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3-tier dynamically adaptive power-aware motion estimator for h.264/AVC video encoding

机译:用于h.264 / AVC视频编码的3层动态自适应功率感知运动估计器

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The limitation of energy in portable communication/entertainment devices necessitates the reduction of video encoding complexity. The H.264/AVC video coding standard is one of the latest video codecs and features a complex Motion Estimation scheme that accounts for a major part of the encoder energy [2]. We therefore present a power-aware Motion Estimator for H.264 that adapts at run time according to the available energy level. We perform a set of adaptations at different Processing Stages of Motion Estimation. Our results show that in case of CIF videos (typically used in portable devices; but our approach is equally applicable to other video resolutions too), we achieve an average energy reduction of 52 times and 27 times as compared to UMHexagonS [12] and EPZS [14] respectively. This energy saving comes at the cost of an average loss of only 0.39 dB in Peak Signal to Noise Ratio (PSNR: an objective quality measure) and 23% increase in area (synthesized for 90nm technology).
机译:便携式通信/娱乐设备中能量的限制使得必须降低视频编码的复杂性。 H.264 / AVC视频编码标准是最新的视频编解码器之一,并具有复杂的运动估计方案,该方案占了编码器能量的主要部分[2]。因此,我们提出了一种适用于H.264的功耗感知运动估计器,它可以在运行时根据可用能量级别进行调整。我们在运动估计的不同处理阶段执行一组调整。我们的结果表明,对于CIF视频(通常用于便携式设备;但是我们的方法也同样适用于其他视频分辨率),与UMHexagonS [12]和EPZS相比,我们的平均能耗降低了52倍和27倍。 [14]分别。这种节能的代价是峰值信噪比(PSNR:客观质量指标)的平均损失仅为0.39 dB,并且面积增加了23%(针对90nm技术合成)。

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