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Predicting task execution times by deriving enhanced cognitive models from user interface development models
Author(s) -
Michael H. Quade,
Marc Halbrügge,
Klaus-Peter Engelbrecht,
Şahin Albayrak,
Sebastian Möller
Publication year - 2014
Publication title -
citeseer x (the pennsylvania state university)
Language(s) - English
Resource type - Conference proceedings
DOI - 10.1145/2607023.2607033
Subject(s) - usability , computer science , human–computer interaction , task (project management) , user interface , context (archaeology) , component based usability testing , usability engineering , user modeling , interface (matter) , task analysis , cognitive walkthrough , heuristic evaluation , usability inspection , programming language , systems engineering , engineering , paleontology , bubble , maximum bubble pressure method , parallel computing , biology
Adaptive user interfaces (UI) offer the opportunity to adapt to changes in the context, but this also poses the challenge of evaluating the usability of many different versions of the resulting UI. Consequently, usability evaluations tend to become very complex and time-consuming. We describe an approach that combines model-based usability evaluation with development models of adaptive UIs. In particular, we present how a cognitive user behavior model can be created automatically from UI development models and thus save time and costs when predicting task execution times. With the help of two usability studies, we show that the resulting predictions can be further improved by using information encoded in the UI development models.

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