Abstract
Traditional channel models for communications research are designed for narrowband systems. Underwater acoustic communication systems use a bandwidth that is not small compared with the center frequency of the signal and qualify as ultrawideband (UWB) in a relative sense. In this paper, measurements and analysis of acoustic propagation effects demonstrate the shortcomings of narrowband channel models. These effects are frequency-dependent fluctuation rates and frequency-dependent attenuation, where the frequency dependence of the attenuation differs between paths. This frequency selectivity of the medium violates the assumption of uncorrelated taps and requires a UWB channel model. It is also shown that correlative channel sounders preserve wideband properties, which renders them suitable for UWB channel simulation based on the principle of direct replay. © 1976-2012 IEEE.
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Van Walree, P. A., & Otnes, R. (2013). Ultrawideband underwater acoustic communication channels. IEEE Journal of Oceanic Engineering, 38(4), 678–688. https://doi.org/10.1109/JOE.2013.2253391
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