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Konstantin Riedl
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2020 – today
- 2024
- [j4]Rafael Bailo, Alethea Barbaro, Susana N. Gomes, Konstantin Riedl, Tim Roith, Claudia Totzeck, Urbain Vaes:
CBX: Python and Julia Packages for Consensus-Based Interacting Particle Methods. J. Open Source Softw. 9(98): 6611 (2024) - [j3]Hui Huang, Jinniao Qiu, Konstantin Riedl:
Consensus-Based Optimization for Saddle Point Problems. SIAM J. Control. Optim. 62(2): 1093-1121 (2024) - [j2]Massimo Fornasier, Timo Klock, Konstantin Riedl:
Consensus-Based Optimization Methods Converge Globally. SIAM J. Optim. 34(3): 2973-3004 (2024) - 2023
- [i6]Konstantin Riedl, Timo Klock, Carina Geldhauser, Massimo Fornasier:
Gradient is All You Need? CoRR abs/2306.09778 (2023) - 2022
- [c4]Massimo Fornasier, Timo Klock, Konstantin Riedl:
Convergence of Anisotropic Consensus-Based Optimization in Mean-Field Law. EvoApplications 2022: 738-754 - [i5]Hui Huang, Jinniao Qiu, Konstantin Riedl:
On the Global Convergence of Particle Swarm Optimization Methods. CoRR abs/2201.12460 (2022) - [i4]Konstantin Riedl:
Leveraging Memory Effects and Gradient Information in Consensus-Based Optimization: On Global Convergence in Mean-Field Law. CoRR abs/2211.12184 (2022) - [i3]Hui Huang, Jinniao Qiu, Konstantin Riedl:
Consensus-Based Optimization for Saddle Point Problems. CoRR abs/2212.12334 (2022) - 2021
- [i2]Massimo Fornasier, Timo Klock, Konstantin Riedl:
Consensus-based optimization methods converge globally in mean-field law. CoRR abs/2103.15130 (2021) - [i1]Massimo Fornasier, Timo Klock, Konstantin Riedl:
Convergence of Anisotropic Consensus-Based Optimization in Mean-Field Law. CoRR abs/2111.08136 (2021) - 2020
- [c3]Konstantin Riedl, Sebastian Huber, Maximilian Bömer, Julian Kreibich, Felix Nobis, Johannes Betz:
Importance of Contextual Information for the Detection of Road Damages. EVER 2020: 1-7
2010 – 2019
- 2019
- [j1]Pablo R. Palafox, Johannes Betz, Felix Nobis, Konstantin Riedl, Markus Lienkamp:
SemanticDepth: Fusing Semantic Segmentation and Monocular Depth Estimation for Enabling Autonomous Driving in Roads without Lane Lines. Sensors 19(14): 3224 (2019) - [c2]Konstantin Riedl, Thomas Einmüller, Andreas Noll, Andreas Allgayer, David Reitze, Markus Lienkamp:
Cloud-Based Vehicle Ride-Height Control. ICCVE 2019: 1-6 - [c1]Konstantin Riedl, Sebastian Kurscheid, Andreas Noll, Johannes Betz, Markus Lienkamp:
Road Network Coverage Models for Cloud-based Automotive Applications: A Case Study in the City of Munich. IV 2019: 1855-1860
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last updated on 2024-12-02 21:31 CET by the dblp team
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