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Hybrid ASIC/FPGA System for Fully Automatic Stereo-to-Multiview Conversion Using IDW

机译:使用IDW的全自动立体声到多视图转换的混合ASIC / FPGA系统

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Recently, multiview autostereoscopic dis-plays (MADs), which enable a limited glasses-free 3D experience, have become commercially available. The main problem of MADs is that they require several (typically eight or nine) views, while most of the 3D video content is in stereoscopic 3D today. In order to bridge this gap, the research community started to devise automatic multiview synthesis (MVS) methods. These algorithms require real-time processing and should be portable to end-user devices to develop their full potential. To this end, we revisit an algorithmic solution based on image domain warping (IDW) and devise a hardware architecture of a complete synthesis pipeline, provide insights into where the computationally challenging parts are, and present implementation results of a hybrid field programmable gate array/application-specific integrated circuit prototype, which is the first hardware implementation of a complete IDW-based MVS system. Based on these results, we also estimate the complexity and energy efficiency of a fully integrated solution in 65- and 28-nm CMOS technology and show that a full-high-definition real-time solution on a single chip is within reach. The proposed architecture could be used as a coprocessor in a system-on-chip targeting 3D TV sets, thereby enabling efficient content generation with limited user interaction (e.g., depth range adjustment) in real time.
机译:近来,实现有限的无眼镜3D体验的多视图自动立体显示(MAD)已在市场上出售。 MAD的主要问题是,它们需要几个(通常是八个或九个)视图,而当今大多数3D视频内容都是在立体3D中。为了弥合这一差距,研究团体开始设计自动多视图综合(MVS)方法。这些算法需要实时处理,并且应可移植到最终用户设备中以发挥其全部潜力。为此,我们将重新研究基于图像域翘曲(IDW)的算法解决方案,并设计出完整的综合流水线的硬件架构,提供有关计算难点所在位置的见解,并给出混合现场可编程门阵列/的实现结果专用集成电路原型,这是基于IDW的完整MVS系统的第一个硬件实现。根据这些结果,我们还估计了65纳米和28纳米CMOS技术中完全集成的解决方案的复杂性和能效,并表明可以在单个芯片上实现全高清实时解决方案。所提出的架构可以在针对3D电视的片上系统中用作协处理器,从而能够通过有限的用户实时交互(例如,深度范围调整)来高效地生成内容。

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