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On Multiple-Input Multiple-Output Gaussian Channels with Arbitrary Inputs Subject to Jamming

机译:在多输入多输出高斯通道上,随意输入符合干扰

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This paper considers communication over channels subject to jamming. By capitalizing on the relationship between the mutual information and the minimum mean-squared error (MMSE), we investigate the interference covariance that minimizes the mutual information of a deterministic multiple-input multiple-output (MIMO) channel subject to Gaussian noise and Gaussian interference with arbitrary (not necessarily Gaussian) input distributions. We show that the worst interference covariance satisfies a fixed-point equation involving key system quantities, including the MMSE matrix. We also specialize the form of the worst interference covariance to the asymptotic regimes of low and high snr. We demonstrate that in the low-snr regime the worst interference covariance injects an appropriate amount of power directly into the channel eigenmodes. In contrast, in the high-snr regime the worst interference covariance minimizes the minimum distance between a modified version of the constellation vectors. Numerical results illustrate that optimization of the interference covariance has the potential to substantially decrease the reliable information transmission rate between a transmitter-receiver pair. The results are also applicable to scenarios where a jammer aims to impair the secrecy rate of wiretap channels.
机译:本文考虑了通过干扰的渠道的沟通。通过利用相互信息和最小平均误差(MMSE)之间的关系,我们研究了最小化了通过高斯噪声和高斯干扰的确定性多输入多输出(MIMO)信道的互信息的干扰协方差任意(不一定是高斯)输入分布。我们表明最差的干扰协方差满足涉及关键系统数量的定点方程,包括MMSE矩阵。我们还专注于最严重的干扰协方面与低SNR的渐近制度的形式。我们证明,在低SNR制度中,最差的干扰协方差将适量的电力直接注入通道特征。相反,在高SNR制度中,最差的干扰协方差最小化了星座向量的修改版本之间的最小距离。数值结果示出了干扰协方差的优化具有基本上降低发射机接收器对之间的可靠信息传输速率的可能性。结果也适用于干扰器旨在损害窃听通道秘密率的情况。

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