GOBAT, GIORGIO

GOBAT, GIORGIO  

DIPARTIMENTO DI INGEGNERIA CIVILE E AMBIENTALE  

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Titolo Data di pubblicazione Autori File
Backbone curves, Neimark-Sacker boundaries and appearance of quasi-periodicity in nonlinear oscillators: application to 1:2 internal resonance and frequency combs in MEMS 1-gen-2021 Gobat G.Frangi A. +
Deep learning-based reduced order models for the real-time simulation of the nonlinear dynamics of microstructures 1-gen-2022 Fresca, SGobat, GFrangi, AManzoni, A +
Frequency combs in a MEMS resonator featuring 1:2 internal resonance: ab initio reduced order modelling and experimental validation 1-gen-2022 Gobat, GZega, VFrangi, A +
Identification of strength and toughness of quasi-brittle materials from spall tests: a Sigma-point Kalman filter approach 1-gen-2019 Mariani S.Gobat G.
Reduced order modeling of nonlinear microstructures through Proper Orthogonal Decomposition 1-gen-2022 Gobat G.Opreni A.Fresca S.Manzoni A.Frangi A.
Reduced Order Modeling of Nonlinear Vibrating Multiphysics Microstructures with Deep Learning-Based Approaches 1-gen-2023 Gobat, GiorgioFresca, StefaniaManzoni, AndreaFrangi, Attilio
Reduced order modeling of parametrized systems through autoencoders and SINDy approach: continuation of periodic solutions 1-gen-2023 Paolo ContiGiorgio GobatStefania FrescaAndrea ManzoniAttilio Frangi
Reduced order modelling and experimental validation of a MEMS gyroscope test-structure exhibiting 1:2 internal resonance 1-gen-2021 Gobat G.Zega V.Frangi A. +
Reduced order modelling of the non-linear stiffness in MEMS resonators 1-gen-2019 Frangi A.GOBAT, GIORGIO