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Francesco Paolo Andriulli
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2020 – today
- 2024
- [i20]Rui Chen, Adrien Merlini, Francesco Paolo Andriulli:
On the Computation of Square Roots and Inverse Square Roots of Gram Matrices for Surface Integral Equations in Electromagnetics. CoRR abs/2405.11167 (2024) - [i19]Viviana Giunzioni, Adrien Merlini, Francesco Paolo Andriulli:
On a High-Frequency Analysis of Some Relevant Integral Equations in Electromagnetics. CoRR abs/2407.09116 (2024) - [i18]Viviana Giunzioni, Alberto Scazzola, Adrien Merlini, Francesco Paolo Andriulli:
Low-Frequency Stabilizations of the PMCHWT Equation for Dielectric and Conductive Media: On a Full-Wave Alternative to Eddy-Current Solvers. CoRR abs/2408.01321 (2024) - 2023
- [j10]Viviana Giunzioni, John Erick Ortiz Guzman, Adrien Merlini, Simon B. Adrian, Francesco Paolo Andriulli:
On a Calderón preconditioner for the symmetric formulation of the electroencephalography forward problem without barycentric refinements. J. Comput. Phys. 491: 112374 (2023) - [i17]Matteo E. Masciocchi, Ermanno Citraro, Alexandre Dély, Lyes Rahmouni, Adrien Merlini, Francesco Paolo Andriulli:
On some Operator Filtering Strategies Based on Suitably Modified Green's Functions. CoRR abs/2307.09276 (2023) - [i16]Johann Bourhis, Adrien Merlini, Francesco Paolo Andriulli:
High-order quasi-Helmholtz Projectors: Definition, Analyses, Algorithms. CoRR abs/2308.15331 (2023) - [i15]Viviana Giunzioni, Giuseppe Ciacco, Clément Henry, Adrien Merlini, Francesco Paolo Andriulli:
Linear-in-Complexity Computational Strategies for Modeling and Dosimetry at TeraHertz. CoRR abs/2310.15644 (2023) - [i14]Pierrick Cordel, Alexandre Dély, Adrien Merlini, Francesco Paolo Andriulli:
Calderón Strategies for the Convolution Quadrature Time Domain Electric Field Integral Equation. CoRR abs/2311.15592 (2023) - [i13]Van Chien Le, Pierrick Cordel, Francesco Paolo Andriulli, Kristof Cools:
A stabilized time-domain combined field integral equation using the quasi-Helmholtz projectors. CoRR abs/2312.06367 (2023) - 2022
- [c7]Arturo Micheli, Davide Consoli, Adrien Merlini, Paolo Ricci, Francesco Paolo Andriulli:
Brain-Computer Interfaces: Investigating the Transition from Visually Evoked to Purely Imagined Steady-State Potentials. EMBC 2022: 222-225 - [i12]Pierrick Cordel, Alexandre Dély, Adrien Merlini, Francesco Paolo Andriulli:
Calderón Preconditioners for the TD-EFIE discretized with Convolution Quadratures. CoRR abs/2202.12377 (2022) - [i11]Davide Consoli, Clément Henry, Alexandre Dély, Lyes Rahmouni, John Erick Ortiz Guzman, Tiffany L. Chhim, Simon B. Adrian, Adrien Merlini, Francesco Paolo Andriulli:
On the Fast Direct Solution of a Preconditioned Electromagnetic Integral Equation. CoRR abs/2203.13283 (2022) - [i10]Viviana Giunzioni, John Erick Ortiz Guzman, Adrien Merlini, Simon B. Adrian, Francesco Paolo Andriulli:
A New Refinement-Free Preconditioner for the Symmetric Formulation in Electroencephalography. CoRR abs/2204.06857 (2022) - [i9]Paolo Ricci, Adrien Merlini, Francesco Paolo Andriulli:
On a Frequency-Stabilized Single Current Inverse Source Formulation. CoRR abs/2204.11344 (2022) - [i8]Carlo Baronio, Giulio Cosentino, Paolo Ricci, Clément Henry, Maxime Y. Monin, Adrien Merlini, Francesco Paolo Andriulli:
On a Fast Solution Strategy for a Surface-Wire Integral Formulation of the Anisotropic Forward Problem in Electroencephalography. CoRR abs/2204.11491 (2022) - [i7]Ermanno Citraro, Alexandre Dély, Adrien Merlini, Francesco Paolo Andriulli:
On a Constrained Pseudoinverse for the Electromagnetic Inverse Source Problem. CoRR abs/2205.03694 (2022) - [i6]Paolo Ricci, Ermanno Citraro, Adrien Merlini, Francesco Paolo Andriulli:
Stabilized Single Current Inverse Source Formulations Based on Steklov-Poincaré Mappings. CoRR abs/2206.09829 (2022) - [i5]Clément Henry, Davide Consoli, Alexandre Dély, Lyes Rahmouni, Adrien Merlini, Francesco Paolo Andriulli:
Fast Direct Solvers for Integral Equations at Low-Frequency Based on Operator Filtering. CoRR abs/2210.08580 (2022) - [i4]Viviana Giunzioni, John Erick Ortiz Guzman, Adrien Merlini, Simon B. Adrian, Francesco Paolo Andriulli:
