Estimation of Power Exchange through 110 kV Overhead Power Lines at the Interface of the Romanian and Moldovan Power Systems / Estimarea schimbului de putere prin linii electrice aeriene 110 kV la interfața sistemelor electroenergetice ale României și Republicii Moldova / Оценка обмена мощностью по ВЛ 110 кВ румынской и молдавской энергосистем
The purpose of this paper is to estimate the possibility of technical use of the 110 kV voltage lines (OPL) for the interconnection of the power systems of the Republic of Moldova and Romania, taking into account in the unified power system regime, which includes the power system of the CIS countrie...
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description | The purpose of this paper is to estimate the possibility of technical use of the 110 kV voltage lines (OPL) for the interconnection of the power systems of the Republic of Moldova and Romania, taking into account in the unified power system regime, which includes the power system of the CIS countries, of Moldova, Romania, Ukraine and other countries in the region. In the calculation scheme of the permanent synchronous regime of the integrated system, the interconnection zone of the Moldovan and Romanian systems was highlighted for the lines of 110 kV: Stanca-Costeşti, Ţuţora (Fai) - Ungheni and Hushi-Cioara. Transformer phase difference angle adjustment devices have been introduced in the 110 kV OPL to provide the bidirectional power shift regime. In the existing topology of electricity networks, power flows at the power system interface are directed from the Republic of Moldova to Romania. Changing the direction of the power flows is possible through the 110 kV OPL A when equipped with phase shift devices. The results of the calculations of the permanent regime have demonstrated the possibility of achieving the reciprocal power exchange regime between the interconnected power systems by adjusting the phase difference angle. It was shown the possibility of stable operation when using 110 kV overhead power lines as interconnection lines of the Moldovan and Romanian power systems. The issue of interconnection through the 110 kV lines is complex and requires an individual approach to how to achieve it. Scopul acestei lucrări constă în estimarea posibilității utilizării tehnice a liniilor cu tensiunea de 110kV de la interfața sistemelor electroenergetice ale Republicii Moldova și României ca linii de interconexiune, ținând cont de regimul sistemului electroenergetic unificat, care include concomitent sistemul electroenergetic al țărilor CSI, inclusiv, a Moldovei, României, Ucrainei și a altor țări din regiune. În schema de calcul al regimului permanent sincron a sistemului integrat s-a evidențiat zona de interconexiune a sistemelor moldovenesc și românesc: linie electrică aeriană (LEA) 110 kV Stânca-Costești, Țuțora (Fai)-Ungheni și Huși-Cioara. În LEA 110 kV au fost introduse dispozitive de reglare a unghiului diferenței de fază tip transformator pentru a asigura regimul bidirecțional al schimbului de putere. În topologia existentă a rețelelor electrice fluxurile de putere la interfața sistemelor electroenergetice au direcția din Republica Moldova spre Români |
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In the calculation scheme of the permanent synchronous regime of the integrated system, the interconnection zone of the Moldovan and Romanian systems was highlighted for the lines of 110 kV: Stanca-Costeşti, Ţuţora (Fai) - Ungheni and Hushi-Cioara. Transformer phase difference angle adjustment devices have been introduced in the 110 kV OPL to provide the bidirectional power shift regime. In the existing topology of electricity networks, power flows at the power system interface are directed from the Republic of Moldova to Romania. Changing the direction of the power flows is possible through the 110 kV OPL A when equipped with phase shift devices. The results of the calculations of the permanent regime have demonstrated the possibility of achieving