Judith Michael

dblp:27/10220 · DBLP profile ↗
← Back
5ranked-venue papers in the field
1as first author
3since 2021 · last 2025
0000-0002-4999-2544ORCID · verified

Domains — venue-derived; a paper can count in several

Business Process & Enterprise Data · 3 (1 first)Database Systems & Data Management · 2
YearPublicationVenuePosition
2025 Overcoming the hurdle of legal expertise: A reusable model for smartwatch privacy policies
abstract
Regulations for privacy protection aim to protect individuals from the unauthorized storage, processing, and transfer of their personal data but oftentimes fail in providing helpful support for understanding these regulations. To better communicate privacy policies for smartwatches, we need an in-depth understanding of their concepts and provide better ways to enable developers to integrate them when engineering systems. Up to now, no conceptual model exists covering privacy statements from different smartwatch manufacturers that is reusable for developers. This paper introduces such a conceptual model for privacy policies of smartwatches and shows its use in a model-driven software engineering approach to create a platform for data visualization of wearable privacy policies from different smartwatch manufacturers. We have analyzed the privacy policies of various manufacturers and extracted the relevant concepts. Moreover, we have checked the model with lawyers for its correctness, instantiated it with concrete data, and used it in a model-driven software engineering approach to create a platform for data visualization. This reusable privacy policy model can enable developers to easily represent privacy policies in their systems. This provides a foundation for more structured and understandable privacy policies which, in the long run, can increase the data sovereignty of application users.
Constantin Buschhaus, Arvid Butting, Judith Michael, Verena Nitsch, Sebastian Pütz, Bernhard Rumpe, Carolin Stellmacher, Sabine Theis
Data Knowl. Eng.3
2025 Application of digital shadows on different levels in the automation pyramid
abstract
The concept of digital shadows helps to move from handling large amounts of heterogeneous data in production to the handling of task- and context-dependent aggregated data sets supporting a specific purpose. Current research lacks further investigations of characteristics digital shadows may have when they are applied to different levels of the automation pyramid. Within this paper, we describe the application of the digital shadow concept for two use cases in injection molding , namely geometry-dependent process configuration , and optimal production planning of jobs on an injection molding machine. In detail, we describe the creation process of digital shadows, relevant data needs for the specific purpose, as well as relevant models. Based on their usage, we describe specifics of their characteristics and discuss commonalities and differences. These aspects can be taken into account when creating digital shadows for further use cases.
Malte Heithoff, Christian Hopmann, Thilo Köbel, Judith Michael, Bernhard Rumpe, Patrick Sapel
Data Knowl. Eng.4
2021 A Conceptual Model for Digital Shadows in Industry and Its Application
Fabian Becker, Pascal Bibow, Manuela Dalibor, Aymen Gannouni, Viviane Hahn, Christian Hopmann, Matthias Jarke, István Koren, Moritz Kröger, Johannes Lipp, Judith Fulterer, Judith Michael, Bernhard Rumpe, Patrick Sapel, Niklas Schäfer, Georg J. Schmitz, Günther Schuh, Andreas Wortmann 0001
ER12
2020 Towards a Model-Driven Architecture for Interactive Digital Twin Cockpits
Manuela Dalibor, Judith Michael, Bernhard Rumpe, Simon Varga, Andreas Wortmann 0001
ER2
2013 Conceptual Modeling for Ambient Assistance
Judith Michael, Heinrich C. Mayr
ER1