DocumentCode :
2229392
Title :
Handshake protocols and adaptive modulation for underwater communications networks
Author :
Green, Maurice D. ; Rice, Joseph A.
Author_Institution :
Torrey Sci. Corp., San Diego, CA, USA
Volume :
1
fYear :
1998
fDate :
28 Sep-1 Oct 1998
Firstpage :
487
Abstract :
The US Navy telesonar RDT&E effort is advancing methods for asynchronous, multi-access, networked communications in littoral waters. The goal is to provide wireless, battery-powered connectivity in adverse, shallow-water channels while maintaining a low probability of counter-detection. Telesonar type-B signaling combines powerful, non-binary convolutional error-correction coding, M-ary frequency-shift-keying (MFSK) modulation, and sophisticated frequency hopping. Non-coherent demodulation and sequential decoding provides reception at low signal-to-noise levels. The link protocol includes low-bit-rate handshaking to accommodate energy-conserving sleep modes and to achieve secure addressing, power control, channel characterization, and prioritization. Once the terminals have synchronized at the low bit rate, the message is transmitted with a bit rate and modulation appropriate for the prevailing channel. Power control ensures that messages are received with sufficient, but not excessive SNR. Frequency hopped spread-spectrum transmission supports asynchronous, code-division multiple access (CDMA) networking. Our analyses indicate that unauthorized observers require at least 10 dB more signal energy for detection than will the intended receiver
Keywords :
access protocols; adaptive modulation; code division multiple access; convolutional codes; demodulation; error correction codes; frequency hop communication; frequency shift keying; military communication; modulation coding; power control; sequential decoding; spread spectrum communication; telecommunication control; telecommunication signalling; underwater acoustic communication; CDMA; M-ary frequency-shift-keying modulation; US Navy telesonar; adaptive modulation; asynchronous multi-access networked communications; bit rate; channel characterization; code-division multiple access; counter-detection; energy-conserving sleep modes; frequency hopped spread-spectrum transmission; frequency hopping; handshake protocols; littoral water; low-bit-rate handshaking; messages; nonbinary convolutional error-correction coding; noncoherent demodulation; power control; prioritization; secure addressing; sequential decoding p; shallow-water channels; signal energy; telesonar type-B signaling; terminals; unauthorized observers; underwater communications networks; Bit rate; Convolution; Convolutional codes; Frequency division multiaccess; Frequency modulation; Modulation coding; Multiaccess communication; Power control; Protocols; Spread spectrum communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS '98 Conference Proceedings
Conference_Location :
Nice
Print_ISBN :
0-7803-5045-6
Type :
conf
DOI :
10.1109/OCEANS.1998.725795
Filename :
725795
Link To Document :
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