A generalized simulation model for Rayleigh fading channels with accurate second-order statistics

A new sum-of-sinusoids statistical simulation model is proposed for Rayleigh fading channels. The new model employs random path gain, random initial phase, and conditional random Doppler frequency for all individual sinusoids. It is shown that the autocorrelations and cross-correlations of the quadrature components, the autocorrelation of the complex envelope of the new simulator match the desired ones exactly even if the number of sinusoids is as small as a single-digit integer Furthermore, the probability density functions of the fading envelope and phase, the level crossing rate and the average fade duration of the new simulator asymptotically approach the desired ones as the number of sinusoids approaches infinity, while good convergence is achieved when the number of sinusoids is small. Statistical properties of the new simulator are evaluated by numerical results, finding good agreement in all cases.

[1]  Gordon L. Stuber,et al.  Principles of Mobile Communication , 1996 .

[2]  Gregory E. Bottomley,et al.  Jakes fading model revisited , 1993 .

[3]  Joel M. Morris Burst error statistics of simulated Viterbi decoded BPSK on fading and scintillating channels , 1992, IEEE Trans. Commun..

[4]  R. Clarke A statistical theory of mobile-radio reception , 1968 .

[5]  Norman C. Beaulieu,et al.  Limitations of sum-of-sinusoids fading channel simulators , 2001, IEEE Trans. Commun..

[6]  Giorgio Matteo Vitetta,et al.  GQR models for multipath Rayleigh fading channels , 2001, IEEE J. Sel. Areas Commun..

[7]  M. Patzold,et al.  On the statistical properties of deterministic simulation models for mobile fading channels , 1998 .

[8]  Tung-Sang Ng,et al.  A simulation model for Nakagami-m fading channels, m<1 , 2000, IEEE Trans. Commun..

[9]  Norman C. Beaulieu,et al.  Second-order statistical properties of the WSS Jakes' fading channel simulator , 2002, IEEE Trans. Commun..

[10]  W. C. Jakes,et al.  Microwave Mobile Communications , 1974 .

[11]  Peter Adam Hoeher,et al.  A statistical discrete-time model for the WSSUS multipath channel , 1992 .

[12]  W. R. Braun,et al.  A physical mobile radio channel model , 1991 .

[13]  Jan C. Olivier,et al.  Mobile speed estimation for TDMA-based hierarchical cellular systems , 2001, IEEE Trans. Veh. Technol..

[14]  Matthias Patzold,et al.  A study of a land mobile satellite channel model with asymmetrical Doppler power spectrum and lognormally distributed line-of-sight component , 1998 .