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contributor authorنوید یکتایen
contributor authorسینا شریفیen
contributor authorفاطمه دبوری فریمانیen
contributor authorعاطفه زمردی مقدمen
contributor authorتکتم شریفیان عطارen
contributor authorمحمدحسین جاویدی دشت بیاضen
contributor authorNavid Yektayfa
contributor authorSina Sharififa
contributor authorFateme Daburi Farimanifa
contributor authoratefeh zomorodi moghadamfa
contributor authorToktam Sharifiyan Attarfa
contributor authorMohammad Hossein Javidi Dasht Bayazfa
date accessioned2020-06-06T14:30:13Z
date available2020-06-06T14:30:13Z
date copyright10/22/2018
date issued2018
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3399483?show=full
description abstractRestructuring of traditional regulated and centralized power systems has brought the new concept of microgrids in distribution networks. Microgrids could be attractive options to optimally apply the benefits of distributed generation and provide a secure and resilient power supply paralleled with the main grid. A smart AC-DC hybrid microgrid test-bed is designed and implemented in Power System Studies & Restructuring Laboratory in the Faculty of Engineering of Ferdowsi University of Mashhad to provide a microgrid-based framework to design, test, analyze and validate new operation methods in distribution networks. In this paper, an optimal design of a laboratory scale microgrid is presented. The lighting load of the laboratory is redesigned & simulated to comply with the lighting standards. The smart lighting system and its related communication technologies are also explained in the paper. To design a proper photovoltaic system for the microgrid, a comprehensive simulation based on accurate geographical location, 3D shading models and weather data is performed using System Modeling Advisor -SAM- software.en
languageEnglish
titleSmart Hybrid AC-DC Microgrid Test-bed for Power System Studies & Restructuring Laboratory - Part Ien
typeConference Paper
contenttypeExternal Fulltext
subject keywordshybrid microgriden
subject keywordstest-beden
subject keywordssmart LED lightingen
subject keywordsphotovoltaicen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1072877.html
identifier articleid1072877


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