Impulsive Noise Mitigation in Underwater Acoustic Communication Systems: Experimental Studies
Abstract
Impulsive noise is a major impediment to orthogonal frequency-division multiplexing (OFDM) based underwater acoustic (UWA) communications. In this work, we evaluate the performance of a memoryless analog nonlinear preprocessor (MANP) that is used to mitigate outliers. The proposed MANP exhibits intermittent nonlinearity only in the presence of the impulsive noise and suppresses the power of outliers based on their amplitudes. Since the outliers are distinguishable in the analog domain prior to anti-aliasing filtering, the MANP outperforms its digital counterparts in all scenarios. Experimental results using data collected in an under-ice environment, demonstrate the superior BER performance of our approach relative to classical nonlinear approaches such as blanking and clipping.
Keywords
Cite
@article{arxiv.1901.00464,
title = {Impulsive Noise Mitigation in Underwater Acoustic Communication Systems: Experimental Studies},
author = {Reza Barazideh and Wensheng Sun and Balasubramaniam Natarajan and Alexei V. Nikitin and Zhaohui Wang},
journal= {arXiv preprint arXiv:1901.00464},
year = {2019}
}
Comments
Accepted in IEEE CCWC 2019