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Intra-Prediction Mode Propagation for Video Coding

机译:视频编码的帧内预测模式传播

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Intra-prediction and inter-prediction are two major ways of prediction in video coding. In the state-of-the-art video coding schemes such as joint exploration model (JEM), these two kinds of prediction are performed independently as different modes. An inter-coded coding unit (CU) is only assigned with the motion information, without an intra-prediction mode (IPM). To capture the texture direction in an inter-coded CU with low complexity, we present an IPM propagation approach in this paper. In the proposed scheme, each 4 x 4 sub-block in an inter-coded CU is assigned with a propagated IPM, which is fetched from a reference block, located by a motion vector. The propagated IPM is utilized in two aspects. First, the propagated IPM can help to perform inter-intra-prediction in the inter-coded CU. Inter-prediction controlled by the motion information and intra-prediction controlled by the propagated IPM are both performed. The final prediction is generated by a position-dependent weighted sum of the two kinds of prediction. Second, the propagated IPMs of neighboring inter-coded blocks can help to predict the IPM of the intra-coded CU in an inter-picture. The propagated IPM of an inter-coded neighboring block can also be treated as a most probable mode. Simulation results show that BD rate savings of 0.5%, 1.0%, and 1.0% on average for Y, Cb, and Cr components, respectively, are achieved in random access configurations under the common test condition, compared with JEM-7.1. On ultra-high definition sequences, the BD rate savings can reach 1.0%, 1.7%, and 2.3% for Y, Cb, and Cr components, respectively.
机译:帧内预测和帧间预测是视频编码中预测的两种主要方式。在诸如联合探索模型(JEM)之类的最新视频编码方案中,这两种预测是作为不同的模式独立进行的。帧间编码单元(CU)仅分配有运动信息,而没有帧内预测模式(IPM)。为了以低复杂度捕获帧间编码CU中的纹理方向,我们在本文中提出了一种IPM传播方法。在提出的方案中,帧间编码的CU中的每个4 x 4子块都分配有传播的IPM,该IPM是从参考块中提取的,由运动矢量定位。在两个方面利用传播的IPM。首先,传播的IPM可以帮助在帧间编码的CU中执行帧间预测。由运动信息控制的帧间预测和由传播的IPM控制的帧内预测都被执行。最终预测是通过两种预测的位置相关加权和生成的。其次,相邻的帧间编码块的传播的IPM可以帮助预测帧间图像中帧内编码的CU的IPM。帧间编码的相邻块的传播的IPM也可以被视为最可能的模式。仿真结果表明,与JEM-7.1相比,在普通测试条件下的随机访问配置中,Y,Cb和Cr组件的BD率平均分别节省了0.5%,1.0%和1.0%。在超高清序列上,Y,Cb和Cr成分的BD率节省分别达到1.0%,1.7%和2.3%。

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