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Alberto Oliveri
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2020 – today
- 2024
- [c29]Alessandro Ravera, Andrea Formentini, Matteo Lodi, Alberto Oliveri, Marco Storace:
A nonlinear model of air-gapped ferrite-core inductors for SMPS applications. ISCAS 2024: 1-5 - 2023
- [j16]Alessandro Ravera, Alberto Oliveri, Matteo Lodi, Alberto Bemporad, W. P. M. H. Heemels, Eric C. Kerrigan, Marco Storace:
Co-Design of a Controller and Its Digital Implementation: The MOBY-DIC2 Toolbox for Embedded Model Predictive Control. IEEE Trans. Control. Syst. Technol. 31(6): 2871-2878 (2023) - [c28]Alessandro Ravera, Alberto Oliveri, Matteo Lodi, Marco Storace:
A nonlinear behavioral model of a ferrite-core inductor with fixed-frequency sinusoidal voltage input. EUROCON 2023: 418-422 - [c27]Alessandro Ravera, Alberto Oliveri, Matteo Lodi, Marco Storace:
MADS-based fast FPGA implementation of nonlinear model predictive control. ISCAS 2023: 1-5 - 2022
- [j15]Alberto Oliveri, Matteo Lodi, Marco Storace:
Nonlinear models of power inductors: A survey. Int. J. Circuit Theory Appl. 50(1): 2-34 (2022) - [c26]Valentina Baruzzi, Matteo Lodi, Alberto Oliveri, Marco Storace:
Estimation of inertia in power grids with turbine governors. ISCAS 2022: 819-823 - [c25]Alberto Oliveri, Matteo Lodi, Cinzia Beatrice, Enzo Ferrara, Marco Storace, Fausto Fiorillo:
Behavioral model of an amorphous-core inductor working up to partial saturation. ISCAS 2022: 1522-1526 - [c24]Alessandro Ravera, Valentina Baruzzi, Matteo Lodi, Alberto Oliveri, Marco Storace:
Embedded Implementation of an Algorithm for Online Inertia Estimation in Power Grids. SYSINT 2022: 84-94 - 2021
- [c23]Valentina Baruzzi, Matteo Lodi, Alberto Oliveri, Marco Storace:
Analysis and Improvement of an Algorithm for the Online Inertia Estimation in Power Grids with RES. ISCAS 2021: 1-5 - [i1]Ian McInerney, Lucian Nita, Yuanbo Nie, Alberto Oliveri, Eric C. Kerrigan:
Towards a Framework for Nonlinear Predictive Control using Derivative-Free Optimization. CoRR abs/2106.05025 (2021) - 2020
- [j14]Matteo Lodi, Alberto Oliveri:
Online Estimation of the Current Ripple on a Saturating Eerrite-Core Inductor in a Boost Converter. Sensors 20(10): 2921 (2020) - [j13]Matteo Lodi, Federico Bizzarri, Daniele Linaro, Alberto Oliveri, Angelo Maurizio Brambilla, Marco Storace:
A Nonlinear Behavioral Ferrite-Core Inductance Model Able to Reproduce Thermal Transients in Switch-Mode Power Supplies. IEEE Trans. Circuits Syst. I Fundam. Theory Appl. 67-I(4): 1255-1263 (2020) - [c22]Matteo Lodi, Alberto Oliveri, Marco Storace:
Effects of Parameter Variation on the Accuracy of a Nonlinear Inductor Model for Switch-Mode Power Supplies Applications. ISCAS 2020: 1-5
2010 – 2019
- 2019
- [j12]Alberto Oliveri, Giulia Di Capua, Kateryna Stoyka, Matteo Lodi, Marco Storace, Nicola Femia:
A Power-Loss-Dependent Inductance Model for Ferrite-Core Power Inductors in Switch-Mode Power Supplies. IEEE Trans. Circuits Syst. I Regul. Pap. 66-I(6): 2394-2402 (2019) - [j11]Andrea Bonfiglio, Federico Cantoni, Alberto Oliveri, Renato Procopio, Alessandro Rosini, Marco Invernizzi, Marco Storace:
