Investigating Pointing Tasks across Angularly Coupled Display Areas - Human-Computer Interaction – INTERACT 2013
Conference Papers Year : 2013

Investigating Pointing Tasks across Angularly Coupled Display Areas

Abstract

Pointing tasks are a crucial part of today’s graphical user interfaces. They are well understood for flat displays and most prominently are modeled through Fitts’ Law. For novel displays (e.g., curved displays with multi-purpose areas), however, it remains unclear whether such models for predicting user performance still hold – in particular when pointing is performed across differently oriented areas. To answer this question, we conducted an experiment on an angularly coupled display – the Curve – with two input conditions: direct touch and indirect mouse pointer. Our findings show that the target position affects overall pointing speed and offset in both conditions. However, we also found that Fitts’ Law can in fact still be used to predict performance as on flat displays. Our results help designers to optimize user interfaces on angularly coupled displays when pointing tasks are involved.
Fichier principal
Vignette du fichier
978-3-642-40483-2_50_Chapter.pdf (391.57 Ko) Télécharger le fichier
Origin Files produced by the author(s)
Loading...

Dates and versions

hal-01497474 , version 1 (28-03-2017)

Licence

Identifiers

Cite

Fabian Hennecke, Alexander De Luca, Ngo Huong Nguyen, Sebastian Boring, Andreas Butz. Investigating Pointing Tasks across Angularly Coupled Display Areas. 14th International Conference on Human-Computer Interaction (INTERACT), Sep 2013, Cape Town, South Africa. pp.720-727, ⟨10.1007/978-3-642-40483-2_50⟩. ⟨hal-01497474⟩
97 View
98 Download

Altmetric

Share

More