Title :
Eigenvalues distribution and average Shannon capacity of asynchronous DS-CDMA systems with classical and chaos-based spreading
Author :
Poggi, C. ; Mazzini, G. ; Rovatti, R. ; Setti, G.
Author_Institution :
Ferrara Univ., Italy
Abstract :
We aim at comparing classical and chaos-based spreading sequences considering the Shannon capacity of the resulting system. Due to asynchronism, capacity turns out to be a random variable whose average can be computed once that the pdf of the eigen-values of a random matrix is known. We estimate such a pdf by Monte Carlo computation and try to fit it with a simple model. It turns out that the straightforward application of asymptotic results that hold for synchronous systems with random spreading is ineffective. Yet, a slight generalization of the profiles indicated by that theory allows a fitting of the empirical data with a relative error below 0.8% in all tested cases. Finally, by observing both the raw numerical evidence and the approximation based on pdf fitting, we are able to show that chaos-based spreading is able to produce a capacity increase with respect to classical codes designed to mimic purely random sequences.
Keywords :
Monte Carlo methods; chaotic communication; code division multiple access; eigenvalues and eigenfunctions; matrix algebra; spread spectrum communication; Monte Carlo computation; asynchronous DS-CDMA systems; average Shannon capacity; chaos-based spreading; eigenvalues distribution; pdf fitting; random matrix; random variable; synchronous systems; AWGN; Chaos; Design engineering; Eigenvalues and eigenfunctions; Monte Carlo methods; Multiaccess communication; Random sequences; Random variables; Signal processing; Testing;
Conference_Titel :
Communications, 2004 IEEE International Conference on
Print_ISBN :
0-7803-8533-0
DOI :
10.1109/ICC.2004.1313059