References

Al'pert, Ya. L. (1972), Propagation of Electromagnetic Waves and Ionosphere (in Russian), 564 pp., Nauka, Moscow.

Barabashov, B. G., and G. G. Vertogradov (1996), Dynamic adaptive structural-physical model of decametre communication channel, Math. Model (in Russian), 2, 3.

Bilitza, D. (2001), International reference ionosphere 2000, Radio Sci., 36, 261.

Bilitza, D. (2002), Ionospheric models for radio propagation studies, in: The Review of Radio Science 1999-2002, edited by W. R. Stone, p. 625, IEEE Press, Piscataway, N. J..

Blagoveshchensky, D. V., and G. A. Zherebtsov (1987), High-Latitude Geophysical Phenomena and Forecasting of HF Channels (in Russian), 272 pp., Nauka, Moscow.

Bowman, G. G. (1990), A review of some recent work on midlatitude spread F occurrence as detected by ionosondes, J. Geomagn. Geoelectr., 42, 109.

Burmaka, V. P., L. S. Kostrov, and L. F. Chernogor (2003), Statistical characteristics of signals of Doppler HF radar at sounding the middle ionosphere disturbed by starts of rockets and solar terminator, Radiophys. Radio Astron (in Russian), 8, (2), 143.

Burmaka, V. P., V. I. Taran, and L. F. Chernogor (2004), Wave-like disturbances in the ionosphere, accompanying starts of rockets on a background of natural transients, Geomagn. Aeron (in Russian), 44, (4), 518.

Cherkashin, Yu. N., I. B. Egorov, V. P. Uryadov, and A. A. Ponyatov (2003), Experimental research of variations of the maximum usable frequency the oblique sounding paths, Radiophysics (in Russian), 46, (12), 1011.

Chernogor, L. F. (2003), Physics of the Earth, atmosphere and geospace in view of a system paradigm, Radiophys. Radio Astron (in Russian), 8, (1), 59.

Danilov, A. D., E. S. Kazimirovsky, G. V. Vergasova, and G. Ya. Khachikyan (1987), Meteorological Effects in the Ionosphere (in Russian), 272 pp., Gidrometeoizdat, St. Petersburg.

Davies, K. (1969), Ionospheric Radio Waves, 502 pp., Blaisdell, Walham, Mass.

Erukhimov, L. M., and E. S. Kazimirovsky, et al. (1997), Pedersen mode ducting in randomly-stratified ionosphere, Waves Random Media, 7, (4), 531, doi:10.1088/0959-7174/7/4/002. [CrossRef]

Filipp, N. D., N. Sh. Blaunshtein, L. M. Erukhimov, V. A. Ivanov, and V. P. Uryadov (1991), Modern Methods of Studies of Dynamical Processes in the Ionosphere (in Russian), 288 pp., Shtiintsa, Chisinau, Moldova.

Fukao, S., and N. Sh. Blaunshtein, et al. (1991), Turbulent upwelling of the mid-latitude ionosphere: 1. Observation results by the MU radar, J. Geophys. Res., 96, 3725.

Gershman, B. N., L. M. Erukhimov, and Yu.Ya. Yashin (1984), The Wave Phenomena in the Ionosphere and Space Plasma (in Russian), 392 pp., Nauka, Moscow.

Goodman, J. M. (1992), HF Communication, Sci. and Technol., New York.

Hearn, A. L., and K. C. Yeh (1978), A study of electron density spectra of traveling ionospheric disturbances, J. Geophys. Res., 83, (A4), 1442.

Ho, C. M., and K. C. Yeh, et al. (1998), Ionospheric total electron content perturbations monitored by the GPS global network during two Northern Hemisphere winter storms, J. Geophys. Res., 103, 26,409, doi:10.1029/98JA01237. [CrossRef]

Hocke, K., and K. Schlegel (1996), A review of atmospheric gravity waves and traveling ionospheric disturbances: 1982-1995, Ann. Geophys., 14, 917.

Huang, C.-S., J. C. Foster, L. P. Goncharenko, G. J. Sofko, J. E. Borovsky, and F. J. Rich (2003), Midlatitude ionospheric disturbances during magnetic storms and substorms, J. Geophys. Res., 108, (A6), 1244, doi:10.1029/2002JA009608. [CrossRef]

MacDougall, J. W., G. E. Hall, and K. Hayashi (1997), F -region gravity waves in the central polar cap, J. Geophys. Res., 102, 14,513, doi:10.1029/97JA01076. [CrossRef]

MacDougall, J. W., D. A. Andre, G. J. Sofko, C. S. Huang, and A. V. Koustov (2001), Traveling ionospheric disturbance properties deduced from Super Dual Auroral Radar measurements, Ann. Geophys., 18, 1550, doi:10.1007/s00585-001-1550-z. [CrossRef]

Moller, H. G. (1974), Backscatter results from Lindau. 1: The movement of curtains of intense irregularities in the polar F -layer, J. Atmos. Terr. Phys., 36, (9), 1487, doi:10.1016/0021-9169(74)90227-X. [CrossRef]

Poole, A. W. V., and G. P. Evans (1985), Advanced sounding: 2. First results from an advanced chirp ionosonde, Radio Sci., 20, 1617.

Secan, J. A., and P. J. Wilkinson (1997), Statistical studies of an effective sunspot number, Radio Sci., 32, 1717, doi:10.1029/97RS01350. [CrossRef]

Shiokawa, K., C. Ihara, Y. Otsuka, and T. Ogawa (2003), Statistical study of nighttime medium-scale traveling ionospheric disturbances using midlatitude airglow images, J. Geophys. Res., 108, (A1), 1052, doi:10.1029/2002JA009491. [CrossRef]

Stocker, A. J., N. F. Arnold, and T. B. Jones (2000), The synthesis of traveling ionospheric disturbance (TID) signatures in HF radar observations using ray tracing, Ann. Geophys., 18, 54.

Taylor, M. J., J.-M. Jahn, S. Fukao, and A. Saito (1998), Possible evidence of gravity wave coupling into the mid-latitude F region ionosphere during the SEEK campaign, Geophys. Res. Lett., 25, 1081, doi:10.1029/97GL03448. [CrossRef]

Thomson, D. J. (1982), Spectrum estimation and harmonic analysis, Proc. IEEE, 70, 1055.

Vertogradov, G. G. (2003), The simulator of broadband ionospheric radio channel, Radio Eng. Electron (in Russian), 48, (11), 1322.

Vertogradov, G. G. (2004), The simulator of decameter radio channel, Radioelectronics (in Russian), 47, (8), 51.

Vertogradov, G. G. (2005), Development of algorithms and software of data processing of sounding of an ionosphere by signals with linear-frequency modulation, scientific report (in Russian), 158 pp., Rostov State Univ., Rostov-on-Don, Russia.

Waldock, J. A., and T. B. Jones (1987), Source regions of medium scale traveling ionospheric disturbances observed at mid-latitudes, J. Atmos. Terr. Phys., 49, (2), 105, doi:10.1016/0021-9169(87)90044-4. [CrossRef]


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