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Secrecy DoF of Blind MIMOME Wiretap Channel With Delayed CSIT

机译:CSIT延迟的盲MIMOME窃听通道的保密DoF

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We study the Gaussian multiple-input multiple-output multiple-eavesdropper wiretap channel where a transmitter wishes to communicate a confidential message to a legitimate receiver in the presence of eavesdroppers. Each node in the network is equipped with an arbitrary number of antennas. Furthermore, channels are time varying, and there is no channel state information available at the transmitter (CSIT) with respect to eavesdroppers' channels; and transmitter only has access to delayed CSIT of the channel to the legitimate receiver. The secure degrees of freedom (SDoF) for such a network has only been characterized for special cases, and is unknown in general. We completely characterize the SDoF of this network for all antenna configurations. In particular, we strictly improve the state-of-the-art achievable scheme for this network by proposing more efficient artificial noise alignment at the receivers. Furthermore, we develop a tight upper bound by utilizing three important inequalities that provide lower bounds on the received signal dimensions at receivers which supply delayed CSIT or no CSIT. These inequalities together allow for analysis of signal dimensions in networks with heterogeneous CSIT; and as a result, we present a converse proof that leads to characterization of SDoF for all possible antenna configurations.
机译:我们研究了高斯多输入多输出多窃听者窃听通道,其中发送者希望在存在窃听者的情况下将机密消息传达给合法的接收者。网络中的每个节点都配备有任意数量的天线。而且,信道是随时间变化的,并且在发射机(CSIT)上没有关于窃听者信道的信道状态信息。发送方只能访问合法接收方的延迟信道CSIT。这种网络的安全自由度(SSF)仅针对特殊情况进行了描述,并且通常是未知的。对于所有天线配置,我们完全表征了该网络的SF。特别是,我们通过在接收器处提出更有效的人工噪声对准,来严格改进该网络的最新可实现方案。此外,我们利用三个重要的不等式建立了一个严格的上限,这些不等式在提供延迟CSIT或不提供CSIT的接收机上为接收信号尺寸提供了下限。这些不等式一起可以分析异构CSIT网络中的信号尺寸。结果,我们提出了一个相反的证明,可以证明所有可能天线配置的sf特性。

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