DocumentCode
1529277
Title
Narrow-band interference excision in spread spectrum systems using lapped transforms
Author
Medley, Michael J. ; Saulnier, Gary J. ; Das, Pankaj K.
Author_Institution
Rome Lab., US Air Force, NY, USA
Volume
45
Issue
11
fYear
1997
fDate
11/1/1997 12:00:00 AM
Firstpage
1444
Lastpage
1455
Abstract
In order to mitigate narrow-band interference in spread spectrum communications systems, novel communications receivers incorporating transform domain filtering techniques are designed. In this paper, lapped transforms are used to transform the received data signal to the transform domain wherein adaptive excision is performed. Transform domain detection algorithms, which yield bit decisions based on the remaining signal energy, are analyzed and, together with excision, are employed on a block-by-block basis to suppress single-tone and narrow-band Gaussian interference. System performance is analytically quantified in terms of the overall system bit-error rate (BER). Subsequent results are presented for a variety of channel conditions and compared to those obtained using excision algorithms based on orthonormal block transforms (Medley 1995). These results demonstrate the improved performance and increased robustness with respect to jammer frequency and bandwidth of lapped transform domain excision techniques relative to similar algorithms based on nonweighted block transforms
Keywords
Gaussian noise; adaptive signal processing; digital filters; error statistics; interference suppression; jamming; radio receivers; radiofrequency interference; spread spectrum communication; transforms; adaptive excision; bandwidth; bit decisions; bit-error rate; channel conditions; communications receivers; jammer frequency; lapped transform domain excision techniques; lapped transforms; narrow-band Gaussian interference; narrow-band interference excision; performance; received data signal; signal energy; single-tone interference; spread spectrum systems; transform domain detection algorithm; transform domain filtering; Algorithm design and analysis; Bit error rate; Detection algorithms; Filtering; Interference suppression; Narrowband; Performance analysis; Signal analysis; Spread spectrum communication; System performance;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.649769
Filename
649769
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