Title :
Design of multiple-accessing chaotic digital communication system based on Interleaved Chaotic Differential Peaks Keying (I-CDPK)
Author :
Chien, T.I. ; Wang, N.Z. ; Liao, T.L. ; Chang, S.B.
Author_Institution :
Dept. of Electron. Eng., Kao Yuan Univ., Kaohsiung
Abstract :
This paper presents a multiple-accessing chaotic digital communication system based on interleaved chaotic differential peaks keying (I-CDPK) modulation technique. The proposed communication system consists of four major modules: multiple-accessing chaotic transmitter (MACT), frequency modulation (FM) transmitter, FM receiver and multiple-accessing chaotic receiver (MACR). In this multiple-accessing chaotic digital communication system, the transmitted data of every Link are carried in a different state of the chaotic system instead of the using of chaotic sequences spreader or binary codes spreader, and only a scalar state variable (i.e. the output of MACTpsilas chaotic circuit) is sent to the MACRpsilas chaotic circuit through both FM transmitter and FM receiver. For synchronizing the chaotic circuits of the MACT and MACR, an observer-based chaotic synchronization scheme is used in this work. Besides, the Bit Detector in MACR is applied to recover the transmitted input digital bits corresponding to each individual link. Some numerical simulations are executed for the illustrative communication system, which is a Rossler - like chaotic system. Moreover, the performance of bit error rate of the proposed system is compared with those of the correlator-based communication systems adopting coherent binary phase shift keying (BPSK) and coherent differential chaotic shift keying (DCSK) schemes.
Keywords :
chaotic communication; digital communication; error statistics; frequency modulation; phase shift keying; radio receivers; radio transmitters; Rossler-like chaotic system; binary codes spreader; bit error rate; chaotic circuit; chaotic digital communication; chaotic sequences spreader; chaotic synchronization; coherent binary phase shift keying; coherent differential chaotic shift keying; frequency modulation receiver; frequency modulation transmitter; interleaved chaotic differential peaks keying; multiple accessing communication; multiple-accessing chaotic transmitter; numerical simulations; Binary codes; Binary phase shift keying; Chaotic communication; Circuits; Detectors; Digital communication; Digital modulation; Frequency modulation; Frequency synchronization; Transmitters; BPSK; Chaotic Differential Peaks Keying; Chaotic Digital Communication System; Chaotic Modulation; Chaotic synchronization; DCSK; I-CDPK; Multiple Access; Observer;
Conference_Titel :
Communication Systems, Networks and Digital Signal Processing, 2008. CNSDSP 2008. 6th International Symposium on
Conference_Location :
Graz
Print_ISBN :
978-1-4244-1875-6
Electronic_ISBN :
978-1-4244-1876-3
DOI :
10.1109/CSNDSP.2008.4610717