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Hannes Höppner

11 accepted papers

2025

VSB - Variable Stiffness Based on Bowden Cables: A Simple Mechanism for Soft Robotic Hands

ICRA 2025

Soft robotic hands compensate for uncertainty in perception and actuation by leveraging passive deformation in their intrinsically compliant hardware, facilitating robust and dexterous interactions with their environment. The ability to adjust the level of compliance during operation has the potenti

Cited by 0SourceScholar
2025

Variable Stiffness Actuation via 3D-Printed Nonlinear Torsional Springs

RA-L 2025

Variable Stiffness Actuators (VSAs) are promising for advanced robotic systems, offering benefits such as improved energy efficiency, impact safety, stiffness adaptability, mechanical robustness, and dynamic versatility. However, traditional designs often rely on complex mechanical assemblies to ach

Cited by 1SourceScholar
2024

Design and Implementation of a Robotic Testbench for Analyzing Pincer Grip Execution in Human Specimen Hands

ICRA 2024poster

This study presents an innovative test rig engineered to explore the kinematic and viscoelastic characteristics of human specimen hands. The rig features eight force-controlled motors linked to muscle tendons, enabling precise stimulation of hand specimens. Hand movements are monitored through an op…

Cited by 0SourceScholar
2024

Programming Passive Fingertip Deformation for Improved Grasping and Manipulation

IROS 2024poster

Soft robots exhibit complex behaviors despite simple control, due to their inherently compliant hardware which passively deforms upon contact ± a concept commonly referred to as morphological computation. To fully determine the behavior of soft robots, not only their control software but also their…

Cited by 0SourceScholar
2022

Simultaneous Motion Tracking and Joint Stiffness Control of Bidirectional Antagonistic Variable-Stiffness Actuators

RA-L 2022

Since safe human-robot interaction is naturally linked to compliance in these robots, this requirement presents a challenge for the positioning accuracy. The class of variable-stiffness robots features intrinsically soft contact behavior where the physical stiffness can even be altered during operat

Cited by 17SourceScholar
2020

EDAN: An EMG-controlled Daily Assistant to Help People With Physical Disabilities

IROS 2020poster

Injuries, accidents, strokes, and other diseases can significantly degrade the capabilities to perform even the most simple activities in daily life. A large share of these cases involves neuromuscular diseases, which lead to severely reduced muscle function. However, even though affected people are…

Cited by 45SourceScholar
2018

CLASH: Compliant Low Cost Antagonistic Servo Hands

IROS 2018poster

This paper presents the first two members of the new generation of CLASH hands, which exploit low cost actuation and rapid prototyping to create antagonistic modular and lightweight hands and grippers. The hands approach the robustness of the DLR Awiwi hand with a much lower complexity and cost. To…

Cited by 33SourceScholar
2017

Blindfolded robotic teleoperation using spatial force feedback to the toe

ICRA 2017poster

This paper examines the capability to incorporate spatial force feedback to the human toe when teleoperating a robotic arm in a force task. Due to the growing complexity of teleoperated systems new means of feedback get increasingly important. To investigate the viability of spatial toe-feedback, ex…

Cited by 1SourceScholar
2017

End-effector airbags to accelerate human-robot collaboration

ICRA 2017poster

A fundamental problem in human-robot collaboration is to ensure safety for humans being located in the workspace of the robot. Several new robots, referred to as collaborative robots, are pushing into the market. Most of these so-called co-bots have similar properties. They are small, lightweight an…

Cited by 36SourceScholar
2017

Hitting the sweet spot: Automatic optimization of energy transfer during tool-held hits

ICRA 2017poster

Tool-held hitting tasks, like hammering a nail or striking a ball with a bat, require humans, and robots, to purposely collide and transfer momentum from their limbs to the environment. Due to the vibrational dynamics, every tool has a location where a hit is most efficient results in minimal tool v…

Cited by 3SourceScholar
2015

Two-dimensional orthoglide mechanism for revealing areflexive human arm mechanical properties

IROS 2015poster

The most accurate and dependable approach to the in-vivo identification of human limb stiffness is by position perturbation. Moving the limb over a small distance and measuring the effective force gives, when states are steady, direct information about said stiffness. However, existing manipulandi a…

Cited by 6SourceScholar