结合嵌入式计算和图像跟踪构成有形增强现实

Tim Düwel, Nico Herbig, Denise Kahl, A. Krüger
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引用次数: 2

摘要

这项工作提出了嵌入式计算和标记跟踪的结合,为有形增强现实中的组合对象提供更强大的增强。通过将导电元件集成到有形的侧面,可以实现嵌入式微处理器之间的通信,这样就可以在不依赖任何标记跟踪信息的情况下计算连接的组合物。因此,实体的虚拟对应物可以对齐,并且这个虚拟组合可以作为一个整体附加到单个标记上,增加对遮挡和视角扭曲的跟踪鲁棒性。技术评估表明,如果组合物中的有形块被遮挡至少50%,或者根据块的大小,透视扭曲至少40到50度,则这种方法可以提供更强大的增强。此外,依赖于沙发配置工具用例的用户测试显示了关于可用性和用户体验的有希望的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining Embedded Computation and Image Tracking for Composing Tangible Augmented Reality
This work proposes a combination of embedded computation and marker tracking to provide more robust augmentations for composed objects in Tangible Augmented Reality. By integrating conductive elements into the tangibles' sides, communication between embedded microprocessors is enabled, such that a connected composition can be computed without relying on any marker tracking information. Consequently, the virtual counterparts of the tangibles can be aligned, and this virtual composition can be attached to a single marker as a whole, increasing the tracking robustness towards occlusions and perspective distortions. A technical evaluation shows that this approach provides more robust augmentations if a tangible block in a composition is occluded by at least 50% or perspectively distorted by at least 40 to 50 degrees, depending on the block's size. Additionally, a test with users relying on the use case of a couch configuration tool shows promising results regarding usability and user experience.
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