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Alexander Werner

10 accepted papers

2022

Roboethics as a Design Challenge: Lessons Learned from the Roboethics to Design and Development Competition

ICRA 2022poster

How do we make concrete progress towards de-signing robots that can navigate ethically sensitive contexts? Almost two decades after the word ‘roboethics’ was coined, translating interdisciplinary roboethics discussions into techni-cal design still remains a daunting task. This paper describes our fi…

Cited by 2SourceScholar
2020

A Framework for Human-Robot Interaction User Studies

IROS 2020poster

Human-Robot Interaction (HRI) user studies are challenging to evaluate and compare due to a lack of standardization and the infrastructure required to implement each study. The lack of experimental infrastructure also makes it difficult to systematically evaluate the impact of individual components…

Cited by 11SourceScholar
2019

Experiments with Human-inspired Behaviors in a Humanoid Robot: Quasi-static Balancing using Toe-off Motion and Stretched Knees

ICRA 2019poster

Humanoid robots typically display locomotion patterns that include walking with flat foot-ground contact, and knees slightly bent. However, analysis of human gait indicate that several physiological mechanisms like stretched knees, heel-strike and toe push-off increase the step length and energetic…

Cited by 13SourceScholar
2018

Humanoid Teleoperation Using Task-Relevant Haptic Feedback

IROS 2018poster

Robotic teleoperation is a key technology for a wide variety of fields. Teleoperating a humanoid in particular is essential as it allows the user to act remotely on an interface designed especially for humans, e.g., in a space station, or operating tools and machinery in disaster scenarios. This pap…

Cited by 48SourceScholar
2018

Structure preserving Multi-Contact Balance Control for Series-Elastic and Visco-Elastic Humanoid Robots

IROS 2018poster

This paper proposes an integration of multi-body and actuator control for multi-contact balancing for robots with highly elastic joints. Inspired by the structure preserving control concept for series-elastic fixed-base robots, the presented approach aims to minimize the control effort by keeping th…

Cited by 7SourceScholar
2018

Torque-Based Dynamic Walking - A Long Way from Simulation to Experiment

ICRA 2018poster

This paper presents methods that facilitate the implementation of dynamic walking on torque-controlled robots in real world experiments. The work uses the Divergent Component of Motion (DCM) for walking trajectory generation and control. The DCM controller is embedded into a whole-body controller (W…

Cited by 52SourceScholar
2017

Enhancing joint torque control of series elastic actuators with physical damping

ICRA 2017poster

This paper presents that the joint torque control capability can be enhanced by adding physical damper to a series elastic actuator (SEA). Joint torque tracking of standard SEA has known limitations that the torque dynamics has an relative order of two, and, as a consequence, the torque controller o…

Cited by 28SourceScholar
2017

Generation of locomotion trajectories for series elastic and viscoelastic bipedal robots

IROS 2017poster

Series-elastic and viscoelastic robots can provide performance gains in applications with high dynamics. Harnessing these, requires an understanding of the dynamics of the system, which can be gained using optimization-based methods. The result are motions which make optimal use of the intrinsic beh…

Cited by 17SourceScholar
2016

Multi-contact planning and control for a torque-controlled humanoid robot

IROS 2016poster

Humanoid robots that need to traverse constrained and uncertain environments require a suitable combination of perception, planning and control. This paper presents an integrated pipeline that allows the robot to autonomously acquire visual information, define step locations, compute feasible multi-…

Cited by 29SourceScholar
2015

Generalization of optimal motion trajectories for bipedal walking

IROS 2015poster

Control of robot locomotion profits from the use of pre-planned trajectories. This paper presents a way to generalize globally optimal and dynamically consistent trajectories for cyclic bipedal walking. A small task-space consisting of stride-length and step time is mapped to spline parameters which…

Cited by 17SourceScholar