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Full-rate and full-diversity extended orthogonal space-time block coding in cooperative relay networks with imperfect synchronization

机译:具有不完美同步的协作中继网络中的全速率和全分集扩展正交空时块编码

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In this paper we present a novel extended orthogonal space-time block coding (EO-STBC) scheme for three and four relay nodes to use in asynchronous cooperative relay networks. This approach attains full-rate and full-diversity in that each hop attains unity rate and all four uncorrelated paths are utilized. Robustness against the effects of random delays at the relay nodes is enhanced through the use of a low-rate feedback channel. A new low complexity phase feedback scheme has been proposed which can retain the advantage of the perfect feedback scheme with substantial reduction in the feedback overhead. Orthogonal frequency division multiplexing (OFDM) with cyclic prefix (CP) is used at the source node to combat the timing errors at the relay nodes, which operate in a simple amplify-and-forward (AF) mode. Simulations show that our new scheme outperforms the previous schemes and uses a very simple symbol-wise maximum-likelihood (ML) decoder.
机译:在本文中,我们提出了一种新颖的扩展正交空时分组编码(EO-STBC)方案,用于三个和四个中继节点,以用于异步协作中继网络。这种方法达到了全速率和全多样性,因为每个跃点都达到了统一速率,并且使用了所有四个不相关的路径。通过使用低速率反馈通道,可以增强抵抗中继节点上随机延迟影响的鲁棒性。已经提出了一种新的低复杂度相位反馈方案,该方案可以保留完美反馈方案的优点,同时可以大大减少反馈开销。在源节点处使用带有循环前缀(CP)的正交频分复用(OFDM)来解决中继节点处的定时误差,中继节点以简单的放大转发(AF)模式工作。仿真表明,我们的新方案优于以前的方案,并使用了非常简单的基于符号的最大似然(ML)解码器。

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