On massive MIMO physical layer cryptosystem

Ron Steinfeld, A. Sakzad
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引用次数: 5

Abstract

In this paper, we present a zero-forcing (ZF) attack on the physical layer cryptography scheme based on massive multiple-input multiple-output (MIMO). The scheme uses singular value decomposition (SVD) precoder. We show that the eavesdropper can decrypt/decode the information data under the same condition as the legitimate receiver. We then study the advantage for decoding by the legitimate user over the eavesdropper in a generalized scheme using an arbitrary precoder at the transmitter. On the negative side, we show that if the eavesdropper uses a number of receive antennas much larger than the number of legitimate user antennas, then there is no advantage, independent of the precoding scheme employed at the transmitter. On the positive side, for the case where the adversary is limited to have the same number of antennas as legitimate users, we give an O(n2) upper bound on the advantage and show that this bound can be approached using an inverse precoder.
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大规模MIMO物理层密码系统研究
在本文中,我们提出了一种针对大规模多输入多输出(MIMO)的物理层加密方案的零强迫(zero-forcing, ZF)攻击。该方案采用奇异值分解(SVD)预编码器。我们证明了窃听者可以在与合法接收方相同的条件下解密/解码信息数据。然后,我们研究了合法用户在发射机使用任意预编码器的通用方案中解码的优势。在消极方面,我们表明,如果窃听者使用的接收天线数量远远大于合法用户天线的数量,那么没有任何优势,与发射器采用的预编码方案无关。在积极的方面,对于对手被限制具有与合法用户相同数量的天线的情况,我们给出了优势的O(n2)上限,并表明可以使用逆预编码器接近该上限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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