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Multiple access wiretap channel with noiseless feedback

机译:多路窃听通道,无噪音反馈

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The physical layer security in the up-link of the wireless communication systems is often modelled as the multiple access wiretap channel (MAC-WT), and recently it has received a lot attention. In this paper, the MAC-WT has been re-visited by considering the situation that the legitimate receiver feeds his received channel output back to the transmitters via two noiseless channels, respectively. This model is called the MAC-WT with noiseless feedback. Inner and outer bounds on the secrecy capacity region of this feedback model are provided. To be specific, we first present a decode-and-forward (DF) inner bound on the secrecy capacity region of this feedback model, and this bound is constructed by allowing each transmitter to decode the other one's transmitted message from the feedback, and then each transmitter uses the decoded message to re-encode his own messages, i.e. this DF inner bound allows the independent transmitters to co-operate with each other. Then, we provide a hybrid inner bound which is strictly larger than the DF inner bound, and it is constructed by using the feedback as a tool not only to allow the independent transmitters to co-operate with each other but also to generate two secret keys, respectively, shared between the legitimate receiver and the two transmitters. Finally, we give a sato-type outer bound on the secrecy capacity region of this feedback model. The results of this paper are further explained via a Gaussian example, and from this example, we see that the noiseless feedback helps to enhance the achievable secrecy rate region of the Gaussian MAC-WT without feedback.
机译:无线通信系统的上行链路中的物理层安全性通常被建模为多址窃听通道(MAC-WT),并且近来受到了很多关注。在本文中,通过考虑以下情况重新访问了MAC-WT:合法接收机分别通过两个无噪声信道将其接收的信道输出反馈给发射机。该模型称为具有无噪声反馈的MAC-WT。提供了此反馈模型的保密能力区域的内界和外界。具体来说,我们首先在此反馈模型的保密能力区域上提出一个解码转发(DF)内边界,并通过允许每个发送器从反馈中解码另一个人的已发送消息来构造此边界,然后每个发送器都使用解码后的消息来重新编码自己的消息,即该DF内边界允许独立的发送器相互协作。然后,我们提供了一个严格大于DF内部边界的混合内部边界,它是通过使用反馈作为一种工具构造的,它不仅允许独立的发送器相互协作,而且还可以生成两个秘密密钥分别在合法接收方和两个发送方之间共享。最后,我们在此反馈模型的保密能力区域上给出了一个佐藤型外边界。本文的结果通过一个高斯例子进一步解释,从这个例子中,我们看到无噪声反馈有助于增强无反馈的高斯MAC-WT的可达到的保密率区域。

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