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Marco Karrer

9 accepted papers

2023

COVINS-G: A Generic Back-end for Collaborative Visual-Inertial SLAM

ICRA 2023poster

Collaborative SLAM is at the core of perception in multi-robot systems as it enables the co-localization of the team of robots in a common reference frame, which is of vital importance for any coordination amongst them. The paradigm of a centralized architecture is well established, with the robots…

Cited by 26SourcecodeScholar
2023

Cross-Agent Relocalization for Decentralized Collaborative SLAM

ICRA 2023poster

State-of-the-art decentralized collaborative Simultaneous Localization And Mapping (SLAM) systems crucially lack the ability to effectively use well-mapped areas generated by other agents in the team for relocalization. This often leads to map redundancy between agents, inefficient communication, an…

Cited by 6SourceScholar
2021

Distributed Formation Estimation Via Pairwise Distance Measurements

RA-L 2021

Continuously and reliably estimating the relative configuration of robotic swarms in real-time constitutes a core functionality when pursuing the autonomy of such a swarm. Relying on external positioning systems, such as GPS or motion tracking systems, can provide the required information, but signi

Cited by 51SourceScholar
2020

Multi-robot Coordination with Agent-Server Architecture for Autonomous Navigation in Partially Unknown Environments

IROS 2020poster

In this work, we present a system architecture to enable autonomous navigation of multiple agents across user-selected global interest points in a partially unknown environment. The system is composed of a server and a team of agents, here small aircrafts. Leveraging this architecture, computation-a…

Cited by 19SourceScholar
2018

Collaborative 6DoF Relative Pose Estimation for Two UAVs with Overlapping Fields of View

ICRA 2018poster

Driven by the promise of leveraging the benefits of collaborative robot operation, this paper presents an approach to estimate the relative transformation between two small Unmanned Aerial Vehicles (UAVs), each equipped with a single camera and an inertial sensor, comprising the first step of any me…

Cited by 20SourceScholar
2016

Real-time dense surface reconstruction for aerial manipulation

IROS 2016poster

With robotic systems reaching considerable maturity in basic self-localization and environment mapping, new research avenues open up pushing for interaction of a robot with its surroundings for added autonomy. However, the transition from traditionally sparse feature-based maps to dense and accurate…

Cited by 15SourceScholar