the reciprocal power exchange regime between the interconnected power systems by adjusting the phase difference angle. It was shown the possibility of stable operation when using 110 kV overhead power lines as interconnection lines of the Moldovan and Romanian power systems. The issue of interconnection through the 110 kV lines is complex and requires an individual approach to how to achieve it. Scopul acestei lucrări constă în estimarea posibilității utilizării tehnice a liniilor cu tensiunea de 110kV de la interfața sistemelor electroenergetice ale Republicii Moldova și României ca linii de interconexiune, ținând cont de regimul sistemului electroenergetic unificat, care include concomitent sistemul electroenergetic al țărilor CSI, inclusiv, a Moldovei, României, Ucrainei și a altor țări din regiune. În schema de calcul al regimului permanent sincron a sistemului integrat s-a evidențiat zona de interconexiune a sistemelor moldovenesc și românesc: linie electrică aeriană (LEA) 110 kV Stânca-Costești, Țuțora (Fai)-Ungheni și Huși-Cioara. În LEA 110 kV au fost introduse dispozitive de reglare a unghiului diferenței de fază tip transformator pentru a asigura regimul bidirecțional al schimbului de putere. În topologia existentă a rețelelor electrice fluxurile de putere la interfața sistemelor electroenergetice au direcția din Republica Moldova spre România. Schimbarea direcției fluxurilor de putere este posibilă la dotarea LEA 110 kV cu instalații de reglarea diferenței de fază a tensiunilor la interfața sistemelor interconectate. Rezultatele calculelor regimului permanent au demonstrat posibilitatea realizării regimului de schimb reciproc de putere prin LEA 110 kV intre sistemele electroenergetice moldovenesc și românesc prin reglarea unghiului diferenței de fază. S-a constatat posibilitatea funcționării stabile a LEA 110 kV de interconexiune pentru diferite topologii de interconexiune prin LEA 110 kV. Problema realizării interconexiunii prin LEA 110 kV este complexă și necesită o abordare individuală privind modul de realizare. Цель данной статьи - оценить возможность технического использования линий напряжением 110 кВ для соединения энергосистем Республики Молдова и Румынии с учетом режима единой энергосистемы, который включает в себя энергосистемы стран СНГ, в том числе Молдовы, Румынии, Украины и других стран региона. В схеме расчета установившегося режима при синхронной работе объединенной системы была выделена зона межсистемного соединения молдавской и румынской энергосистем: ВЛ 110 кВ Стынка-Костешть, Цуцора (Fai) - Унгень и Хушь-Чиоара. В существующей топологии электрических сетей потоки энергии на интерфейсе энергосистем имеют направление из Республики Молдова в Румынию. Изменение направления потоков мощности возможно, когда предусмотрена установка в ВЛ 110 кВ устройств для регулирования фазового угла. Устройства регулирования угла разности фаз трансформаторного типа были введены в эквивалентной схеме ВЛ 110 кВ для обеспечения технических возможностей совместной работы двух энергосистем и осуществления режима двунаправленной передачи мощности. Результаты расчетов установившегося режима продемонстрировали возможность достижения двунаправленного обмена мощностью между взаимосвязанными энергетическими системами путем регулирования угла разности фаз. Была показана возможность стабильной работы при использовании ВЛ 110 кВ в качестве межсистемных линий связи молдавской и румынской энергосистем. Вопрос об использовании ВЛ 110 кВ в качестве линий межсистемной связи энергосистем требует индивидуального подхода при его решении.</description><identifier>ISSN: 1857-0070</identifier><identifier>DOI: 10.5281/zenodo.1343396</identifier><language>eng ; rum ; rus</language><publisher>Chişinău: Institute of Power Engineering</publisher><subject>Electric power systems ; Exchanging ; Mathematical analysis ; Phase shift ; Phase transitions ; Power lines ; Topology</subject><ispartof>Problems of the regional energetics, 2018-01, Vol.2018 (2)</ispartof><rights>2018. