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Fabian Jenelten

8 accepted papers

2022

Elevation Mapping for Locomotion and Navigation using GPU

IROS 2022poster

Perceiving the surrounding environment is crucial for autonomous mobile robots. An elevation map provides a memory-efficient and simple yet powerful geometric represen-tation of the terrain for ground robots. The robots can use this information for navigation in an unknown environment or perceptive…

Cited by 95SourcecodeScholar
2020

Perceptive Locomotion in Rough Terrain - Online Foothold Optimization

RA-L 2020

Compared to wheeled vehicles, legged systems have a vast potential to traverse challenging terrain. To exploit the full potential, it is crucial to tightly integrate terrain perception for foothold planning. We present a hierarchical locomotion planner together with a foothold optimizer that finds l

Cited by 105SourceScholar
2019

ALMA - Articulated Locomotion and Manipulation for a Torque-Controllable Robot

ICRA 2019poster

The task of robotic mobile manipulation poses several scientific challenges that need to be addressed to execute complex manipulation tasks in unstructured environments, in which collaboration with humans might be required. Therefore, we present ALMA, a motion planning and control framework for a to…

Cited by 139SourceScholar
2019

Keep Rollin' - Whole-Body Motion Control and Planning for Wheeled Quadrupedal Robots

RA-L 2019

We show dynamic locomotion strategies for wheeled quadrupedal robots that combine the advantages of both walking and driving. The developed optimization framework tightly integrates the additional degrees of freedom introduced by the wheels. Our approach relies on a zero-moment point-based motion op

Cited by 178SourceScholar
2019

Trajectory Optimization for Wheeled-Legged Quadrupedal Robots Using Linearized ZMP Constraints

RA-L 2019

We present a trajectory optimizer for quadrupedal robots with actuated wheels. By solving for angular, vertical, and planar components of the base and feet trajectories in a cascaded fashion and by introducing a novel linear formulation of the zeromoment point balance criterion, we rely on quadratic

Cited by 81SourceScholar
2018

Dynamic Locomotion Through Online Nonlinear Motion Optimization for Quadrupedal Robots

RA-L 2018

This letter presents a realtime motion planning and control method that enables a quadrupedal robot to execute dynamic gaits including trot, pace, and dynamic lateral walk, as well as gaits with full flight phases such as jumping, pronking, and running trot. The proposed method also enables smooth t

Cited by 210SourceScholar
2017

Dynamic locomotion and whole-body control for quadrupedal robots

IROS 2017poster

This paper presents a framework which allows a quadrupedal robot to execute dynamic gaits including trot, pace and dynamic lateral walk, as well as a smooth transition between them. Our method relies on an online ZMP based motion planner which continuously updates the reference motion trajectory as…

Cited by 170SourceScholar