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EU-Förderung (3.965.395 €): NEuromorphic Reconfigurable Integrated Photonic Circuits als künstlicher Bildprozessor Hor01.01.2020 EU-Rahmenprogramm für Forschung und Innovation "Horizont"

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NEuromorphic Reconfigurable Integrated Photonic Circuits als künstlicher Bildprozessor

NEoteRIC’s primary objective is the generation of holistic photonic machine learning paradigms that will address demanding imaging applications in an unconventional approach providing paramount frame rate increase, classification performance enhancement and orders of magnitude lower power consumption compared to the state-of-the-art machine learning approaches. NEoteRIC’s implementation stratagem incorporates multiple innovations spanning from the photonic “transistor” level and extending up to the system architectural level, thus paving new, unconventional routes to neuromorphic performance enhancement. The technological cornerstone of NEoteRIC relies on the development and upscaling of a high-speed reconfigurable photonic FPGA-like circuit that will incorporate highly-dense and fully reconfigurable key silicon photonic components (ring resonators, MZIs, etc.). High-speed reconfigurability will unlock the ability to restructure the photonic components and rewire inter-component connections. Through NEoteRIC the integrated photonic FPGAs will be strengthened by the incorporation of novel marginal-power consuming non-volatile high-speed phase shifters that will push the boundaries of energy consumption. NEoteRIC’s “unconventional” chips will be utilized as a proliferating neuromorphic computational platform that will merge the merits of photonic and electronic technology and will allow the all-optical implementation of powerful non-von Neumann architectures such as Reservoir Computing, Recurrent Neural Networks, Deep Neural Networks and Convolutional Neural Networks simultaneously by the same photonic chip. The in-project excellence will be tested through demanding high impact application such as high frame-rate image analysis and in particular single-pixel time-stretch modalities thus pushing the boundaries of state-of-the-art; exhibiting simultaneous high spatial resolution and Gframe/sec processing rate.


Geförderte Unternehmen:

Firmenname Förderungssumme
Commissariat a L Energie Atomique et aux Energies Alternatives 512.532 €
Ethniko Kentro Erevnas Kai Technologikis Anaptyxis 361.875 €
Eulambia Advanced Technologies Etairia Periorismenis Efthinis 410.000 €
IBM Research GmbH 288.799 €
Lumiphase AG 459.151 €
Panepistimio Aigaiou 435.313 €
Prophesee 196.163 €
Teramount Ltd. 392.750 €
Universitat Politecnica de Valencia 580.000 €
Universiteit Gent 328.813 €

Quelle: https://cordis.europa.eu/project/id/871330

Diese Bekanntmachung wurde von Englisch nach Deutsch übersetzt. Die Bekanntmachung bezieht sich auf einen vergangenen Zeitpunkt, und spiegelt nicht notwendigerweise den heutigen Stand wider.