Cellular Automata Model with Game Theory for Power Management of Hybrid Renewable Energy Smart Grids

Voutetakis, Paris/ Stergiopoulos, Fotis/ Ipsakis, Dimitris/ Papadopoulou, Simira/ Papadopoulos, Athanasios/ Ziogou, Chrysovalantou/ Seferlis, Panos/ Giaouris, Damian/ Georgoulas, Nikolaos/ Sirakoulis, Georgios/ Karafyllidis, Ioannis/ Chatziagorakis, Prodromos/ Elmasides, Costas/ Andreadis, Ioannis/ Παπαδοπούλου, Σημίρα/ Γεωργουλάς, Νικόλαος/ Παπαδόπουλος, Αθανάσιος/ Ιψάκης, Δημήτρης/ Γκιαούρης, Δαμιανός/ Βουτετάκης, Πάρις/ Στεργιόπουλος, Φώτης/ Σεφερλής, Πάνος/ Ζιώγου, Xρυσοβαλάντου/ Γεωργουλάς, Νικόλαος/ Χατζηαγοράκης, Πρόδρομος/ Καραφυλλίδης, Ιωάννης/ Ανδρεάδης, Ιωάννης/ Ελμασίδης, Κωνσταντίνος/ Συρακούλης, Γεώργιος


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dc.contributor.authorVoutetakis, Parisel
dc.contributor.authorStergiopoulos, Fotisel
dc.contributor.authorIpsakis, Dimitrisel
dc.contributor.authorPapadopoulou, Simirael
dc.contributor.authorPapadopoulos, Athanasiosel
dc.contributor.authorZiogou, Chrysovalantouel
dc.contributor.authorSeferlis, Panosel
dc.contributor.authorGiaouris, Damianel
dc.contributor.authorGeorgoulas, Nikolaosel
dc.contributor.authorSirakoulis, Georgiosel
dc.contributor.authorKarafyllidis, Ioannisel
dc.contributor.authorChatziagorakis, Prodromosel
dc.contributor.authorElmasides, Costasel
dc.contributor.authorAndreadis, Ioannisel
dc.contributor.otherΠαπαδοπούλου, Σημίραel
dc.contributor.otherΓεωργουλάς, Νικόλαοςel
dc.contributor.otherΠαπαδόπουλος, Αθανάσιοςel
dc.contributor.otherΙψάκης, Δημήτρηςel
dc.contributor.otherΓκιαούρης, Δαμιανόςel
dc.contributor.otherΒουτετάκης, Πάριςel
dc.contributor.otherΣτεργιόπουλος, Φώτηςel
dc.contributor.otherΣεφερλής, Πάνοςel
dc.contributor.otherΖιώγου, Xρυσοβαλάντουel
dc.contributor.otherΓεωργουλάς, Νικόλαοςel
dc.contributor.otherΧατζηαγοράκης, Πρόδρομοςel
dc.contributor.otherΚαραφυλλίδης, Ιωάννηςel
dc.contributor.otherΑνδρεάδης, Ιωάννηςel
dc.contributor.otherΕλμασίδης, Κωνσταντίνοςel
dc.contributor.otherΣυρακούλης, Γεώργιοςel
dc.date.accessioned2015-07-09T10:02:47Zel
dc.date.accessioned2018-02-28T16:10:13Z-
dc.date.available2015-07-09T10:02:47Zel
dc.date.available2018-02-28T16:10:13Z-
dc.date.issued2014-09-22el
dc.identifier10.1007/978-3-319-11520-7_26el
dc.identifierhttp://link.springer.com/chapter/10.1007%2F978-3-319-11520-7_26el
dc.identifier.citationPoland. Prodromos Chatziagorakis, Constantinos Elmasides,Georgios Ch. Sirakoulis, Ioannis Karafyllidis, Ioannis Andreadis, Nikolaos Georgoulas, Damianos Giaouris. Athanasios I. Papadopoulos, Chrysovalantou Ziogou, Dimitris Ipsakis, Simira Papadopoulou, Panos Seferlis, Fotis Stergiopoulos, Paris Voutetakis. (2014) Cellular Automata Model with Game Theory for Power Management of Hybrid Renewable Energy Smart Grids. Switzerland: Springer International Publishing. (pp. 248-257)el
dc.identifier.citationInternational Conference on Cellular Automata for Research and Industry, Krakow, 2014el
dc.identifier.isbn978-3-319-11519-1el
dc.identifier.issn0302-9743el
dc.identifier.urihttp://195.251.240.227/jspui/handle/123456789/10013-
dc.descriptionΔημοσιεύσεις μελών--ΣΤΕΦ--Τμήμα Αυτοματισμού,2014el
dc.description.abstractIn recent years, control of smart grids that match electricity demand in different sites and forms with supply has been considered as one of the most difficult aspect of smart energy grids design. In this paper we present a Cellular Automata (CA) based approach combined with Game Theory for the enhancement of Power Management Strategies (PMSs) of multiple Hybrid Renewable Energy Systems (HYRES) that form a smart grid for the exchange of energy. More specifically, taking advantage of the local interactions of HYRES we coupled CA principles with Public Goods Game (PGG) for modeling. The presented CA model focuses on providing valuable feedback for PMSs of the understudy HYRES connected in a grid. In this manner, a flexible network based HYRES design is considered and applied to specific HYRESs located in Olvio, near Xanthi, Greece, part of SYSTEMS SUNLIGHT facilities. The proposed model can be applied to the understudy HYRESs grid management to enhance and optimize its PMS based on the provided energy prediction scenarios.el
dc.language.isoenel
dc.publisherSpringerel
dc.relation.ispartof11th International Conference on Cellular Automata for Research and Industryel
dc.rightsΤο τεκμήριο πιθανώς υπόκειται σε σχετική με τα Πνευματικά Δικαιώματα νομοθεσίαel
dc.rightsThis item is probably protected by Copyright Legislationel
dc.subjectModelingel
dc.subjectHybrid Renewable Energy Systemel
dc.subjectSmart Energy Gridsel
dc.subjectPower Management Strategyel
dc.subjectGame Theoryel
dc.subjectCellular Automatael
dc.titleCellular Automata Model with Game Theory for Power Management of Hybrid Renewable Energy Smart Gridsel
dc.typeConference articleel
heal.typeotherel
heal.type.enOtheren
heal.dateAvailable2018-02-28T16:11:13Z-
heal.languageelel
heal.accessfreeel
heal.recordProviderΤΕΙ Θεσσαλονίκηςel
heal.fullTextAvailabilityfalseel
heal.type.elΆλλοel
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