An MPC-Based Approach for Emergency Control Ensuring Transient Stability in Power Grids With Steam Plants. IEEE Trans. Ind. Electron. 66(7): 5412-5422 (2019) - [j10]Alberto Oliveri, Martina Maselli, Matteo Lodi, Marco Storace, Matteo Cianchetti:
Model-Based Compensation of Rate-Dependent Hysteresis in a Piezoresistive Strain Sensor. IEEE Trans. Ind. Electron. 66(10): 8205-8213 (2019) - [c21]Alessandro Ravera, Alberto Oliveri, Matteo Lodi, Marco Storace:
Embedded Linear Model Predictive Control Through Mesh Adaptive Direct Search Algorithm. ICECS 2019: 542-545 - [c20]Matteo Lodi, Alberto Oliveri, Marco Storace:
A low-cost online estimator for switch-mode power supplies with saturating ferrite-core inductors. ICECS 2019: 851-854 - [c19]Federico Bizzarri, Matteo Lodi, Alberto Oliveri, Angelo Brambilla, Marco Storace:
A Nonlinear Inductance Model Able to Reproduce Thermal Transient in SMPS Simulations. ISCAS 2019: 1-5 - [c18]Alberto Oliveri, Roberto Raiteri, Matteo Lodi, Marco Storace:
A Toolchain for Open-Loop Compensation of Hysteresis and Creep in Atomic Force Microscopes. ISCAS 2019: 1-5 - [c17]Matteo Lodi, Alberto Oliveri, Marco Storace:
Behavioral Models for Ferrite-Core Inductors in Switch-Mode DC-DC Power Supplies: A Survey. RTSI 2019: 242-247 - [c16]Alberto Oliveri, Matteo Lodi, Marco Storace:
A Piecewise-Affine Inductance Model for Inductors Working in Nonlinear Region. SMACD 2019: 169-172 - 2018
- [j9]Alberto Oliveri, Matteo Lodi, Mauro Parodi, Flavio Stellino, Marco Storace:
Model Reduction for Optimized Online Compensation of Hysteresis and Creep in Piezoelectric Actuators. IEEE Trans. Circuits Syst. II Express Briefs 65-II(11): 1748-1752 (2018) - [c15]Alberto Oliveri, Matteo Lodi, Flavio Stellino, Marco Storace:
Modeling and compensation of hysteresis and creep: The HysTool toolbox. ISCAS 2018: 1-5 - [c14]Alberto Oliveri, Matteo Lodi, Marco Storace:
Accurate Modeling of Inductors Working in Nonlinear Region in Switch-Mode Power Supplies with Different Load Currents. SMACD 2018: 233-236 - 2017
- [j8]Alberto Oliveri, Luca Cassottana, Antonino Laudani, Francesco Riganti Fulginei, Gabriele Maria Lozito, Alessandro Salvini, Marco Storace:
Two FPGA-Oriented High-Speed Irradiance Virtual Sensors for Photovoltaic Plants. IEEE Trans. Ind. Informatics 13(1): 157-165 (2017) - [c13]Alberto Oliveri, Matteo Lodi, Marco Storace:
High-speed explicit nonlinear model predictive control. ECCTD 2017: 1-4 - [c12]Alberto Oliveri, Matteo Lodi:
A Low-Cost Free-Space Optical Communication Prototype. NGCAS 2017: 153-156 - [c11]Giulia Di Capua, Nicola Femia, Kateryna Stoyka, Matteo Lodi, Alberto Oliveri, Marco Storace:
Ferrite inductor models for switch-mode power supplies analysis and design. SMACD 2017: 1-4 - [c10]Matteo Lodi, Alberto Oliveri, Marco Storace:
Low-cost acquisition method for on-line inductor characterization in switched power converters. SMACD 2017: 1-4 - 2016
- [j7]Alberto Oliveri, Flavio Stellino, Guido Caluori, Mauro Parodi, Marco Storace:
Open-Loop Compensation of Hysteresis and Creep Through a Power-Law Circuit Model. IEEE Trans. Circuits Syst. I Regul. Pap. 63-I(3): 413-422 (2016) - [c9]Alberto Oliveri, Flavio Stellino, Mauro Parodi, Marco Storace:
