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首页> 外文期刊>International journal of antennas and propagation >Asynchronous Two-Way Relaying Networks Using Distributed Differential Space-Time Coding
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Asynchronous Two-Way Relaying Networks Using Distributed Differential Space-Time Coding

机译:分布式差分时空编码的异步双向中继网络

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A signal detection scheme is proposed for two-way relaying network (TWRN) using distributed differential space-time coding (DDSTC) under imperfect synchronization. Unlike most of existing work, which assumed perfect synchronization and channel state information (CSI) at all nodes, a more realistic scenario is investigated here by considering the signals transmitted from the two source nodes arriving at the relay not exactly at the same time due to the distributed nature of the nodes, and no CSI is available at any node. The proposed signal detection scheme is then demonstrated to remove the imperfect synchronization effect significantly through simulation results. Furthermore, pairwise error probability (PEP) of the asynchronous TWRN is analyzed and derived for both source nodes. Based on the simplified PEP expression, an optimum power allocation (OPA) scheme is then determined to further improve the whole system performance, when neither the source nor the relay has any knowledge of the CSI.
机译:提出了一种在不完全同步下使用分布式差分时空编码(DDSTC)的双向中继网络(TWRN)信号检测方案。与大多数现有工作假设所有节点都具有完美的同步和信道状态信息(CSI)不同,在这里,通过考虑从两个源节点传输到中继站的信号不完全相同,来研究一种更现实的情况,因为节点的分布式特性,并且任何节点上都没有CSI。然后通过仿真结果证明了所提出的信号检测方案可以显着消除不完美的同步效应。此外,针对两个源节点分析并导出了异步TWRN的成对错误概率(PEP)。基于简化的PEP表达式,当源和中继都不了解CSI时,可以确定最佳功率分配(OPA)方案以进一步改善整个系统的性能。

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