VLDB 2026 Research / reviewers in the wild / expert
Martin Horn
dblp:81/3338
· DBLP profile ↗
8ranked-venue papers
0as first author
3since 2021 · last 2025
0000-0002-5845-1061ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 4 · 2 since 2021Software engineering, systems software and programming languages · 3 · 2 since 2021Artificial intelligence and machine learning · 2 · 1 since 2021Systems, architecture and hardware · 2Graphics, computer vision, multimedia, augmented reality and games · 1Human-computer interaction and ubiquitous computing · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Stochastic Model Predictive Control for Networked Systems with Random Delays and Packet Losses in All ChannelsabstractA stochastic Model Predictive Control strategy for control systems with communication networks between the sensor node and the controller and between the controller and the actuator node is proposed. Data packets are subject to random delays and packet loss is possible; acknowledgments for received packets are not provided.The expected value of a quadratic cost is minimized subject to linear constraints; the set of all initial states for which the resulting optimization problem is guaranteed to be feasible is provided. The state vector of the controlled plant is shown to converge to zero with probability one. Marijan Palmisano, Martin Steinberger, Martin Horn |
CoDIT | 3 |
| 2025 | NetFlex: A Simulation Framework for Networked Control SystemsabstractThis paper presents NetFlex, a MATLAB/ Simulink-based simulation framework for modeling and analysis of networked control systems. Based on a node-based architecture, NetFlex allows users to construct flexible network topologies while integrating customizable control and estimation strategies. By providing an intuitive and adaptable simulation environment, it enables researchers to evaluate the impact of network effects without the complexity of low-level network configurations. As an open-source project, NetFlex promotes collaboration and extensibility, offering a structured framework for studying distributed and communication-constrained control systems. The paper details its design, implementation and capabilities, demonstrating its effectiveness through a case study. Katarina Stanojevic, Martin Steinberger, Maris Siljak, Jakob Ludwiger, Martin Horn |
CoDIT | 5 |
| 2023 | Search-based task and motion planning for hybrid systems: Agile autonomous vehiclesabstractTo achieve optimal robot behavior in dynamic scenarios we need to consider complex dynamics in a predictive manner. In the vehicle dynamics community, it is well know that to achieve time-optimal driving on low friction surface, the vehicle should utilize drifting. Hence, many authors have devised rules to split circuits and employ drifting on some segments. These rules are suboptimal and do not generalize to arbitrary circuit shapes (e.g., S-like curves). So, the question “When to go into which mode and how to drive in it?” remains unanswered. To choose the suitable mode (discrete decision), the algorithm needs information about the feasibility of different modes (continuous motion). This makes it a class of Task and Motion Planning (TAMP) problems, which are known to be hard to solve optimally in real-time. In the AI planning community, search methods are commonly used. However, they cannot be directly applied to TAMP problems due to the continuous component. Here, we present a search-based method that effectively solves this problem and efficiently searches in a highly dimensional state space with nonlinear and unstable dynamics. The space of the possible trajectories is explored by sampling different combinations of motion primitives guided by the search. Our approach allows to use multiple locally approximated models to generate motion primitives (e.g., learned models of drifting) and effectively simplify the problem without losing accuracy. The algorithm performance is evaluated in simulated driving on a mixed-track with segments of different curvatures (right and left). Our code is available at https://git.io/JenvB. Zlatan Ajanovic, Enrico Regolin, Barys N. Shyrokau, Hana Catic, Martin Horn, Antonella Ferrara |
Eng. Appl. Artif. Intell. | 5 |
| 2020 | Validating SuperHuman Automated Driving Performance
Zlatan Ajanovic, Matthijs Klomp, Bakir Lacevic, Barys N. Shyrokau, Paolo Pretto, Hassaan Islam, Georg Stettinger, Martin Horn |
SMC | 8 |
| 2019 | Learning a Behavior Model of Hybrid Systems Through Combining Model-Based Testing and Machine Learning
Bernhard K. Aichernig, Roderick Bloem, Masoud Ebrahimi 0002, Martin Horn, Franz Pernkopf, Wolfgang Roth, Astrid Rupp, Martin Tappler, Markus Tranninger |
ICTSS | 4 |
| 2018 | Search-Based Optimal Motion Planning for Automated DrivingabstractThis paper presents a framework for fast and robust motion planning designed to facilitate automated driving. The framework allows for real-time computation even for horizons of several hundred meters and thus enabling automated driving in urban conditions. This is achieved through several features. Firstly, a convenient geometrical representation of both the search space and driving constraints enables the use of classical path planning approach. Thus, a wide variety of constraints can be tackled simultaneously (other vehicles, traffic lights, etc.). Secondly, an exact cost-to-go map, obtained by solving a relaxed problem, is then used by A*-based algorithm with model predictive flavour in order to compute the optimal motion trajectory. The algorithm takes into account both distance and time horizons. The approach is validated within a simulation study with realistic traffic scenarios. We demonstrate the capability of the algorithm to devise plans both in fast and slow driving conditions, even when full stop is required. Zlatan Ajanovic, Bakir Lacevic, Barys N. Shyrokau, Michael Stolz, Martin Horn |
IROS | 5 |
| 2017 | Interdisciplinary design methodology for systems of mechatronic systems focus on highly dynamic environmental applicationsabstractThis paper discusses a series of research challenges in the design of systems of mechatronic systems. A focus is given to environmental mechatronic applications within the chain “Renewable energy production - Smart grids - Electric vehicles”. For the considered mechatronic systems, the main design targets are formulated, the relations to state and parameter estimation, disturbance observation and rejection as well as control algorithms are highlighted. Finally, the study introduces an interdisciplinary design approach based on the intersectoral transfer of knowledge and collaborative experimental activities. Valentin G. Ivanov, Michael Ruderman, Johannes Schiffer, Martin Horn |
IECON | 4 |
| 2006 | Recovery of Surgical Workflow Without Explicit Models
Seyed-Ahmad Ahmadi, Tobias Sielhorst, Ralf Stauder, Martin Horn, Hubertus Feußner, Nassir Navab |
MICCAI (1) | 4 |