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Single and multiple relay selection schemes with optimum relay factors in wireless sensor networks

机译:无线传感器网络中具有最佳中继因子的单个和多个中继选择方案

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Cooperative diversity has been recently proposed as a technique to form virtual antenna arrays in systems with single-antenna nodes. The Amplify-and-Forward (AF) relaying strategy is one of the most popular cooperative diversity schemes due to its low complexity. Selection AF (SAF) relaying, single or multiple relay selection, has recently been proven to achieve the same diversity order as and lower power consumption than All-Participate (AP) networks. Most SAF methods assume constant power for best relay(s), regardless of channel conditions. In these methods relay(s) with weak channels amplify received signal with considerable gain that cause reduction of performance. In this paper, we propose single and multiple relay selection strategies for two-hop relay networks. In the first part of paper, we specify factor of each relay based on MMSE criterion and relay with highest SNR is chosen for cooperation. Our simulation results show that performance of this method is better than previous works. Second part of this paper proposes selection of two, three or any number of relays and uses them. As we see in the simulation results double relay selection has better performance than single relay selection, triple than double and so on and diversity order of all is complete.
机译:最近已经提出了协作分集作为在具有单天线节点的系统中形成虚拟天线阵列的技术。放大转发(AF)中继策略由于其低复杂性而成为最受欢迎的协作分集方案之一。选择AF(SAF)中继(单个或多个中继选择)最近已被证明可以实现与全参与(AP)网络相同的分集阶数并降低功耗。不论信道条件如何,大多数SAF方法都假定恒定功率以获得最佳中继。在这些方法中,具有弱信道的中继器以相当大的增益放大接收到的信号,从而导致性能下降。在本文中,我们提出了针对两跳中继网络的单中继选择策略和多中继选择策略。在论文的第一部分中,我们基于MMSE准则指定每个中继的因子,并选择具有最高SNR的中继进行协作。我们的仿真结果表明,该方法的性能优于以前的工作。本文的第二部分建议选择两个,三个或任意数量的继电器,并使用它们。从仿真结果中可以看出,双中继选择的性能优于单中继选择,三中继的选择优于双中继,等等,所有分集的阶数均已完成。

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