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Encoder complexity reduction with selective motion merge in HEVC.

机译:通过HEVC中的选择性运动合并来减少编码器复杂度。

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摘要

The High Efficiency Video Coding (HEVC) standard is the latest video coding project developed by the Joint Collaborative Team on Video Coding (JCT-VC) which involves the International Telecommunication Unit (ITU-T) Video Coding Experts Group (VCEG) and the ISO/IEC Moving Pictures Experts Group (MPEG) standardization organizations. The HEVC standard is based on the previous widely used H.264/AVC (Advance Video Coding) standard but includes many new tools and improvements in different key areas which has resulted in achieving a 50% bitrate reduction compared to its predecessor amidst maintaining the same visual quality at a cost of increased complexity.;Among the different vital blocks of a video codec the motion estimation and motion compensation blocks are considered as the key and the most complex section. The calculations involving the derivation of motion estimation followed by predictor picture derivation leading to a residual image which is in turn followed by motion compensation using the previously encoded motion information is responsible for consuming a large part of the encoding time and device resource. Since the video signal largely consists of real world objects which have regions of homogeneous motion, the encoder tries to make use of these regions of common motion to bring about a reduction in bitrate. To achieve this reduction the encoder adapts the technique of motion merging which exploit the redundancies among the motion information data obtained through motion estimation. Although the present algorithm used in HEVC is capable of making use of these redundancies they still impose a large computational and encoding time overhead on the codecs affecting the device performance. The thesis proposes an algorithm which selectively performs the motion merging allowing the formation of larger blocks of homogenous motion which reduces the bitrate and also utilizes the typical characteristics of video signal to reduce the encoding time at a cost of little loss of quality. The experimental results based on the proposed algorithm on several test sequences suggest a reduction in encoding time by 14-24%, reduction in bitrate by 2-7% at a little loss of quality by 2-6%. Metrics such as BD-PSNR (Bjontegaard Delta Peak Signal to Noise Ratio), BD-bitrate (Bjontegaard Delta bitrate) are used.
机译:高效视频编码(HEVC)标准是由视频编码联合协作小组(JCT-VC)开发的最新视频编码项目,该项目涉及国际电信单位(ITU-T)视频编码专家组(VCEG)和ISO / IEC运动图像专家组(MPEG)标准化组织。 HEVC标准基于以前广泛使用的H.264 / AVC(高级视频编码)标准,但是在许多关键领域包括许多新工具和改进,与以前的标准相比,其比特率降低了50%视觉质量,但代价是增加了复杂性。在视频编解码器的不同关键块中,运动估计和运动补偿块被视为关键和最复杂的部分。涉及运动估计的推导,随后是导致残差图像的预测图像推导的计算,继而又使用先前编码的运动信息进行运动补偿,这消耗了大部分编码时间和设备资源。由于视频信号主要由具有均匀运动区域的现实世界对象组成,因此编码器尝试利用这些共同运动区域来降低比特率。为了实现这种减少,编码器采用了运动合并技术,该技术利用了通过运动估计获得的运动信息数据之间的冗余。尽管在HEVC中使用的本算法能够利用这些冗余,但是它们仍然对影响设备性能的编解码器施加了很大的计算和编码时间开销。本文提出了一种算法,该算法选择性地执行运动合并,从而允许形成更大的均匀运动块,从而降低比特率,并利用视频信号的典型特性来减少编码时间,而代价是质量损失很小。基于所提出的算法在几个测试序列上的实验结果表明,编码时间减少了14-24%,比特率减少了2-7%,而质量略有下降,减少了2-6%。使用诸如BD-PSNR(Bjontegaard Delta峰值信噪比),BD比特率(Bjontegaard Delta比特率)之类的度量。

著录项

  • 作者

    Hassan Thungaraj, Abhishek.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Electrical engineering.
  • 学位 M.S.
  • 年度 2014
  • 页码 81 p.
  • 总页数 81
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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