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Iterative error detection and correction of H.263 coded video for wireless networks

机译:无线网络中H.263编码视频的迭代错误检测和纠正

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Due to the use of variable length code (VLC), a single bit error in the discrete cosine transform (DCT)-based coded bit stream, such as H.263, may propagate up to the end of the group of blocks (GOBs) or slice. In this paper, we propose an iterative error detection and correction algorithm for the slice mode of the H.263 bit stream. The visibly erroneous macroblocks (MBs) in the decoded frames are detected by checking a set of error detection conditions derived from the redundant information (such as neighboring MBs and inner-DCT block similarity measure) inherent within the frame. In each slice, the part of the bit stream before the first erroneous MB is decoded in the conventional manner. The remaining part after this MB is redecoded iteratively, skipping one bit at a time until a decodable subbit stream is found. In case an MB is nondecodable, it is replaced with gray level. Once all the slices are checked, the frame is reconstructed and again checked for erroneous MBs. This process is repeated until the decoder detects no more corrupted MB. The proposed step-by-step decoding technique limits the error into a few MBs only, which can easily be concealed by any error concealment technique. The simulation results demonstrate that our scheme can recover the corrupted frames under the bit error rates up to 1% over binary symmetric channel (BSC), and improve the concealed picture quality by 4-6 dB over the conventional methods.
机译:由于使用了可变长度代码(VLC),基于离散余弦变换(DCT)的编码比特流(例如H.263)中的单个比特错误可能会传播到块组(GOB)的末尾或切片。在本文中,我们针对H.263比特流的条带模式提出了一种迭代错误检测和校正算法。通过检查从帧内固有的冗余信息(例如,相邻MB和内部DCT块相似性度量)得出的一组错误检测条件,可以检测出解码帧中的明显错误的宏块(MB)。在每个切片中,以传统方式解码第一错误MB之前的比特流部分。对该MB之后的其余部分进行迭代重新编码,一次跳过一位,直到找到可解码的子位流。如果MB是不可解码的,则将其替换为灰度。一旦检查完所有切片,就重新构建帧,然后再次检查错误的MB。重复此过程,直到解码器不再检测到损坏的MB。所提出的逐步解码技术将错误限制为仅几个MB,任何错误隐藏技术都可以轻松地将其隐藏。仿真结果表明,该方案可以在二进制对称信道(BSC)上以高达1%的误码率恢复损坏的帧,并且与传统方法相比,可以将隐藏的图像质量提高4-6 dB。

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