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Ecological Efficiency Assessment Model for Environmental Safety Management of Wind Power Plant

REFERENCES Alberts, H., 2009. Recycling of wind turbine rotor blades – fact or fiction? Dewi Magazin, 34(2), 32-41. Andersson, K., Eide, M.H., Lundquist, U., Mattsson, B., 1998. The feasibility of including sustainability in LCA for product development . Journal of Cleaner Production, 6(3-4), 289-298, DOI:10.1016/S0959-6526(98)00028-6 Berg, S., 1997. Some aspects of LCA in the analysis of forestry operations , Journal of Cleaner Production. 5(3), 211-217, DOI: 10.1016/S0959-6526(97)00040-1 Bovea, M., Powell, J., 2006. Alternative

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The Impact of the Wind Speed on the Dynamics of the Wind Energy System

harmonics reduction using current source inverter with a controlled PWM rectifier , in Proc. EPE., Graz, Austria, Sep. 2001, CD-ROM. [5] Monsson Alma, Constanta, Wind Turbine Systems and Electrical Machines Catalog , 2015. [6] Deliu F., Transitory phenomenons into naval electrical equipment hybrid powered , Ph.D. Thesis, POLITEHNICA Timişoara, 2011.

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General overview of maintenance strategies – concepts and approaches

.08.005. Zeng, S. W. (1997). Discussion on maintenance strategy, policy and corresponding maintenance systems in manufacturing. Reliability Engineering and System Safety, 55(2), pp. 151-162. doi: 10.1016/S0951-8320(96)00004-X. Zhang, C. et al. (2019). Opportunistic maintenance strategy for wind turbines considering weather conditions and spare parts inventory management. Renewable Energy, 133, pp. 703-711. doi: 10.1016/j.renene.2018.10.076.

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Structural Model of the Electric Drive with Double-Fed Asynchronous Machine and Direct Torque Control

References Arnalte, S., Burgos, J.C. and Rodríguez-Amenedo, J.L. (2002). Direct Torque Control of a Doubly-Fed Induction Generator for Variable Speed Wind Turbines. Electric Power Components and Systems, 30:199-216, 2002, Taylor & Francis. Depenbrock, M. (1988). Direct Self-Control (DSC) of Inverter-Fed Induction Machine. IEEE Transaction On Power Electronics, 1988. Vol.3, 4. German Galkin, S. and Lyapin, A. (2012). Analysis and modeling study of asynchronous electric drive with sliding flux control

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Equipment Exploitation in Power to Gas Installation

REFERENCES Bartela Ł., Kotowicz J., Dubiel K. (2016). Technical – economic comparative analysis on energy storage systems equipped with a hydrogen generation installation. Journal of Power Technologies, 96 (2), pp. 92-100. Gahleitner G (2013). Hydrogen from renewable electricity: An international review of power-togas pilot plants for stationary applications. International Journal of Hydrogen Energy 38, pp. 2039-2061. Guandalini G, Campanari S, Romano MC (2015). Power-to-gas plants and gas turbines for improved wind energy dispatchability

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Business Performance Measurements in Asset Management with the Support of Big Data Technologies

References [1] D. Baglee, M. Knowles and S. Kinnunen, “A Proposed Maintenance Strategy for a Wind Turbine Gearbox Using Condition Monitoring Techniques”, International Journal of Process Management and Benchmarking, vol. 6, no. 3, pp. 386-403, 2016. [2] J. Lee, J. Ni, D. Djurdjanovic, H. Qiu and H. Liao, “Intelligent prognostics tools and e-maintenance”, Computers in Industry, vol. 57, no. 6, pp. 476-489, 2006. [3] T. Taticchi, F. Tonelli and L. Cagnazzo, “Performance Measurement and Management: A Literature

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Machinery Life Cycle Efficiency Models for their Sustainable Development

., Spee, F., Kirwan. K., 2012. Producer Responsibility: Defining the Incentive for Recycling Composite Wind Turbine Blades in Europe . Energy Policy, 47, 13–21, DOI: 10.1016/j.enpol.2012.03.076. Choi, J., Kelley, D., Murphy, S., Thangamani, D., 2016. Economic and Environmental Perspectives of End-of-Life Ship Management . Resources, Conservation and Recycling, 107, 82–91, DOI: 10.1016/j.resconrec.2015.12.007. Flizikowski, J., Bielinski, K., 2012. Technology and Energy Sources Monitoring: Control, Efficiency, and Optimization . IGI Global, USA

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The Impact of Infrasounds Generated by Wind Power Stations on a Human Being

poziomów hałasu w środowisku. Dz.U. Nr.120.2007. Rozporządzenie Ministra Środowiska w sprawie dopuszczalnych poziomów hałasu w środowisku. Hepburn, H., Edworthy, J. (2005). Observations from Castle River Wind Farm. Canadian Wind Energy Conference . Toronto. ISO 7196:1995. Acoustics- Frecuency- weighting charakterystic for infrasound measurements. Jakobsen, J. (2005). Infrasound Emission from Wind Turbines. Journal of low frequency noise, vibration and active control, 24 (3), 45-55. Kaczmarska, A., Augustyńska, D. (2007). Hałas

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Ways of Ensuring Society’s Environmental Stability

-111). Zinko, R., Kruts, T., & Lozovyi, I. (2009). Performance modelling of slowspeed wind wheel of energy unit with blades of constant profile by its radius. Computing, 8(3), 78-82. Kuzio, I., & Zinko, R. (2012). Performance modelling of windmills with blades of sail type. (pp. 100-110). Poltava. Zinko, R. (2012). Using graphs while studying performance of autonomous slow-speed wind power unit. (pp. 31-36). Khmelnytskyi. Korendii, V. (2012). Analysis of benefits and disadvantages of horizontally axial wind turbines. No. 729

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Renewable Energy Sources in the Lubusz Voivodship (Poland). The Present Conditions and Perspectives for Development

. Kazak J., van Hoof J., Szewranski S.: Challenges in the wind turbines location process in Central Europe – The use of spatial decision support systems. Renewable and Sustainable Energy Reviews 76 (2017) 425-433. 18. Kuczyński T. i inni: Innowacyjność podejmowanych działań w obszarze odnawialnych źródeł energii , Zielona Góra 2008. 19. Krajowy Plan Działań w zakresie energii ze źródeł odnawialnych , Ministerstwo Środowiska, 2010. 20. Określenie potencjału energetycznego regionów Polski w zakresie odnawialnych źródeł energii , pod red. G

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