Title :
System Design for Improved Extra-Terrestrial Communications
Author_Institution :
University of Paris, Paris, France
Abstract :
This paper describes a proposed system for improved exo-ionospheric communications. The dynamic magneto-ionic character of the channel is considered, in particular, the multipath situation arising therefrom. An ideal matched filter is found, matched to the multipath structure and the dynamics of the exo-ionospheric channel. The improvement in the signal-to-noise ratio through the matched filter is calculated. It is seen to depend on the quotient of the input signal to the bandwidths of the ``measuring´´ filter and the ``integrating´´ filter. Further advantages are shown to accrue from signal processing at the transmitter involving both increases in range, and, in particular, secure coding possibilities.
Keywords :
Anisotropic magnetoresistance; Delay; Faraday effect; Frequency; Ionosphere; Magnetic field measurement; Magnetic separation; Matched filters; Signal processing; Signal to noise ratio; Communications; design; extra-terrestrial; signal processing; space; system;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
DOI :
10.1109/TAES.1967.5408868