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Hendrik Speleers
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2020 – today
- 2024
- [j48]Tom Lyche, Carla Manni, Hendrik Speleers:
A local simplex spline basis for C3 quartic splines on arbitrary triangulations. Appl. Math. Comput. 462: 128330 (2024) - [j47]Michelangelo Marsala, Carla Manni, Hendrik Speleers:
Maximally smooth cubic spline quasi-interpolants on arbitrary triangulations. Comput. Aided Geom. Des. 112: 102348 (2024) - 2023
- [j46]Jan Groselj, Hendrik Speleers:
Extraction and application of super-smooth cubic B-splines over triangulations. Comput. Aided Geom. Des. 103: 102194 (2023) - [j45]Mariarosa Mazza, Marco Donatelli, Carla Manni, Hendrik Speleers:
On the matrices in B-spline collocation methods for Riesz fractional equations and their spectral properties. Numer. Linear Algebra Appl. 30(1) (2023) - [i13]Jan Groselj, Hendrik Speleers:
Extraction and application of super-smooth cubic B-splines over triangulations. CoRR abs/2305.02057 (2023) - 2022
- [j44]Tom Lyche, Carla Manni, Hendrik Speleers:
Construction of $$C^2$$ Cubic Splines on Arbitrary Triangulations. Found. Comput. Math. 22(5): 1309-1350 (2022) - [j43]Espen Sande, Carla Manni, Hendrik Speleers:
Ritz-type projectors with boundary interpolation properties and explicit spline error estimates. Numerische Mathematik 151(2): 475-494 (2022) - [j42]Daniele Fakhoury, Emanuele Fakhoury, Hendrik Speleers:
ExSpliNet: An interpretable and expressive spline-based neural network. Neural Networks 152: 332-346 (2022) - [j41]Hendrik Speleers:
Algorithm 1020: Computation of Multi-Degree Tchebycheffian B-Splines. ACM Trans. Math. Softw. 48(1): 12:1-12:31 (2022) - [i12]Daniele Fakhoury, Emanuele Fakhoury, Hendrik Speleers:
ExSpliNet: An interpretable and expressive spline-based neural network. CoRR abs/2205.01510 (2022) - [i11]Krunal Raval, Carla Manni, Hendrik Speleers:
Tchebycheffian B-splines in isogeometric Galerkin methods. CoRR abs/2211.15273 (2022) - 2021
- [j40]Hendrik Speleers, Deepesh Toshniwal:
A General Class of C1 Smooth Rational Splines: Application to Construction of Exact Ellipses and Ellipsoids. Comput. Aided Des. 132: 102982 (2021) - [j39]Jan Groselj, Hendrik Speleers:
Super-smooth cubic Powell-Sabin splines on three-directional triangulations: B-spline representation and subdivision. J. Comput. Appl. Math. 386: 113245 (2021) - [j38]Michael S. Floater, Carla Manni, Espen Sande, Hendrik Speleers:
Best Low-rank Approximations and Kolmogorov n-widths. SIAM J. Matrix Anal. Appl. 42(1): 330-350 (2021) - [i10]Hendrik Speleers:
Computation of multi-degree Tchebycheffian B-splines. CoRR abs/2102.00418 (2021) - [i9]Espen Sande, Carla Manni, Hendrik Speleers:
Ritz-type projectors with boundary interpolation properties and explicit spline error estimates. CoRR abs/2105.11252 (2021) - [i8]Carla Manni, Espen Sande, Hendrik Speleers:
Application of optimal spline subspaces for the removal of spurious outliers in isogeometric discretizations. CoRR abs/2106.03710 (2021) - [i7]Mariarosa Mazza, Marco Donatelli, Carla Manni, Hendrik Speleers:
On the matrices in B-spline collocation methods for Riesz fractional equations and their spectral properties. CoRR abs/2106.14834 (2021) - [i6]Tom Lyche, Carla Manni, Hendrik Speleers:
Construction of C2 cubic splines on arbitrary triangulations. CoRR abs/2110.07907 (2021) - 2020
- [j37]Deepesh Toshniwal, Hendrik Speleers, René R. Hiemstra, Carla Manni, Thomas J. R. Hughes:
Multi-degree B-splines: Algorithmic computation and properties. Comput. Aided Geom. Des. 76: 101792 (2020) - [j36]Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Hendrik Speleers:
NURBS in isogeometric discretization methods: A spectral analysis. Numer. Linear Algebra Appl. 27(6) (2020) - [j35]Espen Sande, Carla Manni, Hendrik Speleers:
