← Search

Patrick Goebel

4 accepted papers

2021

Robot Navigation in Constrained Pedestrian Environments using Reinforcement Learning

ICRA 2021poster

Navigating fluently around pedestrians is a necessary capability for mobile robots deployed in human environments, such as buildings and homes. While research on social navigation has focused mainly on the scalability with the number of pedestrians in open spaces, typical indoor environments present…

Cited by 98SourceScholar
2020

JRMOT: A Real-Time 3D Multi-Object Tracker and a New Large-Scale Dataset

IROS 2020poster

Robots navigating autonomously need to perceive and track the motion of objects and other agents in its surroundings. This information enables planning and executing robust and safe trajectories. To facilitate these processes, the motion should be perceived in 3D Cartesian space. However, most recen…

Cited by 106SourcecodeScholar
2019

Deep Local Trajectory Replanning and Control for Robot Navigation

ICRA 2019poster

We present a navigation system that combines ideas from hierarchical planning and machine learning. The system uses a traditional global planner to compute optimal paths towards a goal, and a deep local trajectory planner and velocity controller to compute motion commands. The latter components of t…

Cited by 88SourceScholar
2018

GONet: A Semi-Supervised Deep Learning Approach For Traversability Estimation

IROS 2018poster

We present semi-supervised deep learning approaches for traversability estimation from fisheye images. Our method, GONet, and the proposed extensions leverage Generative Adversarial Networks (GANs) to effectively predict whether the area seen in the input image(s) is safe for a robot to traverse. Th…

Cited by 74SourceScholar