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Low-delay single holoscopic 3D computer-generated image to multiview images

机译:低延迟单层全能3D计算机生成的图像到多视图图像

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摘要

Due to the nature of holoscopic 3D (H3D) imaging technology, H3D cameras can capture more angular information than their conventional 2D counterparts. This is mainly attributed to the macrolens array which captures the 3D scene with slightly different viewing angles and generates holoscopic elemental images based on fly's eyes imaging concept. However, this advantage comes at the cost of decreasing the spatial resolution in the reconstructed images. On the other hand, the consumer market is looking to find an efficient multiview capturing solution for the commercially available autostereoscopic displays. The autostereoscopic display provides multiple viewers with the ability to simultaneously enjoy a 3D viewing experience without the need for wearing 3D display glasses. This paper proposes a low-delay content adaptation framework for converting a single holoscopic 3D computer-generated image into multiple viewpoint images. Furthermore, it investigates the effects of varying interpolation step sizes on the converted multiview images using the nearest neighbour and bicubic sampling interpolation techniques. In addition, it evaluates the effects of changing the macrolens array size, using the proposed framework, on the perceived visual quality both objectively and subjectively. The experimental work is conducted on computer-generated H3D images with different macrolens sizes. The experimental results show that the proposed content adaptation framework can be used to capture multiple viewpoint images to be visualised on autostereoscopic displays.
机译:由于全镜3D(H3D)成像技术的性质,H3D摄像机可以捕获比其传统的2D对应物更多的角度信息。这主要归因于大调制阵列,其捕获具有略微不同观察角度的3D场景,并基于飞的眼睛成像概念产生全镜元素图像。然而,这种优势以减少重建图像中的空间分辨率的成本来实现。另一方面,消费者市场正在寻求找到用于市售的自动立体显示器的有效的多视图捕获解决方案。自动立体显示器提供多个观看者,该观众能够同时享受3D观看体验,而无需佩戴3D显示镜。本文提出了一种低延迟内容适应框架,用于将单个全能3D计算机生成的图像转换为多个视点图像。此外,它研究了使用最近邻居和双臂采样插值技术对转换的多视图图像上变化的内插步骤尺寸的影响。此外,它还评估使用所提出的框架改变大规模阵列大小的影响,这些框架在客观和主观上都是感知的视觉质量。实验工作在计算机生成的H3D图像上进行了不同的大规模尺寸。实验结果表明,所提出的内容适应框架可用于捕获在自动立体显示器上可视化的多个视点图像。

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