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A full-featured, error-resilient, scalable wavelet video codecbased on the set partitioning in hierarchical trees (SPIHT) algorithm

机译:基于分层树中的集合分区(SPIHT)算法的功能齐全,功能强大的,可容错的小波视频编解码器

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Compressed video bitstreams require protection from channel errors in a wireless channel. The 3-D set partitioning in hierarchical trees (SPIHT) coder has proved its efficiency and its real-time capability in the compression of video. A forward-error-correcting (FEC) channel (RCPC) code combined with a single automatic-repeat request (ARQ) proved to be an effective means for protecting the bitstream. There were two problems with this scheme: (1) the noiseless reverse channel ARQ may not be feasible in practice and (2) in the absence of channel coding and ARQ, the decoded sequence was hopelessly corrupted even for relatively clean channels. We eliminate the need for ARQ by making the 3-D SPIHT bitstream more robust and resistant to channel errors. We first break the wavelet transform into a number of spatio-temporal tree blocks which can be encoded and decoded independently by the 3-D SPIHT algorithm. This procedure brings the added benefit of parallelization of the compression and decompression algorithms, and enables implementation of region-based coding. We demonstrate the packetization of the bitstream and the reorganization of these packets to achieve scalability in bit rate and/or resolution in addition to robustness. Then we encode each packet with a channel code. Not only does this protect the integrity of the packets in most cases, but it also allows detection of packet-decoding failures, so that only the cleanly recovered packets are reconstructed. In extensive comparative tests, the reconstructed video is shown to be superior to that of MPEG-2, with the margin of superiority growing substantially as the channel becomes noisier. Furthermore, the parallelization makes possible real-time implementation in hardware and software
机译:压缩视频比特流需要保护以防止无线信道中的信道错误。分层树中的3-D集分区(SPIHT)编码器已证明了其在视频压缩中的效率和实时能力。事实证明,将前向纠错(FEC)信道(RCPC)代码与单个自动重复请求(ARQ)结合使用是保护位流的有效手段。该方案存在两个问题:(1)无噪声反向信道ARQ在实践中可能不可行;(2)在没有信道编码和ARQ的情况下,即使对于相对干净的信道,解码序列也无可避免地受到破坏。通过使3-D SPIHT比特流更健壮并能抵抗信道错误,我们消除了对ARQ的需求。我们首先将小波变换分解为多个时空树块,这些树块可以通过3-D SPIHT算法独立进行编码和解码。该过程带来了压缩和解压缩算法并行化的额外好处,并实现了基于区域的编码。我们展示了比特流的分组化以及这些分组的重组,以实现除鲁棒性之外的比特率和/或分辨率的可扩展性。然后,我们使用通道代码对每个数据包进行编码。这不仅在大多数情况下保护了数据包的完整性,而且还允许检测数据包解码失败,从而仅重建干净恢复的数据包。在广泛的比较测试中,重建的视频显示出优于MPEG-2的视频,并且随着频道变得越来越嘈杂,优势的余地大大增加。此外,并行化使得可以在硬件和软件中实时实施

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