利用干扰对准提高分布式存储系统的完美保密性

Natasha Paunkoska, V. Kafedziski, N. Marina
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引用次数: 3

摘要

基于无线干扰信道干扰对准方法的编码再生实现了分布式存储系统的割集约束。这些代码对于最小存储再生(MSR)代码中故障节点的有效修复尤为重要。此外,它们对窃听者的攻击具有完美的安全性,即观察者无法泄露整个消息。这里的目的是在攻击者可以访问有限数量的存储节点时,保护单个文件和小组免受整个消息的影响。本文考虑了如何提高这种决策支持系统的安全性。通过使用一个外部和一个内部代码进行显式的代码构造来增强保密性。所提出的结构代码模型包括作为外部代码或预编码步骤的辅助集代码,以确保系统的安全性,以及作为内部代码的MSR干扰对齐代码,以执行有效的重建和修复过程。使用这种结构,我们证明了窃听者不能泄露消息,并且他不能从原始消息中访问任何单个信息的子集,而不会造成存储容量的重大损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved perfect secrecy of distributed storage systems using interference alignment
Regenerating codes based on the approach of interference alignment for wireless interference channel achieve the cut-set bound for distributed storage systems (DSS). These codes are especially important for efficient repair of a failed node in a minimum storage regenerating (MSR) codes. Moreover, they achieve perfect security against the eavesdropper attacks, i.e., the observer can not reveal the whole message. Here the aim is information protection of individual files and small groups from the entire message, when the attacker has access to a limited number of storage nodes. This paper considers improving the perfect security in such DSS. The enhanced secrecy is presented by performing explicit code construction by using an outer and an inner code. The proposed construction code model includes coset code as an outer code or pre-coding step that ensures the security of the system and an MSR interference alignment code as an inner one that performs an efficient reconstruction and repair process. Using this construction we show that the eavesdropper can not reveal the message, and, that he can not access any subset of individual information from the original message, without any significant loss in the storage capacity.
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