dc.contributor.author | Θεοδωρόπουλος, Στέφανος | el |
dc.contributor.author | Κανδρής, Διονύσιος-Ξενοφών | el |
dc.contributor.author | Σαμαράκου, Μαρία Τ. | el |
dc.contributor.author | Κουλουράς, Γρηγόριος Η. | el |
dc.date.accessioned | 2015-06-07T11:05:29Z | |
dc.date.available | 2015-06-07T11:05:29Z | |
dc.date.issued | 2015-06-07 | |
dc.identifier.uri | http://hdl.handle.net/11400/15452 | |
dc.rights | Αναφορά Δημιουργού-Μη Εμπορική Χρήση-Όχι Παράγωγα Έργα 3.0 Ηνωμένες Πολιτείες | * |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/3.0/us/ | * |
dc.source | http://www.hindawi.com/ | en |
dc.subject | renewable energy | |
dc.subject | simulation | |
dc.subject | Algorithms | |
dc.subject | ανανεώσιμη ενέργεια | |
dc.subject | προσομοίωση | |
dc.subject | αλγόριθμοι | |
dc.title | Fuzzy regulator design for wind turbine yaw control | en |
heal.type | journalArticle | |
heal.classification | Technology | |
heal.classification | Electrical engineering | |
heal.classification | Τεχνολογία | |
heal.classification | Ηλεκτρολογία Μηχανολογία | |
heal.classificationURI | http://id.loc.gov/authorities/subjects/sh85133147 | |
heal.classificationURI | http://zbw.eu/stw/descriptor/18426-4 | |
heal.classificationURI | **N/A**-Τεχνολογία | |
heal.classificationURI | **N/A**-Ηλεκτρολογία Μηχανολογία | |
heal.identifier.secondary | DOI: 10.1155/2014/516394 | |
heal.language | en | |
heal.access | campus | |
heal.publicationDate | 2014 | |
heal.bibliographicCitation | THEODOROPOULOS, S., KANDRIS, D.-X., SAMARAKOU, M.T. & KOULOURAS, G.I. (2014). Fuzzy regulator design for wind turbine yaw control. Advances in Mechanical Engineering. [online] 2014. Available from: http://www.hindawi.com/ | en |
heal.abstract | This paper proposes the development of an advanced fuzzy logic controller which aims to perform intelligent automatic control of the yaw movement of wind turbines. The specific fuzzy controller takes into account both the wind velocity and the acceptable yaw error correlation in order to achieve maximum performance efficacy. In this way, the proposed yaw control system is remarkably adaptive to the existing conditions. In this way, the wind turbine is enabled to retain its power output close to its nominal value and at the same time preserve its yaw system from pointless movement. Thorough simulation tests evaluate the proposed system effectiveness. | en |
heal.publisher | Hindawi Publishing Corporation | en |
heal.journalName | The Scientific World Journal | en |
heal.journalType | peer-reviewed | |
heal.fullTextAvailability | true |
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