" BASS 300 PAReM" : a " model" underwaterparametric communication system

Parametric transduction offers valuable advantages for underwater acoustic communications. Perhaps the most significant benefit is the fact that high directivity is achieved by means of a physically small transmit transducer. This feature may, ultimately, be employed to permit long-range, low-freque...

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Veröffentlicht in:IEEE journal of oceanic engineering 1996-04, Vol.21 (2), p.225-232
Hauptverfasser: Coates, R F W, Zheng, Ming, Wang, Liansheng
Format: Artikel
Sprache:eng
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Zusammenfassung:Parametric transduction offers valuable advantages for underwater acoustic communications. Perhaps the most significant benefit is the fact that high directivity is achieved by means of a physically small transmit transducer. This feature may, ultimately, be employed to permit long-range, low-frequency communication using a compact source. The high directivity is desirable to combat multipath propagation and to achieve data communications in water which is shallow by comparison with range. A real-time, high data-rate "model" differential phase shift keying (DPSK) communication system has been constructed and demonstrated. This system uses parametric transduction, with a 300-kHz primary frequency and a 50-kHz secondary frequency. Experimental results show that the system can be employed to combat multipath propagation in shallow water and can achieve high data-rate text and color image transmission at 10 and 20 kb s(-1) for 2-DPSK and 4-DPSK, respectively, through a transmission bandwidth of 10 kHz. The "model" system was developed to confirm performance predictions for a future, operational long-range link employing a 50-kHz primary frequency and a 5-kHz secondary frequency
ISSN:0364-9059
DOI:10.1109/48.486797