Weakly universal LZ-extended codes for sources with countable alphabet

R. Bansal, J. Sau
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引用次数: 1

Abstract

We consider the problem of designing weakly universal codes for stationary and ergodic processes with countable alphabet and present a set of algorithms. First two algorithms use a combination of an integer coding algorithm and Lempel-Ziv algorithms (incremental parsing based algorithm and one based on recurrence times). Third algorithm converts the source into a finite alphabet process in step one through an integer coding algorithm and then uses LZ-78 in second step. Asymptotic optimality of all three is proved in full generality. We make use of Shannon-McMillan-Breiman theorem for countable alphabet and its extension for asymptotically mean stationary processes
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可数字母源的弱通用lz扩展码
研究了具有可数字母的平稳遍历过程的弱通用码设计问题,并给出了一组算法。前两种算法使用整数编码算法和Lempel-Ziv算法(基于增量解析的算法和基于递归时间的算法)的组合。第三种算法在第一步通过整数编码算法将源转换为有限字母过程,然后在第二步使用LZ-78。充分证明了三者的渐近最优性。利用可数字母的Shannon-McMillan-Breiman定理及其对渐近平均平稳过程的推广
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