collaborators

5 papers

cs.RO2026

Safe Polytope-in-Polytope Motion Planning and Control with Control Barrier Functions

Alejandro Gonzalez-Garcia, Dries Dirckx, Jan Swevers +1

Autonomous mobile robots operating in tight environments require motion planning frameworks that account for the physical footprint of the robot. Simplifying the geometry to a poin…

cs.RO2026

Accelerated Spline-Based Time-Optimal Motion Planning with Continuous Safety Guarantees for Non-Differentially Flat Systems

Dries Dirckx, Jan Swevers, Wilm Decré

Generating time-optimal, collision-free trajectories for autonomous mobile robots involves a fundamental trade-off between guaranteeing safety and managing computational complexity…

cs.RO2026

Multi-Agent Motion Planning on Industrial Magnetic Levitation Platforms: A Hybrid ADMM-HOCBF approach

Bavo Tistaert, Stan Servaes, Alejandro Gonzalez-Garcia +4

This paper presents a novel hybrid motion planning method for holonomic multi-agent systems. The proposed decentralised model predictive control (MPC) framework tackles the intract…

cs.RO2026

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

Alejandro Gonzalez-Garcia, Sebastiaan Wyns, Sonia De Santis +2

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 s…

math.OC2026

Fast Near Time-Optimal Motion Planning for Holonomic Vehicles in Structured Environments

Louis Callens, Bastiaan Vandewal, Ibrahim Ibrahim +2

This paper proposes a novel and efficient optimization-based method for generating near time-optimal trajectories for holonomic vehicles navigating through complex but structured e…