DocumentCode :
3599387
Title :
Biologically inspired covert underwater acoustic communication using high frequency dolphin clicks
Author :
Songzuo Liu ; Gang Qiao ; Yu Yang ; Luwei Zhang ; Tingting Chen
Author_Institution :
Sci. & Technol. on Underwater Acoust. Lab., Harbin Eng. Univ., Harbin, China
fYear :
2013
Firstpage :
1
Lastpage :
5
Abstract :
To meet the requirements of covert underwater acoustic communication, a bionic camouflage scheme is proposed. We use sounds of marine mammals as communication signal to deceive the unintended receiver and achieve covert communication. An ultra-short duration, wide bandwidth pulse that imitates high frequency clicks of dolphin is adopted as the information carrier. We use multi-pulse modulation technique to improve anti-jamming capability. Each single pulse in the frame series which contain one bit information is modulated by the time hopping (TH) code in time domain. The frame series are modulated by pulse position modulation (PPM) technique as a whole. Transmitted reference scheme is adopted to mitigate the received signal affected by severe underwater acoustic channel. Theoretical analysis and simulation results obtained by using channel response measured at sea show that it can achieve short-range covert underwater acoustic communication benefiting from biologically inspired camouflage of communication signal.
Keywords :
acoustic receivers; codes; jamming; pulse position modulation; telecommunication channels; underwater acoustic communication; PPM technique; anti-jamming capability; biologically inspired camouflage; biologically inspired covert underwater acoustic communication; bionic camouflage scheme; channel response; communication signal; high frequency dolphin clicks; information carrier; marine mammals; multipulse modulation technique; pulse position modulation technique; receiver; short-range covert underwater acoustic communication; theoretical analysis; theoretical simulation; time hopping code; ultra-short duration; underwater acoustic channel; Dolphins; Modulation; OFDM; Receivers; Signal to noise ratio; Underwater acoustics; PPM; covert; dolphin clicks; time hopping; underwater acoustic communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Oceans - San Diego, 2013
Type :
conf
Filename :
6741138
Link To Document :
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