Rician Intersymbol Interference in Frequency Shift Keying

International Telemetering Conference Proceedings / October 08-11, 1968 / Ambassador Hotel, Los Angeles, California === Many communications links involve a reflected signal which is Rician in nature. In troposcatter systems, this reflection constitutes the entire received signal while in communicati...

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Main Author: Vencill, J. J.
Other Authors: McDonnell Douglas Astronautics Company
Language:en_US
Published: International Foundation for Telemetering 1968
Online Access:http://hdl.handle.net/10150/606443
http://arizona.openrepository.com/arizona/handle/10150/606443
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6064432016-04-23T03:02:04Z Rician Intersymbol Interference in Frequency Shift Keying Vencill, J. J. McDonnell Douglas Astronautics Company International Telemetering Conference Proceedings / October 08-11, 1968 / Ambassador Hotel, Los Angeles, California Many communications links involve a reflected signal which is Rician in nature. In troposcatter systems, this reflection constitutes the entire received signal while in communications between satellites or aircraft, such a reflection from the surface corrupts the direct signal. Other such situations involve low elevation tracking or intentional coherent jamming. This paper derives the bit error probability for a non-coherent binary FSK link in this environment for any order of diversity and any ratio of specular to diffuse reflection assuming orthogonal signalling frequencies, matched filter detection and perfect bit synchronization. The interfering signal may represent the same datum as the direct signal (Mark-Mark interference) or, for delays longer than a bit period, the interference may appear in the opposite receiver channel from the direct signal (Mark-Space interference). Results are stated in terms of the direct signal energy to noise density ratio and factors determined by the geometry of the situation; the ratio of direct signal to interfering power, the ratio of specular to diffuse reflected power and the relative carrier phases of the direct signal and the specular reflection in the Mark-Mark case. These geometric parameters are most conveniently treated separately from the modulation and detection problem. 1968-10 text Proceedings 0884-5123 0074-9079 http://hdl.handle.net/10150/606443 http://arizona.openrepository.com/arizona/handle/10150/606443 International Telemetering Conference Proceedings en_US http://www.telemetry.org/ Copyright © International Foundation for Telemetering International Foundation for Telemetering
collection NDLTD
language en_US
sources NDLTD
description International Telemetering Conference Proceedings / October 08-11, 1968 / Ambassador Hotel, Los Angeles, California === Many communications links involve a reflected signal which is Rician in nature. In troposcatter systems, this reflection constitutes the entire received signal while in communications between satellites or aircraft, such a reflection from the surface corrupts the direct signal. Other such situations involve low elevation tracking or intentional coherent jamming. This paper derives the bit error probability for a non-coherent binary FSK link in this environment for any order of diversity and any ratio of specular to diffuse reflection assuming orthogonal signalling frequencies, matched filter detection and perfect bit synchronization. The interfering signal may represent the same datum as the direct signal (Mark-Mark interference) or, for delays longer than a bit period, the interference may appear in the opposite receiver channel from the direct signal (Mark-Space interference). Results are stated in terms of the direct signal energy to noise density ratio and factors determined by the geometry of the situation; the ratio of direct signal to interfering power, the ratio of specular to diffuse reflected power and the relative carrier phases of the direct signal and the specular reflection in the Mark-Mark case. These geometric parameters are most conveniently treated separately from the modulation and detection problem.
author2 McDonnell Douglas Astronautics Company
author_facet McDonnell Douglas Astronautics Company
Vencill, J. J.
author Vencill, J. J.
spellingShingle Vencill, J. J.
Rician Intersymbol Interference in Frequency Shift Keying
author_sort Vencill, J. J.
title Rician Intersymbol Interference in Frequency Shift Keying
title_short Rician Intersymbol Interference in Frequency Shift Keying
title_full Rician Intersymbol Interference in Frequency Shift Keying
title_fullStr Rician Intersymbol Interference in Frequency Shift Keying
title_full_unstemmed Rician Intersymbol Interference in Frequency Shift Keying
title_sort rician intersymbol interference in frequency shift keying
publisher International Foundation for Telemetering
publishDate 1968
url http://hdl.handle.net/10150/606443
http://arizona.openrepository.com/arizona/handle/10150/606443
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