A hybrid methodology for distribution level photovoltaic power production forecasting verified at the distribution system of Cyprus

Author:

Theocharides Spyros1ORCID,Spanias Chrysovalantis2,Papageorgiou Ioannis2,Makrides George1,Stavrinos Stavros3,Efthymiou Venizelos1,Georghiou George E.1

Affiliation:

1. PV Technology Laboratory, FOSS Research Centre for Sustainable Energy Department of Electrical and Computer Engineering, University of Cyprus 1 University Avenue Nicosia 2109 Cyprus

2. Distribution System Operator Electricity Authority of Cyprus (EAC) Nicosia Cyprus

3. Manager, Cyprus Transmission System Operator (CTSO) Strovolos, Nicosia Cyprus

Funder

European Regional Development Fund

Publisher

Institution of Engineering and Technology (IET)

Subject

Renewable Energy, Sustainability and the Environment

Reference61 articles.

1. IEA:Electricity security in tomorrow's power systems.https://www.iea.org/articles/electricity‐security‐in‐tomorrow‐s‐power‐systems(2020). Accessed 14 Jan 2021

2. IEA:Renewables 2019: Market analysis and forecast from 2019 to 2024.https://www.iea.org/reports/renewables‐2019(2020). Accessed 14 Jan 2021

3. IEA:Introduction to system integration of renewables: Decarbonising while meeting growing demand 2020.https://www.iea.org/reports/introduction‐to‐system‐integration‐of‐renewables(2020). Accessed 14 Jan 2021

4. A novel impact-assessment framework for distributed PV installations in low-voltage secondary networks

5. Distribution asset management through coordinated microgrid scheduling

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