ZHU Yong-xin,XU Quan,CHEN Mo,et al.Dynamics and Circuit Implementation of a Simplified Model of Adaptive Synaptic Neuron[J].ACTA ELECTRONICA SINICA,2022,50(05):1083-1088.
ZHU Yong-xin,XU Quan,CHEN Mo,et al.Dynamics and Circuit Implementation of a Simplified Model of Adaptive Synaptic Neuron[J].ACTA ELECTRONICA SINICA,2022,50(05):1083-1088. DOI: 10.12263/DZXB.20210549.
Dynamics and Circuit Implementation of a Simplified Model of Adaptive Synaptic Neuron
Adaptive synaptic neuron model has two complex activation functions
which make it difficult to be analyzed theoretically and implemented in hardware circuit. However
the main firing activities of this neuron are only affected by the local curve characteristics of the two activation functions and these local curve characteristics are completely different. In view of this
a simplified mathematical model of adaptive synaptic neuron is proposed using two simple functions to respectively fit the two different local curve characteristics. Based on the trajectory diagram of the equilibrium point
the evolution mechanism of the equilibrium stability of the simplified model with the change of external stimulus is explained. It achieves the transition between the stable and unstable equilibrium states via Hopf bifurcation. By means of theoretical analyses and numerical simulations
complex dynamics of the adaptive synaptic neuron under different parameters is investigated. Finally
an analog circuit is designed using discrete components and a printed circuit board is made. The motion trajectory captured by a digital oscilloscope verifies the feasibility of the simplified activation functions and the correctness of MATLAB numerical simulations.
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