用密集投影阵列实现无延迟无阴影的桌面增强现实。
Shadowless Projection Mapping for Tabletop Workspaces with Synthetic Aperture Projector
- 采用合成孔径投影技术,用大量密集分布投影仪覆盖空间。
- 解决重叠投影导致的分辨率下降,离线补偿耗时与投影仪数量无关。
- 降低用户对投影的感知,提升真实感,适合多用户协作场景。
投影映射(PM)可在不佩戴头显的情况下实现增强现实体验,支持多人交互,广泛应用于远程协作、医疗、工业设计、城市规划、艺术创作和办公等领域。然而传统系统在用户遮挡光路时会产生投影阴影。已有方法使用多个分布式投影仪补偿遮挡,但因计算处理引入延迟,影响用户体验。本文提出一种合成孔径投影系统,通过在环境中密集布置大量投影仪,实现无需计算补偿的零延迟、无阴影投影。为解决多投影叠加引起的亚像素错位导致的空间分辨率下降,开发并验证了一种离线模糊补偿方法,其计算时间与投影仪数量无关。进一步实验表明,该无阴影投影对实现投影映射的核心目标——改变物体材质属性而不产生投影感——至关重要。我们定义此感知为‘投影感(SoP)’,并通过用户研究建立最小化SoP的投影映射设计框架。
原文摘要 · Abstract (English)
Projection mapping (PM) enables augmented reality (AR) experiences without requiring users to wear head-mounted displays and supports multi-user interaction. It is regarded as a promising technology for a variety of applications in which users interact with content superimposed onto augmented objects in tabletop workspaces, including remote collaboration, healthcare, industrial design, urban planning, artwork creation, and office work. However, conventional PM systems often suffer from projection shadows when users occlude the light path. Prior approaches employing multiple distributed projectors can compensate for occlusion, but suffer from latency due to computational processing, degrading the user experience. In this research, we introduce a synthetic-aperture PM system that uses a significantly larger number of projectors, arranged densely in the environment, to achieve delay-free, shadowless projection for tabletop workspaces without requiring computational compensation. To address spatial resolution degradation caused by subpixel misalignment among overlaid projections, we develop and validate an offline blur compensation method whose computation time remains independent of the number of projectors. Furthermore, we demonstrate that our shadowless PM plays a critical role in achieving a fundamental goal of PM: altering material properties without evoking projection-like impression. Specifically, we define this perceptual impression as ``sense of projection (SoP)'' and establish a PM design framework to minimize the SoP based on user studies.
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