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Peter Giesl
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2020 – today
- 2024
- [j19]Peter Giesl, Sigurdur F. Hafstein:
Construction of a Contraction Metric for Time-Periodic Systems Using Meshless Collocation. IEEE Control. Syst. Lett. 8: 772-777 (2024) - 2023
- [j18]Stefania Andersen, Peter Giesl, Sigurdur F. Hafstein:
Common Lyapunov Functions for Switched Linear Systems: Linear Programming-Based Approach. IEEE Control. Syst. Lett. 7: 901-906 (2023) - [j17]Peter Giesl, Sigurdur F. Hafstein:
Triangulations and Error Estimates for Interpolating Lyapunov Functions. SN Comput. Sci. 4(4): 364 (2023) - [c21]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Positively Invariant Sets for ODEs and Numerical Integration. ICINCO (1) 2023: 44-53 - [c20]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Contraction Metrics by Numerical Integration and Quadrature: Uniform Error Estimate. ICINCO (1) 2023: 196-205 - 2022
- [j16]Carlos Argáez, Peter Giesl, Sigurdur Freyr Hafstein:
Eigenpairs for the Analysis of Complete Lyapunov Functions. Complex. 2022: 3160052:1-3160052:17 (2022) - [j15]Mauricio S. Louzeiro, Christoph Kawan, Sigurdur F. Hafstein, Peter Giesl, Jinyun Yuan:
A Projected Subgradient Method for the Computation of Adapted Metrics for Dynamical Systems. SIAM J. Appl. Dyn. Syst. 21(4): 2610-2641 (2022) - [j14]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Robustness of Numerically Computed Contraction Metrics. SN Comput. Sci. 3(3): 257 (2022) - 2021
- [j13]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Computation and verification of contraction metrics for exponentially stable equilibria. J. Comput. Appl. Math. 390: 113332 (2021) - [j12]Peter Giesl, Carlos Argáez, Sigurdur F. Hafstein, Holger Wendland:
Minimization with differential inequality constraints applied to complete Lyapunov functions. Math. Comput. 90(331): 2137-2160 (2021) - [j11]Christoph Kawan, Sigurdur F. Hafstein, Peter Giesl:
A Subgradient Algorithm for Data-Rate Optimization in the Remote State Estimation Problem. SIAM J. Appl. Dyn. Syst. 20(4): 2142-2173 (2021) - [j10]Christoph Kawan, Sigurdur Freyr Hafstein, Peter Giesl:
ResEntSG: Restoration entropy estimation for dynamical systems via Riemannian metric optimization. SoftwareX 15: 100743 (2021) - [c19]Peter Giesl, Sigurdur F. Hafstein:
Uniformly Regular Triangulations for Parameterizing Lyapunov Functions. ICINCO 2021: 549-557 - [c18]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Robustness of Contraction Metrics Computed by Radial Basis Functions. ICINCO 2021: 592-599 - [c17]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Comparison of Different Radial Basis Functions in Dynamical Systems. SIMULTECH 2021: 394-405 - 2020
- [j9]Sigurdur Albertsson, Sigurdur F. Hafstein, Peter Giesl, Skuli Gudmundsson:
Simplicial complex with approximate rotational symmetry: A general class of simplicial complexes. J. Comput. Appl. Math. 363: 413-425 (2020) - [j8]Peter Giesl, Conor Osborne, Sigurdur F. Hafstein:
Automatic Determination of Connected Sublevel Sets of CPA Lyapunov Functions. SIAM J. Appl. Dyn. Syst. 19(2): 1029-1056 (2020) - [j7]Carlos Argáez, Peter Giesl, Sigurdur Freyr Hafstein:
Update (2.0) to LyapXool: Eigenpairs and new classification methods. SoftwareX 12: 100616 (2020) - [c16]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Evaluation of Lyapunov Function Candidates through Averaging Iterations. ICINCO 2020: 734-744
2010 – 2019
- 2019
- [j6]Peter Giesl:
