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Optimal Beamforming for Gaussian MIMO Wiretap Channels With Two Transmit Antennas

机译:具有两个发射天线的高斯MIMO窃听信道的最佳波束成形

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摘要

A Gaussian multiple-input multiple-output wiretap channel in which the eavesdropper and legitimate receiver are equipped with arbitrary numbers of antennas and the transmitter has two antennas is studied in this paper. The input covariance matrix that achieves the secrecy capacity is determined. In particular, it is shown that the secrecy capacity of this channel can be achieved by linear precoding. Precoding and power allocation schemes that maximize the achievable secrecy rate, and thus achieve the secrecy capacity, are developed. The secrecy capacity is then compared with the achievable secrecy rate of generalized singular value decomposition (GSVD)-based precoding, which is the best previously proposed technique for this problem. Numerical results demonstrate that substantial gain can be obtained in secrecy rate between the proposed and GSVD-based precodings.
机译:本文研究了一个高斯多输入多输出窃听通道,其中窃听者和合法接收者配备有任意数量的天线,而发送者有两个天线。确定实现保密能力的输入协方差矩阵。特别地,示出了可以通过线性预编码来实现该信道的保密容量。开发了使可达到的保密率最大化并因此实现保密容量的预编码和功率分配方案。然后将保密容量与基于广义奇异值分解(GSVD)的预编码可达到的保密率进行比较,这是针对此问题的先前提出的最佳技术。数值结果表明,在所提出的和基于GSVD的预编码之间的保密速率上可以获得实质性的收益。

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