多摄像头光场显示远程临场感系统的快速高效数据化简方法

V. K. Adhikarla, A. T. Islam, P. Kovács, O. Staadt
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引用次数: 8

摘要

尖端的远程呈现系统配备了多个摄像头来捕捉协作空间的整个场景,面临着从多个视点传输大量动态数据的挑战。随着光场显示器(lfd)在远程协作空间中的引入,产生3D虚拟存在的印象成为可能。此外,当前一代的lfd还依赖于不同空间配置的相机所获得的图像。为了使用lfd实现逼真和自然的3D协作,需要使用可用带宽实时传输多个相机图像形式的数据。经典的压缩方法可以在一定程度上解决这个问题。然而,在许多情况下,实现的压缩级别远远不够。此外,可用的压缩方案不考虑任何与显示相关的属性。在这里,我们提出了一种方法,通过使用显示模型和几何形状,以及捕获和显示光场之间的映射,以预定的方式丢弃在采集地点的图像中未使用的部分,从而减少来自每个相机图像的数据。该方法实现简单,能够自动排除不需要的数据。虽然2D屏幕或显示墙也存在类似的方法,但这是第一个用于光场的算法。实验结果表明,用简化后的数据集可以获得与传输全部数据相同的光场重建。此外,所设计的方法具有很好的处理速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast and efficient data reduction approach for multi-camera light field display telepresence systems
Cutting-edge telepresence systems equipped with multiple cameras for capturing the whole scene of a collaboration space, face the challenge of transmitting huge amount of dynamic data from multiple viewpoints. With the introduction of Light Field Displays (LFDs) in to the remote collaboration space, it became possible to produce an impression of 3D virtual presence. In addition, LFDs in current generation also rely on the images obtained from cameras arranged in various spatial configurations. To have a realistic and natural 3D collaboration using LFDs, the data in the form of multiple camera images needs to be transmitted in real time using the available bandwidth. Classical compression methods might resolve this issue to a certain level. However, in many cases the achieved compression level is by far insufficient. Moreover, the available compression schemes do not consider any of the display-related attributes. Here, we propose a method by which we reduce the data from each of the camera images by discarding unused parts of the images at the acquisition site in a predetermined way using the display model and geometry, as well as the mapping between the captured and displayed light field. The proposed method is simple to implement and can exclude the unnecessary data in an automatic way. While similar methods exist for 2D screens or display walls, this is the first such algorithm for light fields. Our experimental results show that an identical light field reconstruction can be achieved with the reduced set of data which we would have got if all the data were transmitted. Moreover, the devised method provides very good processing speed.
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