On a Calderón preconditioner for the symmetric formulation of the electroencephalography forward problem without barycentric refinements. CoRR abs/2211.01967 (2022) - [i3]Adrien Merlini, Clément Henry, Davide Consoli, Lyes Rahmouni, Alexandre Dély, Francesco Paolo Andriulli:
Laplacian Filtered Loop-Star Decompositions and Quasi-Helmholtz Laplacian Filters: Definitions, Analysis, and Efficient Algorithms. CoRR abs/2211.07704 (2022) - 2020
- [j9]Lyes Rahmouni, Adrien Merlini, Axelle Pillain, Francesco Paolo Andriulli:
On the modeling of brain fibers in the EEG forward problem via a new family of wire integral equations. J. Comput. Phys. X 5: 100048 (2020) - [i2]Lyes Rahmouni, Francesco Paolo Andriulli:
A New Preconditioner for the EFIE Based on Primal and Dual Graph Laplacian Spectral Filters. CoRR abs/2004.12802 (2020)
2010 – 2019
- 2019
- [j8]Simon B. Adrian, Francesco Paolo Andriulli, Thomas F. Eibert:
On a refinement-free Calderón multiplicative preconditioner for the electric field integral equation. J. Comput. Phys. 376: 1232-1252 (2019) - 2018
- [j7]Rossella Gaffoglio, Andrea Cagliero, Giuseppe Vecchi, Francesco Paolo Andriulli:
Vortex Waves and Channel Capacity: Hopes and Reality. IEEE Access 6: 19814-19822 (2018) - [j6]John Erick Ortiz Guzman, Axelle Pillain, Lyes Rahmouni, Francesco Paolo Andriulli:
A Calderon regularized symmetric formulation for the electroencephalography forward problem. J. Comput. Phys. 375: 291-306 (2018) - [c6]Erwan Libessart, Matthieu Arzel, Cyril Lahuec, Francesco Paolo Andriulli:
40 Gop/s/mm2 fixed-point operators for Brain Computer Interface in 65 nm CMOS. ISCAS 2018: 1-4 - 2017
- [j5]Simon B. Adrian, Francesco Paolo Andriulli, Thomas F. Eibert:
A hierarchical preconditioner for the electric field integral equation on unstructured meshes based on primal and dual Haar bases. J. Comput. Phys. 330: 365-379 (2017) - [j4]Lyes Rahmouni, Rajendra Mitharwal, Francesco Paolo Andriulli:
Two volume integral equations for the inhomogeneous and anisotropic forward problem in electroencephalography. J. Comput. Phys. 348: 732-743 (2017) - [j3]Erwan Libessart, Matthieu Arzel, Cyril Lahuec, Francesco Paolo Andriulli:
A Scaling-Less Newton-Raphson Pipelined Implementation for a Fixed-Point Reciprocal Operator. IEEE Signal Process. Lett. 24(6): 789-793 (2017) - [c5]Erwan Libessart, Matthieu Arzel, Cyril Lahuec, Francesco Paolo Andriulli:
A scaling-less Newton-Raphson pipelined implementation for a fixed-point inverse square root operator. NEWCAS 2017: 157-160 - 2016
- [c4]Axelle Pillain, Lyes Rahmouni, Francesco Paolo Andriulli:
On the handling of brain tissue anisotropy in the forward EEG problem with a conformingly discretized surface integral method. ISBI 2016: 233-236 - [c3]John Erick Ortiz Guzman, Axelle Pillain, Lyes Rahmouni, Francesco Paolo Andriulli:
On the preconditioning of the symmetric formulation for the EEG forward problem by leveraging on calderon formulas. ISBI 2016: 755-758 - [c2]Lyes Rahmouni, Rajendra Mitharwal, Francesco Paolo Andriulli:
A mixed discretized surface-volume integral equation for solving EEG forward problems with inhomogeneous and anisotropic head models. ISBI 2016: 763-766 - 2015
- [c1]Lyes Rahmouni, Rajendra Mitharwal, Francesco Paolo Andriulli:
A novel volume integral equation for solving the Electroencephalography forward problem. EMBC 2015: 4061-4064 - [i1]Rajendra Mitharwal, Francesco Paolo Andriulli:
A Regularized Boundary Element Formulation for Contactless SAR Evaluations within Homogeneous and Inhomogeneous Head Phantoms. CoRR abs/1510.00002 (2015) - 2014
- [j2]Rajendra Mitharwal, Francesco Paolo Andriulli:
On the Multiplicative Regularization of Graph Laplacians on Closed and Open Structures With Applications to Spectral Partitioning. IEEE Access 2: 788-796 (2014)
2000 – 2009
- 2007
- [j1]Francesco Paolo Andriulli, Anita Tabacco, Giuseppe Vecchi:
A Multiresolution Approach to the Electric Field Integral Equation in Antenna Problems. SIAM J. Sci. Comput. 29(1): 1-21 (2007)
Coauthor Index
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last updated on 2024-09-13 01:40 CEST by the dblp team
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