ELECTROMAGNETIC ASPECTS OF WAVE PROPAGATION OVER TERRAIN in .NET

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ELECTROMAGNETIC ASPECTS OF WAVE PROPAGATION OVER TERRAIN
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FIGURE 4.21. The clearance effect in the presence of knife-edge obstruction.
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by Figure 4.21. The clearance due to the diffraction effect from the obstruction is about 60% of the rst Fresnel zone, which normally in practice is considered an adequate value for the land rural point-to-point radio links. To nish this analysis, we must mention that the Fresnel-zone principle, as well as the clearance explanation is 0 correct for the case where r > r0 , r0 ) hn , which is adequate for the most practical cases of land radio link designs.
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BIBLIOGRAPHY
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[1] Jackson, J. D., Classical Electrodynamics, John Wiley & Sons, New York, 1962. [2] Kong, J.A., Electromagnetic Wave Theory, John Wiley & Sons, New York, 1986. [3] Dudley, D. G., Mathematical Foundations for Electromagnetic Theory, IEEE Press, New York, 1994. [4] Al pert, Ia. L., V. L. Ginsburg, and E. L. Feinberg, Radio Wave Propagation, State Printing House for Technical-Theoretical Literature, Moscow, 1953. [5] Jakes, W. C., Microwave Mobile Communications, John Wiley and Sons, New York, 1974. [6] Lee, W. Y. C., Mobile cellular Telecommunications Systems, McGraw Hill Publications, New York, 1989. [7] Saunders, S. R., Antennas and Propagation for Wireless Communication Systems, John Wiley & Sons, New York, 1999. [8] Steele, R., Mobile Radio Communication, IEEE Press, New York, 1992. [9] Bass, F. G., and I. M. Fuks, Wave Scattering from Statistically Rough Surfaces, Pergamon Press, Oxford, 1979. [10] Tatarskii, V. I., and M. I. Charnotskii, On the universal behavior of scattering from a rough surface from small grazing angles, IEEE Trans. Anten. Propagat., Vol. 46, No.1, 1995, pp. 67 72. [11] Voronovich, A. G., Wave Scattering from Rough Surfaces, Springer-Verlag, Berlin, 1994.
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[12] Backmann, P., and A. Spizzichino, The Scattering of Electromagnetic Waves from Rough Surfaces, Artech House, Boston-London, 1963. [13] Felsen, L., and N. Marcuvitz, Radiation and Scattering of Waves, Prentice Hall, New Jersey, 1973. [14] Ishimaru, A., Electromagnetic Wave Propagation, Radiation, and Scattering, Englewood Cliffs, Prentice-Hall, New Jersey, 1991. [15] Miller, A. R., R. M. Brown, and E. Vegh, New derivation for the rough-surface re ection coef cient and for the distribution of the sea-wave elevations, IEE Proc., Vol. 131, Pt. H, No. 2, 1984, pp. 114 116. [16] Ogilvy, J. A., Theory of Wave Scattering from Random Rough Surfaces, Bristol, IOP, 1991. [17] Rice, S. O., Re ection of electromagnetic waves from slightly rough surfaces, Comm. Pure Appl. Math., Vol. 4, No. 3, 1951, pp. 351 378. [18] Barrick, D. E., and W. H. Peake, A review of scattering from surfaces with different roughness scales, Radio Sci., Vol. 3, No. 7, 1968, pp. 865 868. [19] Barrick, D. E., Theory of HF and VHF propagation across the rough sea-Parts I and II, Radio Sci., Vol. 6, No. 3, 1971, pp. 517 533. [20] Barrick, D. E., First order theory and analysis of MF/HF/VHF scatter from the sea, IEEE Trans. Anten. Propagat., Vol. 20, No. 1, 1972, pp. 2 10. [21] Wait, J. R., Perturbation analysis for re ection from two-dimensional periodic sea waves, Radio Sci., Vol. 6, No. 3, 1971, pp. 387 391. [22] Valenzuela, G. R., Scattering of electromagnetic waves from a slightly rough surface moving with uniform velocity, Radio Sci., Vol. 3, No. 1, 1968, pp. 12 21. [23] Valenzuela, G. R., Scattering of electromagnetic waves from a tilted slightly rough surface, Radio Sci., Vol. 3, No. 6, 1968, pp. 1057 1066. [24] Valenzuela, G. R., The effective re ection coef cients in forward scatter from a dielectric slightly rough surface, Proc. IEEE, Vol. 58, No. 12, 1970, pp. 1279 1285. [25] Krishen, K., Scattering of electromagnetic waves from a layer with rough front and plane back (small perturbation method by Rice), IEEE Trans. Anten. Propagat., Vol. 19, No. 4, 1970, pp. 573 576. [26] Davies, H., The re ection of electromagnetic waves from a rough surface, Proc. IEEE, Vol. 101, No. 2, 1954, pp. 209 214. [27] Bullington, K., Re ection coef cient of irregular terrain, Proc. IRE, Vol. 42, No. 11, 1954, pp. 1258 1262. [28] Fock, V. A., Electromagnetic Diffraction and Propagation Problems, Pergamon Press, Oxford, 1965. [29] Keller, J. B., Diffraction by an Aperture, J. Appl. Phys., Vol. 28, 1957, pp. 857 893. [30] Keller, J. B., Geometrical theory of diffraction, J. Opt. Soc. Amer., Vol. 52, No. 1, 1962, pp. 116 131. [31] James, G. L., Geometrical Theory of Diffraction for Electromagnetic Waves, 3-nd ed., Peter Peregrines, London, UK, 1986. [32] Honl, H., A. W. Maue, and K. Westpfahl, Theory of Diffraction, Springer-Verlag, Berlin, 1961. [33] Kouyoumjian, R. G., and P. H. Pathak, An uniform geometrical theory of diffraction for an edge in a perfectly conducting surface, Proc. IEEE, Vol. 62, No. 9, 1974, pp. 1448 1469.
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