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Hanging Around: Cognitive Inspired Reasoning for Reactive Robotics

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Abstract

Situationally-aware artificial agents operating with competence in natural environments face several challenges: spatial awareness, object affordance detection, dynamic changes and unpredictability. A critical challenge is the agent’s ability to identify and monitor environmental elements pertinent to its objectives. Our research introduces a neurosymbolic modular architecture for reactive robotics. Our system combines a neural component performing object recognition over the environment and image processing techniques such as optical flow, with symbolic representation and reasoning. The reasoning system is grounded in the embodied cognition paradigm, via integrating image schematic knowledge in an ontological structure. The ontology is operatively used to create queries for the perception system, decide on actions, and infer entities’ capabilities derived from perceptual data. The combination of reasoning and image processing allows the agent to focus its perception for normal operation as well as discover new concepts for parts of objects involved in particular interactions. The discovered concepts allow the robot to autonomously acquire training data and adjust its subsymbolic perception to recognize the parts, as well as making planning for more complex tasks feasible by focusing search on those relevant object parts. We demonstrate our approach in a simulated world, in which an agent learns to recognize parts of objects involved in support relations. While the agent has no concept of handle initially, by observing examples of supported objects hanging from a hook it learns to recognize the parts involved in establishing support and becomes able to plan the establishment/destruction of the support relation. This underscores the agent’s capability to expand its knowledge through observation in a systematic way, and illustrates the potential of combining deep reasoning with reactive robotics in dynamic settings.
Original languageEnglish
Title of host publicationFormal Ontology in Information Systems
Subtitle of host publicationProceedings of the 14th International Conference (FOIS 2024)
EditorsCassia Trojahn, Daniele Porello, Pedro Paulo Favato Barcelos, Pedro Paulo Favato Barcelos
PublisherIOS Press BV
Pages2-15
Number of pages14
ISBN (Electronic)9781643685618
DOIs
Publication statusPublished - 2024
Externally publishedYes
Event14th International Conference on Formal Ontology in Information Systems, FOIS 2024 - Enschede, Netherlands
Duration: 15 Jul 202419 Jul 2024

Publication series

NameFrontiers in Artificial Intelligence and Applications
Volume394
ISSN (Print)0922-6389
ISSN (Electronic)1879-8314

Conference

Conference14th International Conference on Formal Ontology in Information Systems, FOIS 2024
Country/TerritoryNetherlands
CityEnschede
Period15/07/2419/07/24

Funding

This work was supported by the Future Artificial Intelligence Research (FAIR) project, code PE00000013 CUP 53C22003630006, the German Research Foundation DFG, as part of Collaborative Research Center (Sonderforschungsbereich) 1320 Project-ID 329551904 EASE - Everyday Activity Science and Engineering, subproject \u201CP01 - Embodied semantics for the language of action and change: Combining analysis, reasoning and simulation\u201D, and by the FET-Open Project #951846 \u201CMUHAI Meaning and Understanding for Human-centric AI\u201D by the EU Pathfinder and Horizon 2020 Program.

FundersFunder number
Horizon 2020
Deutsche Forschungsgemeinschaft
Future Artificial Intelligence ResearchPE00000013 CUP 53C22003630006
H2020 Future and Emerging Technologies951846

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