Title :
Matched filtering with rate back-off for low complexity communications in very large delay spread channels
Author :
Emami, Majid ; Vu, Mai ; Hansen, Jan ; Paulraj, Arogyaswami J. ; Papanicolaou, George
Author_Institution :
Inf. Syst. Lab., Stanford Univ., CA, USA
Abstract :
We study the possibility to transmit data over channels with large delay spreads under the constraint of a very simple receiver which has only one tap. Such a scheme is of interest when a cost-efficient way to transmit potentially high data rates are sought after. We investigate the performance of the optimal prefilter for this scheme and compare it to a simplified, so-called time-reversal (TR) prefilter which has very low complexity. At low SNRs, the TR prefilter and the optimal prefilter are equivalent. At high SNRs, the TR prefilter achieves a performance that is independent from the delay spread of the channel and hence its performance is the same for any bandwidth. In applications where bandwidth is abundant, such as ultra-wide band (UWB) communications, any required performance can be obtained by TR prefilters with a rate back-off transmission (i.e. transmission rate lower than the allowable bandwidth). Similar performance can also be obtained with full-rate transmission using several transmit antennas. This performance is guaranteed, since the high diversity of the large delay spread channel effectively eliminates any fading.
Keywords :
antenna arrays; diversity reception; matched filters; telecommunication channels; transmitting antennas; back-off transmission; data transmission; delay spread channel; matched filtering; optimal prefilter; receiver; transmit antenna; Bandwidth; Delay; Fading; Filtering; Information systems; Laboratories; Matched filters; Receiving antennas; Transmitters; Transmitting antennas;
Conference_Titel :
Signals, Systems and Computers, 2004. Conference Record of the Thirty-Eighth Asilomar Conference on
Print_ISBN :
0-7803-8622-1
DOI :
10.1109/ACSSC.2004.1399123