KG-NeSy 2026: The Third International Workshop on Knowledge Graphs and Neurosymbolic AI


Co-located with the ISWC 2026 Bari, Italy - October 25 or 26, 2026

See Call for Papers

Workshop Program


We are pleased to announce that Alessandro Oltramari (Bosch Center of Artificial Intelligence & Carnegie Bosch Institute, USA) will become our Keynote speaker at the Workshop!

Full program details will be announced closer to the workshop date.

09:00 - 09:20Workshop Opening
09:20 - 10:40Paper Session 1: TBD
10:40 - 11:10Coffee Break
11:10 - 12:50Paper Session 2: TBD
12:50 - 14:10Lunch Break
14:10 - 15:10Keynote Talk
15:10 - 15:50Paper Session 3: TBD
15:50 - 16:20Coffee Break
16:20 - 17:40Paper Session 4: TBD
17:40 - 18:00Closing Remarks

KG-NeSy Call for Papers


Knowledge Graphs (KG) provide structured and machine-interpretable knowledge that supports integration, reasoning, and explainability. Their combination with machine learning has become increasingly important within Neurosymbolic AI, which integrates neural and symbolic approaches to combine data-driven learning with knowledge representation and reasoning.

The Knowledge Graphs and Neurosymbolic AI Systems (KG-NeSy) workshop focuses on this rapidly growing combination between KGs and Neurosymbolic AI, highlighting how these two research areas can mutually enhance each other. In particular, the workshop addresses the following complementary strands of research:

  • KGs within Neurosymbolic (NeSy) AI systems, either as (a) deeply integrated components supporting hybrid reasoning, as (b) auxiliary structures improving explainability, interpretability, robustness, generalization, and transferability of deep learning models, or as (c) structured inputs enabling neurosymbolic prediction and inference.
    This direction is motivated by the observation that, while deep learning excels at processing raw data, it often struggles with planning and deductive reasoning—capabilities provided by symbolic knowledge representations.
  • NeSy AI to support KG engineering. Neurosymbolic AI approaches can assist within Knowledge Graphs engineering lifecycle, e.g., within ontology construction, entity and relation extraction, knowledge integration and mapping, completion through logical reasoning or validation, refinement via learning-based methods, and continuous evaluation and maintenance.
    Even when KGs are not explicitly embedded inside Neurosymbolic AI approaches, these approaches can improve methods and tools for knowledge engineering, paving the way for the next generation of Knowledge Graphs development practices.
  • KG-based approaches for understanding and systematizing NeSy AI, e.g., through design patterns, taxonomies, conceptual frameworks, or boxology representations. These works are crucial for identifying gaps in current approaches, aligning fragmented research landscapes, and opening up new opportunities for future developments.


Topics

KGs within Neurosymbolic (NeSy) AI systems

  • Knowledge Graphs for trustworthy NeSy AI systems.
  • Symbolic methods for Explainable AI.
  • Hybrid reasoning combining Deep Learning with Semantic Web.
  • KG-based approaches for improving fairness/bias of ML algorithms/systems.

NeSy AI to support KG engineering

  • NeSy AI methods/systems for ontology learning, construction, or population.
  • NeSy AI methods/systems for knowledge extraction, integration, and completion, evolution/ maintenance, and evaluation.

KG-based approaches for understanding and systematizing NeSy AI

  • Meta-models capturing symbolic-subsymbolic interplay.
  • Formal representations, boxology, design patterns, and taxonomies of NeSy architectures.
  • Metrics and datasets to evaluate NeSy AI.

Application of KGs and NeSy AI

  • Applications of NeSy AI in domains such as medicine, biology, manufacturing, IoT, security, robotics, education, and others.
  • Certification and auditing of AI systems using Knowledge Graphs and NeSy AI.
  • The interplay between Knowledge Graphs, NeSy AI systems, and human intelligence.


Authors Guideline

We welcome the following types of contributions:

  • Full paper (12-15 pages)
  • Short paper (5-8 pages)
  • Extended abstract from published papers (2-4 pages)

All submissions must be written in English and adhere to the CEUR-ART style (one column). Please use the following template.

We follow a single-blind process with at least two reviewers per paper. Papers will be evaluated according to their significance, originality, technical content, style, clarity, and relevance to the workshop.

Please submit your contributions electronically in PDF format via the EasyChair system through the submission link.

Accepted contributions will be presented at the workshop and included in the CEUR workshop proceedings. At least one author of each article is expected to register for the workshop and attend to present their contribution. For any enquiries, please send an email to: kgnesy2026 [at] easychair [dot] org.

Important Dates


Paper Submission
(July 24th, 2026)

Submit your paper.

Notifications
(Aug 21th, 2026)

The notification and reviews from our Program Committee will be available.

Camera-ready
(Sep 7th, 2026)

Time to have your paper ready for being published. All the accepted paper will be published in the proceedings.

Workshop
(Oct 25th, 2026)

Keynote, papers presentations, and discussion!

Workshop Organizers


Shqiponja Ahmetaj

Shqiponja Ahmetaj

TU Wien, Austria

Fajar J. Ekaputra

Fajar J. Ekaputra

WU Vienna, Austria

Andreas Ekelhart

Andreas Ekelhart

Uni Wien, Austria

Sebastian Neumaier

Sebastian Neumaier

USTP, Austria

Cogan Shimizu

Cogan Shimizu

Wright State University, USA

Program Committee


Adrita Barua (Kansas State University, USA)
Alexander Prock (WU, Austria)
Andreea Iana (University of Mannheim, Germany)
Antrea Christou (Wright State University, USA)
Chris Davis Jaldi (Wright State University, USA)
Diego Rincon-Yanez (WU, Austria)
Fariz Darari (University of Indonesia, Indonesia)
Ioan Toma (Onlim GmbH, Austria)
Jan-Cristoph Kalo (University of Amsterdam, The Netherlands)
Ke Dong (Kansas State University, USA)
Lionel Tailhardat (Orange, France)
Majlinda Llugiqi (WU, Austria)
Marta Sabou (WU, Austria)
Medina Andresel (Austrian Institute of Technology, Austria)
Nelson Higuera (TU Wien, Austria)
Rita T. Sousa (University of Mannheim, Germany)
Spencer Seals (Wright State University, USA)
Stefan Bischof (Siemens AG Österreich, Austria)
Tobias Dam (USTP, Austria)
Tobias Geibinger (TU Wien, Austria)

Past Editions


  • Co-located with The 21st International Conference on Semantic Systems
    SEMANTiCS 2025 (Vienna, Austria)

  • Co-located with The First Austrian Symposium on AI, Robotics, and Vision
    AIROV 2024 (Innsbruck, Austria)