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A Spike-Based Neuromorphic Architecture of Stereo Vision

Nicoletta Risi, Alessandro Aimar, Elisa Donati, Sergio Solinas, Giacomo Indiveri

2020Frontiers in Neurorobotics44 citationsDOIOpen Access PDF

Abstract

The problem of finding stereo correspondences in binocular vision is solved effortlessly in nature and yet it is still a critical bottleneck for artificial machine vision systems. As temporal information is a crucial feature in this process, the advent of event-based vision sensors and dedicated event-based processors promises to offer an effective approach to solving the stereo matching problem. Indeed, event-based neuromorphic hardware provides an optimal substrate for fast, asynchronous computation, that can make explicit use of precise temporal coincidences. However, although several biologically-inspired solutions have already been proposed, the performance benefits of combining event-based sensing with asynchronous and parallel computation are yet to be explored. Here we present a hardware spike-based stereo-vision system that leverages the advantages of brain-inspired neuromorphic computing by interfacing two event-based vision sensors to an event-based mixed-signal analog/digital neuromorphic processor. We describe a prototype interface designed to enable the emulation of a stereo-vision system on neuromorphic hardware and we quantify the stereo matching performance with two datasets. Our results provide a path toward the realization of low-latency, end-to-end event-based, neuromorphic architectures for stereo vision.

Topics & Concepts

Neuromorphic engineeringComputer scienceAsynchronous communicationSpiking neural networkArtificial intelligenceSpike (software development)StereopsisEvent (particle physics)Computer visionEmulationArtificial neural networkSoftware engineeringQuantum mechanicsEconomicsPhysicsComputer networkEconomic growthAdvanced Memory and Neural ComputingNeural Networks and Reservoir ComputingNeural dynamics and brain function
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