Limits on the accuracy of correction of trans-ionospheric propagation errors by using ionospheric models based on solar and magnetic indices and local measurements
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Engineering topics
Publications and source records attributed to Ross, W. J..
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Two training and three operational Deep Space Network experiments conducted in support of the very long baseline interferometry (VLBI) validation project are reported. Vector measurements using common benchmark locations at continental distances (Goldstone, Haystack, and the McDonald Observatory) with an accuracy goal on the order of 5 cm. were obtained and compared with laser ranging systems data.
Ionospheric electron content calculations based on satellite measurements of Faraday rotation and phase path length variations
Measurement errors in ionospheric local electron concentration determination from Doppler dispersion measurements by satellite radio beacons
Midlatitude total electron content, peak electron concentration and slab thickness variations with time in ionosphere during magnetic storms
Mean ionospheric height measurement from analysis of radio signals from beacon satellite
Ionospheric electron content variation with solar radio flux from Faraday rotation data at magnetic equator
Total electron content of ionosphere in middle latitudes, noting results of satellite Doppler measurements, effect of solar radio noise flux, etc
Ionospheric electron content measurements at magnetic equator obtained by Faraday rotation data analysis from radio beacon satellite
Ionospheric electron content measured using passage of transit IVA radio beacon satellite across view field of observing station
Diffraction of HF radio waves by ionospheric layer containing field-aligned inhomogeneities
Ionospheric electron content measured using passage of transit IVA radio beacon satellite across view field of observing station
HF transionospheric propagation deriving second order equations for polarization rotation and phase path reduction
Electron content at the magnetic equator satellite observations
High frequency propagation in the ionosphere using satellite transmissions
Calculation of ionospheric electron density at the magnetic equator by measuring the polarization rotation of high frequency radio waves from the transit 4a satellite
Analysis of the amplitude and phase diffraction patterns of radio signals from the transit 4a satellite and their relationship to ionospheric irregularities
Study of ionospheric electron content and upper ionosphere ionic processes from satellite transmissions