首页> 外文会议>Conference on Geo-Spatial and Temporal Image and Data Exploitation III Apr 21,24, 2003 Orlando, Florida, USA >Real-time 3-D Data Acquisition for Augmented Reality Man and Machine Interfacing
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Real-time 3-D Data Acquisition for Augmented Reality Man and Machine Interfacing

机译:增强现实人机交互的实时3-D数据采集

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Based on recent discoveries, we present a method to project a single structured pattern and then reconstruct the three-dimensional range from the distortions in the reflected and captured image. Traditional structured light methods require several different patterns to recover the depth, without ambiguity and albedo sensitivity, and are corrupted by object movement during the projection/capture process. Our method efficiently combines multiple patterns into a single composite pattern projection - allowing for real-time implementations. Because structured light techniques require standard image capture and projection technology, unlike time of arrival techniques, they are relatively low cost. Attaining low cost 3D video acquisition would have a profound impact on most applications that are presently limited to 2D video imaging. Furthermore, it would enable many other applications. In particular, we are studying real time depth imagery for tracking hand motion and rotation as an interface to a virtual reality. Applications include remote controlled robotic interfacing in space, advanced cockpit controls and computer interfacing for the disabled.
机译:基于最近的发现,我们提出了一种投影单个结构化图案,然后根据反射和捕获图像中的失真重建三维范围的方法。传统的结构光方法需要几种不同的模式来恢复深度,而没有歧义和反照率灵敏度,并且在投影/捕获过程中会因物体移动而损坏。我们的方法有效地将多个模式组合到单个复合模式投影中-允许实时实现。由于结构光技术需要标准的图像捕获和投影技术,因此与到达时间技术不同,它们的成本相对较低。实现低成本3D视频采集将对目前仅限于2D视频成像的大多数应用产生深远影响。此外,它将启用许多其他应用程序。特别是,我们正在研究实时深度图像,以跟踪手的运动和旋转,以此作为虚拟现实的接口。其应用包括太空中的遥控机器人接口,高级驾驶舱控制和残疾人计算机接口。

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