Title :
Soft-Output Demodulation on Frequency-Selective Rayleigh Fading Channels Using AR Channel Models
Author :
Zhang, Yuze ; Gelfand, Saul B. ; Fitz, Michael P.
Author_Institution :
Spreadtrum Commun. Inc., Saratoga
Abstract :
This paper is a study of high-performance soft-output demodulation for slow or moderate frequency-selective and flat Rayleigh fading using an autoregressive (AR) channel model. For channel taps modeled as AR processes, the discrete-time-equivalent channel model is derived for a matched filter (matched to the transmit pulse) and symbol rate-sampled receiver front end. The optimum symbol-by-symbol demodulator is then derived and shown to consist of a joint data and Kalman filter (KF) channel estimator. Additionally, a symbol-by-symbol demodulator with an extended KF is proposed that jointly identifies and tracks the channel and the unknown parameters in AR channel models. A simulation study shows that the proposed algorithms offer significant advantages in performance or complexity compared to several previously proposed algorithms. The algorithms do not exhibit a significant error floor, provide soft-output metrics needed for interleaved coded modulation, provide high performance with a blind initialization, are capable of blind operation with fast acquisition though compatible with pilot-symbol-assisted modulation, and are robust to parameter mismatch.
Keywords :
Kalman filters; Rayleigh channels; autoregressive processes; channel estimation; demodulation; interleaved codes; matched filters; modulation coding; Kalman filter channel estimator; autoregressive channel model; channel taps; discrete-time-equivalent channel model; flat Rayleigh fading; frequency-selective Rayleigh fading channels; interleaved coded modulation; matched filter; parameter mismatch; pilot-symbol-assisted modulation; soft-output demodulation; symbol rate-sampled receiver front end; symbol-by-symbol demodulator; Channel estimation; Data communication; Demodulation; Fading; Frequency; Matched filters; Modulation coding; Parameter estimation; Rayleigh channels; Robustness; Autoregressive (AR) channel models; fading channels; soft-output demodulation;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2007.906427