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Aerodynamic Research of the Experimental Prototype of the Variable Geometry Wind Turbine

R eferences [1] A. Betz, Introduction to the Theory of Flow Machines , D. G. Randall, Trans. Oxford: Pergamon Press, 1966. [2] Intergovernmental panel on climate change, IPCC Special Report on Emissions Scenarios , 2015. [Online]. Available: [3] A. Urbahs, M. Urbaha, and K. Carjova, “Development and Assessment of Planetary Gear Unit for Experimental Prototype of Vertical Axis Wind Turbine,” Latvian Journal of Physics and Technical sciences , vol. 54, no. 5, 2017. [4] E. M

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On the Dynamic Response Prediction at the Full-Scale Test of Aircraft Component

-based damage detection in civil engineering: excitation sources and temperature effects,” Smart materials and Structures , vol. 10, pp. 518–527, 2001. [4] P. J. Schubel, R. J. Crossley, E. K. G. Boateng, and J. R. Hutchinson, “Review of structural health and cure monitoring techniques for large wind turbine blades,” Renewable Energy , vol. 51, pp. 113–123, 2013. [5] K. He and W. D. Zhu, “Detecting Loosening of Bolted Connections in a Pipeline Using Changes in Natural

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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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