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Aligned Space Time Block Codes for the 2-User X Channel with Secrecy Constraints

机译:对准空间时间块代码,用于具有保密约束的2用户x通道

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摘要

Interference alignment (IA) is a technique used to reduce the dimension of the interference, where consequently the multiplexing rate is increased. In the 2-user X channel, combining IA with space-time block codes increases the diversity gain. These gains are achieved with the cost of leaked information at unintended receivers, where this leaked information can be used to decode other receiver’s signals. In this paper, we consider each of the two two-antenna receivers as an eavesdropper with 1 or 2 additional eavesdropping antennas. As such, we suggest receiver structures to answer the question: “Is the leaked information sufficient to properly decode the unintended signals?” besides quantifying the leaked information in terms of secrecy sum rates (SSR). Interestingly, we show that the SSR is negative, indicating that the quality of the eavesdropped signals is superior to that of the intended signals. To assure confidentiality, we propose an interleaved multiple rotation-based transformation scheme that neutralizes any a priori knowledge about the structure of the eavesdropped information and rotates the transmitted symbols using orthogonal matrices, preserving both the power and the distance between symbols.
机译:干扰对准(IA)是用于减少干扰尺寸的技术,从而增加了多路复用率。在2用户X通道中,将IA与时空块代码组合增加了分集增益。通过在意外接收器的泄漏信息的成本实现这些增益,其中该泄漏信息可用于解码其他接收器的信号。在本文中,我们将两个双天线接收器中的每一个作为具有1或2个额外窃听天线的窃听器。因此,我们建议接收器结构来回答问题:“是足以正确解码意外信号的泄漏信息是什么?”除了在秘密总和率(SSR)方面的量化信息外。有趣的是,我们表明SSR是否定的,表明窃听信号的质量优于预期信号的质量。为了确保机密性,我们提出了一种交错的基于旋转的转换方案,该转换方案能够与窃听信息的结构中和任何先验知识,并使用正交矩阵旋转发送的符号,保留符号之间的功率和距离。

著录项

  • 作者

    Manar Mohaisen;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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