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A Simple Chaotic Wien Bridge Oscillator with a Fractional-Order Memristor and Its Combination Synchronization for Efficient Antiattack Capability

机译:一种简单的混沌Wien桥振荡器,具有分数级忆阻器及其组合同步,以实现高效的防空性能

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Memristor-based oscillators are of recent interest, and hence, in this paper, we introduce a new Wien bridge oscillator with a fractional-order memristor. The novelty of the proposed oscillator is the multistability feature and the wide range of fractional orders for which the system shows chaos. We have investigated the various dynamical properties of the proposed oscillator and have presented them in detail. The oscillator is then realized using off-the-shelf components, and the results are compared with that of the numerical results. A combination synchronization scheme is proposed which uses more than one driver systems to synchronize with one response system. Indeed, we use two different techniques where the first one consists of splitting the transmitted signals into two parts where each part is loaded in different drive systems, while the second one consists of dividing time into different intervals and loading the signals in different drive systems. Such techniques improve the antiattack capability of the systems when used for secure communication.
机译:基于Memristor的振荡器是最近的兴趣,因此,在本文中,我们介绍了一个带有分数票据的Wien桥振荡器。所提出的振荡器的新颖性是多功能性功能和系统显示混乱的广泛的分数订单。我们研究了所提出的振荡器的各种动态特性,并详细介绍它们。然后使用现成的成分实现振荡器,并将结果与​​数值结果的结果进行比较。建议使用多个驱动系统与一个响应系统同步的组合同步方案。实际上,我们使用两种不同的技术,其中第一个技术包括将传输的信号分成两个部分,其中每个部分加载在不同的驱动系统中,而第二个则包括将时间分成不同的间隔并加载不同驱动系统中的信号。这种技术在用于安全通信时改善了系统的防托克能力。

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