Spiking Neural Networks -- Part I: Detecting Spatial Patterns

October 27, 2020 ยท Declared Dead ยท ๐Ÿ› IEEE Communications Letters

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Authors Hyeryung Jang, Nicolas Skatchkovsky, Osvaldo Simeone arXiv ID 2010.14208 Category cs.NE: Neural & Evolutionary Cross-listed cs.LG, eess.SP Citations 11 Venue IEEE Communications Letters Last Checked 4 months ago
Abstract
Spiking Neural Networks (SNNs) are biologically inspired machine learning models that build on dynamic neuronal models processing binary and sparse spiking signals in an event-driven, online, fashion. SNNs can be implemented on neuromorphic computing platforms that are emerging as energy-efficient co-processors for learning and inference. This is the first of a series of three papers that introduce SNNs to an audience of engineers by focusing on models, algorithms, and applications. In this first paper, we first cover neural models used for conventional Artificial Neural Networks (ANNs) and SNNs. Then, we review learning algorithms and applications for SNNs that aim at mimicking the functionality of ANNs by detecting or generating spatial patterns in rate-encoded spiking signals. We specifically discuss ANN-to-SNN conversion and neural sampling. Finally, we validate the capabilities of SNNs for detecting and generating spatial patterns through experiments.
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