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Universal Secure Network Coding via Rank-Metric Codes

机译:通过等级度量代码进行通用安全网络编码

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The problem of securing a network coding communication system against an eavesdropper is considered. The network implements linear network coding to deliver $n$ packets from source to each receiver, and the adversary can eavesdrop on $mu$ arbitrarily chosen links. The objective is to provide reliable communication to all receivers, while guaranteeing that the source information remains information-theoretically secure from the adversary. A coding scheme is proposed that can achieve the maximum possible rate of $n-mu$ packets. The scheme, which is based on rank-metric codes, has the distinctive property of being universal: it can be applied on top of any communication network without requiring knowledge of or any modifications on the underlying linear network code. The only requirement of the scheme is that the packet length be at least $n$, which is shown to be strictly necessary for universal communication at the maximum rate. A further scenario is considered where the adversary is allowed not only to eavesdrop but also to inject up to $t$ erroneous packets into the network, and the network may suffer from a rank deficiency of at most $rho$. In this case, the proposed scheme can be extended to achieve the rate of $n-rho-2t-mu$ packets. This rate is shown to be optimal under the assumption of zero-error communication.
机译:考虑了防止网络编码通信系统受到窃听者攻击的问题。该网络执行线性网络编码,以将$ n $个数据包从源传送到每个接收者,并且对手可以窃听$ mu $任意选择的链接。目的是向所有接收者提供可靠的通信,同时确保源信息在理论上保持对敌人的安全。提出了一种编码方案,该方案可以实现$ n-mu $个数据包的最大可能速率。该方案基于等级度量代码,具有通用的独特特性:它可以应用于任何通信网络之上,而无需了解底层线性网络代码或对其进行任何修改。该方案的唯一要求是数据包长度至少为$ n $,这对于以最大速率进行通用通信是绝对必要的。考虑了另一种情况,其中不仅允许对手窃听,而且还允许将最多$ t $个错误的数据包注入网络,并且网络可能遭受至多$ rho $的秩缺陷。在这种情况下,可以扩展提出的方案以实现$ n-rho-2t-mu $数据包的速率。在零错误通信的假设下,该速率显示为最佳。

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