The results show a twofold growth of renewables share between 2020 and 2040 while electricity generation costs recorded on the non-interconnected islands mirror continental costs following the grid extensions. Loss of load probability and unserved energy are eliminated, whilst greenhouse gas emissions are reduced by 73% (vs 1990) in 2040.
机译:互连基础设施被认为是根据2009/72 /欧盟实施内部电力市场的常用规则的基础。希腊目前由29个非互连的岛屿系统组成,经常经常强迫中断和高代成本。许多互连计划在爱琴海群岛和希腊散装大陆网格中的希腊岛屿之间的管道中。本文调查了互连情景及其对供应,成本和可再生能源集成到系统的安全性的影响。丛?通过能量示例的仿真软件用于模拟希腊电力系统。结果表明,在2020年至2040年间,再生能较的再生份额在2020年至2040年之间,而在网格延伸之后记录在非互连岛屿上的电力成本。消除了负载概率和造成的能量损失,而2040年温室气体排放量减少了73%(VS 1990)。

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