Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference

This thesis is an investigation of the performance of noncoherent self-normalized fast frequency-hopped binary frequency shift keying (FFH/BFSK) receivers under conditions of non-negligible thermal noise, band multitone interference and Ricean fading where both the information signal and interferenc...

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Main Author: Green, Mary Ellen
Other Authors: Robertson, R. Clark
Language:en_US
Published: Monterey, California. Naval Postgraduate School 2013
Online Access:http://hdl.handle.net/10945/31442
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-314422014-11-27T16:18:04Z Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference Green, Mary Ellen Robertson, R. Clark Hippenstiel, Ralph Electrical Engineering This thesis is an investigation of the performance of noncoherent self-normalized fast frequency-hopped binary frequency shift keying (FFH/BFSK) receivers under conditions of non-negligible thermal noise, band multitone interference and Ricean fading where both the information signal and interference tones are affected by channel fading. Since finding closed form expressions for the most general case of Ricean fading proved difficult, performance was evaluated for special cases of fading. The analysis assumed fixed jamming power and considered two general jamming strategies: jamming a fixed number of frequency-hop slots, and jamming a variable number depending on signal energy per hop. It was found that the degree of fading of the jamming tones had little effect on system performance. It was also found that the most effective jamming strategy depended on the degree of fading of the information signal and on the signal-to-thermal noise power ratio per hop. In general, two- fold diversity yields improved performance with respect to no diversity. When the information signal is Rayleigh faded and the signal power is greater than about 1% of total jamming power, higher diversities perform better than lower diversities. When the signal is Ricean faded, the effect of higher diversities depends on the signal power per hop-to-thermal noise power ratio, the degree of signal fading and on the ratio of signal power-to-total jamming power. 2013-04-29T22:50:40Z 2013-04-29T22:50:40Z 1995-06 Thesis http://hdl.handle.net/10945/31442 en_US This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted. Monterey, California. Naval Postgraduate School
collection NDLTD
language en_US
sources NDLTD
description This thesis is an investigation of the performance of noncoherent self-normalized fast frequency-hopped binary frequency shift keying (FFH/BFSK) receivers under conditions of non-negligible thermal noise, band multitone interference and Ricean fading where both the information signal and interference tones are affected by channel fading. Since finding closed form expressions for the most general case of Ricean fading proved difficult, performance was evaluated for special cases of fading. The analysis assumed fixed jamming power and considered two general jamming strategies: jamming a fixed number of frequency-hop slots, and jamming a variable number depending on signal energy per hop. It was found that the degree of fading of the jamming tones had little effect on system performance. It was also found that the most effective jamming strategy depended on the degree of fading of the information signal and on the signal-to-thermal noise power ratio per hop. In general, two- fold diversity yields improved performance with respect to no diversity. When the information signal is Rayleigh faded and the signal power is greater than about 1% of total jamming power, higher diversities perform better than lower diversities. When the signal is Ricean faded, the effect of higher diversities depends on the signal power per hop-to-thermal noise power ratio, the degree of signal fading and on the ratio of signal power-to-total jamming power.
author2 Robertson, R. Clark
author_facet Robertson, R. Clark
Green, Mary Ellen
author Green, Mary Ellen
spellingShingle Green, Mary Ellen
Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
author_sort Green, Mary Ellen
title Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
title_short Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
title_full Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
title_fullStr Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
title_full_unstemmed Performance of fast frequency-hopped self-normalized BFSK receivers over Ricean fading channels with multitone interference
title_sort performance of fast frequency-hopped self-normalized bfsk receivers over ricean fading channels with multitone interference
publisher Monterey, California. Naval Postgraduate School
publishDate 2013
url http://hdl.handle.net/10945/31442
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