Recent advances in high-speed underwater acoustic communications

被引:442
作者
Stojanovic, M
机构
[1] Dept. of Elec. and Comp. Engineering, Northeastern University, Boston
[2] University of Belgrade, Belgrade
[3] Northeastern University, Boston, MA
[4] Woods Hole Oceanographic Institution, Woods Hole, MA
关键词
D O I
10.1109/48.486787
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In recent years, underwater acoustic (UWA) communications have received much attention as their applications have begun to shift from military toward commercial. Digital communications through UWA channels differ substantially from those in other media, such as radio channels, due to severe signal degradations caused by multipath propagation and high temporal and spatial variability of the channel conditions. The design of underwater acoustic communication systems has until recently relied on the use of noncoherent modulation techniques. However, to achieve high data rates on the severely band-limited UWA channels, bandwidth-efficient modulation techniques must be considered, together with array processing for exploitation of spatial multipath diversity. The new generation of underwater communication systems, employing phase-coherent modulation techniques, has a potential of achieving at least an order of magnitude increase in data throughput. The emerging communication scenario in which the modern underwater acoustic systems will operate is that of an underwater network consisting of stationary and mobile nodes. Current research focuses on the development of efficient signal processing algorithms, multiuser communications in the presence of interference, and design of efficient modulation and coding schemes. This paper presents a review of recent results and research problems in high-speed underwater acoustic communications, focusing on the bandwidth-efficient phase-coherent methods. Experimental results are included to illustrate the state-of-the-art coherent detection of digital signals transmitted at 30 and 40 kb/s through a rapidly varying one-mile shallow water channel.
引用
收藏
页码:125 / 136
页数:12
相关论文
共 54 条
[1]  
AYELA G, 1991, P UND DEF TECHN C PA
[2]  
AYELA G, 1994, P OCEANS 94 BREST FR
[3]   ACOUSTIC TELEMETRY - AN OVERVIEW [J].
BAGGEROER, AB .
IEEE JOURNAL OF OCEANIC ENGINEERING, 1984, 9 (04) :229-235
[4]   ADAPTIVE MULTIUSER DETECTION FOR UNDERWATER ACOUSTICAL CHANNELS [J].
BRADY, D ;
CATIPOVIC, JA .
IEEE JOURNAL OF OCEANIC ENGINEERING, 1994, 19 (02) :158-165
[5]  
BRAGARD P, 1990, P ICASSP 90, P1425
[6]  
BREKHOVSKIKH LM, 1982, FUNDAMENTALS OCEAN A
[7]  
CATIPOVIC J, 1994, PROCEEDINGS OF THE 1994 SYMPOSIUM ON AUTONOMOUS UNDERWATER VEHICLE TECHNOLOGY, P171, DOI 10.1109/AUV.1994.518622
[8]  
CATIPOVIC J, 1989, P OCEANS 89 SEATTL W, P887
[9]   PERFORMANCE LIMITATIONS IN UNDERWATER ACOUSTIC TELEMETRY [J].
CATIPOVIC, JA .
IEEE JOURNAL OF OCEANIC ENGINEERING, 1990, 15 (03) :205-216
[10]  
CHAPPELL S, P 1994 S AUV TECHN C, P462