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,860,27901,27902</link.rule.ids></links><search><creatorcontrib>Istrate, M</creatorcontrib><creatorcontrib>Gavrilas, M</creatorcontrib><creatorcontrib>Grigoras Gh</creatorcontrib><creatorcontrib>Iu, Ermurachi</creatorcontrib><creatorcontrib>Suslov, V</creatorcontrib><creatorcontrib>Bosneaga, V</creatorcontrib><creatorcontrib>Bykova, E</creatorcontrib><creatorcontrib>Berzan, V</creatorcontrib><creatorcontrib>Postolaty, V</creatorcontrib><title>Estimation of Power Exchange through 110 kV Overhead Power Lines at the Interface of the Romanian and Moldovan Power Systems / Estimarea schimbului de putere prin linii electrice aeriene 110 kV la interfața sistemelor electroenergetice ale României și Republicii Moldova / Оценка обмена мощностью по ВЛ 110 кВ румынской и молдавской энергосистем</title><title>Problems of the regional energetics</title><description>The purpose of this paper is to estimate the possibility of technical use of the 110 kV voltage lines (OPL) for the interconnection of the power systems of the Republic of Moldova and Romania, taking into account in the unified power system regime, which includes the power system of the CIS countries, of Moldova, Romania, Ukraine and other countries in the region. In the calculation scheme of the permanent synchronous regime of the integrated system, the interconnection zone of the Moldovan and Romanian systems was highlighted for the lines of 110 kV: Stanca-Costeşti, Ţuţora (Fai) - Ungheni and Hushi-Cioara. Transformer phase difference angle adjustment devices have been introduced in the 110 kV OPL to provide the bidirectional power shift regime. In the existing topology of electricity networks, power flows at the power system interface are directed from the Republic of Moldova to Romania. Changing the direction of the power flows is possible through the 110 kV OPL A when equipped with phase shift devices. The results of the calculations of the permanent regime have demonstrated the possibility of achieving the reciprocal power exchange regime between the interconnected power systems by adjusting the phase difference angle. It was shown the possibility of stable operation when using 110 kV overhead power lines as interconnection lines of the Moldovan and Romanian power systems. The issue of interconnection through the 110 kV lines is complex and requires an individual approach to how to achieve it. Scopul acestei lucrări constă în estimarea posibilității utilizării tehnice a liniilor cu tensiunea de 110kV de la interfața sistemelor electroenergetice ale Republicii Moldova și României ca linii de interconexiune, ținând cont de regimul sistemului electroenergetic unificat, care include concomitent sistemul electroenergetic al țărilor CSI, inclusiv, a Moldovei, României, Ucrainei și a altor țări din regiune. În schema de calcul al regimului permanent sincron a sistemului integrat s-a evidențiat zona de interconexiune a sistemelor moldovenesc și românesc: linie electrică aeriană (LEA) 110 kV Stânca-Costești, Țuțora (Fai)-Ungheni și Huși-Cioara. În LEA 110 kV au fost introduse dispozitive de reglare a unghiului diferenței de fază tip transformator pentru a asigura regimul bidirecțional al schimbului de putere. În topologia existentă a rețelelor electrice fluxurile de putere la interfața sistemelor electroenergetice au direcția din Republica Moldova spre România. Schimbarea direcției fluxurilor de putere este posibilă la dotarea LEA 110 kV cu instalații de reglarea diferenței de fază a tensiunilor la interfața sistemelor interconectate. Rezultatele calculelor regimului permanent au demonstrat posibilitatea realizării regimului de schimb reciproc de putere prin LEA 110 kV intre sistemele electroenergetice moldovenesc și românesc prin reglarea unghiului diferenței de fază. S-a constatat posibilitatea funcționării stabile a LEA 110 kV de interconexiune pentru diferite topologii de interconexiune prin LEA 110 kV. Problema realizării interconexiunii prin LEA 110 kV este complexă