Title :
Decision-feedback sequence estimation for time-reversal space-time block-coded transmission
Author :
Schober, Robert ; Chen, Harry Z B ; Gerstacker, Wolfgang H.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of British Columbia, Vancouver, BC, Canada
fDate :
7/1/2004 12:00:00 AM
Abstract :
In this correspondence, we consider three different decision-feedback sequence-estimation (DFSE) schemes originally proposed for single-input-single-output channels for time-reversal space-time block coding (TR-STBC). The first scheme is called unwhitened DFSE (U-DFSE) and performs reduced-state sequence estimation based on the output of the spatio-temporal matched filter (MF), typically employed in TR-STBC. The second approach improves upon U-DFSE by subtracting a bias term caused by anticausal interference from the U-DFSE metric. In the third scheme, the noise component in the output of the spatio-temporal MF is first whitened using a prediction-error filter and, subsequently, whitened DFSE (W-DFSE) is performed. As a relevant example, all three DFSE schemes are compared for the global system for mobile communications/enhanced data rates for GSM evolution (GSM/EDGE) system and typical channel profiles. Our results show that for binary modulation (as used in GSM) U-DFSE and its improved version can approach the performance of W-DFSE for the full range of delay spreads relevant for GSM and EDGE. On the other hand, for high-level modulation (as used in EDGE) only W-DFSE gives a satisfactory performance, if a low trellis complexity is desired.
Keywords :
block codes; cellular radio; channel estimation; decision feedback equalisers; intersymbol interference; least mean squares methods; matched filters; space-time codes; EDGE system; GSM system; decision feedback sequence estimation; mobile communications; prediction error filter; single input single output channel; spatio temporal matched filter; time reversal space time block coded transmission; Additive white noise; Block codes; Decision feedback equalizers; Filtering; GSM; Gaussian noise; Interference; Matched filters; Maximum likelihood estimation; Noise cancellation; DFSE; Decision-feedback sequence estimation; EDGE; GSM; enhanced data rates for GSM evolution; global system for mobile communications; intersymbol interference channels; space–time block codes;
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2004.830963