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Song, H. C.; Hodgkiss, W. S.; Kuperman, W. A.; Akal, T.; Stevenson, M.
{ "DOI": "10.1121/1.3160284", "abstract": "A recent communications experiment was conducted in a shallow water environment at high-frequency permitting the use of a large bandwidth (11-19 kHz). This paper investigates the communication performance versus various symbol rates (or bandwidths) in terms of output signal-to-noise ratio with, an assortment of constellations, illustrating a trade-off between performance and data rate. A high bandwidth efficiency of 4 bits/s Hz is demonstrated using 32 quadrature amplitude modulation with a data rate of 31.25 kbits/s over a 2.2-km range. (C) 2009 Acoustical Society of America. [DOI: 10.1121/1.3160284]", "author": [ { "family": "Song", "given": " H. C." }, { "family": "Hodgkiss", "given": " W. S." }, { "family": "Kuperman", "given": " W. A." }, { "family": "Akal", "given": " T." }, { "family": "Stevenson", "given": " M." } ], "container_title": "JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA", "id": "96421", "issue": "2", "issued": { "date-parts": [ [ 2009, 1, 1 ] ] }, "page": "561-563", "title": "High-frequency acoustic communications achieving high bandwidth efficiency", "type": "article-journal", "volume": "126" }
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