DocumentCode :
838458
Title :
Consistent Estimation of Symmetric Tent Chaotic Sequences With Coded Itineraries
Author :
Rosenhouse, Isaac ; Weiss, Anthony J.
Author_Institution :
Sch. of Electr. Eng., Tel Aviv Univ., Tel Aviv
Volume :
56
Issue :
11
fYear :
2008
Firstpage :
5580
Lastpage :
5588
Abstract :
Maximum-likelihood (ML) estimation of long chaotic sequences is generally statistically inefficient. Therefore, as the length of the sequences increase we do not obtain the usual ML behavior of consistency and normality. We discuss here a specific class of chaotic sequences for which consistency is preserved. The itineraries of the chaotic sequences in this class are derived from a set of binary code words. As a result, we are able to guarantee a minimal Hamming distance between them which increases linearly with the sequences length. In other words, pairs of sequences from this class have a non vanishing normalized Hamming distance between their itineraries as their length goes to infinity. We derive expressions related to the associated Euclidean distance between these chaotic sequences. Using these expressions we show that the condition for consistent estimation of a sequence from the class is satisfied with probability 1. Throughout the paper, we use the discrete-time symmetric tent chaotic sequences as an example and the expressions are derived for this specific case. We argue, however, that our results apply for a wider class of chaotic sequences. We mention the applicability of the work to the field of error-correcting codes for analog signals. However, it may be of interest for readers working on other aspects of chaotic maps as well.
Keywords :
binary codes; binary sequences; chaotic communication; error correction codes; maximum likelihood estimation; Euclidean distance; binary code words; coded itineraries; discrete-time symmetric tent chaotic sequences; error-correcting codes; maximum-likelihood estimation; minimal Hamming distance; Analog systems; Chaos; Error correction coding; Estimation; chaos; error correction coding; estimation;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2008.929669
Filename :
4602533
Link To Document :
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