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V. Radziukynas and A. Klementavičius

REFERENCES 1. Dowds, J., Hines, P., Ryan, T., Buchanan, W., Kirby, E., Apt, J., and Jaramillo, P. (2015). A review of large-scale wind integration studies. Renewable and Sustainable Energy Rev. , 49, 768–794. doi:10.1016/j.rser.2015.04.134. 2. Petrichenko, R., Chuvychin, V., and Sauhats, A. (2013). Coexistence of different load shedding algorithms in interconnected power system. In: 12th International Conference on Environment and Electrical Engineering, Wroclaw (Poland), art. no. 6549626, (pp. 253–258). 3. Zalostiba, D. (2013). Power

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Ghaeth Fandi, Famous Omar Igbinovia, Josef Tlusty and Rateb Mahmoud

R eferences [1] M. Wilch, V. S. Pappala, S. N. Singh and I. Erlich, “Reactive Power Generation by DFIG Based Wind Farms with AC Grid Connection”, IEEE Power Tech , Lausanne, July 2007, 626-632. [2] A. Ashraf, “On Reactive Power Compensation of Wind Farms Impact of Wind Farm Controller Delays”, Master of Science Thesis in Electric Power Engineering , Department of Energy and Environment, Division of Electric Power Engineering, Chalmers University of Technology, Gothenburg, Sweden, June 2012. [3] M. P. Kazmierkowski, R. Krishnan and F. Blaabjerg

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Adam Mroziński and Izabela Piasecka

Bibliography 1. ACKERMANN, T.: Transmission systems for offshore wind farms. Wind power in power systems, Stockholm: Royal Institute of Technology Stockholm, 2005. 2. BARLOW, J.: Innovation and learning in complex offshore construction projects, Research Policy, 7-8/2000, pp.973-989. 3. carbontrust.com (access on: 2014-08-02) 4. CARMEL, E., AGARWAL, R.: The maturation of offshore sourcing of information technology work. Information Systems Outsourcing, 7/2006. 5. CHAKRABARTI, S.: Handbook of offshore engineering. Amsterdam

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Istvan Erlich, Fekadu Shewarega and Oliver Scheufeld

Trans. on Power Systems vol. 18, pp. 803-809, May. 2003. T. Sun, Z. Chen, F. Blaabjerg, "Voltage Recovery of Grid-Connected Wind Turbines with DFIG After a Short-Circuit Fault", 35 th Annual IEEE Power Electronics Conf. , Aachen, Germany, 2004, pp. 1991-1997. P. Cartwright, L. Holdsworth, J. B. Ekanayake, N. Jenkins, "Coordinated voltage control strategy for a doubly-fed induction generator (DFIG)-based wind farm" ", IEE Proc.-Gener. Transm. Distrib. vol. 151, pp. 495-502, July. 2004

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Andrzej Tomporowski, Izabela Piasecka, Józef Flizikowski, Robert Kasner, Weronika Kruszelnicka, Adam Mroziński and Kazimierz Bieliński

wpływu na środowisko wybranych środków transportu łopat elektrowni wiatrowych. Logistyka. 2015, 3. 8. Kong, C., Bang, J. and Sugiyama, Y. 2005. Structural investigation of composite wind turbine blade considering various load cases and fatigue life. Energy. 2005, Tom 30. 9. Martinez, E., et al. 2009. Life cycle assessment of a multi-megawatt wind turbine. Renewable Energy. 2009, Tom 34. 10. Piasecka, I. and Mroziński, A. 2015. Selected aspects of building, operation and environmental impact of offshore wind power electric plants. Polish Maritime

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Robert Kasner, Józef Flizikowski, Andrzej Tomporowski, Weronika Kruszelnicka and Adam Idzikowski

scenarios to meet the demands of sustainable waste management . Journal of Environmental Management, 79(2), 115-132, DOI: 10.1016/j.jenvman.2005.06.005 Brondsted, P., Lilholt, H., Aage, L., 2005. Composite materials for wind power turbine blades . Annual review of Materials Research, 35, 505-538, DOI: 10.1146/annurev.matsci.35.100303.110641 Conconi, M., 2012. Raport EWEA:Research note outline on recycling wind turbines blades . The European Wind Energy Association, Brussels, Belgium. Flizikowski, J., Piasecka, I., Kruszelnicka, W., Tomporowski, A

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Piotr Srokosz, Ireneusz Dyka and Marcin Bujko

assessment of environmental and economic constraints. European Environment Agency, Technical report No 6/2009. 27. Deep Water. The next step for offshore wind energy. A report by European Wind Energy Agency, July 2013 ( http://www.ewea.org ). 28. Wind in power 2017. Annual combined onshore and offshore wind energy statistics. Wind Europe, February 2018, Brussels, Belgium ( https://windeurope.org ). 29. Offshore wind in Europe. Key trends and statistics 2017. Wind Europe, February 2018, Brussels, Belgium ( https://windeurope.org ). 30. DIN 4178

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Youssef Errami, Mohammed Ouassaid, Mohamed Cherkaoui and Mohamed Maaroufi

References [1] PARASTAR, A.-SEOK, J. K. : High-Gain Resonant Switched- Capacitor Cell-Based DC/DC Converter for Offshore Wind En- ergy Systems, IEEE Transactions on Power Electronics 30 No. 2 (Feb 2015), 644-656. [2] FENGJI LUO-KE MENG-ZHAO YANG DONG-YU ZHENG-YINGYING CHEN-KIT PO WONG: Coordinated Operational Planning forWind FarmWith Battery Energy Stor- age System, IEEE Transactions on Sustainable Energy 6 No. 1 (Jan 2015), 253-262. [3] CHEN, J.-JIE, C.-CHUNYING, G. : New Overall Power Control Strategy for

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V. Bobinaite and I. Konstantinaviciute

). Consumption and production of renewable energy sources . [Online]. Available at https://osp.stat.gov.lt/statistiniu-rodikliu-analize?theme=all#/ . 10. Zailskaite, D. (2017). Do we have enough wind power plants? [Online]. Available at http://lsveikata.lt/sveika-visuomene/ar-vejo-jegainiu-turime-uztektinai-6012 . 11. National Control Commission for Energy and Prices. (2018). Renewable energy . [Online]. Available at http://www.regula.lt/atsinaujinantys-istekliai/Puslapiai/default.aspx . 12. Lithuanian Environmental Investment Fund. (2016). Support to

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Andrzej Tomporowski, Józef Flizikowski, Weronika Kruszelnicka, Izabela Piasecka, Robert Kasner, Adam Mroziński and Stepan Kovalyshyn

. 2653-2660 8. Flizikowski J., Kruszelnicka W., Michałowski M., Szala G., Tomporowski A. : Bulkhead door - critical evacuation states. Polish Maritime Research, 24 (1), (2017), pp. 66-71. 9. Flizikowski J., Topoliński T., Opielak M., Tomporowski A., Mroziński A. : Research and analysis of operating characteristics of energetic biomass micronizer, Eksploat. i Niezaw. (Mainten. Reliab.)17 (1), (2015), pp. 19–26 10. Flizikowski, J., Piasecka, I., Kruszelnicka, W., Tomporowski, A., Mroziński, A. : Destruction assessment of wind power plastics blade