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DSP based OFDM receiver for time-varying underwater acoustic channels.

, , , and . EUSIPCO, page 627-631. IEEE, (2016)

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Experimental assessment of sparse channel estimations for passive-phase conjugation communications., , and . ICASSP, page 2701-2704. IEEE, (2012)A novel probe processing method for underwater communication by passive-phase conjugation., , , and . ICASSP, page 2700-2703. IEEE, (2011)DSP based real-time single carrier underwater acoustic communications using frequency domain turbo equalization., and . Phys. Commun., (2016)A JANUS-Based Consensus Protocol for Parametric Modulation Schemes., , , and . WUWNet, page 9:1-9:8. ACM, (2022)Shear-Wave Tomography Using Ocean Ambient Noise with Interference., , , and . Remote. Sens., 12 (18): 2969 (2020)Survey on Communication and Networks for Autonomous Marine Systems., , , , , , , , and . J. Intell. Robotic Syst., 95 (3-4): 789-813 (2019)Effects of Water Column Variations on Sound Propagation and Underwater Acoustic Communications., and . Sensors, 19 (9): 2105 (2019)Time Diversity Passive Time Reversal for Underwater Acoustic Communications., and . IEEE Access, (2019)Self-supervised Underwater Source Localization based on Contrastive Predictive Coding., , , and . IEEE SENSORS, page 1-4. IEEE, (2021)Feature Selection based on Principal Component Analysis for Underwater Source Localization by Deep Learning., , , and . CoRR, (2020)