DocumentCode
3186876
Title
Performance of spread-spectrum radio techniques in an interference-limited HF environment
Author
Andersson, Gunnar
Author_Institution
Radio Commun. Syst. Lab., R. Inst. of Technol., Stockholm, Sweden
Volume
1
fYear
1995
fDate
35009
Firstpage
347
Abstract
In HF radio communications, the performance is often limited by the large amount of mostly narrowband interfering signals from other HF users. Therefore, when evaluating HF spread-spectrum systems, a statistical model of the interference is necessary. We perform a comparison between a frequency-hopping (FH) and a direct-sequence (DS) spread-spectrum system, for an interference model based on the HF congestion prediction model of Laycock and Gott (1988). The performance measure used is the error probability for the uncoded bits. The results show that the FH system performs better than the DS system on the interference-limited HF channel. The performance of the FH system can also be further improved by introducing so-called adaptive frequency-hopping, which implies that the system will adaptively use the least interfered channels for communication
Keywords
HF radio propagation; adaptive systems; error statistics; frequency hop communication; probability; pseudonoise codes; radiofrequency interference; spread spectrum communication; DS-SS system; FH-SS system; HF congestion prediction model; HF radio communications; HF spread-spectrum systems; adaptive frequency-hopping; direct-sequence spread-spectrum system; error probability; frequency-hopping spread-spectrum system; interference model; interference-limited HF environment; narrowband interfering signals; performance; performance measure; spread-spectrum radio techniques; statistical model; uncoded bits; AWGN; Frequency; Hafnium; Interference; Jamming; Narrowband; Power measurement; Predictive models; Radio communication; Spread spectrum communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 1995. MILCOM '95, Conference Record, IEEE
Conference_Location
San Diego, CA
Print_ISBN
0-7803-2489-7
Type
conf
DOI
10.1109/MILCOM.1995.483385
Filename
483385
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