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Phase Coherent Digital Communications for Underwater Acoustic Channels

, , and . IEEE Journal of Oceanic Engineering, 19 (1): 100--111 (January 1994)

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On the performance of adaptive MMSE detectors for a MC-CDMA system in fast fading Rayleigh channels., , and . PIMRC, page 1309-1313. IEEE, (1998)Capacity Scaling Laws for Underwater Networks., , and . Internet Math., 9 (2-3): 241-264 (2013)Network coding for data dissemination: it is not what you know, but what your neighbors don't know., , , and . WiOpt, page 1-8. IEEE, (2009)On the Average Achievable Rate of QPSK and DQPSK OFDM Over Rapidly Fading Channels., , and . IEEE Access, (2018)Random Linear Network Coding For Time Division Duplexing: When To Stop Talking And Start Listening, , and . CoRR, (2008)On the relationship between capacity and distance in an underwater acoustic communication channel.. Underwater Networks, page 41-47. ACM, (2006)Hierarchical underwater acoustic sensor networks., and . WUWNet, page 10. ACM, (2010)Multi-hop routing is order-optimal in underwater extended networks., , , , and . ISIT, page 510-514. IEEE, (2010)Impact of fading on random access compressed sensing., , and . ACSCC, page 408-412. IEEE, (2011)Characterizing Sub-THz MIMO Channels in Practice: a Novel Channel Sounder with Absolute Time Reference., , , , , and . GLOBECOM, page 1459-1464. IEEE, (2023)