Suppression of narrow-band interference in DS-spread spectrum systems using adaptive IIR notch filter
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Computer Vision and Pattern Recognition,Signal Processing,Software,Control and Systems Engineering
Reference21 articles.
1. Interference mitigation in spread spectrum communication system using time-frequency distribution;Amin;IEEE Trans. Signal Process.,1997
2. M. Amin, A. Lindsey, C. Wang, On the application of time-frequency distributions in the excision of pulse jamming in spread spectrum communication systems, Proceedings of the IEEE Workshop SSAP, June 1996.
3. Optimum interference excision in spread spectrum communication using open-loop adaptive filters;Amin;IEEE Trans. Signal Process.,1999
4. Adaptive notch filtering for the retrieval of sinusoids in noise;Bhaskar Rao;IEEE Trans. Acousp. Speech Signal Process.,1984
5. Adaptive line enhancement by using an IIR lattice notch filter;Cho;IEEE Trans. Acoust. Speech Signal Process.,1989
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