Computation of a Contraction Metric for a Periodic Orbit Using Meshfree Collocation. SIAM J. Appl. Dyn. Syst. 18(3): 1536-1564 (2019) - [j5]Carlos Argáez, Jean-Claude Berthet, Hjörtur Björnsson, Peter Giesl, Sigurdur Freyr Hafstein:
LyapXool - a program to compute complete Lyapunov functions. SoftwareX 10: 100325 (2019) - [c15]Jürgen Giesl, Peter Giesl, Marcel Hark:
Computing Expected Runtimes for Constant Probability Programs. CADE 2019: 269-286 - [c14]Carlos Argáez, Peter Giesl, Sigurdur Freyr Hafstein:
Improved estimation of the chain-recurrent set. ECC 2019: 1622-1627 - [c13]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Clustering Algorithm for Generalized Recurrences using Complete Lyapunov Functions. ICINCO (1) 2019: 138-146 - [c12]Carlos Argáez, Peter Giesl, Sigurdur Freyr Hafstein:
Middle Point Reduction of the Chain-recurrent Set. SIMULTECH 2019: 141-152 - [i2]Jürgen Giesl, Peter Giesl, Marcel Hark:
Computing Expected Runtimes for Constant Probability Programs. CoRR abs/1905.09544 (2019) - [i1]Peter Giesl, Sigurdur F. Hafstein, Iman Mehrabinezhad:
Computation and verification of contraction metrics for exponentially stable equilibria. CoRR abs/1909.10334 (2019) - 2018
- [j4]Peter Giesl, Holger Wendland:
Kernel-Based Discretization for Solving Matrix-Valued PDEs. SIAM J. Numer. Anal. 56(6): 3386-3406 (2018) - [c11]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Computation of Complete Lyapunov Functions for Three-Dimensional Systems. CDC 2018: 4059-4064 - [c10]Peter Giesl, Carlos Argáez, Sigurdur F. Hafstein, Holger Wendland:
Construction of a Complete Lyapunov Function using Quadratic Programming. ICINCO (1) 2018: 570-578 - [c9]Peter Giesl, Najla Mohammed:
Combination of Refinement and Verification for the Construction of Lyapunov Functions using Radial Basis Functions. ICINCO (1) 2018: 579-588 - [c8]Hjörtur Björnsson, Peter Giesl, Skuli Gudmundsson, Sigurdur F. Hafstein:
Local Lyapunov Functions for Nonlinear Stochastic Differential Equations by Linearization. ICINCO (1) 2018: 589-596 - [c7]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Iterative Construction of Complete Lyapunov Functions. SIMULTECH 2018: 211-222 - 2017
- [c6]Carlos Argáez, Sigurdur F. Hafstein, Peter Giesl:
Analysing Dynamical Systems - Towards Computing Complete Lyapunov Functions. SIMULTECH 2017: 134-144 - [c5]Carlos Argáez, Peter Giesl, Sigurdur F. Hafstein:
Complete Lyapunov Functions: Computation and Applications. SIMULTECH (Selected Papers) 2017: 200-221 - [c4]Carlos Argáez, Sigurdur F. Hafstein, Peter Giesl:
Wendland Functions - A C++ Code to Compute Them. SIMULTECH 2017: 323-330 - 2015
- [j3]Peter Giesl, Sigurdur F. Hafstein:
Computation and Verification of Lyapunov Functions. SIAM J. Appl. Dyn. Syst. 14(4): 1663-1698 (2015) - 2014
- [c3]Peter Giesl, Sigurdur F. Hafstein:
Implementation of a fan-like triangulation for the CPA method to compute Lyapunov functions. ACC 2014: 2989-2994 - [c2]Johann Bjornsson, Peter Giesl, Sigurdur F. Hafstein, Christopher M. Kellett, Huijuan Li:
Computation of continuous and piecewise affine Lyapunov functions by numerical approximations of the Massera construction. CDC 2014: 5506-5511
2000 – 2009
- 2008
- [j2]Peter Giesl:
Construction of a local and global Lyapunov function for discrete dynamical systems using radial basis functions. J. Approx. Theory 153(2): 184-211 (2008) - 2007
- [j1]Peter Giesl, Holger Wendland:
Meshless Collocation: Error Estimates with Application to Dynamical Systems. SIAM J. Numer. Anal. 45(4): 1723-1741 (2007) - 2006
- [c1]Katja D. Mombaur, Peter Giesl, Heiko Wagner:
Stability Optimization of Juggling. HPSC 2006: 419-432
Coauthor Index
aka: Sigurdur Freyr Hafstein
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