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Assisted viewpoint interaction for 3D visualizations.

机译:用于3D可视化的辅助视点交互。

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Many three-dimensional visualizations are characterized by the use of a mobile viewpoint that offers multiple perspectives on a set of visual information. To effectively control the viewpoint, the viewer must simultaneously manage the cognitive tasks of understanding the layout of the environment, and knowing where to look to find relevant information, along with mastering the physical interaction required to position the viewpoint in meaningful locations. Numerous systems attempt to address these problems by catering to two extremes: simplified controls or direct presentation. This research attempts to promote hybrid interfaces that offer a supportive, yet unscripted exploration of a virtual environment.; Attentive navigation is a specific technique designed to actively redirect viewers' attention while accommodating their independence. User-evaluation shows that this technique effectively facilitates several visualization tasks including landmark recognition, survey knowledge acquisition, and search sensitivity. Unfortunately, it also proves to be excessively intrusive, leading viewers to occasionally struggle for control of the viewpoint. Additional design iterations suggest that formalized coordination protocols between the viewer and the automation can mute the shortcomings and enhance the effectiveness of the initial attentive navigation design.; The implications of this research generalize to inform the broader requirements for Human-Automation interaction through the visual channel. Potential applications span a number of fields, including visual representations of abstract information, 3D modeling, virtual environments, and teleoperation experiences.
机译:许多三维可视化的特点是使用移动视点,该视点提供了一组视觉信息的多个视点。为了有效地控制视点,观看者必须同时管理认知任务,以理解环境的布局,知道在哪里寻找相关信息,以及掌握将视点放置在有意义位置所需的物理交互。许多系统试图通过迎合两个极端来解决这些问题:简化控制或直接显示。这项研究试图促进混合接口,这些接口提供了对虚拟环境的支持,但没有脚本说明。细心导航是一种特定技术,旨在在适应观众独立性的同时主动重定向其注意力。用户评估表明,该技术有效地促进了多种可视化任务,包括地标识别,调查知识获取和搜索敏感性。不幸的是,它也被证明具有过分的侵扰性,导致观看者偶尔为控制视点而奋斗。额外的设计迭代表明,查看器与自动化之间的正式协调协议可以消除缺点,并增强初始专注导航设计的有效性。这项研究的意义概括为通过视觉渠道满足人与自动化交互的更广泛要求。潜在的应用程序跨越多个领域,包括抽象信息的可视化表示,3D建模,虚拟环境和远程操作体验。

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