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Inftech."],"published-print":{"date-parts":[[2018,12]]},"abstract":"<jats:title>Abstract<\/jats:title><jats:p>The main purpose of this paper is a comprehensive investigation of the Greek electricity production and transmission system with a focus on the integration of renewable energy sources. A techno-economic model of the Continental European electricity sector called ATLANTIS is used to analyse the development of the Greek power system. Several different projections\u2014including national, ENTSO-E and European scenarios\u2014have been investigated and the officially published national development strategy of Greece until 2027 has been chosen for the simulation. Starting with the modelling of the technical system, that considers a pre-defined development path for the power plant park and the transmission grid, several techno-economic investigations are performed. These include the effects of an increasing electricity demand on the electricity production with respect to several technologies, the imports, the load flows and the CO<jats:sub>2<\/jats:sub> emissions. Additionally, the age structure and the value of the power plant park are analysed. The results illustrate a remarkable shift from a fossil fuel dominated electricity structure to an electricity system with a high share of renewable energies. The integration of the wind power and solar\/PV production capacities requires a corresponding enhancement of the Greek transmission grid including several new cross-border connections to the neighbouring countries. Therefore, all important transmission grid projects based on the TYNDP and the national grid operator have been included in the physical transmission system, which covers long distance connections between the islands and the mainland as well as connections between the islands themselves by using also the HVDC technology. Furthermore, it is shown that due to the reduced lifetime of the RES technologies compared to the fossil-fuelled and the hydro power plants the up-coming re-investment cycles have to be planned carefully. Finally, the paper closes with a comprehensive discussion of the outcomes and gives an outlook of the ongoing and the future works, which cover e.g. a stronger linkage of the whole Mediterranean electricity systems to the European transmission grid according to a European energy strategy.<\/jats:p>","DOI":"10.1007\/s00502-018-0666-8","type":"journal-article","created":{"date-parts":[[2018,11,29]],"date-time":"2018-11-29T07:18:58Z","timestamp":1543475938000},"page":"609-615","update-policy":"http:\/\/dx.doi.org\/10.1007\/springer_crossmark_policy","source":"Crossref","is-referenced-by-count":0,"title":["Implications of the integration of renewable energies into the electricity market of Greece"],"prefix":"10.1007","volume":"135","author":[{"given":"Udo","family":"Bachhiesl","sequence":"first","affiliation":[]},{"given":"P.","family":"Kakavas","sequence":"additional","affiliation":[]},{"given":"G.","family":"Feichtinger","sequence":"additional","affiliation":[]},{"given":"R.","family":"Gaugl","sequence":"additional","affiliation":[]}],"member":"297","published-online":{"date-parts":[[2018,11,29]]},"reference":[{"key":"666_CR1","unstructured":"European Commission (2008): Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions\u20142020 by 2020, Europe\u2019s climate change opportunity, Brussels, 23.1.2008 COM (2008) 30 final."},{"key":"666_CR2","unstructured":"European Commission (2014): Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions\u2014a policy framework for climate and energy in the period from 2020 to 2030, Brussels, 22.1.2014 COM (2014) 15 final."},{"key":"666_CR3","unstructured":"European Commission (2011): Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions\u2014A Roadmap for moving to a competitive low carbon economy in 2050\u201d, Brussels. 8.3.2011 COM(2011) 112 final."},{"key":"666_CR4","unstructured":"Admie (2016): Ten year development plan 2016\u20132027. http:\/\/www.admie.gr\/fileadmin\/groups\/EDAS_DSS\/MASM\/DPA_2017-2026_Final\/DPA_2017-2026.pdf."},{"key":"666_CR5","unstructured":"Admie (2017): Power case study for the period 2017\u20132027. http:\/\/www.admie.gr\/fileadmin\/groups\/EDAS_DSS\/AnaptixiSistimatos\/Meleti_eparkeias_2017_2027.pdf."},{"key":"666_CR6","unstructured":"ENTSO-e (2015): Final ten year development plan 2016\u2014scenarios and the consultation outcomes. https:\/\/www.entsoe.eu\/major-projects\/ten-year-network-development-plan\/ten%20year%20network%20development%20plan%202016\/Pages\/default.aspx."},{"key":"666_CR7","unstructured":"ENTSO-e (2015): Regional investment plan 2015\u2014continental South East region. https:\/\/www.entsoe.eu\/Documents\/TYNDP%20documents\/TYNDP%202016\/rgips\/Regional%20Investment%20Plan%202015%20-%20RG%20CSE%20-%20Final.pdf."},{"key":"666_CR8","unstructured":"European Commission (2016): The reference scenario 2016. https:\/\/ec.europa.eu\/energy\/sites\/ener\/files\/documents\/ref2016_report_final-web.pdf."},{"issue":"4","key":"666_CR9","doi-asserted-by":"publisher","first-page":"965","DOI":"10.1007\/s10100-015-0413-8","volume":"24","author":"H. 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