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Symbol-based physical-layer network coding for two-way relay channel

机译:基于符号的双向中继信道物理层网络编码

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A symbol-based physical layer network coding (PNC) scheme is proposed for the two-way relay channel where the relay node is equipped with multiple antennas. Unlike the traditional binary PNC that focuses mainly on BPSK modulation, the proposed symbol-based PNC is tailored for the general MPSK modulation. In particular, the product of the two modulated signals is considered as a network-coded symbol, which exploit the characteristic of MPSK modulation to compact the solution space of the intended network-coded symbol. Based on the autocorrelation of the received signal at the relay node, a novel PNC-oriented detection scheme is developed to estimate the network-coded symbol for broadcasting. The proposed scheme achieves receive diversity advantage with linear complexity at the relay node. In addition, the proposed scheme can effectively handle information exchanging with asymmetric data rates between the two sources. Simulation results show that the proposed scheme outperforms other linear-MIMO detection based counterparts in terms of diversity order, and it also outperforms the existing decode-and-forward (DF) and amplify-and-forward (AF) approaches when dealing with the asymmetric information exchanging.
机译:针对双向中继信道提出了基于符号的物理层网络编码(PNC)方案,其中中继节点配备了多个天线。与主要关注BPSK调制的传统二进制PNC不同,所提出的基于符号的PNC是为通用MPSK调制量身定制的。特别地,两个调制信号的乘积被认为是网络编码符号,其利用MPSK调制的特性来压缩预期的网络编码符号的解空间。基于中继节点处接收信号的自相关,开发了一种新颖的面向PNC的检测方案,以估计用于广播的网络编码符号。所提出的方案在中继节点处具有线性复杂度的接收分集优势。另外,所提出的方案可以有效地处理两个源之间具有不对称数据速率的信息交换。仿真结果表明,该方案在分集阶数方面优于其他基于线性MIMO检测的方案,并且在处理非对称性时也优于现有的解码转发(DF)和放大转发(AF)方法信息交流。

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