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Physical layer security based on NOMA and AJ for MISOSE channels with an untrusted relay

机译:基于NOMA和AJ的MISOSE通道的物理层安全性,具有不受信任的中继

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Physical layer security based on non-orthogonal multiple access (NOMA) and artificial jamming (AJ) is considered in a one-way amplify-and-forward (AF) relay network with an untrusted relay. In the first phase of the two-phase operation of the untrusted AF relay network, a source node transmits the first information and AJ symbols, and the destination decodes the AJ symbol first and waits for the relayed replica of the first information symbol, which is forwarded by the untrusted relay. In the second phase, the source sends the second information symbol and the relay amplifies and forwards the received signal in the first phase with a fixed gain. In such an operation scenario, an untrusted relay tries to eavesdrop on the information signal while relaying the received signal properly. To decode the information symbol, the destination cancels out the AJ signal and then decodes the first information symbol by combining the signals received during the two phases. Finally, the second information symbol is decoded with the second-phase signal after cancelling out all the other symbols, i.e., the first information and AJ symbols. The eavesdropper and relay try to eavesdrop on the information signal with all possible orders of interference cancellation, i.e., NOMA receive processing. In this study, an ergodic secrecy rate is derived according to the operation scenario during the two phases. The behaviours of the ergodic secrecy rate with respect to power allocation to two information symbols as well as an AJ symbol are investigated. It is shown that the expected secrecy rate can be maximized by selecting the transmit power and rates for the three symbols properly. It is also demonstrated that the proposed physical layer security scheme achieves a higher secrecy rate than a secure beamformed transmission based on NOMA and artificial noise. (C) 2019 Elsevier B.V. All rights reserved.
机译:在具有不受信任的中继的单向放大转发(AF)中继网络中,考虑了基于非正交多址(NOMA)和人工干扰(AJ)的物理层安全性。在不受信任的AF中继网络的两阶段操作的第一阶段中,源节点发送第一信息和AJ符号,目的节点首先对AJ符号进行解码,并等待第一信息符号的中继副本,即由不受信任的中继转发。在第二阶段,源发送第二信息符号,中继在第一阶段以固定增益放大并转发接收到的信号。在这样的操作情况下,不可信的中继尝试在正确中继接收的信号的同时窃听信息信号。为了解码信息符号,目的地消除AJ信号,然后通过组合在两个阶段期间接收的信号来解码第一信息符号。最后,在抵消了所有其他符号即第一信息符号和AJ符号之后,利用第二相位信号对第二信息符号进行解码。窃听器和中继器尝试以所有可能的干扰消除顺序窃听信息信号,即NOMA接收处理。在本研究中,根据两个阶段的操作场景得出了遍历保密率。研究了遍历保密率相对于向两个信息符号以及一个AJ符号的功率分配的行为。示出了通过适当地选择三个符号的发射功率和速率可以使期望的保密速率最大化。还证明,与基于NOMA和人工噪声的安全波束形成传输相比,所提出的物理层安全方案具有更高的保密率。 (C)2019 Elsevier B.V.保留所有权利。

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