Construction, operation and control of a laboratory-scale microgrid
To provide a test facility for possible demonstrations of advanced distributed generation system integration strategies, a single-phase laboratory-scale Microgrid system is set up. Two distributed generators are included in this Microgrid, a photovoltaic simulator and a wind turbine simulator. Both...
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creator | Yang Zhangang Che Yanbo Wang Chengshan |
description | To provide a test facility for possible demonstrations of advanced distributed generation system integration strategies, a single-phase laboratory-scale Microgrid system is set up. Two distributed generators are included in this Microgrid, a photovoltaic simulator and a wind turbine simulator. Both of them are connected to the AC grid via flexible power electronic interface respectively. For stable collaborative operation, a battery energy storage interfaced with a bi-directional inverter is necessary in this Microgrid. In the grid-connected mode, both the distributed generators converters and the bi-directional inverter are the grid-following unit. While switching from grid-connected mode to islanded mode, the bi-directional inverter is setting the voltage and frequency of the Microgrid through absorbing or releasing energy. The operation experimental results show that the laboratory-scale Microgrid system can operate in grid-connected or islanded mode, with a seamless transfer from one mode to the other, and hence increase the reliability of energy supplies. |
doi_str_mv | 10.1109/SUPERGEN.2009.5348214 |
format | Conference Proceeding |
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Two distributed generators are included in this Microgrid, a photovoltaic simulator and a wind turbine simulator. Both of them are connected to the AC grid via flexible power electronic interface respectively. For stable collaborative operation, a battery energy storage interfaced with a bi-directional inverter is necessary in this Microgrid. In the grid-connected mode, both the distributed generators converters and the bi-directional inverter are the grid-following unit. While switching from grid-connected mode to islanded mode, the bi-directional inverter is setting the voltage and frequency of the Microgrid through absorbing or releasing energy. The operation experimental results show that the laboratory-scale Microgrid system can operate in grid-connected or islanded mode, with a seamless transfer from one mode to the other, and hence increase the reliability of energy supplies.</description><identifier>ISSN: 2156-9681</identifier><identifier>ISBN: 1424449340</identifier><identifier>ISBN: 9781424449347</identifier><identifier>DOI: 10.1109/SUPERGEN.2009.5348214</identifier><language>eng</language><publisher>IEEE</publisher><subject>Bi-directional inverter ; Bidirectional control ; Distributed control ; distributed generation ; Distributed power generation ; grid-connected mode ; Inverters ; islanded-mode ; Laboratories ; Microgrid ; Photovoltaic systems ; Solar power generation ; Test facilities ; Wind energy generation ; Wind turbines</subject><ispartof>2009 International Conference on Sustainable Power Generation and Supply, 2009, p.1-5</ispartof><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktohtml>$$Uhttps://ieeexplore.ieee.org/document/5348214$$EHTML$$P50$$Gieee$$H</linktohtml><link.rule.ids>309,310,780,784,789,790,2058,27925,54920</link.rule.ids><linktorsrc>$$Uhttps://ieeexplore.ieee.org/document/5348214$$EView_record_in_IEEE$$FView_record_in_$$GIEEE</linktorsrc></links><search><creatorcontrib>Yang Zhangang</creatorcontrib><creatorcontrib>Che Yanbo</creatorcontrib><creatorcontrib>Wang Chengshan</creatorcontrib><title>Construction, operation and control of a laboratory-scale microgrid</title><title>2009 International Conference on Sustainable Power Generation and Supply</title><addtitle>SUPERGEN</addtitle><description>To provide a test facility for possible demonstrations of advanced distributed generation system integration strategies, a single-phase laboratory-scale Microgrid system is set up. 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The operation experimental results show that the laboratory-scale Microgrid system can operate in grid-connected or islanded mode, with a seamless transfer from one mode to the other, and hence increase the reliability of energy supplies.