și necesită o abordare individuală privind modul de realizare. Цель данной статьи - оценить возможность технического использования линий напряжением 110 кВ для соединения энергосистем Республики Молдова и Румынии с учетом режима единой энергосистемы, который включает в себя энергосистемы стран СНГ, в том числе Молдовы, Румынии, Украины и других стран региона. В схеме расчета установившегося режима при синхронной работе объединенной системы была выделена зона межсистемного соединения молдавской и румынской энергосистем: ВЛ 110 кВ Стынка-Костешть, Цуцора (Fai) - Унгень и Хушь-Чиоара. В существующей топологии электрических сетей потоки энергии на интерфейсе энергосистем имеют направление из Республики Молдова в Румынию. Изменение направления потоков мощности возможно, когда предусмотрена установка в ВЛ 110 кВ устройств для регулирования фазового угла. Устройства регулирования угла разности фаз трансформаторного типа были введены в эквивалентной схеме ВЛ 110 кВ для обеспечения технических возможностей совместной работы двух энергосистем и осуществления режима двунаправленной передачи мощности. Результаты расчетов установившегося режима продемонстрировали возможность достижения двунаправленного обмена мощностью между взаимосвязанными энергетическими системами путем регулирования угла разности фаз. Была показана возможность стабильной работы при использовании ВЛ 110 кВ в качестве межсистемных линий связи молдавской и румынской энергосистем. Вопрос об использовании ВЛ 110 кВ в качестве линий межсистемной связи энергосистем требует индивидуального подхода при его решении.</description><subject>Electric power systems</subject><subject>Exchanging</subject><subject>Mathematical analysis</subject><subject>Phase shift</subject><subject>Phase transitions</subject><subject>Power lines</subject><subject>Topology</subject><issn>1857-0070</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><sourceid>BENPR</sourceid><recordid>eNqNjr1vFDEQxRcJJCJISz0SdRJ7l7vL1egQSKCgENFGzu7crYPPPmxvIFRJkJAQH0WaCEWi4C8IH5ECXJaCJuX4P8K7d1BTjWf83u-9JLnB2XInXeUrL1Cbwizz7FaW9buXkwW-2uktMdZjV5NF57YZYzztdNOMLVw6Gjgvx8JLo8EM4aF5hhYGz_NS6BGCL62pRiVwzuDJY1jbQVuiKOay-1KjA-GjDOGe9miHIscG0xzWzVhoKTQIXcADowqzE5eZ89Gu8zh2sAKzeIsCXF7K8ValKgkFwqSKuDis1KCklhJQYe6tjAECrUSNf1spAXIWfnEcMbJBozJ27jBRakfoW6dqe_3-pCVKuPggYR0n1ZaSeQyYd4yl6GN4Rad0Tj_oBKimzzRt17hMqQ6v47MO--EgvA3vgX5RDXRIx22faDmEsBde0jS8ofOwHw81fQc6a730k77RCX35dw_vIuw07NHXBklnDTZmTa8nV4ZCOVycz2vJzTuDjdt3lybWPK3Q-c1tU1kdvzbTlPc63T7v8-z_VH8AmZ_lOg</recordid><startdate>20180101</startdate><enddate>20180101</enddate><creator>Istrate, M</creator><creator>Gavrilas, M</creator><creator>Grigoras Gh</creator><creator>Iu, Ermurachi</creator><creator>Suslov, V</creator><creator>Bosneaga, V</creator><creator>Bykova, E</creator><creator>Berzan, V</creator><creator>Postolaty, V</creator><general>Institute of Power Engineering</general><scope>8FE</scope><scope>8FG</scope><scope>ABJCF</scope><scope>ABUWG</scope><scope>AFKRA</scope><scope>AZQEC</scope><scope>BENPR</scope><scope>BGLVJ</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>HCIFZ</scope><scope>L6V</scope><scope>M7S</scope><scope>PIMPY</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>PTHSS</scope></search><sort><creationdate>20180101</creationdate><title>Estimation of Power Exchange through 110 kV Overhead Power Lines at the Interface of the Romanian and Moldovan Power Systems / Estimarea schimbului de putere prin linii electrice aeriene 110 kV la interfața sistemelor electroenergetice ale României și Republicii Moldova / Оценка обмена мощностью по ВЛ 110 кВ румынской и молдавской энергосистем</title><author>Istrate, M ; Gavrilas, M ; Grigoras Gh ; Iu, Ermurachi ; Suslov, V ; Bosneaga, V ; Bykova, E ; Berzan, V ; Postolaty, V</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-proquest_journals_22175691913</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng ; rum ; rus</language><creationdate>2018</creationdate><topic>Electric power systems</topic><topic>Exchanging</topic><topic>Mathematical