Improving the Steering Law Throughput Calculation by Defining Effective Parameters for 3D Virtual Environments
Mohammadreza Amini, Wolfgang Stuerzlinger, Shota Yamanaka, Hai-Ning Liang, Anil Ufuk Batmaz
Abstract
Throughput is a widely used performance metric, combining speed and accuracy into a single measure, while reducing the effect of subjective speed–accuracy trade-offs. Despite its wide application in 2D steering tasks, its direct extension to 3D presents unique challenges since 3D trajectories exhibit higher variability, and perceptual–motor factors undermine existing formulations. Consequently, throughput has not been systematically adopted for evaluating steering in 3D virtual environments. In this paper, using a controlled virtual reality user study with a ring-and-wire task, we introduce and validate a novel throughput formulation for 3D steering based on the bivariate standard deviation of the trajectory for the effective width calculation. Our results show that this formulation provides smoother throughput values across subjective speed–accuracy differences and improves model fit compared to traditional approaches. This work advances our theoretical understanding of the Steering law in 3D contexts, provides researchers and practitioners with a robust evaluation method, and establishes a foundation for future studies of complex 3D trajectory interactions.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 7929708c-2bfd-4502-bcf8-c7661d067505Related papers
- Better Definition and Calculation of Throughput and Effective Parameters for Steering to Account for Subjective Speed-accuracy TradeoffsNobuhito Kasahara, Yosuke Oba, Shota Yamanaka, Anil Ufuk Batmaz et al.CHI 2024 · 10 citations
- Eye-Hand Coordination Training: A Systematic Comparison of 2D, VR, and AR Display Technologies and Task InstructionsAliza Aliza, Irene Zaugg, Elif Celik, Wolfgang Stuerzlinger et al.IEEE VR 2024 · 8 citations
- Bivariate Effective Width Method to Improve the Normalization Capability for Subjective Speed-accuracy Biases in Rectangular-target PointingShota Yamanaka, Hiroki Usuba, Homei MiyashitaCHI 2022 · 5 citations
- Normalizing Speed-accuracy Biases in 2D Pointing Tasks with Better Calculation of Effective Target WidthsShota Yamanaka, I. Scott MacKenzieCHI 2026 · 2 citations
- Steering through a Dynamically Varying PathJae-Yeop Jeong, Jin-Woo JeongCHI 2026 · 1 citation
