A pseudo-memcapacitive neurotransistor for spiking neural networks

Publikation: Beitrag in Buch/Konferenzbericht/Sammelband/GutachtenBeitrag in KonferenzbandBeigetragenBegutachtung

Abstract

In this paper, we present a pseudo-memcapacitive neurotransistor by embedding a nonvolatile, abrupt-switching memristor at the gate of an NMOS transistor to emulate neuronal integrate and fire behavior. Neural networks, implementing spike- based computing paradigms on hardware platforms, integrating memristor crossbar arrays on underlying CMOS circuitry, oper- ate similarly as neuronal networks in the human brain, which can significantly improve the time and energy efficiency of standard data processors. We demonstrate that also nonvolatile memristors can be considered to realize neuronal leaky integration and firing functionality including the neuron reset being performed intrinsically by a sufficiently discharged ’membrane’ potential at the gate of a transistor. A versatile, compact and abrupt-switching model of a nonvolatile memristor with built-in cycle-to-cycle variability is proposed, forming a pseudo-memcapacitance along with the gate capacitance and evoking conditional neuronal spike generation depending upon the properties of the input pulse train. The SPICE code of the pseudo-memcapacitive neurotransistor is applied to verify the design parameters that trigger firing. Finally, the envisaged circuit realization of the proposed design is discussed.

Details

OriginalspracheEnglisch
Titel2023 12th International Conference on Modern Circuits and Systems Technologies, MOCAST 2023 - Proceedings
Seiten1-5
ISBN (elektronisch)9798350321074
PublikationsstatusVeröffentlicht - 29 Juni 2023
Peer-Review-StatusJa

Publikationsreihe

ReiheInternational Conference on Modern Circuits and Systems Technologies (MOCAST)
Nummer12

Konferenz

TitelInternational Conference on Modern Circuits and Systems Technologies 2023
KurztitelMOCAST 2023
Veranstaltungsnummer12
Dauer28 - 30 Juni 2023
Webseite
BekanntheitsgradInternationale Veranstaltung
OrtConference Center of University of West Attica
StadtAthens
LandGriechenland

Externe IDs

Scopus 85166471928
Mendeley 757569a3-f62c-3f27-9af8-b8e77c68ed87
ORCID /0000-0002-1236-1300/work/142239551
ORCID /0000-0001-7436-0103/work/142240390
ORCID /0000-0003-3259-4571/work/142249670
ORCID /0000-0003-3814-0378/work/142256368

Schlagworte

Fächergruppen, Lehr- und Forschungsbereiche, Fachgebiete nach Destatis

Schlagwörter

  • Pseudo-memcapacitive neurotransistor, non-volatile memristor, SPICE model, Spiking neural networks, Pseudo-memcapacitive neurotransistor, non-volatile memristor, SPICE model, Spiking neural networks, nonvolatile memristor, spiking neural networks