The role of rain in satellite communications
- 1 January 1975
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in Proceedings of the IEEE
- Vol. 63 (9) , 1308-1331
- https://doi.org/10.1109/proc.1975.9940
Abstract
The most fundamental obstacle encountered in design of satellite communication systems at frequencies above 10 GHz is attenuation by rain. The microwave power radiated toward an earth station, being limited by factors such as available primary power and size of antenna on the satellite, is insufficient, with present technology, to overcome the large attenuation produced by intense rain cells on the earth-space path. The resultant loss of signal makes for unreliable transmission. In what follows, methods of measurement of this attenuation at various frequencies and a technique called path diversity that substantially improves the reliability are presented. Other degradations produced by rain, such as depolarization, interference, increase in earth-station noise, and deterioration of earth-station antenna performance, are also discussed.Keywords
This publication has 82 references indexed in Scilit:
- Help That Is Not Called HelpPersonality and Social Psychology Bulletin, 1978
- Measurements of rain‐induced polarization rotation at 30.9 GHzRadio Science, 1974
- Absolute brightness temperature measurements at 2.1-mm wavelengthIcarus, 1974
- A 15.3 GHz satellite-to-ground path-diversity experiment utilizing the ATS-5 satelliteRadio Science, 1974
- Path diversity for mm-wave earth-to-satellite linksRadio Science, 1973
- Cross-Polarization Distortion in Microwave Radio Transmission Due to RainRadio Science, 1971
- Effect of Oblate Raindrops on Attenuation at 30.9 GHzRadio Science, 1970
- Rainfall attenuation of centimeter waves: Comparison of theory and measurementIEEE Transactions on Antennas and Propagation, 1965
- Effective Antenna Temperatures Due to Oxygen and Water Vapor in the AtmosphereJournal of Applied Physics, 1959
- The microwave properties of precipitation particlesQuarterly Journal of the Royal Meteorological Society, 1954