Explicit error estimates for spline approximation of arbitrary smoothness in isogeometric analysis. Numerische Mathematik 144(4): 889-929 (2020) - [j34]René R. Hiemstra, Thomas J. R. Hughes, Carla Manni, Hendrik Speleers, Deepesh Toshniwal:
A Tchebycheffian Extension of Multidegree B-Splines: Algorithmic Computation and Properties. SIAM J. Numer. Anal. 58(2): 1138-1163 (2020) - [i5]René R. Hiemstra, Thomas J. R. Hughes, Carla Manni, Hendrik Speleers, Deepesh Toshniwal:
A Tchebycheffian extension of multi-degree B-splines: Algorithmic computation and properties. CoRR abs/2001.07967 (2020) - [i4]Francesco Patrizi, Carla Manni, Francesca Pelosi, Hendrik Speleers:
Adaptive refinement with locally linearly independent LR B-splines: Theory and applications. CoRR abs/2001.11236 (2020) - [i3]Michael S. Floater, Carla Manni, Espen Sande, Hendrik Speleers:
Best low-rank approximations and Kolmogorov n-widths. CoRR abs/2007.13196 (2020) - [i2]Hendrik Speleers, Deepesh Toshniwal:
A general class of C1 smooth rational splines: Application to construction of exact ellipses and ellipsoids. CoRR abs/2012.03229 (2020)
2010 – 2019
- 2019
- [j33]Cesare Bracco, Tom Lyche, Carla Manni, Hendrik Speleers:
Tchebycheffian spline spaces over planar T-meshes: Dimension bounds and dimension instabilities. J. Comput. Appl. Math. 349: 265-278 (2019) - [j32]Carlotta Giannelli, Tadej Kanduc, Francesca Pelosi, Hendrik Speleers:
An immersed-isogeometric model: Application to linear elasticity and implementation with THBox-splines. J. Comput. Appl. Math. 349: 410-423 (2019) - [j31]Hendrik Speleers:
Algorithm 999: Computation of Multi-Degree B-Splines. ACM Trans. Math. Softw. 45(4): 43:1-43:15 (2019) - [i1]Espen Sande, Carla Manni, Hendrik Speleers:
Explicit error estimates for spline approximation of arbitrary smoothness in isogeometric analysis. CoRR abs/1909.03559 (2019) - 2018
- [j30]Jan Groselj, Hendrik Speleers:
Three recipes for quasi-interpolation with cubic Powell-Sabin splines. Comput. Aided Geom. Des. 67: 47-70 (2018) - [j29]Sven-Erik Ekström, Isabella Furci, Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Hendrik Speleers:
Are the eigenvalues of the B-spline isogeometric analysis approximation of -Δu = λu known in almost closed form? Numer. Linear Algebra Appl. 25(5) (2018) - 2017
- [j28]Hendrik Speleers:
Hierarchical spline spaces: quasi-interpolants and local approximation estimates. Adv. Comput. Math. 43(2): 235-255 (2017) - [j27]Francesca Pelosi, Carlotta Giannelli, Carla Manni, Maria Lucia Sampoli, Hendrik Speleers:
Splines over regular triangulations in numerical simulation. Comput. Aided Des. 82: 100-111 (2017) - [j26]Jan Groselj, Hendrik Speleers:
Construction and analysis of cubic Powell-Sabin B-splines. Comput. Aided Geom. Des. 57: 1-22 (2017) - [j25]Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Debora Sesana, Hendrik Speleers:
Spectral analysis and spectral symbol of matrices in isogeometric Galerkin methods. Math. Comput. 86(305): 1343-1373 (2017) - [j24]Fabio Roman, Carla Manni, Hendrik Speleers:
Spectral analysis of matrices in Galerkin methods based on generalized B-splines with high smoothness. Numerische Mathematik 135(1): 169-216 (2017) - [j23]Marco Donatelli, Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Hendrik Speleers:
Symbol-Based Multigrid Methods for Galerkin B-Spline Isogeometric Analysis. SIAM J. Numer. Anal. 55(1): 31-62 (2017) - 2016
- [j22]Cesare Bracco, Tom Lyche, Carla Manni, Fabio Roman, Hendrik Speleers:
Generalized spline spaces over T-meshes: Dimension formula and locally refined generalized B-splines. Appl. Math. Comput. 272: 187-198 (2016) - [j21]Cesare Bracco, Tom Lyche, Carla Manni, Fabio Roman, Hendrik Speleers:
