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    "title": "Multi-Terminal Direct Current (DC) Networks for Grid Integration of Offshore Wind Farms: Operation and Power Flow Control Using Genetic Algorithms",
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            "value": "Offshore wind energy is expected to make a major contribution toward meeting Europe's renewable power ambitions. Because of t he massive size and growing distance from shore of proposed future offshore wind farms, grid connectivity through a transnationa l DC network is very desired. This study looks at a nine -node DC grid that links the United Kingdom (UK), the Netherlands (NL), and Germany (DE). Distributed voltage control (DVC) is a unique approach for controlling power flow inside a multi -terminal DC grid that uses voltage-source converters. To reduce the amount of energy lost during transmission, this strategy uses an optimum power flow (OPF) solution. The paper's key contribution is the use of a genetic algorithm (GA) to resolve the OPF issue under the N1 sec urity restriction. Following a summary of the primary DC network component models, the suggested control mechanism is sh own in action through multiple case studies",
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                "doi": "10.3390/en3040619",
                "unstructured": "Pierid, J.; Axelson, U.; Eriksson, E.; Salomon son, D.; Bauer, P.; Czech, B. A wind farm electrical systems evaluation with EeFarm-II. Energies 2010, 3, 619–633"
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                "doi": "10.1049/cp.2010.0992",
                "unstructured": "Vrana, T.; Torres-Olguin, R.; Liu, B.; Haileselassie, T. The North Sea Super Grid-a technical perspective. In Proceedings of 9th IET International Conference on AC and DC Power Transmission; London, UK, 19–21 October 2010; pp. 1–5"
            },
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                "unstructured": "Van der Meer, A.; Teixeira Pinto, R.; Gibescu, M.; Bauer, P.; Pierik, J.; Nieuwenhout, F.; Hendriks, R.; Kling, W.; van Kuik, G. Offshore Transnational Grids in Europe: The North Sea Transnational Grid Research Project in Relation to Other Research Initiatives. In Proceedings of 9th International Workshop on Large-Scale Integration of Wind Power; Quebec, Canada, 18–19 October 2010; pp. 1–8"
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                "key": "ref6",
                "doi": "10.1002/we.543",
                "unstructured": "Bang, D.J. Design of Transverse Flux Permanent Magnet Machines for Large Direct-Drive Wind Turbines. Ph.D. Thesis, Delft University of Technology, Delft, The Netherland, 2010"
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                "key": "ref7",
                "doi": "10.1049/etr.2014.0049",
                "unstructured": "London Array—The World’s Largest Offshore Wind Farm. Available online: http://www.londonarray.com/2012/10/29/worldslargest-offshore-wind-farm-generates-firstpower/ (accessed on 21 December 2012). Journal of Science and Technology ISSN: 2456-5660 Volume 7, Issue 10 (DECEMBER-2022) www.jst.org.in DOI:https://doi.org/10.46243/jst.2022.v7.i10.pp01- 06"
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                "unstructured": "Decker, J.D.; Tambke, J.; Volker, J.; Michalowska-Knap, K. An offshore transmission grid for wind power integration: The European techno-economic study OffshoreGrid. In Proccedings of 2010 IEEE Power and Energy Society General Meeting, Minneapolis, MN, USA, 25–29 June 2010"
            },
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                "key": "ref9",
                "doi": "10.1109/pes.2008.4596257",
                "unstructured": "Kling, W.; Hendriks, R.; den Boon, J.H. Advanced transmission solutions for offshore wind farms. in Proceedings of IEEE Power and Energy Society General Meeting, Pittsburgh, PA, USA, 20–24 July 2008"
            },
            {
                "key": "ref10",
                "doi": "10.1002/we.378",
                "unstructured": "Roggenkamp, M.; Hendriks, R. Market and regulatory aspects of trans-national offshore electricity networks for wind power interconnection. Wind Energy 2010, 13, 483–491"
            },
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                "key": "ref11",
                "doi": "10.1109/tie.2011.2130502",
                "unstructured": "Garces, A.; Molinas, M. A study of efficiency in a reduced matrix converter for offshore wind farms. IIEEE Trans. Ind. Electron. 2012, 59, 184–193"
            },
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                "key": "ref12",
                "doi": "10.1109/tec.2011.2114886",
                "unstructured": "Blasco-Gimenez, R. Diode-Based HVdc link for the connection of large offshore wind farms. IEEE Trans. Energy Convers. 2011, 26, 615–626"
            },
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                "key": "ref13",
                "doi": "10.3390/en3061263",
                "unstructured": "Ludois, D.; Venkataramanan, G. An examination of AC/HVDC power circuits for interconnecting bulk wind generation with the electric grid. Energies 2010, 3, 1263–1289"
            },
            {
                "key": "ref14",
                "doi": "10.3390/en3061303",
                "unstructured": "Shao, S.J.; Agelidis, V.G. Review of DC system technologies for large scale integration of wind energy systems with electricity grids. Energies 2010, 3, 1303–1319"
            },
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                "key": "ref15",
                "doi": "10.1109/tie.2010.2053340",
                "unstructured": "Denniston, N.; Massoud, A.M.; Ahmed, S.; Enjeti, P.N. Multiple-module high-gain high-voltage DC-DC transformers for offshore wind energy systems. IEEE Trans. Ind. Electron. 2011, 58, 1877–1886"
            },
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                "key": "ref16",
                "doi": "10.1109/tpel.2012.2183388",
                "unstructured": "Lopez, A.; Diez, R. Analysis and comparison of three topologies of the ladder multilevel DC/DC converter. IEEE Trans. Power Electron. 2012, 27, 3119–3127"
            },
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                "doi": "10.1049/iet-gtd.2010.0587",
                "unstructured": "De Kerf, K.; Srivastava, K.; Reza, M.; Bekaert, D.; Cole, S.; van Hertem, D.; Belmans, R. Waveletbased protection strategy for DC faults in multi-terminal VSC HVDC systems. IET Gener. Transm. Distrib. 2011, 5, 496–503"
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                "doi": "10.1109/psec.2002.1022539",
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                "unstructured": "Glasdam, J.; Bak, C.L.; Hjerrild, J. Transient studies in large offshore wind farms employing detailed circuit breaker representation. Energies 2012, 5, 2214–2231"
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