analysis</topic><topic>Phase shift</topic><topic>Phase transitions</topic><topic>Power lines</topic><topic>Topology</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Istrate, M</creatorcontrib><creatorcontrib>Gavrilas, M</creatorcontrib><creatorcontrib>Grigoras Gh</creatorcontrib><creatorcontrib>Iu, Ermurachi</creatorcontrib><creatorcontrib>Suslov, V</creatorcontrib><creatorcontrib>Bosneaga, V</creatorcontrib><creatorcontrib>Bykova, E</creatorcontrib><creatorcontrib>Berzan, V</creatorcontrib><creatorcontrib>Postolaty, V</creatorcontrib><collection>ProQuest SciTech Collection</collection><collection>ProQuest Technology Collection</collection><collection>Materials Science & Engineering Collection</collection><collection>ProQuest Central (Alumni Edition)</collection><collection>ProQuest Central UK/Ireland</collection><collection>ProQuest Central Essentials</collection><collection>ProQuest Central</collection><collection>Technology Collection</collection><collection>ProQuest One Community College</collection><collection>ProQuest Central Korea</collection><collection>SciTech Premium Collection</collection><collection>ProQuest Engineering Collection</collection><collection>Engineering Database</collection><collection>Publicly Available Content Database</collection><collection>ProQuest One Academic Eastern Edition (DO NOT USE)</collection><collection>ProQuest One Academic</collection><collection>ProQuest One Academic UKI Edition</collection><collection>ProQuest Central China</collection><collection>Engineering Collection</collection><jtitle>Problems of the regional energetics</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Istrate, M</au><au>Gavrilas, M</au><au>Grigoras Gh</au><au>Iu, Ermurachi</au><au>Suslov, V</au><au>Bosneaga, V</au><au>Bykova, E</au><au>Berzan, V</au><au>Postolaty, V</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Estimation of Power Exchange through 110 kV Overhead Power Lines at the Interface of the Romanian and Moldovan Power Systems / Estimarea schimbului de putere prin linii electrice aeriene 110 kV la interfața sistemelor electroenergetice ale României și Republicii Moldova / Оценка обмена мощностью по ВЛ 110 кВ румынской и молдавской энергосистем</atitle><jtitle>Problems of the regional energetics</jtitle><date>2018-01-01</date><risdate>2018</risdate><volume>2018</volume><issue>2</issue><issn>1857-0070</issn><abstract>The purpose of this paper is to estimate the possibility of technical use of the 110 kV voltage lines (OPL) for the interconnection of the power systems of the Republic of Moldova and Romania, taking into account in the unified power system regime, which includes the power system of the CIS countries, of Moldova, Romania, Ukraine and other countries in the region. In the calculation scheme of the permanent synchronous regime of the integrated system, the interconnection zone of the Moldovan and Romanian systems was highlighted for the lines of 110 kV: Stanca-Costeşti, Ţuţora (Fai) - Ungheni and Hushi-Cioara. Transformer phase difference angle adjustment devices have been introduced in the 110 kV OPL to provide the bidirectional power shift regime. In the existing topology of electricity networks, power flows at the power system interface are directed from the Republic of Moldova to Romania. Changing the direction of the power flows is possible through the 110 kV OPL A when equipped with phase shift devices. The results of the calculations of the permanent regime have demonstrated the possibility of achieving the reciprocal power exchange regime between the interconnected power systems by adjusting the phase difference angle. It was shown the possibility of stable operation when using 110 kV overhead power lines as interconnection lines of the Moldovan and Romanian power systems. The issue of interconnection through the 110 kV lines is complex and requires an individual approach to how to achieve it. Scopul acestei lucrări constă în estimarea posibilității utilizării tehnice a liniilor cu tensiunea de 110kV de