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43rd ER 2024: Pittsburgh, PA, USA
- Wolfgang Maass
, Hyoil Han
, Hasan Yasar
, Nicholas J. Multari
:
Conceptual Modeling - 43rd International Conference, ER 2024, Pittsburgh, PA, USA, October 28-31, 2024, Proceedings. Lecture Notes in Computer Science 15238, Springer 2025, ISBN 978-3-031-75871-3
Process Modeling
- Xunjin Wu
, Jingfei Chang
, Wen Cheng
, Yunxiang Wu
, Yong Li
, Lingfang Zeng
:
Enhancing BERT Performance: Multi-teacher Adversarial Distillation with Clean and Robust Guidance. 3-17 - Amine Abbad Andaloussi
, Clemens Schreiber
, Barbara Weber:
On the Task-Specific Effects of Fragmentation in Modular Process Models. 18-37 - Julian Neuberger
, Lars Ackermann
, Han van der Aa
, Stefan Jablonski:
A Universal Prompting Strategy for Extracting Process Model Information from Natural Language Text Using Large Language Models. 38-55 - Qingtan Shen, Artem Polyvyanyy
, Nir Lipovetzky
, Timotheus Kampik
:
Agent System Event Data: Concepts, Dimensions, Applications. 56-72
Advanced Modeling Languages
- Fabian Muff
, Hans-Georg Fill
:
Multi-faceted Evaluation of Modeling Languages for Augmented Reality Applications The Case of ARWFML. 75-93 - Jonathan Silva
, Qin Ma
, Jordi Cabot
, Pierre Kelsen, Henderik A. Proper
:
Application of the Tree-of-Thoughts Framework to LLM-Enabled Domain Modeling. 94-111 - Gengyuan Shi, Chaokun Wang, Yabin Liu:
ECQL: Towards Succinct and Extensible Modeling of Multi-model Query Results. 112-130
Ontological Modeling
- João Paulo A. Almeida
, Luís Ferreira Pires
, Giancarlo Guizzardi
, Gerd Wagner
:
An Analysis of the Semantic Foundation of KerML and SysML v2. 133-151 - Lucas Valadares Vieira, Fabrício Henrique Rodrigues
, Mara Abel:
Portions of Matter and Their Existential Events: An Ontology-Based Conceptual Model. 152-169 - Sotirios Liaskos
, Shakil M. Khan
, John Mylopoulos
, Reza Golipour:
Model-Driven Design and Generation of Training Simulators for Reinforcement Learning. 170-191
Domain and Goal Modeling
- Sotirios Liaskos
, Ibrahim Jaouhar, Syed Muhammad Danish
, Shakil M. Khan
:
Generating Secure Workflow Designs from Requirements Goal Models Using Patterns. 195-214 - Sotirios Liaskos
, John Mylopoulos
, Alexander Borgida, Shakil M. Khan
:
Modeling and Reasoning About Explanation Requirements Using Goal Models. 215-234 - Dominik Prokop, Stepán Stenchlák, Petr Skoda
, Jakub Klímek
, Martin Necaský
:
Enhancing Domain Modeling with Pre-trained Large Language Models: An Automated Assistant for Domain Modelers. 235-253
Language Models and Conceptual Modeling
- Syed Juned Ali
, Iris Reinhartz-Berger
, Dominik Bork
:
How are LLMs Used for Conceptual Modeling? An Exploratory Study on Interaction Behavior and User Perception. 257-275 - Aiko R. de Oliveira, Eduardo Nascimento
, João Pinheiro, Caio Viktor S. Avila, Gustavo M. C. Coelho
, Lucas Feijó
, Yenier Izquierdo
, Grettel García
, Luiz André P. Paes Leme
, Melissa Lemos
, Marco A. Casanova
:
Small, Medium, and Large Language Models for Text-to-SQL. 276-294 - Syed Juned Ali
, Varun Naganathan, Dominik Bork
:
Establishing Traceability Between Natural Language Requirements and Software Artifacts by Combining RAG and LLMs. 295-314
Applications of Conceptual Modeling
- Gunjan Singh, Udit Arora, Shashikant Kumar, Riccardo Tommasini, Pieter Bonte, Sumit Bhatia, Raghava Mutharaju:
GenACT: An Ontology-Based Temporal Web Data Generator. 317-336 - Saad Ahmad, Sudhir Attri, Ruchi Dwivedi, Muzamil Yaqoob, Aasim Khan
, Praveen Priyadarshi, Raghava Mutharaju:
SAQI: An Ontology Based Knowledge Graph Platform for Social Air Quality Index. 337-354 - Sarmad Rezayat, Gerrit Burmester, Hui Ma, Sven Hartmann:
Conceptual Framework for Designing Hippocratic APIs. 355-376 - Frederico Schardong, Ricardo Custódio:
The Role-Artifact-Function Framework for Understanding Digital Identity Models. 377-395 - Pedro Paulo F. Barcelos
, Rodrigo F. Calhau
, Italo Jose da Silva Oliveira
, Tiago Prince Sales
, Frederik Gailly
, Geert Poels
, Giancarlo Guizzardi
:
Ontological Foundations of Resilience. 396-416 - Emilio Carrión
, Óscar Pastor
, Pedro Valderas
:
Conceptual Modelling Method for Digital Twins. 417-435
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