DocumentCode
1392664
Title
Design of high-speed simulation models for mobile fading channels by using table look-up techniques
Author
Pätzold, Matthias ; García, Raquel ; Laue, Frank
Author_Institution
Dept. of Digital Commun. Syst., Tech. Univ. Hamburg-Harburg, Germany
Volume
49
Issue
4
fYear
2000
fDate
7/1/2000 12:00:00 AM
Firstpage
1178
Lastpage
1190
Abstract
This paper describes a procedure for the design of fast simulation models for Rayleigh fading channels. The presented method is based on an efficient implementation of Rice´s sum of sinusoids by using table look-up techniques. The proposed channel simulator is composed of a few numbers of adders, storage elements, and simple modulo operators, whereas time-consuming operations like multiplications and trigonometric operations are not required. Such a multiplier-free simulation model is introduced as a high-speed channel simulator. It is shown that the high-speed channel simulator can be interpreted as a finite state machine which generates deterministic output envelope sequences with approximately Rayleigh distribution. The statistical properties of the designed high-speed channel simulator are investigated analytically and compared with the statistics of the underlying Rayleigh reference model. Results of experiments for measuring the speed of the presented and other types of channel simulators are also presented
Keywords
Rayleigh channels; land mobile radio; table lookup; Rayleigh distribution; Rayleigh fading channels; Rice sum of sinusoids; channel simulator; deterministic output envelope sequences; finite state machine; high-speed simulation models; mobile fading channels; multiplier-free simulation model; statistical properties; table look-up techniques; Analytical models; Design methodology; Digital communication; Fading; Gaussian noise; Land mobile radio; Low pass filters; Nonlinear filters; Power harmonic filters; Statistics;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/25.875225
Filename
875225
Link To Document