Effects of atmospheric scintillation in K[a]-band satellite communications
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- Type
- dissertation
- Published
- 1998-05-01
- Cited by
- 4
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W67701394
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:127684925
Keywords
Scintillation, Satellite, Remote sensing, Communications satellite, Environmental science
References
- The physics of microwave propagation
- Wave Propagation in a Turbulent Medium
- Antenna theory and design
- Wave propagation and scattering in random media
- Radiowave Propagation in Satellite Communications
- An Introduction to Boundary Layer Meteorology
- Simulation of atmospheric turbulence effects on terrestrial millimeter wave links
- Dispersion in the 10-30 GHz Frequency Range: Atmospheric Effects and Their Impact on Digital Satellite Communications
- Phase and amplitude dispersion for Earth-satellite propagation in the 20- to 30-GHz frequency range
- NASA's Advanced Communications Technology Satellite (ACTS) - An overview of the satellite, the network, and the underlying technologies
- A theoretical and experimental study of angular scintillations in earth space paths
- Simulation of the effects of atmospheric scintillation on digital transmissions at centimeter and millimeter wavelengths
- Measurement and modeling of scintillation intensity to estimate turbulence parameters in an Earth-space path
- Observations of cloud‐produced amplitude scintillation on 19‐ and 28‐GHz earth‐space paths
- Line-of-sight wave propagation through the turbulent atmosphere
- An experimental mm-wave receiver system for measuring phase noise due to atmospheric turbulence
- The effect of the outer scale of turbulence and wavelength on scintillation fading at millimeter wavelengths
- Scattering induced microwave scintillations from clear air and rain on earth space paths and the influence of antenna aperture
- Characteristics of fading on low-elevation angle Earth-space paths with concurrent rain attenuation and scintillation
- Channel characterization and modeling for Ka-band very small aperture terminals
Cited by
- Effect of Turbulence Layer Height and Satellite Altitude on Tropospheric Scintillation on Ka-Band Earth–LEO Satellite Links
- Impact of tropospheric turbulence on non-Geostationary communication systems
- Design and simulation of a Maximum Likelihood Estimator based Ka-band beacon receiver
- Establishing clear-sky mean signal levels on geostationary satellite links
Related papers
- A Study of the Scintillation for the Geostationary Satellite Signal
- Scintillation and Absorption of Radio Waves in the Earth's Atmosphere in Radio Occultation Experiments on the Satellite-to-Satellite Link
- Scintillation Phenomena Observed by Broadcasting Satellite
- Frequency scaling of amplitude scintillations
- Ionospheric effects on C3I satellite communications systems in Greenland
- Measurements of tropospheric scintillation on millimetre-wave satellite link
- A two-component model for scintillation