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Circuit simulation on control and synchronization of fractional order switching chaotic system

机译:分数阶切换混沌系统控制与同步的电路仿真

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摘要

In view of obtaining a larger key space and thus improve the level of security attainable in chaotic communication, this paper examines the dynamics of a switched, fractional-order chaotic system. Taking the fractional-order Chen system as a starting point, the dynamics of a modified version of that system is examined, and the composed system is hereafter realized by allowing switching between the two different subsystems. Our work first demonstrates how fractional-order chaotic systems can be realized physically. For the fractional-order switching chaotic system, a linear feedback controller and a number of synchronization schemes are designed. Our simulations show that control and synchronization of the individual subsystems can be achieved with the same feedback and synchronization controller.
机译:为了获得更大的密钥空间,从而提高混沌通信中可获得的安全级别,本文研究了交换式分数阶混沌系统的动态特性。以分数阶Chen系统为起点,检查了该系统的修改版本的动力学,之后通过允许在两个不同的子系统之间切换来实现组成的系统。我们的工作首先证明了分数阶混沌系统是如何物理实现的。对于分数阶开关混沌系统,设计了线性反馈控制器和许多同步方案。我们的仿真表明,可以使用相同的反馈和同步控制器来实现各个子系统的控制和同步。

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