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Pre-Calibrated Visuo-Haptic Co-Location Improves Execution in Virtual Environments

机译:预校准的Visuo-触觉共同位置可提高虚拟环境中的执行

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A common approach to visio-haptic human-machine interfaces adopts a simpler design by shifting grounded force feedback away from the virtual scene. The alternative design favors intuitiveness by displaying visual and grounded force feedback at the same location (i.e. visuo-haptic co-location) but requires a sensibly more complex implementation and a tedious kinematic conception. The benefits of one approach over the other had not been fully investigated. Notably, (i) while users seem to better operate under co-located condition, it's not always the case. (ii) In the case of a desktop interface, the cost of a complex implementation to achieve co-location is challenged. We aim here to resolve (i) by conducting a user-centered experiment in which participants performed two generic tasks in co-located and delocated configurations, and comparing their performances. Additionally, we intend to fill the gap (ii) by testing a design without continuous head tracking, i.e., with static co-location. Participants' performances are assessed in terms of execution time, accuracy and force variation, while their subjective experiences are collected via a survey. Findings indicate that co-located configurations lead to shorter execution times, more accurate motions, better management of forces and are largely preferred by users, even when the co-location is pre-calibrated statically.
机译:visio-触觉的人机界面的常见方法通过将接地力反馈远离虚拟场景来采用更简单的设计。替代设计通过在同一位置显示视觉和接地力反馈(即Visuo-触觉的共同位置),但需要一个明显更复杂的实现和繁琐的运动概念来实现直观的。一种方法对另一个方法的好处尚未完全调查。值得注意的是,(i)在用户似乎在共同定位的情况下更好地运作时,并非总是如此。 (ii)在桌面界面的情况下,复杂实施的成本实现共同位置受到挑战。我们的目标是通过开展用户居中的实验来解决(i),其中参与者在共同定位和分配的配置中执行了两个通用任务,并进行了比较它们的性能。此外,我们打算通过在没有连续头部跟踪的情况下测试设计来填充差距(ii),即,具有静态共存。参与者的表演在执行时间,准确性和力量变化方面进行评估,而通过调查收集其主观经验。结果表明,共同的配置导致执行时间较短,更准确的动作,更好地管理力,并且在很大程度上优选用户,即使在静态校准共校准时也是如此。

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