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Florian Loeffl

6 accepted papers

2021

Analyzing the Performance Limits of Articulated Soft Robots Based on the ESPi Framework: Applications to Damping and Impedance Control

RA-L 2021

In situations of harsh impacts, damping injection directly on the link of an articulated soft robot is challenging and usually requires high actuator torques at the moment of impact. In this work, we discuss the underlying reasons and analyze the performance limitations arising in the implementation

Cited by 5SourceScholar
2021

Efficient and Goal-Directed Oscillations in Articulated Soft Robots: The Point-To-Point Case

RA-L 2021

Introducing elasticity in the mechanical design can endow robots with the ability of performing efficient and effective periodic motions. Yet, devising controllers that can take advantage of such elasticity is still an open challenge. This letter tackles an instance of this general problem, by propo

Cited by 5SourceScholar
2021

Embedding a Nonlinear Strict Oscillatory Mode into a Segmented Leg

IROS 2021poster

Robotic legs often lag behind the performance of their biological counterparts. The inherent passive dynamics of natural legs largely influences the locomotion and can be abstracted through the spring-loaded inverted pendulum (SLIP) model. This model is often approximated in physical robotic legs us…

Cited by 3SourceScholar
2019

A Coordinate-based Approach for Static Balancing and Walking Control of Compliantly Actuated Legged Robots

ICRA 2019poster

The paper addresses the static balancing and walking of elastically actuated legged robots. The control is realized by commanding the motor positions only and exploiting the bijective relation between motor and link positions at equilibrium under static external forces. The approach is formulated in…

Cited by 6SourceScholar
2018

Dynamic Locomotion Gaits of a Compliantly Actuated Quadruped With SLIP-Like Articulated Legs Embodied in the Mechanical Design

RA-L 2018

The spring loaded inverted pendulum (SLIP) model has been extensively shown to be fundamental for legged locomotion. However, the way this low-order template model dynamics is anchored in high-dimensional articulated multibody systems describing compliantly actuated robots (and animals) is not obvio

Cited by 39SourceScholar
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