← Search

Frederik Ostyn

5 accepted papers

2025

Probabilistic Latent Variable Modeling for Dynamic Friction Identification and Estimation

ICRA 2025

Precise identification of dynamic models in robotics is essential to support dynamic simulations, control design, friction compensation, output torque estimation, etc. A longstanding challenge remains in the development and identification of friction models for robotic joints, given the numerous phy

Cited by 2SourceScholar
2024

Accelerating Robotic Picking of Rigid Objects with a Compliant Pneumatic Gripper and an Impact-Aware Trajectory Plan

ICRA 2024poster

Industrial robots are capable of moving at high speed. Each time they come into contact with their environment, e.g. to pick up an object, they decelerate to a near standstill. A solution involving a compliant pneumatic gripper and adapted trajectory plan is presented to initiate contact at a higher…

Cited by 1SourceScholar
2022

Design and Control of a Quasi-Direct Drive Robotic Gripper for Collision Tolerant Picking At High Speed

RA-L 2022

Faster robotic picking of objects can improve industrial production throughput. A gripper design with appropriate control strategy is demonstrated to pick objects at high speed, while being tolerant to unintentional collisions. The design has a quasi–direct drive with backdrivable, rigid finger mech

Cited by 21SourceScholar
2022

Overload Clutch With Integrated Torque Sensing and Decoupling Detection for Collision Tolerant Hybrid High-Speed Industrial Cobots

RA-L 2022

A hybrid high-speed industrial collaborative robot can switch between collaborative mode and high-speed mode, combining the advantages of both. While promising, this concept comes with some challenges such as dealing with collisions at high speed. An overload clutch with integrated torque sensing an

Cited by 5SourceScholar
2021

Overload Clutch Design for Collision Tolerant High-Speed Industrial Robots

RA-L 2021

Industrial robots can collide due to malfunctioning, wrong user input or unforeseen changes in the environment in which they operate. Different solutions exist to minimize the damage caused by a collision, either absorbed by the environment or by the robot itself. The specific solution depends on th

Cited by 10SourceScholar