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Design of fractional-order hyperchaotic systems with maximum number of positive lyapunov exponents and their antisynchronisation using adaptive control

机译:使用自适应控制设计具有最大正值数量的分数阶超声系统及其反义

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A systematic design procedure for generating fractional-order hyperchaotic systems (FOHSs) with a desired number of positive Lyapunov Exponents (LEs) remains an open problem. This paper puts forward a simple step-wise algorithm to tackle the above problem for a fractional-order system (FOS) to generate hyperchaos with effective dimension n(d) 3 onwards; unlike the integer-order hyperchaotic systems where the net dimension must be n(d) 4. The problem is a significant one as a lower-dimensional system with higher number of positive LEs has crucial potentiality in secure communication. Two proposals of controller design are put forward. The first one is to design an FOHS with maximum possible positive LEs from a stable system. The second is an adaptive control scheme in fractional dynamics to perform antisynchronisation between the generated FOHS with itself considering unknown parameters. Two representative examples are presented to validate the two control proposals. The superior effectiveness in generating FOHSs by following the proposed procedure is established in comparison with the existing hit-and-trial-methods.
机译:用于生成具有所需数量的正利亚诺夫指数(LES)的分数阶超声系统(FOHS)的系统设计过程仍然是一个公开问题。本文提出了一种简单的逐步算法来解决上述问题,以便使用有效维度N(d)&gt的分数阶系统(FOS)来产生超级问题。 3向上;与净维度必须为n(d)&gt的整数超声系统不同;问题是一个重要的问题,作为具有较高数量的正不具有较高的阳性LES的低维系统在安全通信中具有至关重要的潜力。提出了两个控制器设计的建议。第一个是设计具有来自稳定系统的最大可能正面LES的FOH。第二个是分数动力学的自适应控制方案,以考虑未知参数,在生成的FOH之间执行反义。提出了两个代表性示例以验证两个控制建议。与现有的击中和试验方法相比,建立了通过遵循所提出的程序来发电FOHS的卓越有效性。

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