la interfața sistemelor electroenergetice ale Republicii Moldova și României ca linii de interconexiune, ținând cont de regimul sistemului electroenergetic unificat, care include concomitent sistemul electroenergetic al țărilor CSI, inclusiv, a Moldovei, României, Ucrainei și a altor țări din regiune. În schema de calcul al regimului permanent sincron a sistemului integrat s-a evidențiat zona de interconexiune a sistemelor moldovenesc și românesc: linie electrică aeriană (LEA) 110 kV Stânca-Costești, Țuțora (Fai)-Ungheni și Huși-Cioara. În LEA 110 kV au fost introduse dispozitive de reglare a unghiului diferenței de fază tip transformator pentru a asigura regimul bidirecțional al schimbului de putere. În topologia existentă a rețelelor electrice fluxurile de putere la interfața sistemelor electroenergetice au direcția din Republica Moldova spre România. Schimbarea direcției fluxurilor de putere este posibilă la dotarea LEA 110 kV cu instalații de reglarea diferenței de fază a tensiunilor la interfața sistemelor interconectate. Rezultatele calculelor regimului permanent au demonstrat posibilitatea realizării regimului de schimb reciproc de putere prin LEA 110 kV intre sistemele electroenergetice moldovenesc și românesc prin reglarea unghiului diferenței de fază. S-a constatat posibilitatea funcționării stabile a LEA 110 kV de interconexiune pentru diferite topologii de interconexiune prin LEA 110 kV. Problema realizării interconexiunii prin LEA 110 kV este complexă și necesită o abordare individuală privind modul de realizare. Цель данной статьи - оценить возможность технического использования линий напряжением 110 кВ для соединения энергосистем Республики Молдова и Румынии с учетом режима единой энергосистемы, который включает в себя энергосистемы стран СНГ, в том числе Молдовы, Румынии, Украины и других стран региона. В схеме расчета установившегося режима при синхронной работе объединенной системы была выделена зона межсистемного соединения молдавской и румынской энергосистем: ВЛ 110 кВ Стынка-Костешть, Цуцора (Fai) - Унгень и Хушь-Чиоара. В существующей топологии электрических сетей потоки энергии на интерфейсе энергосистем имеют направление из Республики Молдова в Румынию. Изменение направления потоков мощности возможно, когда предусмотрена установка в ВЛ 110 кВ устройств для регулирования фазового угла. Устройства регулирования угла разности фаз трансформаторного типа были введены в эквивалентной схеме ВЛ 110 кВ для обеспечения технических возможностей совместной работы двух энергосистем и осуществления режима двунаправленной передачи мощности. Результаты расчетов установившегося режима продемонстрировали возможность достижения двунаправленного обмена мощностью между взаимосвязанными энергетическими системами путем регулирования угла разности фаз. Была показана возможность стабильной работы при использовании ВЛ 110 кВ в качестве межсистемных линий связи молдавской и румынской энергосистем. Вопрос об использовании ВЛ 110 кВ в качестве линий межсистемной связи энергосистем требует индивидуального подхода при его решении.</abstract><cop>Chişinău</cop><pub>Institute of Power Engineering</pub><doi>10.5281/zenodo.1343396</doi><oa>free_for_read</oa></addata></record> |
fulltext | fulltext |
identifier | ISSN: 1857-0070 |
ispartof | Problems of the regional energetics, 2018-01, Vol.2018 (2) |
issn | 1857-0070 |
language | eng ; rum ; rus |
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source | DOAJ Directory of Open Access Journals |
subjects | Electric power systems Exchanging Mathematical analysis Phase shift Phase transitions Power lines Topology |
title | Estimation of Power Exchange through 110 kV Overhead Power Lines at the Interface of the Romanian and Moldovan Power Systems / Estimarea schimbului de putere prin linii electrice aeriene 110 kV la interfața sistemelor electroenergetice ale României și Republicii Moldova / Оценка обмена мощностью по ВЛ 110 кВ румынской и молдавской энергосистем |
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