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Titlebook: Digital Communications Using Chaos and Nonlinear Dynamics; Lawrence E. Larson,Lev S. Tsimring,Jia-Ming Liu Book 2006 Springer-Verlag New Y

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Popular Religion and the English Revolutionhe first one a chaotic signal is used as a carrier. We demonstrate that using a feedback loop controller, the local chaotic oscillator in the receiver can be synchronized to the transmitter. The information can be transmitted using phase or frequency modulation of the chaotic carrier signal. In the
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Millennialisms and the Recreation of Historyrom symbolic dynamics to generate aperiodic spreading sequences, resulting in a noiselike spectrum. In this chapter we present the signal characteristics of single-user PCTH as well as a suitable multiple access technique. In particular, we provide analytical expressions for the BER (bit-error-rate)
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https://doi.org/10.1007/978-1-349-17904-6bo decoding algorithm has more than 10. variables and is parameterized by more than 10. parameters). In this chapter we treat the turbo decoding algorithm as a dynamical system parameterized by a single parameter that closely approximates the signal-to-noise ratio (SNR). A whole range of phenomena k
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“Building the World” in a Global Age in this chapter. Basic concepts, theoretical framework, and computer algorithms are reviewed. The subjects covered include the concepts and numerical simulations of stochastic nonlinear systems, the complexity of a chaotic attractor measured by Lyapunov exponents and correlation dimension, the robu
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Christopher D. Bader,Ashley Palmerntial applications include secure communications and spread-spectrum communications. In a chaotic optical communication system, a nonlinear dynamical system is used to generate the optical chaotic waveform for message transmission. Messages are encoded through chaos encryption where the messages are
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