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Jan Swevers

19 accepted papers

2026

Accelerated Multi-Modal Motion Planning Using Context-Conditioned Diffusion Models

ICRA 2026poster

Classical methods in robot motion planning, such as sampling-based and optimization-based methods, often struggle with scalability towards higher-dimensional state spaces and complex environments. Diffusion models, known for their capability to learn complex, high-dimensional and multi-modal data di…

2026

Fast Motion Planning for Non-Holonomic Mobile Robots Via a Rectangular Corridor Representation of Structured Environments

ICRA 2026poster

We present a complete framework for fast motion planning of non-holonomic autonomous mobile robots in highly complex but structured environments. Conventional grid-based planners struggle with scalability, while many kinematically-feasible planners impose a significant computational burden due to th…

2025

Learning Deformable Linear Object Dynamics From a Single Trajectory

RA-L 2025

The dynamic manipulation of deformable objects poses a significant challenge in robotics. While model-based approaches for controlling such objects hold significant potential, their effectiveness hinges on the availability of an accurate and computationally efficient dynamics model. This work focuse

Cited by 4SourceScholar
2025

Safe Motion Planning and Control Using Predictive and Adaptive Barrier Methods for Autonomous Surface Vessels

IROS 2025

Safe motion planning is essential for autonomous vessel operations, especially in challenging spaces such as narrow inland waterways. However, conventional motion planning approaches are often computationally intensive or overly conservative. This paper proposes a safe motion planning strategy combi

Cited by 1SourceScholar
2024

An Efficient Solution to the 2D Visibility Problem in Cartesian Grid Maps and its Application in Heuristic Path Planning

ICRA 2024poster

This paper introduces a novel, lightweight method to solve the visibility problem for 2D grids. The proposed method evaluates the existence of lines-of-sight from a source point to all other grid cells in a single pass with no preprocessing and independently of the number and shape of obstacles. It…

Cited by 5SourcecodeScholar
2024

Driving from Vision through Differentiable Optimal Control

IROS 2024poster

This paper proposes DriViDOC: a framework for Driving from Vision through Differentiable Optimal Control, and its application to learn autonomous driving controllers from human demonstrations. DriViDOC combines the automatic inference of relevant features from camera frames with the properties of no…

Cited by 1SourceScholar
2024

Exact Wavefront Propagation for Globally Optimal One-to-All Path Planning on 2D Cartesian Grids

RA-L 2024

This letter introduces an efficient <inline-formula xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink"><tex-math notation="LaTeX">$\mathcal {O}(n)$</tex-math></inline-formula> compute and memory complexity algorithm for globally optimal path planning on 2D Cart

Cited by 4SourcecodeScholar
2024

PRIEST: Projection Guided Sampling-Based Optimization for Autonomous Navigation

RA-L 2024

Efficient navigation in unknown and dynamic environments is crucial for expanding the application domain of mobile robots. The core challenge stems from the non-availability of a feasible global path for guiding optimization-based local planners. As a result, existing local planners often get trappe

Cited by 11SourcecodeScholar
2024

Pseudo-rigid body networks: learning interpretable deformable object dynamics from partial observations

IROS 2024poster

Accurately predicting deformable linear object (DLO) dynamics is challenging, especially when the task requires a model that is both human-interpretable and computationally efficient. In this work, we draw inspiration from the pseudo-rigid body method (PRB) and model a DLO as a serial chain of rigid…

Cited by 0SourceScholar
2024

Robust Model Predictive Control with Control Barrier Functions for Autonomous Surface Vessels

ICRA 2024poster

In autonomous robot navigation, the trajectories from path planners are considered to be safe regions, and deviations could endanger vessels. Model Predictive Control (MPC) stands as a popular choice for trajectory tracking problems as it naturally addresses operational constraints, such as dynamics…

Cited by 5SourceScholar
2024

Robustified Time-optimal Collision-free Motion Planning for Autonomous Mobile Robots under Disturbance Conditions

ICRA 2024poster

This paper presents a robustified time-optimal motion planning approach for navigating an Autonomous Mobile Robot (AMR) from an initial state to a terminal state without colliding with obstacles, even when subjected to disturbances, which are modeled as random process noise and measurement noise. Th…

Cited by 2SourceScholar
2024

Safe Imitation Learning of Nonlinear Model Predictive Control for Flexible Robots

IROS 2024poster

Flexible robots may overcome some of the industry’s major challenges, such as enabling intrinsically safe human-robot collaboration and achieving a higher payload-to-mass ratio. However, controlling flexible robots is complicated due to their complex dynamics, which include oscillatory behavior and…

Cited by 2SourcecodeScholar
2023

An Optimal Open-Loop Strategy for Handling a Flexible Beam with a Robot Manipulator

ICRA 2023poster

Fast and safe manipulation of flexible objects with a robot manipulator necessitates measures to cope with vibrations. Existing approaches either increase the task execution time or require complex models and/or additional instrumentation to measure vibrations. This paper develops a model-based meth…

Cited by 2SourcecodeScholar
2022

A Simple Formulation for Fast Prioritized Optimal Control of Robots using Weighted Exact Penalty Functions

ICRA 2022poster

Prioritization of tasks is a common approach to resolve conflicts in instantaneous control of redundant robots. However, the idea of prioritization has not yet been satisfactorily extended to model predictive control (MPC) to allow for real-time robot control. The standard sequential approach for pr…

Cited by 4SourceScholar
2022

Position and Orientation Tunnel-Following NMPC of Robot Manipulators Based on Symbolic Linearization in Sequential Convex Quadratic Programming

RA-L 2022

The tunnel-following nonlinear model predictive control (NMPC) scheme allows to exploit acceptable deviations around a path reference. This is done by using convex-over-nonlinear functions as objective and constraints in the underlying optimal control problem (OCP). The convex-over-nonlinear structu

Cited by 18SourceScholar
2022

Tasho: A Python Toolbox for Rapid Prototyping and Deployment of Optimal Control Problem-Based Complex Robot Motion Skills

IROS 2022poster

We present Tasho (Task specification for receding horizon control), an open-source Python toolbox that facilitates systematic programming of optimal control problem (OCP)-based robot motion skills. Separation-of-concerns is followed while designing the components of a motion skill, which promotes th…

Cited by 4SourceScholar
2021

A Weighted Method for Fast Resolution of Strictly Hierarchical Robot Task Specifications Using Exact Penalty Functions

RA-L 2021

Extensive work has been done on efficiently resolving hierarchical robot task specifications that minimize the <i xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">l</i> -2 norm of linear constraint violations, but not for <i xmlns:mml="http://www.w3.org/1998/

Cited by 9SourceScholar