DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS

Renewable energy-based grid integrations in distribution systems cause changes in the energy structure of the grid such as load flow, short circuit and protection coordination. Today, conventional transformers are insufficient in meeting the needs of loads with different profiles and in connection w...

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Main Authors: Burak Esenboğa, Tuğçe Demirdelen, Mehmet Tümay
Format: Article
Language:English
Published: Panevėžio kolegija 2020-12-01
Series:Taikomieji tyrimai studijose ir praktikoje
Subjects:
Online Access:https://ojs.panko.lt/index.php/ARSP/article/view/110/88
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spelling doaj-1c75096a607f480fbbc41c54977c61982021-01-15T06:55:02ZengPanevėžio kolegijaTaikomieji tyrimai studijose ir praktikoje 2029-12802669-00712020-12-011613845DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMSBurak Esenboğa0Tuğçe Demirdelen1Mehmet Tümay2Adana Alparslan Türkeş Science and Technology UniversityAdana Alparslan Türkeş Science and Technology UniversityAdana Alparslan Türkeş Science and Technology UniversityRenewable energy-based grid integrations in distribution systems cause changes in the energy structure of the grid such as load flow, short circuit and protection coordination. Today, conventional transformers are insufficient in meeting the needs of loads with different profiles and in connection with renewable energy sources such as solar and wind to the grid. Additional mechanisms are needed to overcome power quality problems, especially voltage rise and fall, fraying, or harmonics. With the advances in semiconductor technology, power electronics has emerged as a promising solution to dealing with the problems of complex power systems. Solid-state transformer (SST) is a novel technology that can affect developments in many fields such as renewable energy systems, smart grids, distribution tail systems for flexible power conversion between medium voltage distribution and low-voltage customer side. Compared to the conventional transformers, SSTs provide reactive power compensation, simple connection of renewable energy sources and battery systems, power factor correction, galvanic isolation, smart protection, harmonic control and frequency conversion. As a result, the integration of renewable energy plants to the electrical grid creates big challenges in terms of harmonics, power flow control, power factor correction, isolation and smart protection. Thus, SSTs will play a significant role in future grid topologies. In this study, modeling and analysis of a solid-state transformer for a grid-connected solar PV plant are carried out with MATLAB/Simulink. The power analyses of the proposed system are examined thanks to the simulation study. This analysis would be a significant contribution to the development and implementation of renewable energy-based applications of the SSTs.https://ojs.panko.lt/index.php/ARSP/article/view/110/88solid-state transformersmart gridsmart transformersolar pv
collection DOAJ
language English
format Article
sources DOAJ
author Burak Esenboğa
Tuğçe Demirdelen
Mehmet Tümay
spellingShingle Burak Esenboğa
Tuğçe Demirdelen
Mehmet Tümay
DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
Taikomieji tyrimai studijose ir praktikoje
solid-state transformer
smart grid
smart transformer
solar pv
author_facet Burak Esenboğa
Tuğçe Demirdelen
Mehmet Tümay
author_sort Burak Esenboğa
title DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
title_short DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
title_full DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
title_fullStr DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
title_full_unstemmed DESIGN AND OPERATION OF A SOLID-STATE TRANSFORMER FOR INTEGRATION OF RENEWABLE ENERGY SYSTEMS
title_sort design and operation of a solid-state transformer for integration of renewable energy systems
publisher Panevėžio kolegija
series Taikomieji tyrimai studijose ir praktikoje
issn 2029-1280
2669-0071
publishDate 2020-12-01
description Renewable energy-based grid integrations in distribution systems cause changes in the energy structure of the grid such as load flow, short circuit and protection coordination. Today, conventional transformers are insufficient in meeting the needs of loads with different profiles and in connection with renewable energy sources such as solar and wind to the grid. Additional mechanisms are needed to overcome power quality problems, especially voltage rise and fall, fraying, or harmonics. With the advances in semiconductor technology, power electronics has emerged as a promising solution to dealing with the problems of complex power systems. Solid-state transformer (SST) is a novel technology that can affect developments in many fields such as renewable energy systems, smart grids, distribution tail systems for flexible power conversion between medium voltage distribution and low-voltage customer side. Compared to the conventional transformers, SSTs provide reactive power compensation, simple connection of renewable energy sources and battery systems, power factor correction, galvanic isolation, smart protection, harmonic control and frequency conversion. As a result, the integration of renewable energy plants to the electrical grid creates big challenges in terms of harmonics, power flow control, power factor correction, isolation and smart protection. Thus, SSTs will play a significant role in future grid topologies. In this study, modeling and analysis of a solid-state transformer for a grid-connected solar PV plant are carried out with MATLAB/Simulink. The power analyses of the proposed system are examined thanks to the simulation study. This analysis would be a significant contribution to the development and implementation of renewable energy-based applications of the SSTs.
topic solid-state transformer
smart grid
smart transformer
solar pv
url https://ojs.panko.lt/index.php/ARSP/article/view/110/88
work_keys_str_mv AT burakesenboga designandoperationofasolidstatetransformerforintegrationofrenewableenergysystems
AT tugcedemirdelen designandoperationofasolidstatetransformerforintegrationofrenewableenergysystems
AT mehmettumay designandoperationofasolidstatetransformerforintegrationofrenewableenergysystems
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