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Coexisting Behaviors of Asymmetric Attractors in Hyperbolic-Type Memristor based Hopfield Neural Network

机译:基于双曲型忆阻器的Hopfield神经网络中非对称吸引子的共存行为

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A new hyperbolic-type memristor emulator is presented and its frequency-dependent pinched hysteresis loops are analyzed by numerical simulations and confirmed by hardware experiments. Based on the emulator, a novel hyperbolic-type memristor based 3-neuron Hopfield neural network (HNN) is proposed, which is achieved through substituting one coupling-connection weight with a memristive synaptic weight. It is numerically shown that the memristive HNN has a dynamical transition from chaotic, to periodic, and further to stable point behaviors with the variations of the memristor inner parameter, implying the stabilization effect of the hyperbolic-type memristor on the chaotic HNN. Of particular interest, it should be highly stressed that for different memristor inner parameters, different coexisting behaviors of asymmetric attractors are emerged under different initial conditions, leading to the existence of multistable oscillation states in the memristive HNN. Furthermore, by using commercial discrete components, a nonlinear circuit is designed and PSPICE circuit simulations and hardware experiments are performed. The results simulated and captured from the realization circuit are consistent with numerical simulations, which well verify the facticity of coexisting asymmetric attractors' behaviors.
机译:提出了一种新的双曲线型忆阻器仿真器,并通过数值模拟分析了其频率相关的收缩磁滞回线,并通过硬件实验对其进行了验证。在仿真器的基础上,提出了一种新型的基于双曲型忆阻器的3-神经元Hopfield神经网络(HNN),它是通过用忆阻突触权重代替一个耦合连接权重来实现的。数值表明,随着忆阻器内部参数的变化,忆阻型HNN具有从混沌到周期性,再到稳定点的动态过渡,暗示了双曲线型忆阻器对混沌HNN的稳定作用。特别值得关注的是,应高度重视,对于不同的忆阻器内部参数,在不同的初始条件下会出现不对称吸引子的不同共存行为,从而导致忆阻性HNN中存在多稳态振荡态。此外,通过使用商用分立元件,设计了非线性电路,并进行了PSPICE电路仿真和硬件实验。从实现电路中模拟和捕获的结果与数值模拟相吻合,这很好地验证了不对称吸引子并存行为的真实性。

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