D
Dimitris T. Lagos
Researcher at National Technical University of Athens
Publications - 15
Citations - 728
Dimitris T. Lagos is an academic researcher from National Technical University of Athens. The author has contributed to research in topics: Hardware-in-the-loop simulation & Distributed generation. The author has an hindex of 7, co-authored 15 publications receiving 338 citations.
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Journal ArticleDOI
Microgrid Stability Definitions, Analysis, and Examples
Mostafa Farrokhabadi,Dimitris T. Lagos,Richard W. Wies,Mario Paolone,Marco Liserre,Lasantha Meegahapola,Mahmoud Kabalan,Amir H. Hajimiragha,Dario Peralta,Marcelo A. Elizondo,Kevin P. Schneider,Claudio A. Canizares,Francis K. Tuffner,Jim Reilly,John W. Simpson-Porco,Ehsan Nasr,Lingling Fan,Patricio Mendoza-Araya,Reinaldo Tonkoski,Ujjwol Tamrakar,Nikos Hatziargyriou +20 more
TL;DR: In this paper, definitions and classification of microgrid stability are presented and discussed, considering pertinent microgrid features such as voltage-frequency dependence, unbalancing, low inertia, and generation intermittency.
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A Benchmark System for Hardware-in-the-Loop Testing of Distributed Energy Resources
Panos Kotsampopoulos,Dimitris T. Lagos,Nikos Hatziargyriou,M. Omar Faruque,Georg Lauss,Onyi Nzimako,Paul Forsyth,Michael Steurer,Ferdinanda Ponci,Antonello Monti,Venkata Dinavahi,Kai Strunz +11 more
TL;DR: A low-voltage benchmark system with detailed HIL setup is proposed for the testing of DER performance and results from CHIL simulationrelated to the centralized controls and experimental results of PHIL simulation related to local control substantiate the suitability of the proposed real-time simulation approach.
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Combined control and power hardware in-the-loop simulation for testing smart grid control algorithms
TL;DR: A smart grid control algorithm testing chain is proposed, that aims to gradually test control algorithms, in all their development stages, using increasingly advanced laboratory setups, and demonstrates that the proposed setup enables the algorithm to be effectively and realistically tested as part of the overall system.
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Seamless Transition Between Interconnected and Islanded Operation of DC Microgrids
TL;DR: A novel islanding detection method is presented ensuring fast detection of the islanding condition, based on the insertion of a controllable load in parallel with the DC Microgrid central switch.
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The Evolution of Research in Microgrids Control
TL;DR: An overview of this development of microgrids focusing on the technical control solutions proposed by reseachers for the various levels of MG organization hierarchy is provided and a critical assessment of selected, popular technologies is provided.