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Perceptual Grouping Effects on Cursor Movement Expectations

机译:感知分组对光标移动期望的影响

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Objective: Two studies were conducted to develop an understanding of factors that drive user expectations when navigating between discrete elements on a display via a limited degree-of-freedom cursor control device. Background: For the Orion Crew Exploration Vehicle spacecraft, a free-floating cursor with a graphical user interface (GUI) would require an unachievable level of accuracy due to expected acceleration and vibration conditions during dynamic phases of flight. Therefore, Orion program proposed using a "caged" cursor to "jump" from one controllable element (node) on the GUI to another. However, nodes are not likely to be arranged on a rectilinear grid, and so movements between nodes are not obvious. Method: Proximity between nodes, direction of nodes relative to each other, and context features may all contribute to user cursor movement expectations. In an initial study, we examined user expectations based on the nodes themselves. In a second study, we examined the effect of context features on user expectations. Results: The studies established that perceptual grouping effects influence expectations to varying degrees. Based on these results, a simple rule set was developed to support users in building a straightforward mental model that closely matches their natural expectations for cursor movement. Conclusion: The results will help designers of display formats take advantage of the natural context-driven cursor movement expectations of users to reduce navigation errors, increase usability, and decrease access time. Application: The rules set and guidelines tie theory to practice and can be applied in environments where vibration or acceleration are significant, including spacecraft, aircraft, and automobiles.
机译:目的:进行了两项研究,以了解在通过有限的自由度光标控制设备在显示器上的离散元素之间导航时推动用户期望的因素。背景:对于猎户座乘员探索飞行器航天器而言,由于在动态飞行阶段预期的加速和振动条件,带有图形用户界面(GUI)的自由浮动光标将需要无法实现的精度水平。因此,Orion程序建议使用“笼状”光标从GUI上的一个可控元素(节点)“跳转”到另一个。但是,节点不太可能排列在直线网格上,因此节点之间的移动并不明显。方法:节点之间的接近度,节点之间的相对方向以及上下文特征都可能有助于用户移动光标。在初步研究中,我们基于节点本身检查了用户期望。在第二项研究中,我们研究了上下文特征对用户期望的影响。结果:研究确定,知觉分组效应在不同程度上影响期望。基于这些结果,开发了一个简单的规则集,以支持用户建立与他们对光标移动的自然期望紧密匹配的简单思维模型。结论:结果将有助于显示格式的设计人员利用用户自然的上下文驱动的光标移动期望值来减少导航错误,增加可用性并减少访问时间。应用:规则集和指导方针将理论与实践联系起来,可以应用于振动或加速度明显的环境,包括航天器,飞机和汽车。

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