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Memory technologies with multi-scale time constants for neuromorphic architectures

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Report on test structures including memory devices with short-to-medium timescales (si apre in una nuova finestra)

Report on test structures including memory devices with shorttomedium timescales

Report describing use-cases and benchmarks for non-conventional memory devices (si apre in una nuova finestra)

Report describing usecases and benchmarks for nonconventional memory devices

Layout and circuit simulation results of the multi-time scale analog synapse and neuron circuits (si apre in una nuova finestra)

Layout and circuit simulation results of the multitime scale analog synapse and neuron circuits

Report on theoretical models benchmarking (si apre in una nuova finestra)
Report on CMOS circuit implementation for local synapse array, including how the interfaces to the TFT neuron chip have been properly dealt with (si apre in una nuova finestra)

Report on CMOS circuit implementation for local synapse array including how theinterfaces to the TFT neuron chip have been properly dealt with

Report on options for the computational extension of physically obtained timescales (si apre in una nuova finestra)
Summary report on lessons learnt about hardware- and application-centered timescale management (si apre in una nuova finestra)

Summary report on lessons learnt about hardware and applicationcentered timescale management

Description and simulation results of the asynchronous circuits used for multi-core routing (si apre in una nuova finestra)

Description and simulation results of the asynchronous circuits used for multicore routing

Report comprising (i) a critical survey of existing proposed models of unconventional computing, and (ii) a novel proposal for (components of) a model of computing in indeterminate hardware which resolves (some of) the defects found in existing approaches (si apre in una nuova finestra)

Report comprising i a critical survey of existing proposed models of unconventionalcomputing and ii a novel proposal for components of a model of computing in indeterminate hardware which resolves some of the defects found in existing approaches

Pubblicazioni

Implementation of binary stochastic STDP learning using chalcogenide-based memristive devices

Autori: C. Mohan, L. A. Camuñas-Mesa, J. M. de la Rosa, T. Serrano-Gotarredona, B. Linares-Barranco
Pubblicato in: Proceedings of the 2021 IEEE Int. Symp. on circ. and Syst., Numero annual, 2021
Editore: IEEE

Empirical study on the efficiency of Spiking Neural Networks with axonal delays, and algorithm-hardware benchmarking (si apre in una nuova finestra)

Autori: Alberto Patiño-Saucedo, Amirreza Yousefzadeh, Guangzhi Tang, Federico Corradi, Bernabé Linares-Barranco, Manolis Sifalakis
Pubblicato in: Proceedings of the 2023 IEEE Symposium on Circuits and Systems, Numero annual, 2023
Editore: IEEE
DOI: 10.1109/iscas46773.2023.10181778

Dendritic Computation through Exploiting Resistive Memory as both Delays and Weights

Autori: Melika Payvand, Simone D'Agostino, Filippo Moro, Yigit Demirag, Giacomo Indiveri, Elisa Vianello
Pubblicato in: ACM ICONS 2023, 2023, ISBN 978-1-4503-9789-6
Editore: ACM

Experimental Body-Input Three-Stage DC Offset Calibration Scheme for Memristive Crossbar (si apre in una nuova finestra)

Autori: Charanraj Mohan, L. A. Camunas-Mesa, Elisa Vianello, Carlo Reita, Jose M. de la Rosa, Teresa Serrano-Gotarredona, Bernabe Linares-Barranco
Pubblicato in: 2020 IEEE International Symposium on Circuits and Systems (ISCAS), Numero annual, 2020, Pagina/e 1-5, ISBN 978-1-7281-3320-1
Editore: IEEE
DOI: 10.1109/iscas45731.2020.9180811

Synaptic metaplasticity with multi-level memristive devices (si apre in una nuova finestra)

Autori: Simone D'Agostino, Filippo Moro, Tifenn Hirtzlin, Julien Arcamone, Niccolò Castellani, Damien Querlioz, Melika Payvand, Elisa Vianello
Pubblicato in: 2023 IEEE 5th International Conference on Artificial Intelligence Circuits and Systems (AICAS), 2023, ISBN 978-1-7281-9201-7
Editore: IEEE
DOI: 10.1109/aicas57966.2023.10168563

PCM-Trace: Scalable Synaptic Eligibility Traces with Resistivity Drift of Phase-Change Materials (si apre in una nuova finestra)

Autori: Yigit Demirag; Filippo Moro; Thomas Dalgaty; Gabriele Navarro; Charlotte Frenkel; Giacomo Indiveri; Elisa Vianello; Melika Payvand
Pubblicato in: ISCAS, Numero 2, 2021, ISBN 978-1-7281-9201-7
Editore: IEEE
DOI: 10.1109/iscas51556.2021.9401446

Hardware calibrated learning to compensate heterogeneity in analog RRAM-based Spiking Neural Networks (si apre in una nuova finestra)

Autori: Filippo Moro, E. Esmanhotto, T. Hirtzlin, N. Castellani, A. Trabelsi, T. Dalgaty, G. Molas, F. Andrieu, S. Brivio, S. Spiga, G. Indiveri, M. Payvand, and E. Vianello
Pubblicato in: Proceedings of the 2022 IEEE Int. Symp. on circ. and Syst., 2022, ISBN 978-1-7281-3320-1
Editore: IEEE
DOI: 10.1109/iscas48785.2022.9937820

Toward a formal theory for computing machines made out of whatever physics offers (si apre in una nuova finestra)

Autori: Jaeger, H., Noheda, B. & van der Wiel, W.G.
Pubblicato in: Nature Communications, Numero 14, 2023, Pagina/e 4911, ISSN 2041-1723
Editore: Nature Publishing Group
DOI: 10.1038/s41467-023-40533-1

