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Motion Compensated Two-link Chain Coding for Binary Shape Sequence

机译:二进制形状序列的运动补偿两链链编码

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In this paper, we present a motion compensated two-link chain coding technique to effectively encode 2-D binary shape sequences for object-based video coding. This technique consists of a contour motion estimation and compensation algorithm and a two-link chain coding algorithm. The object contour is defined on a 6-connected contour lattice for a smoother contour representation. The contour in the current frame is first predicted by global motion and local motion based on the decoded contour in the previous frame; then, it is segmented into motion success segments, which can be predicted by the global motion or the local motion, and motion failure segments, which can not be predicted by the global and local motion. For each motion failure segment, a two-link chain code, which uses one chain code to represent two consecutive contour links, followed by an arithmetic coder is proposed for efficient coding. Each motion success segment can be represented by the motion vector and its length. For contour motion estimation and compensation, besides the translational motion model, an affine global motion model is proposed and investigated for complex global motion. We test the performance of the proposed technique by several MPEG-4 shape test sequences. The experimental results show that our proposed scheme is better than the CAE technique which is applied in the MPEG-4 verification model.
机译:在本文中,我们提出了一种运动补偿的双链接链编码技术,可以有效地对基于对象的视频编码的二维二进制形状序列进行编码。该技术由轮廓运动估计和补偿算法以及两链链编码算法组成。在6个连接的轮廓网格上定义对象轮廓,以实现更平滑的轮廓表示。首先根据全局运动和局部运动根据前一帧中解码后的轮廓预测当前帧中的轮廓;然后,通过全局运动和局部运动来预测当前轮廓。然后,将其分为运动成功段和运动失败段,运动成功段可以通过全局运动或局部运动进行预测,而运动失败段不能通过全局运动或局部运动进行预测。对于每个运动故障段,提出了一种两链链码,该链码使用一个链码表示两个连续的轮廓链,然后提出了一种算术编码器,以进行有效编码。每个运动成功段可以由运动向量及其长度表示。为了进行轮廓运动的估计和补偿,除了平移运动模型外,还提出了仿射全局运动模型并研究了复杂全局运动。我们通过几个MPEG-4形状测试序列来测试所提出技术的性能。实验结果表明,本文提出的方案优于在MPEG-4验证模型中应用的CAE技术。

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