Reconstruction of Information-bearing Chaotic Signals in Additive White Gaussian Noise: Performance Analysis and Evaluation

Celso Grebogi, J. P. Marino, E. Rosa

Research output: Contribution to journalArticle

4 Citations (Scopus)

Abstract

Chaotic signals can be used as carriers of information in communication systems since they own some redundancy that can be exploited to reconstruct missing or distorted parts of a waveform that has been transmitted through a communication channel. In this paper, we extend our previous results for the ideal noise free channel [Marino et al., 1999] to a more general situation where additive white Gaussian noise corrupts the information-bearing chaotic signal.

Original languageEnglish
Pages (from-to)2631-2636
Number of pages5
JournalInternational Journal of Bifurcation and Chaos
Volume11
Publication statusPublished - 2001

Keywords

  • COMMUNICATION
  • SYSTEMS

Cite this

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title = "Reconstruction of Information-bearing Chaotic Signals in Additive White Gaussian Noise: Performance Analysis and Evaluation",
abstract = "Chaotic signals can be used as carriers of information in communication systems since they own some redundancy that can be exploited to reconstruct missing or distorted parts of a waveform that has been transmitted through a communication channel. In this paper, we extend our previous results for the ideal noise free channel [Marino et al., 1999] to a more general situation where additive white Gaussian noise corrupts the information-bearing chaotic signal.",
keywords = "COMMUNICATION, SYSTEMS",
author = "Celso Grebogi and Marino, {J. P.} and E. Rosa",
year = "2001",
language = "English",
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issn = "0218-1274",
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TY - JOUR

T1 - Reconstruction of Information-bearing Chaotic Signals in Additive White Gaussian Noise: Performance Analysis and Evaluation

AU - Grebogi, Celso

AU - Marino, J. P.

AU - Rosa, E.

PY - 2001

Y1 - 2001

N2 - Chaotic signals can be used as carriers of information in communication systems since they own some redundancy that can be exploited to reconstruct missing or distorted parts of a waveform that has been transmitted through a communication channel. In this paper, we extend our previous results for the ideal noise free channel [Marino et al., 1999] to a more general situation where additive white Gaussian noise corrupts the information-bearing chaotic signal.

AB - Chaotic signals can be used as carriers of information in communication systems since they own some redundancy that can be exploited to reconstruct missing or distorted parts of a waveform that has been transmitted through a communication channel. In this paper, we extend our previous results for the ideal noise free channel [Marino et al., 1999] to a more general situation where additive white Gaussian noise corrupts the information-bearing chaotic signal.

KW - COMMUNICATION

KW - SYSTEMS

M3 - Article

VL - 11

SP - 2631

EP - 2636

JO - International Journal of Bifurcation and Chaos

JF - International Journal of Bifurcation and Chaos

SN - 0218-1274

ER -