On the dimension of Tchebycheffian spline spaces over planar T-meshes. Comput. Aided Geom. Des. 45: 151-173 (2016) - [j20]Marco Donatelli, Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Hendrik Speleers:
Spectral analysis and spectral symbol of matrices in isogeometric collocation methods. Math. Comput. 85(300): 1639-1680 (2016) - [j19]Hendrik Speleers, Carla Manni:
Effortless quasi-interpolation in hierarchical spaces. Numerische Mathematik 132(1): 155-184 (2016) - 2015
- [j18]Carla Manni, Francesca Mazzia, Alessandra Sestini, Hendrik Speleers:
BS2 methods for semi-linear second order boundary value problems. Appl. Math. Comput. 255: 147-156 (2015) - [j17]Hendrik Speleers:
A new B-spline representation for cubic splines over Powell-Sabin triangulations. Comput. Aided Geom. Des. 37: 42-56 (2015) - [j16]Carla Manni, Alessandro Reali, Hendrik Speleers:
Isogeometric collocation methods with generalized B-splines. Comput. Math. Appl. 70(7): 1659-1675 (2015) - [j15]Marco Donatelli, Carlo Garoni, Carla Manni, Stefano Serra-Capizzano, Hendrik Speleers:
Two-grid optimality for Galerkin linear systems based on B-splines. Comput. Vis. Sci. 17(3): 119-133 (2015) - [j14]Hendrik Speleers, Carla Manni:
Optimizing domain parameterization in isogeometric analysis based on Powell-Sabin splines. J. Comput. Appl. Math. 289: 68-86 (2015) - 2014
- [j13]Larry L. Schumaker, Hendrik Speleers:
Convexity preserving C 0 splines. Adv. Comput. Math. 40(1): 117-135 (2014) - [j12]Carlotta Giannelli, Bert Jüttler, Hendrik Speleers:
Strongly stable bases for adaptively refined multilevel spline spaces. Adv. Comput. Math. 40(2): 459-490 (2014) - [j11]Carlo Garoni, Carla Manni, Francesca Pelosi, Stefano Serra-Capizzano, Hendrik Speleers:
On the spectrum of stiffness matrices arising from isogeometric analysis. Numerische Mathematik 127(4): 751-799 (2014) - 2013
- [j10]Hendrik Speleers:
Multivariate normalized Powell-Sabin B-splines and quasi-interpolants. Comput. Aided Geom. Des. 30(1): 2-19 (2013) - 2012
- [j9]Carlotta Giannelli, Bert Jüttler, Hendrik Speleers:
THB-splines: The truncated basis for hierarchical splines. Comput. Aided Geom. Des. 29(7): 485-498 (2012) - [c2]Carla Manni, Francesca Pelosi, Hendrik Speleers:
Local Hierarchical h-Refinements in IgA Based on Generalized B-Splines. MMCS 2012: 341-363 - 2011
- [j8]Larry L. Schumaker, Hendrik Speleers:
Convexity preserving splines over triangulations. Comput. Aided Geom. Des. 28(4): 270-284 (2011) - [j7]Hendrik Speleers:
On multivariate polynomials in Bernstein-Bézier form and tensor algebra. J. Comput. Appl. Math. 236(4): 589-599 (2011) - 2010
- [j6]Larry L. Schumaker, Hendrik Speleers:
Nonnegativity preserving macro-element interpolation of scattered data. Comput. Aided Geom. Des. 27(3): 245-261 (2010) - [j5]Hendrik Speleers:
A normalized basis for quintic Powell-Sabin splines. Comput. Aided Geom. Des. 27(6): 438-457 (2010) - [j4]Hendrik Speleers:
A normalized basis for reduced Clough-Tocher splines. Comput. Aided Geom. Des. 27(9): 700-712 (2010)
2000 – 2009
- 2009
- [j3]Hendrik Speleers, Paul Dierckx, Stefan Vandewalle:
Quasi-hierarchical Powell-Sabin B-splines. Comput. Aided Geom. Des. 26(2): 174-191 (2009) - 2008
- [c1]Hendrik Speleers, Paul Dierckx, Stefan Vandewalle:
On the Local Approximation Power of Quasi-Hierarchical Powell-Sabin Splines. MMCS 2008: 419-433 - 2007
- [j2]Hendrik Speleers, Paul Dierckx, Stefan Vandewalle:
Weight control for modelling with NURPS surfaces. Comput. Aided Geom. Des. 24(3): 179-186 (2007) - 2006
- [j1]Hendrik Speleers, Paul Dierckx, Stefan Vandewalle:
Local subdivision of Powell-Sabin splines. Comput. Aided Geom. Des. 23(5): 446-462 (2006)
Coauthor Index
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last updated on 2024-10-07 22:22 CEST by the dblp team
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