Title :
Chaos synchronization on Visible Light Communication with application for secure data communications
Author :
Canyelles-Pericas, P. ; Burton, Andy ; Hoa Le-Minh ; Ghassemlooy, Zabih ; Busawon, K.
Author_Institution :
Fac. of Eng. & Environ., Univ. of Northumbria at Newcastle, Newcastle upon Tyne, UK
Abstract :
This paper studies the possibility of implementing a chaos synchronization scheme in the context of Visible Light Communication (VLC) with potential application to message encryption. For this, a unidirectional transmitter-receiver configuration is employed whereby the encrypted data is sent over a VLC optical wireless channel. More precisely, the classical chaotic masking, with the use of a Rossler oscillator and a corresponding nonlinear observer, and the inverse system approach with Lorenz oscillators, have been employed to demonstrate the proof of concept of chaos synchronization in VLC. By employing a pseudo random binary data sequence as a message it is shown that acceptable message recovery is obtained despite the presence of delay, attenuation and noise in the channel. Simulations results using Matlab Simulink are provided to show the performance and the level of the synchronization achieved for both methods.
Keywords :
chaotic communication; cryptography; optical links; synchronisation; Lorenz oscillator; Matlab Simulink; Rossler oscillator; chaos synchronization; classical chaotic masking; inverse system; message encryption; noise attenuation; nonlinear observer; secure data communications; unidirectional transmitter-receiver configuration; visible light communication; Chaotic communication; Delays; Observers; Oscillators; Receivers; Synchronization; chaotic masking; chaotic oscillators; inverse system approach; message encryption; nonlinear observer; time delay transmission; visible light communication channel;
Conference_Titel :
AFRICON, 2013
Conference_Location :
Pointe-Aux-Piments
Print_ISBN :
978-1-4673-5940-5
DOI :
10.1109/AFRCON.2013.6757743