Title :
Estimation of MC-DS-CDMA Fading Channels Based on Kalman Filtering with High Order Autoregressive Models
Author :
Hassasneh, Walid ; Jamoos, Ali ; Grivel, Eric ; Nour, H.A.
Author_Institution :
Al-Quds Univ., Jerusalem
Abstract :
This paper deals with the estimation of rapidly time- varying Rayleigh fading channels in synchronous multi-carrier direct-sequence code division multiple access (MC-DS-CDMA) systems. When the fading channel is approximated by an autoregressive (AR) process, it can be estimated by means of Kalman filtering for instance. Nevertheless, this requires the a priori estimation of the AR parameters. One standard solution consists in first fitting the AR process autocorrelation function to the Jakes one and then solving the resulting Yule-Walker equations (YWE). However, due to the band-limited nature of the Jakes Doppler spectrum, severely ill-conditioned YWE are unavoidable for all but very small AR model orders. Therefore, previous studies focused only on 1st and 2nd order AR models. To overcome the ill-conditioning problem, a very small positive bias can be added to the main diagonal of the autocorrelation matrix in the YWE. Even if the resulting process is not band-limited and corresponds to an AR process+noise model, the approximation can be of interest. Indeed, according to our simulation results, high-order AR models+noise yield significant results in terms of spectrum approximation and bit error rate (BER). However, to reduce the computational cost, a 5th order AR model can be considered.
Keywords :
Kalman filters; Rayleigh channels; autoregressive moving average processes; code division multiple access; Jakes model; Kalman filtering; MC DS CDMA fading channels; Yule Walker equations; high order autoregressive models; synchronous multicarrier direct sequence code division multiple access; time varying Rayleigh fading channels; Autocorrelation; Bit error rate; Equations; Fading; Filtering; Kalman filters; Least squares approximation; Multiaccess communication; Parameter estimation; Resonance light scattering; Autoregressive processes; Jakes model; Kalman filters; MC-DS-CDMA; Rayleigh fading channels;
Conference_Titel :
Mobile Computing and Wireless Communication International Conference, 2006. MCWC 2006. Proceedings of the First
Conference_Location :
Amman
Print_ISBN :
978-9957-486-00-6
DOI :
10.1109/MCWC.2006.4375212