Philipp Matthias Schäfer

dblp:75/9133 · DBLP profile ↗
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5ranked-venue papers
1as first author
1since 2021 · last 2021
0000-0003-3931-6670ORCID · corroborated

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Theory of computation · 4 · 1 first-author · 1 since 2021Artificial intelligence and machine learning · 1 · 1 first-author · 1 since 2021Human-computer interaction and ubiquitous computing · 1
YearPublicationVenuePosition
2021 Flexible Robotic Assembly Based on Ontological Representation of Tasks, Skills, and Resources
abstract
Technology has sufficiently matured to enable, in principle, flexible and autonomous robotic assembly systems. However, in practice, it requires making all the relevant (implicit) knowledge that system engineers and workers have – about products to be assembled, tasks to be performed, as well as robots and their skills – available to the system explicitly. Only then can the planning and execution components of a robotic assembly pipeline communicate with each other in the same language and solve tasks autonomously without human intervention. This is why we have developed the Factory of the Future (FoF) ontology. At its core, this ontology models the tasks that are necessary to assemble a product and the robotic skills that can be employed to complete said tasks. The FoF ontology is based on existing standards. We started with theoretical considerations and iteratively adapted it based on practical experience gained from incorporating more and more components required for automated planning and assembly. Furthermore, we propose tools to extend the ontology for specific scenarios with knowledge about parts, robots, tools, and skills from various sources. The resulting scenario ontology serves us as world model for the robotic systems and other components of the assembly process. A central runtime interface to this world model provides fast and easy access to the knowledge during execution. In this work, we also show the integration of a graphical user front-end, an assembly planner, a workspace reconfigurator, and more components of the assembly pipeline that all communicate with the help of the FoF ontology. Overall, our integration of the FoF ontology with the other components of a robotic assembly pipeline shows that using an ontology is a practical method to establish a common language and understanding between the involved components.
Philipp Matthias Schäfer, Franz Steinmetz, Stefan Schneyer, Timo Bachmann, Thomas Eiband, Florian Samuel Lay, Abhishek Padalkar, Christoph Sürig, Freek Stulp, Korbinian Nottensteiner
KR1
2019 Digital Availability of Product Information for Collaborative Engineering of Spacecraft
Diana Peters, Philipp M. Fischer, Philipp Matthias Schäfer, Kobkaew Opasjumruskit, Andreas Gerndt
CDVE3
2013 On the Carathéodory number of interval and graph convexities
Mitre Costa Dourado, Dieter Rautenbach, Vinícius Fernandes dos Santos, Philipp Matthias Schäfer, Jayme Luiz Szwarcfiter
Theor. Comput. Sci.4
2012 On the Radon Number for P 3-Convexity
Mitre Costa Dourado, Dieter Rautenbach, Vinícius Fernandes dos Santos, Philipp Matthias Schäfer, Jayme Luiz Szwarcfiter, Alexandre Toman
LATIN4
2011 Characterization and representation problems for intersection betweennesses
Dieter Rautenbach, Vinícius Fernandes dos Santos, Philipp Matthias Schäfer, Jayme Luiz Szwarcfiter
Discret. Appl. Math.3