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Chaos M-ary modulation and demodulation method based on Hamilton oscillator and its application in communication.

Authors :
Fu, Yongqing
Li, Xingyuan
Li, Yanan
Yang, Wei
Song, Hailiang
Source :
Chaos. Mar2013, Vol. 23 Issue 1, p013111-013111-12. 1p.
Publication Year :
2013

Abstract

Chaotic communication has aroused general interests in recent years, but its communication effect is not ideal with the restriction of chaos synchronization. In this paper a new chaos M-ary digital modulation and demodulation method is proposed. By using region controllable characteristics of spatiotemporal chaos Hamilton map in phase plane and chaos unique characteristic, which is sensitive to initial value, zone mapping method is proposed. It establishes the map relationship between M-ary digital information and the region of Hamilton map phase plane, thus the M-ary information chaos modulation is realized. In addition, zone partition demodulation method is proposed based on the structure characteristic of Hamilton modulated information, which separates M-ary information from phase trajectory of chaotic Hamilton map, and the theory analysis of zone partition demodulator's boundary range is given. Finally, the communication system based on the two methods is constructed on the personal computer. The simulation shows that in high speed transmission communications and with no chaos synchronization circumstance, the proposed chaotic M-ary modulation and demodulation method has outperformed some conventional M-ary modulation methods, such as quadrature phase shift keying and M-ary pulse amplitude modulation in bit error rate. Besides, it has performance improvement in bandwidth efficiency, transmission efficiency and anti-noise performance, and the system complexity is low and chaos signal is easy to generate. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10541500
Volume :
23
Issue :
1
Database :
Academic Search Index
Journal :
Chaos
Publication Type :
Academic Journal
Accession number :
86446956
Full Text :
https://doi.org/10.1063/1.4790831