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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Flux-Charge Analysis of Initial State-Dependent Dynamical Behaviors of a Memristor Emulator-Based Chua's Circuit
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Flux-Charge Analysis of Initial State-Dependent Dynamical Behaviors of a Memristor Emulator-Based Chua's Circuit

机译:基于Memristor仿真器的CHUA电路的初始状态依赖动态行为的磁通量分析

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摘要

It is known that dynamical behaviors of memristive circuit are significantly affected by its initial states, which are difficult to be explicitly analyzed or controlled in voltage-current domain and have become great obstacles for its potential engineering applications. In this paper, the complex initial state-dependent dynamical behaviors of a physically realized memristive Chua's circuit are detailed and investigated using incremental flux-charge modeling method. This circuit is modeled in terms of incremental flux and charge, in which the original line equilibrium point is converted into some determined equilibrium points relying on the initial states of the dynamic elements. Moreover, the special initial state-dependent behaviors are transformed into system parameter-associated behaviors. Consequently, the detailed influences of each initial state, even the occurrence of hidden oscillations, can readily be theoretically interpreted. Finally, the initial state-dependent behaviors are physically captured and directed in the equivalent realization circuit of the incremental flux-charge model.
机译:众所周知,忆膜电路的动力学行为受其初始状态的显着影响,其初始状态难以在电压 - 电流域中明确分析或控制,并且对其潜在的工程应用成为巨大的障碍。在本文中,使用增量通量电荷建模方法详细探讨了物理实现的忆阻Chua电路的复杂初始状态依赖性动态行为。该电路以增量通量和电荷为模型,其中原始线路平衡点被转换成依赖于动态元素的初始状态的一些确定的平衡点。此外,特殊的初始依赖性行为被转换为系统参数相关行为。因此,可以容易地解释每个初始状态,即使是隐藏振荡的发生的详细影响。最后,在增量通量电荷模型的等效实现电路中物理捕获并指向初始状态相关行为。

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