IEEE Trans Image Process. 2012 Aug;21(8):3560-72. doi: 10.1109/TIP.2012.2191568. Epub 2012 Mar 21.
Conventional video compression relies on interframe prediction (motion estimation), intra frame prediction and variable-length entropy encoding to achieve high compression ratios but, as a consequence, produces an encoded bitstream that is inherently sensitive to channel errors. In order to ensure reliable delivery over lossy channels, it is necessary to invoke various additional error detection and correction methods. In contrast, techniques such as Pyramid Vector Quantisation have the ability to prevent error propagation through the use of fixed length codewords. This paper introduces an efficient rate distortion optimisation algorithm for intra-mode PVQ which offers similar compression performance to intra H.264/AVC and Motion JPEG 2000 while offering inherent error resilience. The performance of our enhanced codec is evaluated for HD content in the context of a realistic (IEEE 802.11n) wireless environment. We show that PVQ provides high tolerance to corrupted data compared to the state of the art while obviating the need for complex encoding tools.
传统的视频压缩依赖于帧间预测(运动估计)、帧内预测和变长熵编码来实现高压缩比,但因此产生的编码比特流对信道错误非常敏感。为了确保在有损信道上可靠传输,需要调用各种额外的错误检测和纠错方法。相比之下,像金字塔矢量量化这样的技术具有通过使用固定长度码字来防止错误传播的能力。本文介绍了一种有效的帧内模式 PVQ 的率失真优化算法,它在提供与 H.264/AVC 帧内和 Motion JPEG 2000 类似的压缩性能的同时,还提供了固有的差错弹性。我们的增强型编解码器的性能在一个现实的(IEEE 802.11n)无线环境下的 HD 内容中进行了评估。我们表明,与现有技术相比,PVQ 对损坏的数据具有很高的容忍度,同时避免了复杂的编码工具的需求。