2021
DOI: 10.1109/tvt.2020.3044994
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A Novel Underwater Acoustic Signal Denoising Algorithm for Gaussian/Non-Gaussian Impulsive Noise

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Cited by 70 publications
(35 citation statements)
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“…σ 2 denotes the noise power of the underwater acoustic channel. Underwater acoustic channel noise is an important topic in the application practice of UACNs, as hydrostatic pressure effects (tides, waves, etc., caused by wind, rain, and seismic disturbances) and industrial behavior (e.g., surface sailing) remain one of the main reasons hindering the development of underwater acoustic communication [20][21][22]. Calculating the noise power σ 2 is a very complex challenge, because of the significant time-space-frequency variability of underwater acoustic channel noise [23,24].…”
Section: System Model and Problem Formulationmentioning
confidence: 99%
See 1 more Smart Citation
“…σ 2 denotes the noise power of the underwater acoustic channel. Underwater acoustic channel noise is an important topic in the application practice of UACNs, as hydrostatic pressure effects (tides, waves, etc., caused by wind, rain, and seismic disturbances) and industrial behavior (e.g., surface sailing) remain one of the main reasons hindering the development of underwater acoustic communication [20][21][22]. Calculating the noise power σ 2 is a very complex challenge, because of the significant time-space-frequency variability of underwater acoustic channel noise [23,24].…”
Section: System Model and Problem Formulationmentioning
confidence: 99%
“…Specifically, if the SINR in the current channel is greater than the predefined threshold η th (see ( 9)), i.e., the QoS is greater than the minimum requirement, the reward value is calculated from (21); otherwise, the reward value is 0. Overall, (22) is the payoff for choosing the power p i under state s t i to ensure the quality of service of the transmission, as well as to achieve energy efficiency.…”
Section: Reward Functionmentioning
confidence: 99%
“…The ability of the trained CNN as a feature extraction system is also explored by generating features and using them in conventional models. The proposed method can be extended to more challenging UWA channels, such as those with impulsive noise [13], by combining the CIR with impulsive noise for feature extraction.…”
Section: Introductionmentioning
confidence: 99%
“…[18,19]. It has more substantial applicability and great significance to describe the influence characteristics of underwater environmental noise interference [20] . In addition, in the current research on the sensing of underwater unknown frequency signals [21,20], there are problems that the sensing method can not fully estimate the unknown frequency signal parameters [22,23,24], and the signal-to-noise ratio threshold is too high [25,26,27,28,29].…”
Section: Introductionmentioning
confidence: 99%