activity
20192022
collaborators

5 papers

cs.RO2022

Energy Tank-Based Policies for Robust Aerial Physical Interaction with Moving Objects

Maximilian Brunner, Livio Giacomini, Roland Siegwart +1

Although manipulation capabilities of aerial robots greatly improved in the last decade, only few works addressed the problem of aerial physical interaction with dynamic environmen…

cs.RO2020

Learning dynamics for improving control of overactuated flying systems

Weixuan Zhang, Maximilian Brunner, Lionel Ott +3

Overactuated omnidirectional flying vehicles are capable of generating force and torque in any direction, which is important for applications such as contact-based industrial inspe…

cs.RO2020

Design and optimal control of a tiltrotor micro aerial vehicle for efficient omnidirectional flight

Mike Allenspach, Karen Bodie, Maximilian Brunner +5

Omnidirectional micro aerial vehicles are a growing field of research, with demonstrated advantages for aerial interaction and uninhibited observation. While systems with complete…

cs.RO2020

Active Interaction Force Control for Contact-Based Inspection with a Fully Actuated Aerial Vehicle

Karen Bodie, Maximilian Brunner, Michael Pantic +5

This paper presents and validates active interaction force control and planning for fully actuated and omnidirectional aerial manipulation platforms, with the goal of aerial contac…

cs.RO2019

An Omnidirectional Aerial Manipulation Platform for Contact-Based Inspection

Karen Bodie, Maximilian Brunner, Michael Pantic +5

This paper presents an omnidirectional aerial manipulation platform for robust and responsive interaction with unstructured environments, toward the goal of contact-based inspectio…