| Publisher URL: | https://www.scitepress.org/Papers/2026/144141/144141.pdf | Publisher DOI: | 10.5220/0014414100004728 | Title: | Empirical design patterns for resilience : reducing cognitive overload and UI manipulation in digital grid control centers | Language: | English | Authors: | Ostrau, Sofie Kaven, Sascha Engel, Merlin Skwarek, Volker Janneck, Monique |
Editor: | Meneveaux, Daniel Jänicke, Stefan |
Keywords: | UX in Critical Infrastructures; Human-Centered Security; Cybersecurity by Design; Cognitive Load; UX Manipulation; Routine Blindness; Control Centers | Issue Date: | 2026 | Publisher: | SciTePress | Part of Series: | Proceedings of the 21st International Conference on Computer Graphics, Interaction and Visualization Theory and Applications : March 9-11, 2026, in Marbella, Spain | Volume number: | 1 | Startpage: | 88 | Endpage: | 98 | Project: | Modulare Netz Sicherheit | Conference: | International Conference on Computer Graphics, Interaction and Visualization Theory and Applications 2026 | Abstract: | Network control centers are central nodes for the robustness of modern power systems. Particularly in the context of emerging low-voltage (LV) control centers that process decentralized data streams, human-computer interaction (HCI) represents a systemic security vulnerability. While cybersecurity efforts have traditionally focused on technical defenses, deficiencies in the design of user interfaces (UI) create critical security gaps for operational disruptions and targeted UI-based manipulation through cognitive overload and routine blind spots. This study uses a design science research (DSR) methodology (expert interviews N=2, expert workshop N=9) to empirically investigate this domain-specific user experience (UX) security vulnerability. Three structural, domain-specific UX security clusters are identified: (1) cognitive overload due to system complexity, (2) operational incongruity and routine blindness, and (3) abstraction gaps and UI manipulation. Building on these empirical fi ndings, three evidence-based design patterns (context-aware display, anti-habituation feedback, forensic traceability) were developed in a high-fidelity prototype for LV control centers. This work identifies three domain-specific UX-security vulnerabilities in grid control interfaces and derives empirically grounded design patterns to address them. The resulting high-fidelity prototype provides a concrete instantiation of security-aware UX principles, ready for empirical validation through planned A/B testing. |
URI: | https://hdl.handle.net/20.500.12738/19703 | ISBN: | 978-989-758-803-7 | Review status: | This version was peer reviewed (peer review) | Institute: | Fakultät Nachhaltige Ingenieurwissenschaften Forschungs- und Transferzentrum CyberSec |
Type: | Chapter/Article (Proceedings) | Funded by: | Bundesministerium für Forschung, Technologie und Raumfahrt |
| Appears in Collections: | Publications without full text |
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