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Adaptive Relay Configuration Based on the Novel Hyperchaotic Three-Components Oscillator Operating at High Frequency: Global Synchronization

机译:基于新型高频三分振荡器的自适应继电器配置,高频运行:全局同步

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This article is investigating from one of best control technique known as periodically intermittent discrete observation control (PIDOC), the problem of global synchronization based on a relay configuration of three novel hyperchaotic oscillators of three-components (NHO) operating at high frequency. Contrary to traditional periodically intermittent control based on continuous-time state observations, PIDOC used here, chooses discrete-time state observations in work time during a control period. Our analysis has been limited to a range of parameters for which the NHO-type oscillator exhibits bursting oscillations. The global conditions of stability for non-adaptive and adaptive cases have been proven analytically. To the best of our knowledge and in the literature of the relay coupling system, no work has been carried out concerning the study of the stability of adaptive synchronization case. The Synchronization of the system is analysed in terms of its control gain by using time series. The numerical results show that there is global synchronization between the three relay coupled NHO-type oscillators for both non-adaptive and adaptive synchronizations. Moreover, PSpice based simulations of the analog electronic circuit for the non-adaptive case are in good accordance with both theoretical and numerical results.
机译:本文正在从称为周期性间歇性分立观察控制(PIDOC)的最佳控制技术之一,基于在高频运行的三个组分(NHO)的三种新型超混沌振荡器的中继配置的全局同步问题。与基于连续时间态观测的传统周期性间歇控制相反,这里使用的PIDOC在控制期间选择工作时间的离散时间观察。我们的分析仅限于NHO型振荡器展示振荡的一系列参数。在分析上证明了非适应性和自适应案例的全球稳定性条件。据我们所知和中继耦合系统的文献中,没有关于自适应同步情况稳定性的研究。通过使用时间序列,在其控制增益方面分析系统的同步。数值结果表明,对于非自适应和自适应同步,三个继电器耦合的NHO型振荡器之间存在全局同步。此外,基于PSPICE的非自适应情况的模拟电子电路的模拟良好地符合理论和数值结果。

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