</description><subject>Bi-directional inverter</subject><subject>Bidirectional control</subject><subject>Distributed control</subject><subject>distributed generation</subject><subject>Distributed power generation</subject><subject>grid-connected mode</subject><subject>Inverters</subject><subject>islanded-mode</subject><subject>Laboratories</subject><subject>Microgrid</subject><subject>Photovoltaic systems</subject><subject>Solar power generation</subject><subject>Test facilities</subject><subject>Wind energy generation</subject><subject>Wind turbines</subject><issn>2156-9681</issn><isbn>1424449340</isbn><isbn>9781424449347</isbn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2009</creationdate><recordtype>conference_proceeding</recordtype><sourceid>6IE</sourceid><sourceid>RIE</sourceid><recordid>eNotj9tKw0AURQdUsNZ-gQjzASaeM5ck8yihVqGoaH0uczmRkTRTJvGhf2_FPu0NCzZrM3aLUCKCuf_4fFu-r5YvpQAwpZaqEajO2BUqoZQyUsE5mwnUVWGqBi_ZYhy_AUAKkBpgxto2DeOUf_wU03DH056y_avcDoH7NEw59Tx13PLeunRkKR-K0due-C76nL5yDNfsorP9SItTztnmcblpn4r16-q5fVgX0cBUiBCAvHeucg3KygglfVeHo27jnKsb6LwzymvQFAQZYbRFRXUtCbGynZBzdvM_G4lou89xZ_Nhe7osfwFFrExF</recordid><startdate>200904</startdate><enddate>200904</enddate><creator>Yang Zhangang</creator><creator>Che Yanbo</creator><creator>Wang Chengshan</creator><general>IEEE</general><scope>6IE</scope><scope>6IL</scope><scope>CBEJK</scope><scope>RIE</scope><scope>RIL</scope></search><sort><creationdate>200904</creationdate><title>Construction, operation and control of a laboratory-scale microgrid</title><author>Yang Zhangang ; Che Yanbo ; Wang Chengshan</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-i90t-2dd0eccbb6b81369243cf7d2148bbb780fcb94c505ed2e9295a14e773e116af23</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2009</creationdate><topic>Bi-directional inverter</topic><topic>Bidirectional control</topic><topic>Distributed control</topic><topic>distributed generation</topic><topic>Distributed power generation</topic><topic>grid-connected mode</topic><topic>Inverters</topic><topic>islanded-mode</topic><topic>Laboratories</topic><topic>Microgrid</topic><topic>Photovoltaic systems</topic><topic>Solar power generation</topic><topic>Test facilities</topic><topic>Wind energy generation</topic><topic>Wind turbines</topic><toplevel>online_resources</toplevel><creatorcontrib>Yang Zhangang</creatorcontrib><creatorcontrib>Che Yanbo</creatorcontrib><creatorcontrib>Wang Chengshan</creatorcontrib><collection>IEEE Electronic Library (IEL) Conference Proceedings</collection><collection>IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume</collection><collection>IEEE Xplore All Conference Proceedings</collection><collection>IEEE Electronic Library (IEL)</collection><collection>IEEE Proceedings Order Plans (POP All) 1998-Present</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext_linktorsrc</fulltext></delivery><addata><au>Yang Zhangang</au><au>Che Yanbo</au><au>Wang Chengshan</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Construction, operation and control of a laboratory-scale microgrid</atitle><btitle>2009 International Conference on Sustainable Power Generation and Supply</btitle><stitle>SUPERGEN</stitle><date>2009-04</date><risdate>2009</risdate><spage>1</spage><epage>5</epage><pages>1-5</pages><issn>2156-9681</issn><isbn>1424449340</isbn><isbn>9781424449347</isbn><abstract>To provide a test facility for possible demonstrations of advanced distributed generation system integration strategies, a single-phase laboratory-scale Microgrid system is set up. Two distributed generators are included in this Microgrid, a photovoltaic simulator and a wind turbine simulator. Both of them are connected to the AC grid via flexible power electronic interface respectively. For stable collaborative operation, a battery energy storage interfaced with a bi-directional inverter is necessary in this Microgrid. In the grid-connected mode, both the distributed generators converters and the bi-directional inverter are the grid-following unit. While switching from grid-connected mode to islanded mode, the bi-directional inverter is setting the voltage and frequency of the Microgrid through absorbing or releasing energy. The operation experimental results show that the laboratory-scale Microgrid system can operate in grid-connected or islanded mode, with a seamless transfer from one mode to the other, and hence increase the reliability of energy supplies.</abstract><pub>IEEE</pub><doi>10.1109/SUPERGEN.2009.5348214</doi><tpages>5</tpages></addata></record> |
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identifier | ISSN: 2156-9681 |
ispartof | 2009 International Conference on Sustainable Power Generation and Supply, 2009, p.1-5 |
issn | 2156-9681 |
language | eng |
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source | IEEE Electronic Library (IEL) Conference Proceedings |
subjects | Bi-directional inverter Bidirectional control Distributed control distributed generation Distributed power generation grid-connected mode Inverters islanded-mode Laboratories Microgrid Photovoltaic systems Solar power generation Test facilities Wind energy generation Wind turbines |
title | Construction, operation and control of a laboratory-scale microgrid |
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