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首页> 外文期刊>Circuits, systems, and signal processing >Improved Chaotic Dynamics of a Fractional-Order System, its Chaos-Suppressed Synchronisation and Circuit Implementation
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Improved Chaotic Dynamics of a Fractional-Order System, its Chaos-Suppressed Synchronisation and Circuit Implementation

机译:分数阶系统的改进混沌动力学,混沌抑制同步和电路实现

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摘要

This paper presents (1) a new and improved fractional-order chaotic system (FOCS); (2) design of controllers for suppression of chaos for commensurate and incommensurate orders in the regions: and ; (3) synchronisation between the new FOCS (as master) and a non-identical FOCS (as slave) when the master is in either chaotic mode or chaos-suppressed mode and finally (4) analog circuit implementation to validate the numerical simulation results. The rich variety of complex nonlinear dynamical behaviour is explored by varying the parameters as well as the fractional orders. Effective control strategies are designed to suppress chaos in the new system. In addition to this, the paper contributes the idea of synchronisation of the FOCS when it switches between chaotic and chaos-suppressed mode. The control scheme put forward in the paper is able to synchronise the slave with the switching master effectively in spite of change in dynamics. The paper compares the improved features of the newly proposed FO model with a class of well-known FOCSs and elaborates its capability to enhance the performance of secure communication. Circuit implementation results for all the above are in perfect agreement with those obtained through theoretical analyses and numerical simulations and thus reveal that the objectives of the paper are successfully achieved.
机译:本文提出(1)一种新的改进的分数阶混沌系统(FOCS); (2)设计控制器,以抑制区域内相应和不合理订单的混乱: (3)当主机处于混乱模式或混沌抑制模式时,新的FOCS(作为主设备)和不相同的FOCS(作为从设备)之间的同步,最后(4)模拟电路实现以验证数值仿真结果。通过改变参数和分数阶来探索丰富的复杂非线性动力学行为。有效的控制策略旨在抑制新系统中的混乱。除此之外,本文还提出了在混沌模式和混沌抑制模式之间切换时FOCS同步的想法。本文提出的控制方案能够在动态变化的情况下有效地使从机与开关主机同步。本文将新提出的FO模型的改进功能与一类著名的FOCS进行了比较,并阐述了其增强安全通信性能的能力。上述所有电路的实现结果与通过理论分析和数值模拟获得的结果完全吻合,从而表明本文的目标已成功实现。

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