Measurements of surface waves radiated by a vertically polarized antenna over planar seawater at 5 MHz. comparison to planar Earth models

Cincinnati, OH(2014)

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摘要
High Frequency propagation over the surface of the Earth or sea is a relevant subject today, especially for High-Frequency Surface Wave Radars (HFSWR) over the horizon. In this paper, we present measurements of Electric field propagating over sea water in HF Band compared to K.A. Norton, R.W.P. King and G. Millington's theories, thanks to a reliable measurement setup. The transmitter antennas are located on the coast while the receiver antenna is installed on a boat which sails at constant azimuth. The Electric field measurements are carried out with a shielded loop antenna and we measured the field strength attenuation versus distance between the transmitter and the boat along a sea water path. In order to take into account the media change (the coast and the sea water), Millington's solution has been added to King's and Norton's theories with the planar Earth model. At 5 MHz over the sea water, the environment of propagation is an attractive feature for the trans-horizon radar application. Indeed, the attenuation along the path in the planar model is similar to the attenuation in free space but over the horizon. The measurements performed at 5 MHz and the calculations are in a good agreement.
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hf radio propagation,antenna radiation patterns,loop antennas,radar antennas,receiving antennas,seawater,transmitting antennas,g. millington theory,hfswr,k.a. norton theory,r.w.p. king theory,constant azimuth,electric field measurements,field strength attenuation,free space attenuation,frequency 5 mhz,high frequency propagation,high-frequency surface wave radars,planar earth models,planar model,planar seawater,receiver antenna,sea water,sea water path,shielded loop antenna,surface wave measurements,trans-horizon radar,transmitter antennas,vertically polarized antenna,hf band measurements,ground-wave field,planar earth model,surface-wave propagation,vertical electric dipole,earth,surface waves
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