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Error-Resilient First-Order Multiplexed Source Codes: Performance Bounds, Design and Decoding Algorithms

机译:容错的一阶多路复用源代码:性能界限,设计和解码算法

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摘要

This paper describes a new family of error-resilient variable-length source codes (VLCs). The codes introduced can be regarded as generalizations of the multiplexed codes described by Jegou and Guillemot. They allow to exploit first-order source statistics while, at the same time, being resilient to transmission errors. The design principle consists of creating a codebook of fixed-length codewords (FLCs) for high-priority information and in using the inherent codebook redundancy to describe low-priority information. The FLC codebook is partitioned into equivalence classes according to the conditional probabilities of the high-priority source. The error propagation phenomenon, which may result from the memory of the source coder, is controlled by choosing appropriate codebook partitions and index assignment strategies. In particular, a context-dependent index assignment strategy, called crossed-index assignment, is described. For the symbol error rate criterion, the approach turns out to maximize the cardinality of a set of codewords, called the code kernel, offering synchronization properties. The decoder resynchronization capability is shown to be further increased by periodic use of memoryless multiplexed codes. Theoretical and practical performances in terms of compression efficiency and error resilience are analyzed.
机译:本文介绍了一个新系列的具有容错能力的可变长度源代码(VLC)。引入的代码可视为Jegou和Guillemot描述的多路复用代码的概括。它们允许利用一阶源统计信息,同时还能抵抗传输错误。设计原理包括创建用于高优先级信息的固定长度码字(FLC)的码本,以及使用固有码本冗余来描述低优先级信息。根据高优先级源的条件概率,将FLC码本分为等效类。通过选择适当的码本分区和索引分配策略,可以控制可能由源编码器的内存引起的错误传播现象。特别地,描述了一种上下文相关的索引分配策略,称为交叉索引分配。对于符号错误率准则,该方法证明是最大化一组代码字(称为代码内核)的基数,从而提供同步属性。通过周期性地使用无存储器的多路复用代码,可以进一步提高解码器的重新同步能力。分析了压缩效率和错误恢复能力方面的理论和实际性能。

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