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Wind Farms Influence on Radiocommunication Systems Operating in the VHF and UHF Bands

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The following paper discusses several aspects connected with the wind farms’ impact on radiocommunication systems. The first part of this article is filled with the analysis of the ITU-R BT.1893 model, which was originally created for the analysis of the interaction between the wind turbines and digital TV receivers in the UHF band. A measurement campaign carried out by the authors confirmed that this model is also applicable for the lower, maritime VHF band. Utilizing the software implementation of this model, the authors conducted a thorough simulation analysis of the wind turbines’ influence on radio systems working in both VHF and UHF bands. The results of these simulations are presented and discussed in the second part of the paper.
Słowa kluczowe
Rocznik
Tom
Strony
30--43
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
autor
  • National Institute of Telecommunications, Wireless Systems and Networks Department, Gdańsk, Poland
autor
  • National Institute of Telecommunications, Wireless Systems and Networks Department, Gdańsk, Poland
autor
  • National Institute of Telecommunications, Wireless Systems and Networks Department, Gdańsk, Poland
autor
  • National Institute of Telecommunications, Wireless Systems and Networks Department, Gdańsk, Poland
Bibliografia
  • [1] “Global Wind report – Annual Market Update 2013”, GWEC Global Energy Wind Council, 2013.
  • [2] D. L. Sengupta, “Electromagnetic interference from wind turbines”, in Proc. IEEE Antennas and Propagat. Soc. Int. Symp., Orlando, FL, USA, 1999, vol. 3, pp. 1984–1986.
  • [3] “Impact of large buildings and structures including wind farms on terrestrial television reception”, BBC & Ofcom 2001 [Online]. Available: www.oddzialywaniawiatrakow.pl/upload/file/190.pdf
  • [4] “The effect of scattering of digital television signals from a wind turbine”, Report ITU-R BT.2142-1 (10/2010), BT Series, ITU 2010.
  • [5] “Assessment of impairment caused to digital television reception by a wind turbine”, ITU-R Rec. BT.1893 (05/2011).
  • [6] “Assessment of impairment caused to analog television reception by a wind turbine”, ITU-R Rec. BT.805 (03/1992).
  • [7] H. Dorner, “Efficiency and economic comparison of different WEC (Wind Energy Converters) rotor systems”, in Int. Conf. Appropriate Technologies for Semiarid Areas, Conf. Rep., Berlin, Germany, 1975 [Online]. Available: http://www.heiner-doernerwindenergie.de/comparisonHAWTVAWT.pdf
  • [8] K. Adamczak, “Możliwości i efektywność bezpośredniej zamiany ruchu wirnika aerogeneratora na prąd” (“The possibilities and efficiency of the aerogenerator’s rotor movement transformation into current”), M.Sc. thesis, Poznan University of Technology, Poland (in Polish).
  • [9] “Polish Society of Wind Energy” [Online]. Available: http://www.psew.pl/pl
  • [10] “The Windpower” [Online]. Available: http://www.thewindpower.net
  • [11] “Energetyka wiatrowa w Polsce”, Wikipedia [Online]. Available: http://pl.wikipedia.org/wiki/Elektrownie wiatrowe w Polsce (in Polish).
  • [12] “Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 3000 MHz”, ITU-R Rec. P.1546-5 (09/2013).
  • [13] “Prediction methods for the terrestrial land mobile service in the VHF and UHF bands”, ITU-R Rec. P.529-3 (10/1999).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-853f8ec4-3889-4dd4-aff1-e1e0bbf3777f
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