Toward a generalized theory comprising digital, neuromorphic, and unconventional computing (si apre in una nuova finestra)

Autori: Herbert Jaeger
Pubblicato in: Neuromorphic computing and engineering, 1:012002. IOP PUBLISHING LTD, Numero 1, 2021, ISSN 2634-4386
Editore: IOP PUBLISHING LTD
DOI: 10.1088/2634-4386/abf151

2022 roadmap on neuromorphic computing and engineering (si apre in una nuova finestra)

Autori: Dennis V Christensen; Regina Dittmann; Bernabe Linares-Barranco; Abu Sebastian; Manuel Le Gallo; Andrea Redaelli; Stefan Slesazeck; Thomas Mikolajick; Sabina Spiga; Stephan Menzel; Ilia Valov; Gianluca Milano; Carlo Ricciardi; Shi-Jun Liang; Feng Miao; Mario Lanza; Tyler J Quill; Scott T Keene; Alberto Salleo; Julie Grollier; Danijela Marković; Alice Mizrahi; Peng Yao; J Joshua Yang; Giacomo Indi
Pubblicato in: Furber , S & et , A 2022 , ' 2022 roadmap on neuromorphic computing and engineering ' , Neuromorphic Computing and Engineering , vol. 2 , no. 2 . https://doi.org/10.1088/2634-4386/ac4a83, Numero 16, 2022, ISSN 1742-6588
Editore: Institute of Physics
DOI: 10.17863/cam.85857

Ultra-Low-Power FDSOI Neural Circuits for Extreme-Edge Neuromorphic Intelligence (si apre in una nuova finestra)

Autori: Arianna Rubino; Can Livanelioglu; Ning Qiao; Melika Payvand; Giacomo Indiveri
Pubblicato in: IEEE Transactions on Circuits and Systems I: Regular Papers, 68 (1), Numero 5, 2020, ISSN 1549-8328
Editore: Institute of Electrical and Electronics Engineers
DOI: 10.1109/tcsi.2020.3035575

a roadmap (si apre in una nuova finestra)

Autori: Abad, B; Alberi, K; Ayers, KE; Badhulika, S; Ban, C; Béa, H; Béron, F; Cairney, J; Chang, JP; Charles, C; Creatore, M; Dong, H; Du, J; Egan, R; Everschor-Sitte, K; Foley, C; Fontcuberta I Morral, A; Jung, MH; Kim, H; Kurtz, S; Lee, J; Leitao, DC; Lemmer, K; Marschilok, AC; Mitu, B; Newman, BK; Owens, R; Pappa, AM; Park, Y; Peckham, M; Rossi, LM; Shim, SH; Siddiqui, SA; Son, JW; Spiga, S; Tsikata
Pubblicato in: VOLUME=56;ISSUE=7;ISSN=0022-3727;TITLE=Journal of Physics D: Applied Physics, Numero 15, 2023, ISSN 1742-6588
Editore: Institute of Physics
DOI: 10.1088/1361-6463/ac82f9

Self-organization of an inhomogeneous memristive hardware for sequence learning (si apre in una nuova finestra)

Autori: Melika Payvand, Filippo Moro, Kumiko Nomura, Thomas Dalgaty, Elisa Vianello, Yoshifumi Nishi & Giacomo Indiveri
Pubblicato in: Nature Communications, 2022, ISSN 2041-1723
Editore: Nature Publishing Group
DOI: 10.1038/s41467-022-33476-6

In situ learning using intrinsic memristor variability via Markov chain Monte Carlo sampling (si apre in una nuova finestra)

Autori: Thomas Dalgaty, Niccolo Castellani, Clément Turck, Kamel-Eddine Harabi, Damien Querlioz, Elisa Vianello
Pubblicato in: Nature Electronics, Numero 4/2, 2021, Pagina/e 151-161, ISSN 2520-1131
Editore: Nature
DOI: 10.1038/s41928-020-00523-3

Neuromorphic object localization using resistive memories and ultrasonic transducers (si apre in una nuova finestra)

Autori: Filippo Moro, Emmanuel Hardy, Bruno Fain, Thomas Dalgaty, Paul Clémençon, Alessio De Prà, Eduardo Esmanhotto, Niccolò Castellani, François Blard, François Gardien, Thomas Mesquida, François Rummens, David Esseni, Jérôme Casas, Giacomo Indiveri, Melika Payvand & Elisa Vianello
Pubblicato in: Nat Commun, 2022, ISSN 2041-1723
Editore: Nature Publishing Group
DOI: 10.1038/s41467-022-31157-y

Neuromorphic Low-power Inference on Memristive Crossbars with On-chip Offset Calibration (si apre in una nuova finestra)

Autori: Charanraj Mohan, L.A. Camunas-Mesa, Jose M. De La Rosa, Elisa Vianello, Teresa Serrano-Gotarredona, Bernabe Linares-Barranco
Pubblicato in: IEEE Access, Numero monthly, 2020, Pagina/e 1-1, ISSN 2169-3536
Editore: Institute of Electrical and Electronics Engineers Inc.
DOI: 10.1109/access.2021.3063437

Non-linear Memristive Synaptic Dynamics for Efficient Unsupervised Learning in Spiking Neural Networks (si apre in una nuova finestra)

Autori: Stefano Brivio, Denys R. B. Ly, Elisa Vianello, Sabina Spiga
Pubblicato in: Frontiers in Neuroscience, Numero 15, 2021, Pagina/e Article 580909, ISSN 1662-453X
Editore: Frontiers
DOI: 10.3389/fnins.2021.580909

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