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Power Allocation of Distributed Space-Time Codes Based on Self-Coding in FD Two-Way Relay Networks

机译:FD双向中继网络中基于自编码的分布式时空码功率分配

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In this paper, a power allocation space-time coding scheme based on self-coding of residual loop interference (RLI) for two-way full-duplex (FD) amplify-and-forward (AF) relaying networks is proposed. In the proposed scheme, the relay first realizes a distributed space-time code by performing self-coding using the RLI at relay node after implementing some self-interference cancellation techniques. Then power allocation is performed between the terminals. With the proposed power allocation scheme, both amplifying factor and transmit powers of terminal nodes are jointly optimized under a total power constraint when estimated instantaneous channel state information is available. Simulation results show that the proposed scheme achieves performance improvement in an FD relaying system.
机译:提出了一种基于剩余环路干扰(RLI)自编码的功率分配空时编码方案,用于双向全双工(FD)放大转发(AF)中继网络。在所提出的方案中,在实现一些自干扰消除技术之后,中继首先通过在中继节点处使用RLI执行自编码来实现分布式时空码。然后,在终端之间执行功率分配。利用所提出的功率分配方案,当估计的瞬时信道状态信息可用时,在总功率约束下联合优化终端节点的放大因子和发射功率。仿真结果表明,该方案在FD中继系统中实现了性能的提高。

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