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On the Individual Secrecy Capacity Regions of the General, Degraded, and Gaussian Multi-Receiver Wiretap Broadcast Channel

机译:通用,降级和高斯多接收机窃听广播信道的个人保密能力区域

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In this paper, secure communication over a broadcast channel with multiple legitimate receivers and an external eavesdropper is investigated. Two different secrecy measures are considered. The first criterion is a conservative one known as joint secrecy, where the mutual leakage of all confidential messages must be small. The second criterion is a less conservative constraint known as individual secrecy, where the individual leakage of each confidential message must be small. At first, we consider the degraded multi-receiver wiretap broadcast channel and manage to establish the individual secrecy capacity region. Our encoding scheme applies a careful combination of the standard techniques of wiretap random coding and Shannon’s one time pad encoding, where the confidential messages of the weak receivers are used as secret keys for the stronger ones. The validity of this technique is due to the properties of the degraded broadcast channel and the secrecy requirements of the individual secrecy criterion. Our result indicates that the individual secrecy capacity region is in fact larger than the joint one established in earlier literature. The established capacity region is then used to derive the individual secrecy capacity regions of the Gaussian single-input single-output and degraded Gaussian multiple-input multiple-output multi-receiver wiretap broadcast channels. Furthermore, we present an achievable rate region for the general two-receiver wiretap broadcast channel under both the joint and the individual secrecy criterion. Comparing these two rate regions suggests that even for the general case, the individual secrecy criterion might be able to provide a larger rate region compared with the joint one.
机译:在本文中,研究了具有多个合法接收者和一个外部窃听者的广播信道上的安全通信。考虑了两种不同的保密措施。第一个标准是被称为联合保密的保守标准,其中所有机密消息的相互泄漏必须很小。第二个标准是不那么保守的约束,称为个人保密,其中每个机密消息的个人泄漏必须很小。首先,我们考虑降级的多接收机窃听广播信道并设法建立个人保密能力区域。我们的编码方案将窃听随机编码的标准技术与Shannon的一次时码编码进行了仔细的结合,弱接收者的机密消息被用作强接收者的秘密密钥。该技术的有效性归因于降级的广播信道的属性以及各个保密标准的保密要求。我们的结果表明,个人保密能力区域实际上大于早期文献中建立的联合区域。然后,使用已建立的容量区域来推导高斯单输入单输出和降级的高斯多输入多输出多接收机窃听广播信道的各个保密容量区域。此外,我们提出了在联合和个人保密标准下,通用的两接收机窃听广播信道可达到的速率区域。比较这两个速率区域表明,即使对于一般情况,与联合连接相比,单独的保密标准可能也可以提供更大的速率区域。

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