4.6 Article

A Generalization Performance Study Using Deep Learning Networks in Embedded Systems

Journal

SENSORS
Volume 21, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/s21041031

Keywords

edge computing; deep learning; quantisation; computer vision

Funding

  1. ERDF/Spanish Ministry of Science, Innovation and Universities National Research Agency/PhysComp project [TIN2017-85409-P]
  2. University of the Basque Country

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Deep learning techniques are increasingly being used in the scientific community due to the high computational capacity of current systems and the increase in available data. The development of edge computing allows artificial intelligence to be integrated as close as possible to the client, enabling real-time operation without transferring all data to centralized servers.
Deep learning techniques are being increasingly used in the scientific community as a consequence of the high computational capacity of current systems and the increase in the amount of data available as a result of the digitalisation of society in general and the industrial world in particular. In addition, the immersion of the field of edge computing, which focuses on integrating artificial intelligence as close as possible to the client, makes it possible to implement systems that act in real time without the need to transfer all of the data to centralised servers. The combination of these two concepts can lead to systems with the capacity to make correct decisions and act based on them immediately and in situ. Despite this, the low capacity of embedded systems greatly hinders this integration, so the possibility of being able to integrate them into a wide range of micro-controllers can be a great advantage. This paper contributes with the generation of an environment based on Mbed OS and TensorFlow Lite to be embedded in any general purpose embedded system, allowing the introduction of deep learning architectures. The experiments herein prove that the proposed system is competitive if compared to other commercial systems.

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