A Survey on Measuring Cognitive Workload in Human-Computer Interaction
Artikel i vetenskaplig tidskrift, 2023

The ever-increasing number of computing devices around us results in more and more systems competing for our attention, making cognitive workload a crucial factor for the user experience of human-computer interfaces. Research in Human-Computer Interaction (HCI) has used various metrics to determine users' mental demands. However, there needs to be a systematic way to choose an appropriate and effective measure for cognitive workload in experimental setups, posing a challenge to their reproducibility. We present a literature survey of past and current metrics for cognitive workload used throughout HCI literature to address this challenge. By initially exploring what cognitive workload resembles in the HCI context, we derive a categorization supporting researchers and practitioners in selecting cognitive workload metrics for system design and evaluation. We conclude with three following research gaps: (1) defining and interpreting cognitive workload in HCI, (2) the hidden cost of the NASA-TLX, and (3) HCI research as a catalyst for workload-aware systems, highlighting that HCI research has to deepen and conceptualize the understanding of cognitive workload in the context of interactive computing systems.

Cognitive workload

questionnaires

workload assessment

categorization

cognition-aware interfaces

workload-aware computing

physiological sensing

Författare

Thomas Kosch

Humboldt-Universität zu Berlin

Jakob Karolus

Deutsches Forschungszentrum fur Kunstliche Intelligenz

Johannes Zagermann

Universität Konstanz

Harald Reiterer

Universität Konstanz

Albrecht Schmidt

Ludwig-Maximilians-Universität München (LMU)

Paweł W. Woźniak

Chalmers, Data- och informationsteknik, Interaktionsdesign och Software Engineering

ACM Computing Surveys

0360-0300 (ISSN) 15577341 (eISSN)

Vol. 55 13s 283

Ämneskategorier

Mänsklig interaktion med IKT

Människa-datorinteraktion (interaktionsdesign)

Datorseende och robotik (autonoma system)

DOI

10.1145/3582272

Mer information

Senast uppdaterat

2023-09-11