Delayed switching applied to memristor neural networks

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Abstract

Magnetic flux and electric charge are linked in a memristor. We reported recently that a memristor has a peculiar effect in which the switching takes place with a time delay because a memristor possesses a certain inertia. This effect was named the delayed switching effect. In this work, we elaborate on the importance of delayed switching in a brain-like computer using memristor neural networks. The effect is used to control the switching of a memristor synapse between two neurons that fire together (the Hebbian rule). A theoretical formula is found, and the design is verified by a simulation. We have also built an experimental setup consisting of electronic memristive synapses and electronic neurons. © 2012 American Institute of Physics.

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Wang, F. Z., Helian, N., Wu, S., Yang, X., Guo, Y., Lim, G., & Rashid, M. M. (2012). Delayed switching applied to memristor neural networks. In Journal of Applied Physics (Vol. 111). https://doi.org/10.1063/1.3672409

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