Secure Degrees of Freedom for the MIMO Wire-Tap Channel With a Multi-Antenna Cooperative Jammer

Mohamed S. Nafea, A. Yener
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引用次数: 24

Abstract

In this paper, a multiple antenna wire-tap channel in the presence of a multi-antenna cooperative jammer is studied. In particular, the secure degrees of freedom (s.d.o.f.) of this channel is established, with $N_t$ antennas at the transmitter, $N_r$ antennas at the legitimate receiver, and $N_e$ antennas at the eavesdropper, for all possible values of the number of antennas, $N_c$, at the cooperative jammer. In establishing the result, several different ranges of $N_c$ need to be considered separately. The lower and upper bounds for these ranges of $N_c$ are derived, and are shown to be tight. The achievability techniques developed rely on a variety of signaling, beamforming, and alignment techniques which vary according to the (relative) number of antennas at each terminal and whether the s.d.o.f. is integer valued. Specifically, it is shown that, whenever the s.d.o.f. is integer valued, Gaussian signaling for both transmission and cooperative jamming, linear precoding at the transmitter and the cooperative jammer, and linear processing at the legitimate receiver, are sufficient for achieving the s.d.o.f. of the channel. By contrast, when the s.d.o.f. is not an integer, the achievable schemes need to rely on structured signaling at the transmitter and the cooperative jammer, and joint signal space and signal scale alignment. The converse is established by combining an upper bound which allows for full cooperation between the transmitter and the cooperative jammer, with another upper bound which exploits the secrecy and reliability constraints.
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带多天线协同干扰器的MIMO线接信道的安全自由度
本文研究了多天线协同干扰存在下的多天线线接信道。特别地,建立了该信道的安全自由度(s.d.o.f),其中发射机处有$N_t$天线,合法接收机处有$N_r$天线,窃听者处有$N_e$天线,对于所有可能的天线数$N_c$,合作干扰机处有$N_c$。在建立结果时,需要分别考虑几个不同的$N_c$范围。我们推导了这些$N_c$范围的下界和上界,并证明了它们是紧密的。所开发的可实现性技术依赖于各种信号、波束形成和校准技术,这些技术根据每个终端天线的(相对)数量以及s.d.o.f.是否为整数值而变化。具体地说,当s.d.o.f.为整数值时,用于发射和协同干扰的高斯信令、在发射机和协同干扰机处的线性预编码以及在合法接收机处的线性处理都足以实现信道的s.d.o.f.。相反,当s.d.o.f.不是整数时,可实现的方案需要依赖于发射机和协同干扰机的结构化信令,以及联合信号空间和信号尺度对准。通过结合允许发射机和协作干扰机之间充分合作的上界和利用保密性和可靠性约束的另一个上界来建立反向。
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