Variable-length compression and secrecy by design

Yanina Y. Shkel, Rick S. Blum, H. Poor
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引用次数: 1

Abstract

The framework of secrecy by design is introduced and the fundamental limits of lossless data compression are characterized for this setting. The main idea behind secrecy by design is to begin with an operational secrecy constraint, which is modeled by a secrecy function fs, and then to derive fundamental limits for the performance of the resulting secrecy system. In the setting of lossless compression, it is shown that strong information-theoretic secrecy guarantees can be achieved using a reduced secret key size and a modular two-part coding strategy. Focusing on the non-asymptotic fundamental limits of lossless compression, variable-length lossless compression is studied. It is noted that completely lossless compression is not possible when perfect secrecy is required; however, it becomes meaningful under partial secrecy constraints. Moreover, although it is well known that the traditional fundamental limits of variable-length and almost lossless fixed-length compression are intimately related, this relationship collapses once the secrecy constraint is incorporated.
可变长度压缩和保密设计
介绍了设计保密的框架,并对这种设置下无损数据压缩的基本限制进行了分析。设计保密背后的主要思想是从操作保密约束开始,该约束由保密函数fs建模,然后推导出最终保密系统性能的基本限制。在无损压缩的情况下,通过减小密钥大小和采用模块化的两部分编码策略,可以实现强大的信息论保密保证。针对无损压缩的非渐近基本极限,研究了变长无损压缩。需要注意的是,当需要完全保密时,完全无损压缩是不可能的;然而,它在部分保密约束下变得有意义。此外,尽管众所周知,变长度压缩和几乎无损的固定长度压缩的传统基本限制密切相关,但一旦纳入保密约束,这种关系就会崩溃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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