首页> 外文期刊>Intelligence: A Multidisciplinary Journal >Fast depth intra coding based on spatial correlation and rate distortion cost in 3D-HEVC
【24h】

Fast depth intra coding based on spatial correlation and rate distortion cost in 3D-HEVC

机译:基于3D-HEVC的空间相关性和速率失真成本的快速深度帧内编码

获取原文
获取原文并翻译 | 示例
       

摘要

3D-HEVC video coding standard adopts many sophisticated algorithms to improve the coding performance, which results in heavy calculation complexity. To reduce the computation burden, a complexity reduction scheme for depth map based on spatial correlation and the rate-distortion (RD) cost is proposed. Firstly, A maximum depth layer decision (MDLD) algorithm is proposed to predict the maximum depth layer (MDL) of each coding tree unit (CTU) accurately. Using the frequency distribution histogram theory in the statistics, the frequency distribution characteristics (FDC) of the RDcost J(0) of the CTU level in depth layer 0 is investigated under different MDL The initial threshold for different MDL is designed based on the FDC of the J(0) under allowable false rate (FR). An exponential relationship between the threshold and QP is discovered. Secondly, A fast depth intra mode decision (FDIMD) algorithm is proposed to skip unnecessary prediction modes. Considering the spatial correlation, the FDC of the RDcost J(ORM) of the optimal rough mode (ORM) in rough mode decision (RMD) is analyzed under different optimal prediction mode. Based on the FDC of the J(ORM) the mode-skipping threshold T H-st is designed to skip angular modes and depth modeling modes (DMMs). An exponential model is built to represent the relationship between the T H-st and QP. Finally, a fast wedgelet pattern decision method based on K-Means is developed to reduce the complexity of DMM1. Experimental results show that the proposed algorithm achieves an average reduction of 58.9% on intra coding time, with negligible degradation of coding performance. The proposed algorithm performs better in terms of complexity and performance than other approaches.
机译:3D-HEVC视频编码标准采用许多复杂的算法来提高编码性能,从而导致重大计算复杂性。为了减少计算负担,提出了基于空间相关性和速率失真(RD)成本的深度图的复杂性降低方案。首先,提出了最大深度层判定(MDLD)算法以准确地预测每个编码树单元(CTU)的最大深度层(MDL)。在统计中使用频率分布直方图理论,在不同的MDL下研究深度层0中的CTU电平的RDCOST j(0)的频率分布特性(FDC)在不同MDL的初始阈值基于FDC设计允许假速率(FR)下的J(0)。发现阈值和QP之间的指数关系。其次,提出了一种快速深度帧内模式判定(FDIMD)算法以跳过不必要的预测模式。考虑到空间相关性,在不同的最佳预测模式下分析了粗糙模式判定(RMD)中最佳粗糙模式(ORM)的RDCost j(ORM)的FDC。基于J(ORM)的FDC,模式跳过阈值T H-ST被设计为跳过角度模式和深度建模模式(DMMS)。构建指数模型以表示T H-ST和QP之间的关系。最后,开发了一种基于K-Means的快速楔形模式决策方法以降低DMM1的复杂性。实验结果表明,该算法在编码时间内实现了58.9%的平均降低,编码性能下降可忽略不计。所提出的算法在复杂性和性能方面比其他方法更好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号