DocumentCode :
2173183
Title :
Multi-access communication system in a highly reverberant environment
Author :
Sundaralingam, P. ; Fusco, V. ; Zelenchuk, D.
Author_Institution :
ECIT Inst., Queen´´s Univ. Belfast, Belfast, UK
fYear :
2012
fDate :
26-30 March 2012
Firstpage :
2005
Lastpage :
2008
Abstract :
We investigate by numerical EM simulation the potential communication channel capacity of a reverberant environment using the time reversal approach, excited at 2.4 GHz by ON-OFF keyed RF pulse excitation. It is shown that approximately 725 1.25MHz propagation channels can be allocated with the cavity contains a 4×4 λ or 1×1 λ LOS obstruction positioned between the transceiver antenna and the time reversal unit. Furthermore the results show that two co-located transceiver dipoles separated by a spacing of 3λ/4 can successfully resolve a 10ns pulse. Our findings suggest that different independent channels with identical operating frequency can be realized in an enclosed environment such as ventilation duct or underground tunnel. This suggests that there is a possibility of implementing a parallel channel radio link with the minimum inter-antenna spacing of 3λ/4 between the transceivers in a rich multipath environment.
Keywords :
computational electromagnetics; multi-access systems; multipath channels; radio transceivers; LOS obstruction; ON-OFF keyed RF pulse excitation; frequency 2.4 GHz; highly reverberant environment; independent channels; multiaccess communication system; multipath environment; numerical EM simulation; potential communication channel capacity; propagation channels; time reversal approach; time reversal unit; transceiver antenna; Antennas and propagation; Bandwidth; Cavity resonators; Coherence; Communication channels; Correlation; Delay; communication channel; multipath; time reversal;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation (EUCAP), 2012 6th European Conference on
Conference_Location :
Prague
Print_ISBN :
978-1-4577-0918-0
Electronic_ISBN :
978-1-4577-0919-7
Type :
conf
DOI :
10.1109/EuCAP.2012.6205809
Filename :
6205809
Link To Document :
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