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The successively temporal error concealment algorithm using error-adaptive block matching principle

机译:基于错误自适应块匹配原理的逐次时间错误隐藏算法

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摘要

Generally, the temporal error concealment (TEC) adopts the blocks around the corrupted block (CB) as the search pattern to find the best-match block in previous frame. Once the CB is recovered, it is referred to as the recovered block (RB). Although RB can be the search pattern to find the best-match block of another CB, RB is not the same as its original block (OB). The error between the RB and its OB limits the performance of TEC. The successively temporal error concealment (STEC) algorithm is proposed to alleviate this error. The STEC procedure consists of tier-1 and tier-2. The tier-1 divides a corrupted macroblock into four corrupted 8 × 8 blocks and generates a recovering order for them. The corrupted 8×8 block with the first place of recovering order is recovered in tier-1, and remaining 8×8 CBs are recovered in tier-2 along the recovering order. In tier-2, the error-adaptive block matching principle (EA-BMP) is proposed for the RB as the search pattern to recover remaining corrupted 8×8 blocks. The proposed STEC outperforms sophisticated TEC algorithms on average PSNR by 0.3 dB on the packet error rate of 20% at least.
机译:通常,时间错误隐藏(TEC)采用损坏块(CB)周围的块作为搜索模式,以找到前一帧中的最佳匹配块。一旦恢复了CB,就将其称为恢复块(RB)。尽管RB可以作为查找另一个CB的最佳匹配块的搜索模式,但是RB与它的原始块(OB)不同。 RB及其OB之间的误差限制了TEC的性能。提出了逐次时间错误隐藏(STEC)算法来减轻该错误。 STEC程序由1级和2级组成。层1将损坏的宏块划分为四个损坏的8×8块,并为其生成恢复顺序。具有恢复顺序第一位的损坏的8×8块将在第1层中恢复,而其余的8×8 CB将按照恢复顺序在第2层中被恢复。在第2层中,针对RB提出了错误自适应块匹配原理(EA-BMP)作为搜索模式,以恢复剩余的损坏的8×8块。拟议的STEC在至少20%的包错误率上,在平均PSNR方面优于复杂的TEC算法0.3 dB。

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