DocumentCode :
935210
Title :
A decision feedback equalizer with time-reversal structure
Author :
Ariyavisitakul, Sirikiat
Author_Institution :
Bellcore, Red Bank, NJ, USA
Volume :
10
Issue :
3
fYear :
1992
fDate :
4/1/1992 12:00:00 AM
Firstpage :
599
Lastpage :
613
Abstract :
This work describes the use of a receiver with a time-reversal structure for low-complexity decision feedback equalization of slowly fading dispersive indoor radio channels. Time-reversal is done by storing each block of received signal samples in a buffer and reversing the sequential order of the signal samples in time prior to equalization. As a result, the equivalent channel impulse response as seen by the equalizer is a time-reverse of the actual channel impulse response. Selective time-reversal operation, therefore, allows a decision feedback equalizer (DFE) with a small number of forward filter taps to perform equally well for both minimum-phase and maximum-phase channel characteristics. The author evaluates the theoretical performance bounds for such a receiver and quantifies the possible performance improvement for discrete multipath channels with Rayleigh fading statistics. Two extreme cases of DFE examples are considered: an infinite-length DFE; and a DFE with a single forward filter tap. Optimum burst and symbol timing recovery is addressed and several practical schemes are suggested. Simulation results are presented. The combined use of equalization and diversity reception is considered
Keywords :
diversity reception; equalisers; fading; feedback; mobile radio systems; telecommunication channels; Rayleigh fading statistics; burst timing recovery; channel impulse response; decision feedback equalizer; diversity reception; forward filter taps; indoor radio channels; maximum-phase channel characteristics; minimum phase channel characteristics; multipath channels; signal samples; simulation; slowly fading dispersive channel; symbol timing recovery; time-reversal structure; Buffer storage; Decision feedback equalizers; Dispersion; Fading; Filters; Indoor radio communication; Multipath channels; Rayleigh channels; Receivers; Statistics;
fLanguage :
English
Journal_Title :
Selected Areas in Communications, IEEE Journal on
Publisher :
ieee
ISSN :
0733-8716
Type :
jour
DOI :
10.1109/49.127782
Filename :
127782
Link To Document :
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