Comparison and Analyzing of Propagation Models with Respect to Material, Environmental and Wave Properties

Authors

  • M.B. Tabakcioglu Department of Electrical and Electronics Engineering Bayburt University, Bayburt 69000, Turkey
  • D. Ayberkin Department of Computer Programming Bayburt University, Bayburt 69000, Turkey
  • A. Cansiz Department of Electrical Engineering Istanbul Technical University, Istanbul 34469, Turkey

Keywords:

Convex hull, Fresnel zone, material properties, multiple wedge diffraction, radio propagation, slope diffraction and Uniform Theory of Diffraction (UTD)

Abstract

This paper presents a study on a class of algorithms based on Uniform Theory of Diffraction (UTD) for multiple diffractions. Within this context Slope UTD with Convex Hull (S-UTD-CH) model based on Slope UTD and Fresnel zone concept was reviewed. S-UTD-CH model can be used for fast and more accurate field prediction for multiple diffractions in transition zone. An extensive simulation results for comparison of UTD based algorithms with respect to the computation time and accuracy was provided. Furthermore, the study shows how relative permittivity constant, conductivity and inner angle of wedge and polarization type affect the relative path loss.

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References

F. S. Adana, O. G. Blanco, I. G. Diego, J. P. Arriaga, and M. F. Cátedra, “Propagation model based on ray tracing for the design of personal communication systems in indoor environments,” IEEE Transactions on Vehicular Tech., vol. 49, no. 6, pp. 2105-2112, 2000.

F. Weinmann, “UTD shooting-and-bouncing extension to a PO/PTD ray tracing algorithm,” ACES Journal, vol. 24, no. 3, pp. 281-293, 2009.

R. G. Kouyoumjian and P. H. Pathak, “Uniform geometrical theory of diffraction for an edge in a perfectly conducting surface,” Proc. IEEE, vol. 62, pp. 1448-1461, 1974.

O. Ozgun and L. Sevgi, “Comparative study of analytical and numerical techniques in modeling electromagnetic scattering from single and double knife-edge in 2D ground wave propagation problems,” ACES Journal, vol. 27, no. 5, pp. 376- 388, 2012.

K. Rizk, R. Valenzuela, D. Chizhik, and F. Gardiol, “Application of the slope diffraction method for urban microwave propagation prediction,” IEEE Vehicular Tech. Conf., vol. 2, pp. 1150-1155, 1998.

C. Tzaras and S. R. Saunders, “An improved heuristic UTD solution for multiple-edge transition zone diffraction,” IEEE Trans. Antennas Prop., vol. 49, no. 12, pp. 1678-1682, 2001.

L. Vogler, “An attenuation function for multiple knife-edge diffraction,” Radio Science, vol. 17, pp. 1541-1546, 1982.

A. Kara, E. Yazgan, and H. L. Bertoni, “Limit and application range of slope diffraction for wireless communication,” IEEE Trans. Antennas and Prop., vol. 51, no. 9, 2005.

M. B. Tabakcioglu and A. Kara, “Comparison of improved slope UTD method with UTD based methods and physical optic solution for multiple building diffractions,” Electromagnetics, vol. 29, no. 4, pp. 303-320, 2009.

M. B. Tabakcioglu and A. Kara, “Improvements on slope diffraction for multiple wedges,” Electromagnetics, vol. 30, no. 3, pp. 285-296, 2010.

T. K. Sarkar, “A survey of various propagation models for mobile communication,” IEEE Antennas and Propagation Magazine, vol. 45, no. 3, pp. 51-82, 2003.

H. K. Chung and H. L. Bertoni, “Application of isolated diffraction edge method for urban microwave path loss prediction,” Antennas and Propagation Symposium, pp. 205-209, 2003.

H. K. Chung and H. L. Bertoni, “Range-dependent path-loss model in residential areas for the VHF and UHF bands,” IEEE Transaction on Antennas and Propagation, vol. 50, no. 1, pp. 1-11, 2002.

J. Walfisch and H. L. Bertoni, “A theoretical model of UHF propagation in urban environments,” IEEE Transaction on Antennas and Propagation, vol. 36, no. 12, pp. 1788-1796, 1988.

H. H. Xia and H. L. Bertoni, “A theoretical model of UHF propagation in urban environments, diffraction of cylindrical and plane waves by an array of absorbing half-screens,” IEEE Transaction on Antennas and Propagation, vol. 40, no. 2, pp. 170-177, 1992.

O. M. Bucci, “The experimental validation of a technique to find the convex hull of scattering systems from field data,” IEEE Antennas and Propagation Symposium, pp. 539-542, 2003.

M. B. Tabakcioglu and A. Kara, “Discussions of various UTD and PO solutions for multiple-edge diffractions in urban radio propagation modeling,” Electromagnetic Wave Scattering Workshop, section 11, pp. 1-6, 2008.

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Published

2021-09-03

How to Cite

[1]
M. Tabakcioglu, D. . Ayberkin, and A. . Cansiz, “Comparison and Analyzing of Propagation Models with Respect to Material, Environmental and Wave Properties”, ACES Journal, vol. 29, no. 06, pp. 486–491, Sep. 2021.

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