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A Novel Memductor-Based Chaotic System and Its Applications in Circuit Design and Experimental Validation

机译:基于Memductor的混沌系统及其在电路设计和实验验证中的应用

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This paper is expected to introduce a novel memductor-based chaotic system. The local dynamical entities, such as the basic dynamical behavior, the divergence, the stability of equilibrium set, and the Lyapunov exponent, are all investigated analytically and numerically to reveal the dynamic characteristics of the new memductor-based chaotic system as the system parameters and the initial state of memristor change. Subsequently, an active control method is derived to study the synchronous stability of the novel memductor-based chaotic system through making the synchronization error system asymptotically stable at the origin. Further to these, a memductor-based chaotic circuit is designed, realized, and applied to construct a new memductor-based secure communication circuit by employing the basic electronic components and memristor. Furthermore, the design principle of the memductor-based chaotic circuit is thoroughly analyzed and the concept of “the memductor-based chaotic circuit defect quantification index” is proposed for the first time to verify whether the chaotic output is consistent with the mathematical model. A good qualitative agreement is shown between the simulations and the experimental validation results.
机译:预计本文将引入新的基于Memductor的混沌系统。局部动态实体,例如基本动态行为,分歧,均衡集的稳定性,以及Lyapunov指数,都是分析和数值研究的,以揭示新的基于Memductor的混沌系统的动态特性作为系统参数和Memristor改变的初始状态。随后,导出了一种主动控制方法,以研究新的Memductor的混沌系统的同步稳定性通过使得在原点渐近稳定的同步误差系统。此外,通过采用基本电子元件和函数来设计,实现基于MemDuctor的混沌电路,以构造基于Memductor的安全通信电路。此外,基于Memductor的混沌电路的设计原理被彻底分析,并且第一次提出了“Memductor基混沌电路缺陷量化指数”的概念,以验证混沌输出是否与数学模型一致。模拟与实验验证结果之间显示了良好的定性协议。

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