Adaptive Techniques for a Fast Frequency Domain Motion Estimation

Y. Ismail, M. Elgamel, M. Bayoumi
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引用次数: 10

Abstract

Dynamic Block Size Motion Estimation (DBS-ME) and smart Dynamic Early Search Termination (DEST) techniques are proposed and implemented in this paper. Both of the proposed techniques are combined and applied to the conventional phase correlation technique. The performance, visual quality and complexity of the proposed techniques are compared to that of the original phase correlation motion estimation (PC-ME) and Full Search Block Matching (FSBM) techniques. The proposed techniques provide an increase in the encoding quality besides a decrease in the computational complexity of ME process. Results show that there is approximately 100% of the stationary blocks decided by the FSBM algorithm are discovered correctly which consequently reduce the computations compared with the original FS and PC techniques. Also it is noted that, DBS-ME technique greatly decreases the computations required for ME process by decreasing the required padding to one or two pixels for both the current and the reference blocks. In addition, the motion field of the proposed algorithm gives much lower entropy than PC-ME which means more reduction in the transmitted bit rate.
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快速频域运动估计的自适应技术
本文提出并实现了动态块大小运动估计(DBS-ME)和智能动态早期搜索终止(DEST)技术。将这两种方法结合起来,应用于传统的相位相关技术。将所提技术的性能、视觉质量和复杂度与原始的相位相关运动估计(PC-ME)和全搜索块匹配(FSBM)技术进行了比较。所提出的技术不仅提高了编码质量,而且降低了编码过程的计算复杂度。结果表明,FSBM算法确定的固定块约100%被正确发现,与原来的FS和PC技术相比,减少了计算量。另外值得注意的是,DBS-ME技术通过减少当前和参考块所需的填充到一个或两个像素,大大减少了ME过程所需的计算量。此外,该算法的运动场熵比PC-ME低得多,这意味着传输比特率的降低幅度更大。
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