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On the rate-equivocation region of parallel relay eavesdropper channels

机译:在并行中继窃听者通道的速率等同区域上

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We consider a four terminal parallel relay-eavesdropper channel which consists of multiple independent relay-eavesdropper channels as subchannels. For the discrete memoryless case, we establish inner and outer bounds on the rate equivocation region. For each subchannel, secure transmission is obtained through one of two coding schemes at the relay: decoding-and-forwarding the source message or confusing the eavesdropper through noise injection. The inner bound allows relay mode selection. We then apply our results to study the fading Gaussian relay-eavesdropper channel. In this case, we focus on perfectly secure transmission. We establish a lower bound on the perfect secrecy rate. Furthermore, considering individual sum power constraints at source and relay, we study power adjustment among the independent subchannels. We illustrate the results through some numerical examples.
机译:我们考虑一个由四个独立的中继监听通道组成的四端子并行中继监听通道,作为子通道。对于离散的无记忆情况,我们在速率混淆区域上建立了内部和外部界限。对于每个子信道,通过中继站上的两种编码方案之一获得安全传输:解码和转发源消息,或者通过噪声注入使窃听者感到困惑。内边界允许选择中继模式。然后,我们将我们的结果应用于研究衰落的高斯中继监听器通道。在这种情况下,我们专注于完美的安全传输。我们确定理想保密率的下限。此外,考虑到源和中继的单独总和功率约束,我们研究了独立子信道之间的功率调整。我们通过一些数值示例来说明结果。

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