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Discriminatory Channel Estimation in MIMO Decode-and-Forward Relay Systems with Cooperative Jamming

机译:具有合作干扰的MIMO解码和前进继电器系统中的鉴别渠道估计

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In this paper, we investigate the physical layer discriminatory channel estimation (DCE) in multiple-input multiple-output (MIMO) decode-and-forward (DF) relay systems which comprise a source, a relay, a destination, and an eavesdropper node. In the first channel estimation phase (phase 1), the relay transmits a training signal while the source transmits a cooperative jamming signal omnidirectionally, such that the destination has a better estimation of the relay-destination channel while the eavesdropper has a poor estimation of the relay-eavesdropper channel. In the second channel estimation phase (phase 2), the source transmits a training signal while destination transmits a cooperative jamming signal through the null space of the relay-destination channel. That is, the estimation quality of the source-eavesdropper channel is seriously degraded by the jamming signal. In each channel estimation phase, we design the training signal and determine cooperative jamming power to discriminate the channel estimation performance between the legitimate receiver and eavesdropper. Numerical results illustrate that the proposed DCE scheme increases the mean square error (MSE) difference between the legitimate channel and eavesdropper channel in both phases.
机译:在本文中,我们研究了包括源,继电器,目的地和窃听器节点的多输入多输出(MIMO)解码(MIMO)解码(DF)中继系统中的物理层鉴别信道估计(DCE) 。在第一信道估计阶段(阶段1)中,中继发送训练信号,同时源极向内发送协作干扰信号,使得目的地在中继目的地频道较好地估计,而窃听器具有较差的估计继电器窃听者渠道。在第二信道估计阶段(阶段2)中,源发送训练信号,而目的地通过中继目的地信道的空区发送协作干扰信号。也就是说,源极窃听者信道的估计质量被干扰信号严重降低。在每个信道估计阶段,我们设计训练信号并确定协作干扰能力以区分合法接收器和窃听器之间的信道估计性能。数值结果说明所提出的DCE方案在两个阶段中的合法通道和窃听者信道之间增加了平均方误差(MSE)差异。

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