Performance Comparison between Rigorous and Asymptotic Techniques Applied to the Analysis of Wind Turbines

作者

  • Abdelhamid Tayebi Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Josefa Gómez Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Iván González Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Lorena Lozano Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Mª Jesús Algar Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Eliseo García Automatic Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain
  • Íñigo Etayo Ingeniería y Proyectos de Telecomunicaciones. Acciona-Energía S.A. Sarriguen, Navarra, Spain
  • Felipe Cátedra Computer Sciences Department, University of Alcalá, Alcalá de Henares, Madrid 28871, Spain

关键词:

Performance Comparison between Rigorous and Asymptotic Techniques Applied to the Analysis of Wind Turbines

摘要

The scattering field analysis of wind turbines using asymptotic and rigorous techniques is presented. Several simulations considering different configurations and frequencies are conducted to compare the performance of the electromagnetic techniques. These predictions are very useful for studying the influence of wind farms in terrestrial radio systems. On the other hand, not only a static analysis has been done but also a study of the scattered fields when the blades are in movement. The Doppler effect due to the blade movement has been taken into account to achieve some simulation results. Modules FASANT and MONURBS of NEWFASANT computer tool have been used. FASANT is based on the geometrical theory of diffraction (GTD) on its uniform theory of diffraction (UTD) formulation and MONURBS is based on the method of moments (MoM) and physical optics (PO). A comparison of the results obtained with both codes is shown, as well as the CPU-time and computer memory required.

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参考

http://www.gwec.net/

B. M. Kent, K. C. Hill, A. Buterbaugh, G.

Zelinski, R. Hawley, L. Creavens, Tri-Van, C.

Vogel, and T. Coveyou, “Dynamic Radar

Cross Section and Radar Doppler

Measurements of Commercial General

Electric Windmill Power Turbines Part 1:

Predicted and Measured Radar Signatures,”

IEEE Antennas and Propagation Magazine,

vol. 50, April 2008.

K. H. Cavcey, L. Y. Lee, and M. A. Reynolds,

“Television Interference due to

Electromagnetic Scattering by the MOD-2

Wind Turbine Generators,” IEEE

Transactions on Power Apparatus and

Systems, vol. 103, February 1984.

D. L. Sengupta and T. B. A. Senior,

“Electromagnetic Interference to Television

Reception Caused by Horizontal Axis

Windmills,” Proceedings of the IEEE, August

I. Etayo, A. Satrustegui, M. Yabar, F. Falcone,

and A. Lopez, “Analysis of the Frequency and

Time Variation of Radio Signals Scattered by

a Wind Turbine,” European Conference on

Antennas and Propagation 2010, pp. 12-16,

Barcelona, April 2010.

F. Weinmann, “UTD Shooting-and-Bouncing

Extension to a PO/PTD Ray Tracing

Algorithm,” Applied Computational

Electromagnetics Society Journal, vol. 24, no.

, pp. 281-293, 2009.

www.fasant.com

I. González, L. Lozano, S. Cejudo, F. Sáez de

Adana, and F. Cátedra, “New Version of

FASANT Code,” Antennas and Propagation

Society International Symposium; 5-11 July

M. F. Cátedra and J. Pérez, Cell Planning for

Wireless Communications, Artech House

Publishers, Boston, London, 1999.

I. González, E. Garcia, F. Saez de Adana, and

M. F. Cátedra, “MONURBS: A Parallelized

Multipole Multilevel Code for Analyzing

Complex Bodies Modeled by NURBS

Surfaces,” Applied Computational

Electromagnetics Society (ACES) Journal,

vol. 23, no. 2, pp. 134-142, June 2008.

F. Cátedra, C. Delgado, E. García, and I.

González, “Combination of MLFMA and an

Interactive Method to Compute Large

Scattering of Radiation Problems,” The 4th

European Conference on Antennas and

Propagation, EUCAP 2010 , Barcelona, April

E. García, C. Delgado, A. Tayebi, J. Gómez,

and F. Cátedra, “Matrix Compression

Technique Based on the Multilevel

Characteristic Basis Function Method,” The

th European Conference on Antennas and

Propagation, EUCAP 2010 , Barcelona, April

http://www.mcs.anl.gov/research/projects/mpi/

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已出版

2022-05-02

栏目

General Submission