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Performance Evaluation of In-Band Full-Duplex System Using One-Time-Slot Two-Way Relay

机译:使用一次性插槽双向继电器的带内全双工系统的性能评估

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In-band full-duplex (IFD) two-way relay (TWR) system becomes one among the major concern for maximizing system capacity in wireless network, where one relay node and two source nodes using analog network coding (ANC) are deployed. This paper compares one-time-slot ANC (1TA) TWR, in which each node operates in IFD mode, with two-time-slot ANC (2TA) TWR, where each node is in in-band half-duplex mode. In addition, achievable sum rate of the 1TA-TWR is derived with adverse factors such as direct link interference as well as self-interference (SI), which is induced by IFD signaling. This paper proposes an iterative optimal power allocation (OPA) method to maximize the derived end-to-end sum rate, which is based on Lagrangian and Newton-Raphson algorithm under total power constraint. Numerical results elucidate the efficiency of the 1TA-TWR over the 2TA-TWR as the following: the 1TA-TWR based on the OPA becomes more and more viable than the 2TA-TWR based on existing OPA, as the relay node goes into the center of two source nodes, the link channel gain of mutual source nodes increases, and the SI channel gain approaches noise floor level.
机译:带内的全双工(IFD)双向继电器(TWR)系统成为无线网络中系统容量最大化的主要问题之一,其中部署了一个中继节点和两个使用模拟网络编码(ANC)的源节点。本文比较了一次性插槽ANC(1TA)TWR,其中每个节点在IFD模式下运行,其中两个时隙ANC(2TA)TWR,其中每个节点处于带内双工模式。此外,1TA-TWR的可实现的总和率与诸如直接链路干扰等的不利因素,以及由IFD信令引起的自干扰(SI)。本文提出了一种迭代最佳功率分配(OPA)方法,以最大化导出的端到端和速率,基于Lagrangian和Newton-Raphson算法在总功率约束下。数值结果阐明了2TA-TWR上的1TA-TWR的效率,如下所示:基于OPA的1TA-TWR基于基于现有OPA的2TA-TWR变得越来越可行,因为中继节点进入中心两个源节点,相互源极节点的链路信道增益增加,并且SI信道增益接近噪声底层。

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