DocumentCode :
1728771
Title :
A novel low complexity space-time coding schemes for underwater acoustic communications
Author :
Han Chong ; Zhang Xiaomin ; Yu Yang ; Li Tongxu
Author_Institution :
Coll. of Marine, Northwestern Polytech. Univ., Xi´an, China
fYear :
2013
Firstpage :
6383
Lastpage :
6386
Abstract :
Underwater acoustic (UWA) channels exhibit time-varying fading statistics, thus a coded modulation scheme optimally designed for a specific model (e.g., Rayleigh fading) will perform poorly when the channel statistics change. Exploiting diversity via coded modulation is a robust approach to improve the reliability of the acoustic link in a variety of channel conditions. Herein, protocols coupled with space-time block code(STBC) strategies are proposed and analyzed for underwater communication. In this paper, we consider a time-reversal space-time block code (STBC) with rotated factors(RFTR-STBC) which extend a tranditional STBC scheme to a underwater communication scenario. We formulate its algebraic structure and propose a systematic method for its construction. Based on time-reversal scheme,we presented a new stratgy of STBC known as the block orthogonal STBCs (BOSTBCs), which exploited the time-reversal matrix with the rotated factor to restructure the new coded matrix.Analyzing both simulated and experimental data, the following results are confirmed: the proposed coding scheme yield a lower error rate when spatial diversity is very limited. On the other hand, the decoding complexity of the scheme show a better reduction performance than tranditional OSTBC schemes.
Keywords :
diversity reception; modulation coding; space-time block codes; underwater acoustic communication; algebraic structure; coded matrix; coded modulation; low complexity space-time coding; rotated factor; spatial diversity; time reversal matrix; time-reversal space-time block code; time-varying fading statistic; underwater acoustic communication; Complexity theory; Encoding; Maximum likelihood decoding; Peak to average power ratio; Rayleigh channels; Underwater acoustics; Communiaction; MIMO; STBC; time reversal (TR); underwater;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Control Conference (CCC), 2013 32nd Chinese
Conference_Location :
Xi´an
Type :
conf
Filename :
6640558
Link To Document :
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