TWENTIES for IEEE ISGT Gothenburg 2010

Conditions and provide appropriate ancillary services

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conditions and provide appropriate ancillary services to the mainland grid, 3) the operation of the hybrid DC / AC power system for normal and disturbed conditions. This paper gave a comprehensive view of the issues and tasks under progress and to be performed during the project. VI. R EFERENCES [1] Joint Pre-feasibility Study by, Svenska Kraftnät, Vattenfall Europe Transmission, "An Analysis of Offshore Grid Connection at Kriegers Flak in the Baltic Sea", available at : - feasibility-Report-Final-version.pdf [2] P. Bresesti, R. Calisti, D. Provenzano, A. Vaiani, and B. Zecca, ‘‘Probabilistic model for adequacy evaluation of electric networks with sizeable wind power generation,’’ in Proc. IEEE PES Power Syst. Conf. Expo., Oct. 10--13, 2004, vol. 3, pp. 1324--1328 [3] G. Migliavacca et al., “Prospects for the transmission planning in Europe towards a sustainable energy future: the REALISEGRID project”, accepted at 2010 CIGRE Session, Paris, August 22-27, 2010, paper C1- 105 [4] K.R.W. Bell, D.C. Hill, D. McMillan, F. Li, R.W. Dunn, D.G. Infield and G.W. Ault, “Spatio-Temporal Correlations of Available Wind Power and Impact on Transmission Power Flows”, Paper C1-203, CIGRE Session 2010 , Paris, August 2010. [5] Michel Doquet, “Use of a stochastic process to sample wind power curves in planning studies”, IEEE Power Tech 2007 , Lausanne, 2007. [6] M. Doquet, R. Gonzalez, S. Lepy, E. Momot, F. Verrier, “A new tool for adequacy reporting of electric systems: ANTARES”, Paper C1-305, CIGRE 2008 Session , Paris, August 2008. [7] Michael P. Bahrman and Brian K. Johnson, “The ABCs of HVDC Transmission Technology”, IEEE Power & Energy Magazine March/April 2007 Vol. 5 No. 2
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8 [8] Fenyan Yang, Yong Chang, “Study on Capacitor Commutated Converter applied in HVDC projects” Proceedings of the Chinese Society of Electrical Engineering). Vol. 28, no. 7, pp. 91-96. 5 Mar. 2008 [9] G. Asplund, K. Eriksson, H. Jiang, J. Lindberg, R. Pålsson., K. Svensson, “DC Transmission Based on Voltage Source Converters.” CIGRE SC 14 Colloquium, No. 14-302, 1998 . [10] J. Dorn, H. Hiang, D. Retzmann, “ Novel Voltage-Sourced Converters for HVDC and FACTS Applications”, Cigre Symposium,November 1-4, 2007, Osaka, Japan [11] Liu Y. H., Arrillaga J., Watson N. R., Wood A. R., Multi-level voltage reinjection VSC HVDC transmission”, The 8th IEE International Conference on AC-DC Power Transmission (ACDC 2006) : ( 28-31 March 2006, Savoy Place, London, UK ) [12] Andersen, B.R., Xu, L., Horton, P., Cartwright, P., "Topology for VSC Transmission." IEE Power Engineering Journal, Vol. 16, No 3, pp.142- 150, June 2002. [13] J. Yang, J. Edward and J. O’Reilly, “Multiterminal DC wind farm collection grid internal fault analysis and protection design,” IEEE Trans. Power Del. . (Accepted) [14] L. Wang, K.-H. Wang, W.-J. Lee and Z. Chen, “Power-flow control and stability enhancement of four parallel-operated offshore wind farms using a line-commutated HVDC link,” IEEE Trans. Power Del. , vol. 25, no. 2, pp. 1190-1202, Apr. 2010.
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  • Spring '10
  • K.BELL
  • Electromagnet, Electric power transmission, hvdc grid

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