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Combined Frame Memory Architecture for Motion Compensation in Video Decoding

机译:用于视频解码中运动补偿的组合帧内存架构

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This paper proposes a combined frame memory architecture which is smaller in size and is potential in reducing power consumption compared to the most commonly used ping-pong frame memory. The combined frame memory maps both reference frame data and current frame data onto one single frame memory instead of two in ping-pong architecture. Together with the characteristic of high percentage of MBs with zero-valued MVs and no residual, the combined frame memory architectures is evaluated to be able to reduce not only the memory size, but also the average energy consumption and memory access latency for applications like surveillance, video phone, and video conference. According to the statistics and analysis result, the proposed combined frame memory architecture memory size is only 57% compared to ping-pong architecture. The proposed combined frame memory architecture can reduce up to 83% of average latency and 39% of average power consumption compared to ping-pong frame memory architecture.
机译:本文提出了一种较小尺寸的组合帧存储器架构,并且与最常用的Ping-Pong帧存储器相比降低功耗的电位。组合帧存储器将参考帧数据和当前帧数据映射到一个单个帧存储器而不是两个帧存储器。与具有零值MV的高比例的MB的特性以及没有残差的特性,评估组合的帧存储器架构,以便能够降低存储器大小,也能够减少监视等应用的平均能耗和存储器访问延迟,视频手机和视频会议。根据统计和分析结果,建议的组合帧内存架构存储器尺寸仅为Ping-Pong架构相比仅为57%。与Ping-Pong帧内存架构相比,所提出的组合帧内存架构可以减少平均延迟的高达83%,平均功耗的39%。

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