Dynamic targets searching assistance based on virtual camera priority

Q1 Computer Science Virtual Reality Intelligent Hardware Pub Date : 2021-12-01 DOI:10.1016/j.vrih.2021.10.001
Zixiang Zhao , Quanwei Zhou , Xiaoguang Han , Lili Wang
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引用次数: 0

Abstract

Background

When a user walks freely in an unknown virtual scene and searches for multiple dynamic targets, the lack of a comprehensive understanding of the environment may have a negative impact on the execution of virtual reality tasks. Previous studies can help users with auxiliary tools, such as top view maps or trails, and exploration guidance, for example, automatically generated paths according to the user location and important static spots in virtual scenes. However, in some virtual reality applications, when the scene has complex occlusions, and the user cannot obtain any real-time position information of the dynamic target, the above assistance cannot help the user complete the task more effectively.

Methods

We design a virtual camera priority-based assistance to help the user search dynamic targets efficiently. Instead of forcing users to go to destinations, we provide an optimized instant path to guide them to places where they are more likely to find dynamic targets when they ask for help. We assume that a certain number of virtual cameras are fixed in virtual scenes to obtain extra depth maps, which capture the depth information of the scene and the locations of the dynamic targets. Our methodautomatically analyzes the priority of these virtual cameras, chooses the destination, and generates an instant path to assist the user in finding the dynamic targets. Our method is suitable for various virtual reality applications that do not require manual supervision or input.

Results

A user study is designed to evaluate the proposed method. The results indicate that compared with three conventional navigation methods, such as the top-view method, our method can help users find dynamic targets more efficiently. The advantages include reducing the task completion time, reducing the number of resets, increasing the average distance between resets, and reducing user task load.

Conclusions

We presented a method for improving dynamic target searching efficiency in virtual scenes by virtual camera priority-based path guidance. Compared with three conventional navigation methods, such as the top-view method, this method can help users find dynamic targets more effectively.

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基于虚拟摄像机优先级的动态目标搜索辅助
当用户在未知的虚拟场景中自由行走并搜索多个动态目标时,缺乏对环境的全面了解可能会对虚拟现实任务的执行产生负面影响。先前的研究可以通过辅助工具帮助用户,如俯视图地图或路径,以及探索引导,例如根据用户位置和虚拟场景中重要的静态点自动生成路径。然而,在一些虚拟现实应用中,当场景具有复杂的遮挡,用户无法获得动态目标的任何实时位置信息时,上述辅助并不能帮助用户更有效地完成任务。方法设计基于优先级的虚拟相机辅助系统,帮助用户高效地搜索动态目标。我们没有强迫用户去目的地,而是提供了一个优化的即时路径,引导用户在寻求帮助时更有可能找到动态目标的地方。我们假设在虚拟场景中固定一定数量的虚拟摄像机,以获得额外的深度图,这些深度图捕获了场景的深度信息和动态目标的位置。我们的方法自动分析这些虚拟摄像机的优先级,选择目的地,并生成即时路径,以帮助用户找到动态目标。我们的方法适用于各种不需要人工监督或输入的虚拟现实应用。结果设计了一项用户研究来评估所提出的方法。结果表明,与顶视图等三种传统导航方法相比,该方法可以更有效地帮助用户找到动态目标。其优点包括缩短任务完成时间、减少重置次数、增加重置之间的平均距离以及减少用户任务负载。结论提出了一种基于虚拟摄像机优先级路径引导的虚拟场景动态目标搜索方法。与顶视图等三种传统导航方法相比,该方法可以更有效地帮助用户找到动态目标。
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来源期刊
Virtual Reality  Intelligent Hardware
Virtual Reality Intelligent Hardware Computer Science-Computer Graphics and Computer-Aided Design
CiteScore
6.40
自引率
0.00%
发文量
35
审稿时长
12 weeks
期刊最新文献
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