Theoretical random process for prediction of rain attenuation statistics in site diversity satellite links above 10 GHz

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Theoretical random process for prediction of rain attenuation statistics in site diversity satellite links above 10 GHz

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Site diversity systems are foreseen for earth-to-satellite links in localities with high rain-induced attenuation operating at frequencies above 10 GHz. An analytical model for the rain-rate statistical process is developed using radar-derived information on the rain structure collected at Spino d'Adda in the framework of the Sirio experiment. The procedure for estimating rain attenuation in both single and site diversity systems is outlined in a general formulation which makes it applicable to different situations. The model gives results very similar to experimental ones.

Inspec keywords: radiowave propagation; satellite links; tropospheric electromagnetic wave propagation; microwave links; electromagnetic wave absorption; rain

Other keywords: microwave links; rain-rate statistical process; radiowave propagation; Sirio experiment; site diversity satellite links; radar-derived information; 10 GHz; rain attenuation statistics; analytical model; earth-to-satellite links

Subjects: Radiowave propagation; Satellite communication systems

References

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      • K. Morita , I. Higuti . Statistical studies on rain attenuation and site diversity effect on earth to satellite links in microwave and millimeter wavebands. Trans. IECE Jpn. E
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      • G. Drufuca , A. Paraboni . Some theoretical consideration of the rain attenuation parameters affecting millimeter radio link design. Alta. Freq. , 387 - 391
    3. 3)
      • Capsoni, C., Matricciani, E., Mauri, M., Pojares Baptista, J.P.V.: `Radar derived statistics of rain profiles in slant path', 1981 URSI 20th General Assembly, .
    4. 4)
      • D.B. Hodge . An empirical relationship for path diversity gain. IEEE trans. , 250 - 251
    5. 5)
      • J.E. Allnutt . Variation of attenuation and space diversity with elevation angle on 12 GHz satellite to ground radio paths. Electron. Lett. , 346 - 347
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