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Optimized Visualization of Building Fire Risks through Mobile Application

dc.contributor.authorJung, Norman
dc.contributor.authorvon der Linde, Mira
dc.contributor.authorThielsch, Meinald T.
dc.contributor.editorStolze, Markus
dc.contributor.editorLoch, Frieder
dc.contributor.editorBaldauf, Matthias
dc.contributor.editorAlt, Florian
dc.contributor.editorSchneegass, Christina
dc.contributor.editorKosch, Thomas
dc.contributor.editorHirzle, Teresa
dc.contributor.editorSadeghian, Shadan
dc.contributor.editorDraxler, Fiona
dc.contributor.editorBektas, Kenan
dc.contributor.editorLohan, Katrin
dc.contributor.editorKnierim, Pascal
dc.date.accessioned2023-08-24T05:29:12Z
dc.date.available2023-08-24T05:29:12Z
dc.date.issued2023
dc.description.abstractThis research aims to create an app-based visualization of fire probability to enhance fire safety measures in public and cultural buildings through the integration of the Internet of Things and wireless sensor networks. We employed a two-stage research methodology: the first study (N=104) used the Kano model to identify key app features and attributes prioritized by both laypersons and experts; the subsequent study (N=507) examined the efficacy of low-fidelity interface mock-ups derived from the results of the first study, focusing specifically on how effectively fire probability information was presented. The results showed that participants prioritized functionality and effectiveness over aesthetics in such an application. In addition, interfaces with clear, organized presentations and multi-level risk ratings were found to be the most effective. In addition, the use of visual cues increased user engagement, while oversimplification decreased user interaction. Ultimately, these findings highlight the need to prioritize functionality, user engagement and ease of use in the development of fire probability systems, thereby promoting more effective prevention and mitigation strategies in public and cultural spaces.en
dc.description.uri"https://dl.acm.org/doi/"&R44en
dc.identifier.doi10.1145/3603555.3608535
dc.identifier.urihttps://dl.gi.de/handle/20.500.12116/42012
dc.language.isoen
dc.publisherACM
dc.relation.ispartofMensch und Computer 2023 - Tagungsband
dc.relation.ispartofseriesMensch und Computer
dc.subjectFire Probability Visualization
dc.subject User-Centered Design
dc.subject Kano Model
dc.subject Risk Mitigation
dc.titleOptimized Visualization of Building Fire Risks through Mobile Applicationen
dc.typeText/Conference Paper
gi.citation.publisherPlaceNew York
gi.citation.startPage412-416
gi.conference.date3.-6. September 2023
gi.conference.locationRapperswil
gi.conference.sessiontitleMCI-POSTER

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