activity
20172021
most citedHapFIC: An Adaptive Force/Position Controller for Safe Environment Interaction in Articulated Systems

14 citations · 25 across the 2 of their papers we have counts for

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7 papers · 1 filter

cs.RO202114 cited

HapFIC: An Adaptive Force/Position Controller for Safe Environment Interaction in Articulated Systems

Carlo Tiseo, Wolfgang Merkt, Keyhan Kouhkiloui Babarahmati +4

Haptic interaction is essential for the dynamic dexterity of animals, which seamlessly switch from an impedance to an admittance behaviour using the force feedback from their propr…

cs.RO2020

Variable Autonomy of Whole-body Control for Inspection and Intervention in Industrial Environments using Legged Robots

Guiyang Xin, Carlo Tiseo, Wouter Wolfslag +5

The deployment of robots in industrial and civil scenarios is a viable solution to protect operators from danger and hazards. Shared autonomy is paramount to enable remote control…

cs.RO2020

Bio-mimetic Adaptive Force/Position Control Using Fractal Impedance

Carlo Tiseo, Wolfgang Merkt, Keyhan Kouhkiloui Babarahmati +3

The ability of animals to interact with complex dynamics is unmatched in robots. Especially important to the interaction performances is the online adaptation of body dynamics, whi…

cs.RO2020

Optimizing Dynamic Trajectories for Robustness to Disturbances Using Polytopic Projections

Henrique Ferrolho, Wolfgang Merkt, Vladimir Ivan +2

This paper focuses on robustness to disturbance forces and uncertain payloads. We present a novel formulation to optimize the robustness of dynamic trajectories. A straightforward…

cs.RO202011 cited

Optimisation of Body-ground Contact for Augmenting Whole-Body Loco-manipulation of Quadruped Robots

Wouter Wolfslag, Christopher McGreavy, Guiyang Xin +3

Legged robots have great potential to perform loco-manipulation tasks, yet it is challenging to keep the robot balanced while it interacts with the environment. In this paper we st…

cs.RO2019

Bounded haptic teleoperation of a quadruped robot's foot posture for sensing and manipulation

Guiyang Xin, Joshua Smith, David Rytz +3

This paper presents a control framework to teleoperate a quadruped robot's foot for operator-guided haptic exploration of the environment. Since one leg of a quadruped robot typica…