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The Physical Layer Security Experiments of Cooperative Communication System with Different Relay Behaviors

机译:具有不同中继行为的协作通信系统的物理层安全性实验

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摘要

Physical layer security is an attractive security mechanism, which exploits the randomness characteristics of wireless transmission channel to achieve security. However, it is hampered by the limitation of the channel condition that the main channel must be better than the eavesdropper channel. To alleviate the limitation, cooperative communication is introduced. Few studies have investigated the physical layer security of the relay transmission model. In this paper, we performed some experiments to evaluate the physical layer security of a cooperative communication system, with a relay operating in decode-and-forward (DF) cooperative mode, selfish and malicious behavior in real non-ideal transmission environment. Security performance is evaluated in terms of the probability of non-zero secrecy capacity. Experiments showed some different results compared to theoretical simulation: (1) to achieve the maximum secrecy capacity, the optimal relay power according to the experiments result is larger than that of ideal theoretical results under both cooperative and selfish behavior relay; (2) the relay in malicious behavior who forwards noise to deteriorate the main channel may deteriorate the eavesdropper channel more seriously than the main channel; (3) the optimal relay positions under cooperative and selfish behavior relay cases are both located near the destination because of non-ideal transmission.
机译:物理层安全性是一种有吸引力的安全性机制,它利用无线传输信道的随机性特性来实现安全性。但是,信道条件的限制妨碍了主信道必须比窃听者信道更好。为了减轻限制,引入了协作通信。很少有研究调查中继传输模型的物理层安全性。在本文中,我们进行了一些实验,以评估协作通信系统的物理层安全性,其中中继以解码转发(DF)协作模式运行,在真实的非理想传输环境中具有自私和恶意行为。根据非零保密容量的可能性来评估安全性能。与理论仿真相比,实验结果有所不同:(1)为了达到最大保密能力,根据实验结果得出的最优继电器功率要大于自举行为继电器的理想理论值; (2)恶意行为的中继器转发噪声以破坏主通道,可能比主通道更严重地破坏窃听者通道; (3)由于非理想传输,在合作和自私行为中继情况下的最佳中继位置都位于目标附近。

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