A circuit model for open-loop compensation of hysteresis. ISCAS 2016: 2066-2069 - 2015
- [j6]Alberto Oliveri, Christian Gianoglio, Edoardo Ragusa, Marco Storace:
Low-complexity digital architecture for solving the point location problem in explicit Model Predictive Control. J. Frankl. Inst. 352(6): 2249-2258 (2015) - [j5]Matteo Biggio, Alberto Oliveri, Flavio Stellino, Mauro Parodi, Marco Storace:
A Circuit Model of Hysteresis and Creep. IEEE Trans. Circuits Syst. II Express Briefs 62-II(5): 501-505 (2015) - [j4]Alberto Oliveri, Martin Reimers, Marco Storace:
Automatic Domain Partitioning of Piecewise-Affine Simplicial Functions Implementing Model Predictive Controllers. IEEE Trans. Circuits Syst. II Express Briefs 62-II(9): 886-890 (2015) - 2014
- [j3]Matteo Rubagotti, Tomaso Poggi, Alberto Oliveri, Carlo A. Pascucci, Alberto Bemporad, Marco Storace:
Low-complexity piecewise-affine virtual sensors: theory and design. Int. J. Control 87(3): 622-632 (2014) - [c8]Andrea Bonfiglio, Alberto Oliveri, Renato Procopio, Federico Delfino, G. B. Denegri, Marco Invernizzi, Marco Storace:
Improving power grids transient stability via Model Predictive Control. PSCC 2014: 1-7 - 2013
- [c7]Alberto Oliveri, Matteo Lodi, Marco Storace:
Design and circuit implementation of approximate switched MPC. ECCTD 2013: 1-4 - [c6]Alberto Oliveri, Alessio Canepa, Leonardo Queirolo, Marco Storace:
An algorithm for automatic domain partitioning of piecewise-affine model predictive control laws. ICECS 2013: 217-220 - 2012
- [j2]Francesco Comaschi, Bart A. G. Genuit, Alberto Oliveri, W. P. M. H. Heemels, Marco Storace:
FPGA Implementations of Piecewise Affine Functions Based on Multi-Resolution Hyperrectangular Partitions. IEEE Trans. Circuits Syst. I Regul. Pap. 59-I(12): 2920-2933 (2012) - [c5]Veaceslav Spinu, Alberto Oliveri, Mircea Lazar, Marco Storace:
FPGA implementation of optimal and approximate model predictive control for a buck-boost DC-DC converter. CCA 2012: 1417-1423 - [c4]Alberto Oliveri, Marco Storace:
Hardware-in-the-loop simulations of circuit architectures for the computation of exact and approximate explicit MPC control functions. ICECS 2012: 380-383 - 2011
- [j1]Alberto Bemporad, Alberto Oliveri, Tomaso Poggi, Marco Storace:
Ultra-Fast Stabilizing Model Predictive Control via Canonical Piecewise Affine Approximations. IEEE Trans. Autom. Control. 56(12): 2883-2897 (2011) - [c3]Alberto Oliveri, Gerrit J. L. Naus, Marco Storace, W. P. M. H. Heemels:
Low-complexity approximations of PWA functions: A case study on Adaptive Cruise Control. ECCTD 2011: 669-672 - 2010
- [c2]Alberto Bemporad, Alberto Oliveri, Tomaso Poggi, Marco Storace:
Synthesis of stabilizing model predictive controllers via canonical piecewise affine approximations. CDC 2010: 5296-5301
2000 – 2009
- 2009
- [c1]Alberto Oliveri, Andrea Oliveri, Tomaso Poggi, Marco Storace:
Circuit implementation of piecewise-affine functions based on a binary search tree. ECCTD 2009: 145-148
Coauthor Index
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