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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Alamouti-coded decode-and-forward protocol with optimum relay selection and power allocation for cooperative communications
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Alamouti-coded decode-and-forward protocol with optimum relay selection and power allocation for cooperative communications

机译:Alamouti编码的解码和前进协议,具有优化的中继选择和功率分配,用于合作通信

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In this paper, an Alamouti-coded decode-and-forward protocol with optimum relay selection for three-user one destination cooperative communications is investigated. Particularly, we design the new protocol that allows the source node retransmitting the signal to the destination node at the same time as the relay node forwarding the received signal to the destination node with an Alamouti coding scheme. We exploit the cooperative maximum ratio combining technique (C-MRC) at the destination for combining a multiple copy of received signals. Therefore, the proposed scheme achieves the maximum diversity gain and lower probability of error in comparison with the existing decode and forward protocol. We also analyze a symbol error rate (SER) upper bound of the single relay system, and exploit a result of this analysis to select the optimum relay in a multiple-relay cooperation scheme based on the minimum SER selection strategy. Moreover, the optimum power allocation for the proposed protocol is derived, and it is able to provide the optimum transmission power strategy to the source and the relay nodes in order to achieve the minimum probability of error. In the performance analysis, the theoretical error probability is studied and compared with the simulation results. Simulation results indicate that the proposed protocol significantly outperforms the existing protocols, and the theoretical error probability curve is relatively close to the simulated SER curve.
机译:在本文中,研究了具有用于三用户一个目的地协同通信的最佳中继选择的Alamouti编码的解码协议。特别地,我们设计新协议,该协议允许源节点与用Alamouti编码方案将接收信号转发到目的节点的中继节点将信号转发到目的节点。我们利用用于组合多个接收信号副本的目的地的协同最大比率(C-MRC)。因此,与现有的解码和转发协议相比,所提出的方案实现了最大分集增益和较低的误差概率。我们还分析了单个继电器系统的符号错误率(SER)上限,并利用该分析的结果,以基于最小SER选择策略选择多继电器合作方案中的最佳继电器。此外,导出了所提出的协议的最佳功率分配,并且能够向源和中继节点提供最佳的传输功率策略,以实现误差的最小概率。在性能分析中,研究了理论误差概率并与模拟结果进行了比较。仿真结果表明,所提出的协议显着优于现有的协议,理论误差概率曲线相对接近模拟的SER曲线。

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