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Truncated graycoded bit-plane matching based motion estimation and its hardware architecture

机译:基于截断的灰度编码位平面匹配的运动估计及其硬件架构

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摘要

This paper proposes an efficient low bit-depth representation based motion estimation approach which is particularly suitable for low-power consumer electronics devices. In the proposed approach motion estimation is carried out using bit truncated gray-coded image pixels. The corresponding hardware architecture is also designed and presented in this paper to show the effectiveness of the proposed approach. It is shown that the proposed approach provides improved motion estimation accuracy compared to conventional bit-truncation based approaches that are directly applied to binary coded pixel values. The proposed approach uses simple Gray-coding, that has very low-complexity and can be applied on a pixel-by-pixel basis. Hence, the comparatively more complex transformation processes required in One Bit-Transform or Two-Bit Transform based low bit-depth representation ME approaches are avoided. Experimental results show that the proposed approach also outperforms such low bit-depth representation based motion estimation methods previously presented in the literature, in terms of motion estimation accuracy.
机译:本文提出了一种有效的基于低位深度表示的运动估计方法,该方法特别适用于低功耗消费类电子设备。在所提出的方法中,使用比特截断的灰度编码图像像素来进行运动估计。本文还设计并提出了相应的硬件体系结构,以展示该方法的有效性。结果表明,与直接应用于二进制编码像素值的传统基于比特截断的方法相比,该方法可提供更高的运动估计精度。所提出的方法使用简单的格雷编码,该编码具有非常低的复杂度,并且可以逐个像素地应用。因此,避免了在基于一比特变换或两比特变换的低比特深度表示ME方法中所需的相对较复杂的变换过程。实验结果表明,该方法在运动估计精度方面也优于文献中先前提出的基于低位深度表示的运动估计方法。

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