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Titlebook: Chaos-Based Digital Communication Systems; Operating Principles F. C. M. Lau,C. K. Tse Book 2003 Springer-Verlag Berlin Heidelberg 2003 Cha

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https://doi.org/10.1007/978-3-8349-9623-7ore, it is useful to compare the relative performances of coherent and non-coherent chaos-based systems and the extent to which coherent systems excel in the presence of other coexisting wideband systems. Our objective in this chapter is to investigate the performance of selected chaos-based digital
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1860-4862 ystems, such as robustness in multi path environments, resistance to jam­ ming, low probability of interception, etc. In addition, chaotic signals are easy to generate and hence offer a potentially low-cost sol978-3-642-05616-1978-3-662-05183-2Series ISSN 1860-4862 Series E-ISSN 1860-4870
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Book 2003dvantages that are currently being offered by conventional spread-spectrum communication systems, such as robustness in multi path environments, resistance to jam­ ming, low probability of interception, etc. In addition, chaotic signals are easy to generate and hence offer a potentially low-cost sol
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Performance Analysis Methods for Coherent Chaos-Shift-Keying Systems,e chaotic signal segments generated from the two chaos generators. Alternatively, the transmitted signal may be generated from one chaos generator in which a parameter is modulated according to the binary signal being sent. In this case, the receiver’s job is to work out the parametric change by obs
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Performance Analysis Methods for Non-Coherent Differential Chaos-Shift-Keying Systems, the transmitted signals, which can be some generic deterministic properties (e.g., return-map based detection [Tse . (2001)] and maximum-likelihood method [Kisel . (2001)]), or fabricated by a suitable bit arrangement (e.g., differential CSK (DCSK) [Kolumbán . (1996)]). In particular, we investigat
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Anti-Jamming Performance of Chaos-Based Digital Communication Systems Under Narrowband Sine-Wave Jatems. It is therefore of interest to study thoroughly the anti-jamming properties of chaos-based communication systems in order to gain a better understanding of how well or poorly, in exact quantitative terms, a practical non-coherent chaotic communication system performs in comparison with the the
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Anti-Jamming Performance of Chaos-Based Digital Communication Systems Under Wideband Pulsed-Noise Jbit frequency. Within each bit period, therefore, the jammer is assumed to be turned on for a fraction . of the symbol period and is off for the remaining symbol period. The objective of our study is to determine the factors and the extent to which these factors would affect the performance of chaos
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