An effective means of reducing Ka-band propagation loss is the use of high elevation angle paths, i.e., a large masking angle, between earth stations and the space platform. Experimental data have shown that the signal loss associated with most atmospheric effects is inversely proportional to sin(theta), where theta denotes the path elevation angle. A large masking angle and a generous link margin are the primary tools used in the Teledesic Corporation network to minimize atmospheric-related signal outages. This report documents the results of a study sponsored by Teledesic Corporation to characterize the effect of radiowave propagation on Teledesic's links. The recent Olympus campaign in Europe and the U.S. has provided new information tha...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
For satellite communications, propagation effects due to the atmosphere are a critical system factor...
Rapidly growing demand for channel capacity and limitations in satellite power and frequency spectru...
The statistical variability of the secondary atmospheric propagation effects on satellite communicat...
Propagation impairments produced by the troposphere are a limiting factor for the effective use of t...
This Propagation Handbook provides satellite system engineers with a concise summary of the major pr...
The major propagation effects experienced on Earth-space communications paths in the 10 to 100 GHz f...
This handbook provides satellite system engineers with a concise summary of the major propagation ef...
This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn...
This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn...
Since September 2012, NASA Glenn Research Center has deployed a microwave profiling radiometer at Wh...
A single model for a standard of comparison for other models when dealing with rain attenuation prob...
The NASA Propagation Effects Handbook for Satellite Systems Design provides a systematic compilation...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
For satellite communications, propagation effects due to the atmosphere are a critical system factor...
Rapidly growing demand for channel capacity and limitations in satellite power and frequency spectru...
The statistical variability of the secondary atmospheric propagation effects on satellite communicat...
Propagation impairments produced by the troposphere are a limiting factor for the effective use of t...
This Propagation Handbook provides satellite system engineers with a concise summary of the major pr...
The major propagation effects experienced on Earth-space communications paths in the 10 to 100 GHz f...
This handbook provides satellite system engineers with a concise summary of the major propagation ef...
This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn...
This paper describes the design and performance of a Ka-Band beacon receiver developed at NASA Glenn...
Since September 2012, NASA Glenn Research Center has deployed a microwave profiling radiometer at Wh...
A single model for a standard of comparison for other models when dealing with rain attenuation prob...
The NASA Propagation Effects Handbook for Satellite Systems Design provides a systematic compilation...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
For satellite communications, propagation effects due to the atmosphere are a critical system factor...
Rapidly growing demand for channel capacity and limitations in satellite power and frequency spectru...