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@inproceedings{rittenbruch2020dis,
 abstract = {Cycling offers significant health and environmental benefits, but safety remains a critical issue. We need better tools and design processes to develop on-bicycle user interfaces, for example, for hazard warnings, and to overcome design challenges associated with the cycling context. We present a physical computing toolkit that supports the rapid exploration and co-design of on-bicycle interfaces. Physical plug-and-play interaction modules controlled by an orchestration interface allow participants to explore different tangible and ambient interaction approaches on a budget cycling simulator. The toolkit was assessed by analysing video recordings of two group design workshops (N=8) and twelve individual design sessions (N=12). Our results show that the toolkit enabled flexible transitions between ideation and out-of-the-box thinking, prototyping, and immediate evaluation. We offer insights on how to design physical computing toolkits that offer low-cost, `good enough' simulation while allowing for free and safe exploration of on-bicycle user interfaces.},
 address = {New York, NY, USA},
 author = {Markus Rittenbruch AND Ronald Schroeter AND Florian Wirth AND Florian Alt},
 booktitle = {8Proceedings of the 2020 ACM Conference on Designing Interactive System9s},
 keywords = {bicycle, design},
 location = {Eindhoven, The Netherlands},
 note = {rittenbruch2020dis},
 owner = {florian},
 publisher = {ACM},
 series = {DIS '20},
 timestamp = {2020.06.25},
 title = {{An Exploratory Physical Computing Toolkit for Rapid Exploration and Co-Design of On-Bicycle User Interfaces}},
 url = {https://www.unibw.de/usable-security-and-privacy/publikationen/pdf/rittenbruch2020dis.pdf},
 year = {2020}
}

