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首页> 外文期刊>IEEE Transactions on Information Theory >Discrete Memoryless Interference and Broadcast Channels With Confidential Messages: Secrecy Rate Regions
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Discrete Memoryless Interference and Broadcast Channels With Confidential Messages: Secrecy Rate Regions

机译:具有机密消息的离散无记忆干扰和广播信道:保密率区域

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摘要

We study information-theoretic security for discrete memoryless interference and broadcast channels with independent confidential messages sent to two receivers. Confidential messages are transmitted to their respective receivers while ensuring mutual information-theoretic secrecy. That is, each receiver is kept in total ignorance with respect to the message intended for the other receiver. The secrecy level is measured by the equivocation rate at the eavesdropping receiver. In this paper, we present inner and outer bounds on secrecy capacity regions for these two communication systems. The derived outer bounds have an identical mutual information expression that applies to both channel models. The difference is in the input distributions over which the expression is optimized. The inner bound rate regions are achieved by random binning techniques. For the broadcast channel, a double-binning coding scheme allows for both joint encoding and preserving of confidentiality. Furthermore, we show that, for a special case of the interference channel, referred to as the switch channel, derived bounds meet. Finally, we describe several transmission schemes for Gaussian interference channels and derive their achievable rate regions while ensuring mutual information-theoretic secrecy. An encoding scheme in which transmitters dedicate some of their power to create artificial noise is proposed and shown to outperform both time-sharing and simple multiplexed transmission of the confidential messages.
机译:我们研究了离散无记忆干扰和广播信道的信息理论安全性,这些信道具有发送给两个接收器的独立机密消息。机密消息将传输到它们各自的接收者,同时确保相互信息理论的机密性。就是说,每个接收者对打算发送给另一个接收者的消息完全一无所知。保密级别由窃听接收方的混淆率来衡量。在本文中,我们介绍了这两种通信系统的保密容量区域的内边界和外边界。导出的外部边界具有适用于两个通道模型的相同的互信息表达式。区别在于优化表达式的输入分布。内结合率区域是通过随机装箱技术实现的。对于广播频道,双重合并编码方案允许联合编码和保密性。此外,我们表明,对于干扰信道的特殊情况(称为切换信道),导出边界满足。最后,我们描述了几种高斯干扰信道的传输方案,并在确保相互信息理论保密的同时,得出了它们可达到的速率区域。提出了一种编码方案,在该方案中,发射机专用于其一些功率以产生人为噪声,并且表现出比分时和机密消息的简单多路传输都要好。

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