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An efficient hardware solution for 3D-HEVC intra-prediction

机译:用于3D-HEVC帧内预测的高效硬件解决方案

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摘要

Three-dimensional high-efficiency video coding (3D-HEVC) is the highest profile extension of HEVC for 3D video coding that supports the advanced 3D video format, multi-view video plus depth (MVD). Depth modelling modes (DMMs) are adopted into 3D-HEVC to preserve sharp edges and avoid ringing artefacts in synthesized views. However, computational complexity increases significantly with these modes. A novel hardware solution that reduces the complexity of DMMs for 3D-HEVC is presented in the present paper. This solution contains five modules working in parallel to find all DMMs defined in the new standard for all depth block sizes (from 4 x 4 to 32 x 32). A new technique for obtaining the most compatible wedgelet pattern with its own syntax is developed to minimize the quantity of calculations coming from DMM1; the aforementioned information (wedgelet pattern and syntax) is already calculated and stored in an external memory. This design is synthesized for a Xilinx Virtex 6 FPGA and can process up to 30 frames per second (FPS) while considering the encoding of 6 full HD views in real time. The proposed solution can reach a processing rate up to 30 FPS for 4 QHD views in real time when using 4K video encoding.
机译:三维高效视频编码(3D-HEVC)是HEVC用于3D视频编码的最高轮廓扩展,它支持高级3D视频格式,多视图视频加深度(MVD)。在3D-HEVC中采用了深度建模模式(DMM),以保留锐利的边缘并避免在合成视图中出现伪影。但是,使用这些模式会大大增加计算复杂度。本文提出了一种新颖的硬件解决方案,该解决方案可降低用于3D-HEVC的DMM的复杂性。该解决方案包含五个并行工作的模块,以针对所有深度块大小(从4 x 4到32 x 32)查找新标准中定义的所有DMM。开发了一种使用自己的语法获取最兼容的楔形波模式的新技术,以最大程度地减少来自DMM1的计算量。前述信息(楔形样式和语法)已经被计算并存储在外部存储器中。该设计针对Xilinx Virtex 6 FPGA进行了综合,可以处理每秒30帧(FPS),同时考虑实时编码6个全高清视图。当使用4K视频编码时,对于4个QHD视图,所提出的解决方案可以达到高达30 FPS的处理速率。

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