An Extended Modular Processing Pipeline for Event-Based Vision in Automatic Visual Inspection.

Sensors (Basel)

Fraunhofer IOSB, Karlsruhe, Institute of Optronics, System Technologies and Image Exploitation IOSB, 76131 Karlsruhe, Germany.

Published: September 2021

AI Article Synopsis

  • Dynamic Vision Sensors transmit only pixel intensity changes, offering advantages like high temporal resolution and low data rates compared to traditional cameras.
  • The paper explores using these sensors in automatic visual inspection, an area with limited previous research, and evaluates state-of-the-art processing algorithms in this context.
  • Two new datasets are introduced for visual inspection scenarios, demonstrating improved classification accuracy with the proposed algorithm, and are made publicly available to encourage further research.

Article Abstract

Dynamic Vision Sensors differ from conventional cameras in that only intensity changes of individual pixels are perceived and transmitted as an asynchronous stream instead of an entire frame. The technology promises, among other things, high temporal resolution and low latencies and data rates. While such sensors currently enjoy much scientific attention, there are only little publications on practical applications. One field of application that has hardly been considered so far, yet potentially fits well with the sensor principle due to its special properties, is automatic visual inspection. In this paper, we evaluate current state-of-the-art processing algorithms in this new application domain. We further propose an algorithmic approach for the identification of ideal time windows within an event stream for object classification. For the evaluation of our method, we acquire two novel datasets that contain typical visual inspection scenarios, i.e., the inspection of objects on a conveyor belt and during free fall. The success of our algorithmic extension for data processing is demonstrated on the basis of these new datasets by showing that classification accuracy of current algorithms is highly increased. By making our new datasets publicly available, we intend to stimulate further research on application of Dynamic Vision Sensors in machine vision applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8472878PMC
http://dx.doi.org/10.3390/s21186143DOI Listing

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