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A hybrid error control and artifact detection mechanism for robust decoding of H.264/AVC video sequences

机译:H.264 / AVC视频序列的鲁棒解码的混合错误控制和伪像检测机制

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摘要

This letter presents a hybrid error control and artifact detection (HECAD) mechanism which can be used to enhance the error resilient capabilities of the standard H.264/advanced video coding (AVC) codec. The proposed solution first exploits the residual source redundancy to recover the most likelihood H.264/AVC bitstream. If error recovery is unsuccessful, the residual corrupted slices are then passed through a pixel-level artifact detection mechanism to detect the visually impaired macroblocks to be concealed. The proposed HECAD algorithm achieves overall peak signal-to-noise ratio gains between 0.4 dB and 4.5 dB relative to the standard with no additional bandwidth requirement. The cost of this solution translates in a marginal increase in the complexity of the decoder. In addition, this method can be applied in conjunction with other error resilient strategies and scales well with different encoding configurations.
机译:这封信提出了一种混合错误控制和伪像检测(HECAD)机制,可用于增强标准H.264 /高级视频编码(AVC)编解码器的抗错能力。提出的解决方案首先利用残余源冗余来恢复最可能的H.264 / AVC比特流。如果错误恢复不成功,则将剩余的损坏切片通过像素级伪像检测机制,以检测要隐藏的视觉受损宏块。相对于标准,提出的HECAD算法可在0.4 dB至4.5 dB的范围内获得整体峰值信噪比增益,而无需额外的带宽要求。该解决方案的成本导致解码器的复杂性略有增加。此外,此方法可以与其他错误恢复策略结合使用,并且可以在不同的编码配置下很好地缩放。

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