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Design and implementation of high-performance video processor for head-mounted displays

机译:头戴式显示器高性能视频处理器的设计与实现

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This paper presents the design of a high-performance processor used for head-mounted display (HMD) applications targeting stereo video processing. The proposed hardware architecture of the video processor consists of three major parts: an adaptive 3-dimensional (3D) video decoder to accurately decoding the stereo composite video base band signal (CVBS) source, a video source separation module to generate the 3D display effects while maintaining the original field frequencies on both output channels, and a image post-processing module to enhance the display quality. Furthermore, the paper discusses the key design issue on compact hardware structure for SDRAM access, which is ultimately achieved in a single general SDRAM by data clustering and integration. Both FPGA and ASIC implementations are carried out and the results carefully compared showing that the designed video processor for 3D display could produce well immersing feeling with limited costs in effective decreasing the noise, flicker and crosstalk.
机译:本文介绍了针对立体声视频处理的头戴式显示器(HMD)应用中使用的高性能处理器的设计。所提议的视频处理器的硬件体系结构包括三个主要部分:自适应3维(3D)视频解码器,用于准确解码立体声复合视频基带信号(CVBS)源;视频源分离模块,用于生成3D显示效果同时在两个输出通道上保持原始场频,并具有图像后处理模块以提高显示质量。此外,本文讨论了用于SDRAM访问的紧凑硬件结构的关键设计问题,该问题最终通过数据聚类和集成在单个通用SDRAM中实现。进行了FPGA和ASIC的实现,并仔细比较了结果,表明设计的3D显示视频处理器可以有效降低噪声,闪烁和串扰,并以有限的成本产生良好的沉浸感。

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