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Secure communication in frequency selective channels with fade-avoiding subchannel usage

机译:使用避免衰落的子信道来确保频率选择信道中的通信安全

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The random nature of fading channels is an enabling factor for achieving secrecy against eavesdropping. By considering the channel frequency selectivity, we propose an adaptive transmission scheme in which the faded subchannels of the legitimate channel are not used for conveying information. Thus, capacity reduction in legitimate channel is minimized while causing a reduction of the eavesdropper channel capacity proportional to the unused subchannels. Besides improving communication secrecy with the intelligent subchannel usage, populating the unused subchannels with artificially-generated noise that further disturbs the eavesdropper's reception is proposed. Since each receiver has its own channel state information (CSI) but not other's, eavesdroppers cannot discard the distortion which is integrated into the transmitted signal as a function of the legitimate pair's CSI. Positive secrecy capacity and outage probabilities are provided as well as error performance example in a communication scenario. It is showed that while careful usage of the subchannels in frequency selective channels improves the secrecy, introducing the fade-filling noise creates an error floor for the malicious nodes.
机译:衰落信道的随机性是实现保密以防止窃听的一个促成因素。通过考虑信道频率选择性,我们提出了一种自适应传输方案,其中合法信道的衰落子信道不用于传输信息。因此,合法信道的容量减少被最小化,同时引起与未使用的子信道成比例的窃听者信道容量的减少。除了使用智能子信道使用来提高通信保密性外,还建议在未使用的子信道中填充人为产生的噪声,这些噪声会进一步干扰窃听者的接收。由于每个接收器都有自己的信道状态信息(CSI),而没有其他接收器,因此窃听者无法根据合法对的CSI丢弃被整合到传输信号中的失真。在通信场景中,提供了正的保密容量和中断概率以及错误性能示例。结果表明,虽然在频率选择信道中谨慎使用子信道可以提高保密性,但引入衰落填充噪声会为恶意节点创建错误基底。

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