Title :
An efficient time-discrete symbol-spaced simulation model of mobile radio channels
Author :
Castoldi, Piero ; Raheli, Riccardo ; Marino, Giovanni
Author_Institution :
Dipartimento di Ingegneria dell´´Inf., Parma Univ., Italy
Abstract :
We propose a fully parametric, time-discrete, symbol-spaced simulation model of frequency-selective mobile radio channels. The model encapsulates transmission and receiver filters and a physical channel accounting for both Rayleigh and Rice fading. The simulator allows one to accurately trade between complexity and quality of representation of the propagation channel, making use of a digital filter of variable order to implement the Doppler spectrum of the fading processes. Numerical results assessing the performance of the model in terms of the simulation time and the power spectrum of the fading processes are provided. A communication system with an adaptive receiver is employed to test the reliability of the propagation model. Increasing the degree of accuracy in the approximation of the Doppler spectrum, the performance of the considered receiver, expressed in terms of symbol error rate, rapidly converges to a specific function of the signal to noise ratio
Keywords :
Doppler effect; Rayleigh channels; Rician channels; digital filters; digital simulation; error statistics; fading; filtering theory; land mobile radio; parameter estimation; radio receivers; radiowave propagation; simulation; spectral analysis; Doppler spectrum; Rayleigh fading; Rice fading; adaptive receiver; communication system; fading processes; frequency-selective mobile radio channels; numerical results; parametric simulation model; physical channel; power spectrum; propagation channel; propagation model; receiver filters; receiver performance; reliability; signal to noise ratio; simulation time; symbol error rate; time-discrete symbol-spaced simulation model; transmission filters; variable order digital filter; Adaptive systems; Digital filters; Fading; Frequency; Land mobile radio; Power system modeling; Power system reliability; Rayleigh channels; Receivers; System testing;
Conference_Titel :
Personal, Indoor and Mobile Radio Communications, 1994. Wireless Networks - Catching the Mobile Future., 5th IEEE International Symposium on
Conference_Location :
The Hague
Print_ISBN :
90-5199-193-2
DOI :
10.1109/WNCMF.1994.529462