Title :
Time Reversal MIMO Architecture for Very Shallow Underwater Acoustic Communication
Author :
Diamant, Roee ; Feuer, Arie ; Dotan, Amos A.
Abstract :
Under water acoustic communication using Multi Input Multi Output (MIMO) systems was shown to be effective in exploiting the time and spatial diversity characteristics of the underwater acoustic communication channel (UWAC). However, Inter Symbol Interferences (ISI) caused by the multipath phenomenon of the MIMO channel, affects the communication system performances. Our work shows that by using the Time Reversal (TR) technique, the channel capacity is achieved without the requirement for Channel State Information (CSI). A very shallow underwater sea trial was conducted. The results confirmed the validity of our analysis. It demonstrated that the 2X2 TR MIMO channel capacity is roughly 2 times larger than the non TR SISO channel capacity and is equivalent to the optimal MIMO system performances. Thus, our TR MIMO system (combined with a low level ISI mitigation) achieves the optimal MIMO system performances without the need for channel estimation.
Keywords :
MIMO systems; underwater acoustic communication; underwater sound; 2X2 TR MIMO channel capacity; Channel State Information; ISI; Inter Symbol Interferences; Multi Input Multi Output systems; Time Reversal technique; multipath phenomenon; non TR SISO channel capacity; shallow underwater acoustic communication; underwater acoustic communication channel; Acoustic scattering; Channel capacity; Channel estimation; Communication channels; Delay effects; Intersymbol interference; MIMO; Transmitters; Underwater acoustics; Underwater communication;
Conference_Titel :
OCEANS 2007 - Europe
Conference_Location :
Aberdeen
Print_ISBN :
978-1-4244-0635-7
Electronic_ISBN :
978-1-4244-0635-7
DOI :
10.1109/OCEANSE.2007.4302221