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System Analysis of VLSI Architecture for 5/3 and 1/3 Motion-Compensated Temporal Filtering

机译:用于5/3和1/3运动补偿时间滤波的VLSI架构的系统分析

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Motion-compensated temporal filtering (MCTF) is an innovative prediction scheme for video coding and it has become the core technology of the coming video coding standard, Scalable Video Coding. Since MCTF is important, this paper provides the system analysis of MCTF for hardware architecture design, including computational complexity, external memory bandwidth, and external memory size. The one-level MCTF is analyzed first, in which several frame-level data reuse schemes are proposed and the tradeoffs between external memory usages and on-chip memory size in these frame-level data reuse schemes are also discussed. Next, the analysis is extended to multilevel MCTF. The computational complexity of multilevel MCTF is close to that of traditional MC prediction with two reference frames. The memory bandwidth of multilevel MCTF depends on the frame-level data reuse scheme and performing the update stage or not. The external memory size is linearly proportional to the number of decomposition levels. Finally, a real-life test case is given to compare the system requirements between MCTF with various frame-level data reuse schemes and the prediction scheme of H.264/AVC.
机译:运动补偿时间滤波(MCTF)是一种创新的视频编码预测方案,已成为即将到来的视频编码标准可伸缩视频编码的核心技术。由于MCTF非常重要,因此本文对硬件架构设计的MCTF进行了系统分析,包括计算复杂性,外部存储器带宽和外部存储器大小。首先分析了一级MCTF,其中提出了几种帧级数据重用方案,并讨论了这些帧级数据重用方案中外部存储器使用率和片上存储器大小之间的折衷。接下来,分析扩展到多级MCTF。多级MCTF的计算复杂度接近具有两个参考帧的传统MC预测的计算复杂度。多级MCTF的内存带宽取决于帧级数据重用方案以及是否执行更新阶段。外部存储器的大小与分解级别的数量成线性比例。最后,给出了一个实际测试案例,以比较MCTF与各种帧级数据重用方案和H.264 / AVC的预测方案之间的系统要求。

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