Title :
Log-domain implementation of complex dynamics reaction-diffusion neural networks
Author :
Serrano-Gotarredona, Teresa ; Linares-Barranco, Bernabe
Author_Institution :
Centro Nacional de Microelectron., Inst. de Microelectron. de Sevilla, Spain
Abstract :
We have identified a second-order reaction-diffusion differential equation able to reproduce through parameter setting different complex spatio-temporal behaviors. We have designed a log-domain hardware that implements the spatially discretized version of the selected reaction-diffusion equation. The logarithmic compression of the state variables allows several decades of variation of these state variables within subthreshold operation of the MOS transistors. Furthermore, as all the equation parameters are implemented as currents, they can be adjusted several decades. As a demonstrator, we have designed a chip containing a linear array of ten second-order dynamics coupled cells. Using this hardware, we have experimentally reproduced two complex spatio-temporal phenomena: the propagation of travelling waves and of trigger waves, as well as isolated oscillatory cells.
Keywords :
MOSFET; VLSI; differential equations; neural chips; threshold logic; MOS transistors; analog circuit design; complex dynamics reaction-diffusion neural networks; complex spatio-temporal behavior; experiment; linear array; log-domain hardware; log-domain implementation; logarithmic compression; neural networks; second-order dynamics coupled cells; second-order reaction-diffusion differential equation; state variables; subthreshold operation; Biological neural networks; Coupling circuits; Differential equations; Hardware; Laplace equations; Neural networks; Nonlinear equations; Pattern formation; Spirals; Very large scale integration;
Journal_Title :
Neural Networks, IEEE Transactions on
DOI :
10.1109/TNN.2003.816374