Title :
Nonparametric trellis equalization in the presence of non-Gaussian interference
Author :
Luschi, Carlo ; Mulgrew, Bernard
Author_Institution :
Wireless Res. Lab., Lucent Technol., Bell Labs., Swindon, UK
fDate :
2/1/2003 12:00:00 AM
Abstract :
We consider the problem of trellis equalization of the intersymbol interference channel in the presence of thermal noise and cochannel interference (CCI). Conventional maximum-likelihood sequence estimation (MLSE) and maximum a posteriori probability (MAP) trellis equalizers treat the sum of noise and interference as additive white Gaussian noise, while CCI is generally a colored non-Gaussian process. We propose a novel nonparametric approach based on the estimation of the probability density function of the noise-plus-interference. Given the availability of a limited volume of data, the density is estimated by kernel-smoothing techniques. The use of a whitening filter in the presence of temporally colored disturbance is also addressed. Simulation results are provided for the global system for mobile communications (GSM), showing a significant performance improvement with respect to the equalizer based on the Gaussian assumption. Major advantages of the proposed strategy are its intrinsic robustness and general applicability to those cases where accurate modeling of the interference is difficult or a model is not available.
Keywords :
AWGN; cellular radio; cochannel interference; equalisers; intersymbol interference; maximum likelihood sequence estimation; probability; radio receivers; smoothing methods; thermal noise; time division multiple access; AWGN; CCI; GSM; Gaussian assumption; ISI; MAP trellis equalizers; MLSE; PDF estimation; TDMA; TDMA cellular radio receiver; additive white Gaussian noise; cochannel interference; colored nonGaussian process; global system for mobile communications; interference model; intersymbol interference channel; kernel-smoothing techniques; maximum a posteriori probability; maximum-likelihood sequence estimation; noise-plus-interference; nonGaussian interference; nonparametric approach; nonparametric trellis equalization; probability density function; simulation results; temporally colored disturbance; thermal noise; whitening filter; Additive white noise; Colored noise; Equalizers; GSM; Gaussian noise; Interchannel interference; Intersymbol interference; Maximum likelihood estimation; Probability density function; Radiofrequency interference;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2003.809249