2004
DOI: 10.1109/tcsii.2004.838329
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Performance of Differential Chaos-Shift-Keying Digital Communication Systems Over a Multipath Fading Channel With Delay Spread

Abstract: Abstract-The performance of the noncoherent differential chaos-shift-keying (DCSK) communication system over a multipath fading channel with delay spread is evaluated. Analytical expressions of the bit error rates are derived under the assumption of an independent Rayleigh fading two-ray channel model. Analytical and simulated results are presented and compared. The multipath performance of the DCSK system is also compared with that of the coherent CSK system as well as conventional generic waveform communicat… Show more

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Cited by 195 publications
(145 citation statements)
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“…The cross-correlation values are near zero and hence these sequences can be used in multipath environments and used in spread spectrum communication [13] [14].…”
Section: Generated Binary Sequencementioning
confidence: 99%
“…The cross-correlation values are near zero and hence these sequences can be used in multipath environments and used in spread spectrum communication [13] [14].…”
Section: Generated Binary Sequencementioning
confidence: 99%
“…When w 11 = 1, w 21 = 1, w 12 = 1, w 22 = −1, the proposed system reduces to the DCSK system in [8], [19]. Considering the lth symbol.…”
Section: General Weighted Csk Systemmentioning
confidence: 99%
“…Differential chaos shift keying (DCSK) is the mostly promising scheme among chaos-based communication schemes [7]. The fundamental reason for such widespread adoption is that DCSK require neither chaotic synchronization nor knowledge of the channel state information (CSI) at the receiver [7], [11]. By the same token, the DCSK is more immune to multipath fading and to nonlinear distortions, when compared to the DPSK scheme, and is much more suitable for ultra wide band (UWB) applications [7], [8], [11].…”
Section: Introductionmentioning
confidence: 99%