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A multi-level hybrid chaotic system with a novel damping approach to achieve variable rates

机译:一种具有新型阻尼方法实现可变速率的多级混合混沌系统

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Recent advances in chaotic communications have paved the way for the implementation of matched filter based receivers to detect chaotic signals generated by hybrid-chaotic oscillators. These oscillators offer an exact analytic solution given their fixed basis function. This paper extends the hybrid-chaotic oscillator concept and presents a novel hybrid-chaotic oscillator for multilevel chaotic modulation. This is created by combining a data dependent discrete system and a continuous chaotic system with a novel damping factor approach to achieve variable rates. Lower complexity is achieved by multilevel modulation at the transmitter and a matched filter at the receiver. An exact analytic solution for the output of the matched filter was also derived. A comprehensive set of simulations were carried out to evaluate the performance of the novel system in Additive White Gaussian Noise (AWGN) channels and to compare it with that of conventional communication systems. The results demonstrate that the proposed system can realize multi-level chaotic communication system with acceptable bit error rate performance.
机译:混沌通信的最新进步已经为基于匹配的滤波器的接收器铺平了方法,以检测混沌混沌振荡器产生的混沌信号。鉴于固定基础功能,这些振荡器提供了精确的分析解决方案。本文扩展了混沌振荡器概念,并提出了一种用于多级混沌调制的新型混沌混沌振荡器。这是通过将数据相关的离散系统和连续混沌系统组合来创建的,具有新的阻尼因子方法来实现可变速率。通过在接收器处的发射机和匹配滤波器处的多级调制来实现较低的复杂性。还导出了用于输出的精确分析解决方案。进行了一系列综合模拟,以评估新型系统在附加白色高斯噪声(AWGN)信道中的性能,并将其与传统通信系统的比较。结果表明,所提出的系统可以实现具有可接受的塔错误率性能的多级混沌通信系统。

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