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김필원

Kim, Pilwon
Nonlinear and Complex Dynamics
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Critical Neuromorphic Computing based on Explosive Synchronization

Author(s)
Kim, PilwonChoi, Jaesung
Issued Date
2019-04
DOI
10.1063/1.5086902
URI
https://scholarworks.unist.ac.kr/handle/201301/26609
Fulltext
https://aip.scitation.org/doi/10.1063/1.5086902
Citation
CHAOS, v.29, no.4, pp.043110
Abstract
Synchronous oscillations in neuronal ensembles have been proposed to provide a neural basis for the information processes in the brain. In this work, we present a neuromorphic computing algorithm based on oscillator synchronization in a critical regime. The algorithm uses the high-dimensional transient dynamics perturbed by an input and translates it into proper output stream. One of the benefits of adopting coupled phase oscillators as neuromorphic elements is that the synchrony among oscillators can be finely tuned at a critical state. Especially near a critical state, the marginally synchronized oscillators operate with high efficiency and maintain better computing performances. We also show that explosive synchronization that is induced from specific neuronal connectivity produces more improved and stable outputs. This work provides a systematic way to encode computing in a large size coupled oscillator, which may be useful in designing neuromorphic devices.
ISSN
1054-1500
Keyword
COHERENCYKURAMOTOSYSTEMS

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