Adding Expressiveness to Smartwatch Notifications Through Ambient Illumination

Author:

Kerber Frederic1,Gehring Sven1,Krüger Antonio1,Löchtefeld Markus2

Affiliation:

1. German Research Center for Artificial Intelligence, Saarland Informatics Campus, Saarbrücken, Germany

2. Department for Architecture, Design and Media Technology, Aalborg University, Aalborg, Denmark

Abstract

The ongoing miniaturization of technology provides the possibility to create more and more powerful devices in smaller form factors. One characteristic of this development is smart wearable devices, such as smartwatches, which open up new possibilities for mobile human-computer interaction. While recent research has revealed that these devices are mainly used to display notifications, the very small screen size can be a hindrance. Consequently, explicit user interaction is, for example, required to browse through notifications to get an overview of them. The authors present an alternative by providing an aggregation and filtering approach to better handle notifications. Furthermore, they investigated several display concepts based on a self-built smartwatch prototype equipped with twelve full-color LEDs to present notifications through ambient illumination. Derived from a user study with twelve participants, the work concludes with guidelines that could be employed when designing notification systems.

Publisher

IGI Global

Subject

Human-Computer Interaction

Reference25 articles.

1. Quickdraw

2. Determining what Individual SUS Scores Mean.;A.Bangor;Journal of Usability Studies,2009

3. Optimizing Smartphone Micro-usage with Smartwatch Notifications

4. ActiVibe

5. Illumee

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