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Proceedings of the Workshop on Communication by Gaze Interaction最新文献

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A Fitts' law study of click and dwell interaction by gaze, head and mouse with a head-mounted display 通过头戴式显示器,通过凝视,头部和鼠标进行点击和停留交互的菲茨定律研究
Pub Date : 2018-06-15 DOI: 10.1145/3206343.3206344
J. P. Hansen, Vijay Rajanna, I. Mackenzie, Per Baekgaard
Gaze and head tracking, or pointing, in head-mounted displays enables new input modalities for point-select tasks. We conducted a Fitts' law experiment with 41 subjects comparing head pointing and gaze pointing using a 300 ms dwell (n = 22) or click (n = 19) activation, with mouse input providing a baseline for both conditions. Gaze and head pointing were equally fast but slower than the mouse; dwell activation was faster than click activation. Throughput was highest for the mouse (2.75 bits/s), followed by head pointing (2.04 bits/s) and gaze pointing (1.85 bits/s). With dwell activation, however, throughput for gaze and head pointing were almost identical, as was the effective target width (≈ 55 pixels; about 2°) for all three input methods. Subjective feedback rated the physical workload less for gaze pointing than head pointing.
头戴式显示器中的凝视和头部跟踪或指向为点选择任务提供了新的输入模式。我们对41名受试者进行了菲茨定律实验,通过300毫秒的停留(n = 22)或点击(n = 19)激活,比较头部指向和凝视指向,鼠标输入为这两种情况提供了基线。凝视和指向头部的速度与鼠标一样快,但比鼠标慢;驻留激活比点击激活要快。吞吐量最高的是鼠标(2.75比特/秒),其次是头部指向(2.04比特/秒)和凝视指向(1.85比特/秒)。然而,在驻留激活下,凝视和指向头部的吞吐量几乎相同,有效目标宽度(≈55像素;三种输入法均约为2°)。主观反馈认为,凝视比指向头部的体力工作量要少。
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引用次数: 70
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Proceedings of the Workshop on Communication by Gaze Interaction
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