首页> 外文会议>European Wireless, 2012. EW. 18th European Wireless Conference >Downlink performance of multiuser multi-relay cooperative networks: A low-complexity relay-destination selection scheme
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Downlink performance of multiuser multi-relay cooperative networks: A low-complexity relay-destination selection scheme

机译:多用户多中继协作网络的下行链路性能:一种低复杂度的中继目的地选择方案

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This paper investigates the outage performance of multiuser multi-relay cooperative networks in which a source node communicates with one out of L destinations through the help of one out of N decode-and-forward (DF) relays. A low-complexity relay-destination selection scheme is proposed, which first selects the best destination node based on the channel quality of the direct links and then selects the best relay that yields the best path from the source to the selected destination. In our analysis, the source node may be equipped with either a single antenna or M multiple antennas. A closed-form expression for the outage probability is derived and validated by means of Monte Carlo simulations. An asymptotic analysis is carried out and reveals that, for the single-antenna source case, the diversity order reduces to L+N, whereas for the multiple-antenna source case, the diversity order equals to ML + N. Assuming two network topologies, a comparison between our scheme and the optimal joint relay-destination selection scheme is provided and it reveals that the proposed selection scheme achieves a very close outage performance to that of the joint selection scheme while reduces considerably the system complexity (in terms of channel estimations, implementation issues, and simulation time). The effects of the number of relay and destination nodes on the system performance as well as its influence on the best relay position are examined through representative numerical plots. It is noticed a tradeoff concerns to the system performance and spectral efficiency when multiple antennas are employed. More specifically, in one hand, by increasing the number of antennas at the source node, a better outage behavior is obtained. On the other hand, the system loses in terms of spectral efficiency.
机译:本文研究了多用户多中继协作网络的中断性能,在该网络中,源节点通过N个解码转发(DF)中继中的一个与L个目的地中的一个进行通信。提出了一种低复杂度的中继目的地选择方案,该方案首先根据直接链路的信道质量选择最佳目的地节点,然后选择产生从源到所选目的地的最佳路径的最佳中继。在我们的分析中,源节点可能配备单个天线或M个多天线。通过蒙特卡洛模拟得出并验证了停机概率的闭式表达式。进行了渐近分析,发现对于单天线源情况,分集阶数降为L + N,而对于多天线源情况,分集阶数等于ML +N。假设有两个网络拓扑,通过比较我们的方案和最优的联合中继目的地选择方案,发现所提出的选择方案与联合选择方案相比具有非常接近的中断性能,同时大大降低了系统复杂度(就信道估计而言,实施问题和仿真时间)。通过代表性的数值图检查了中继节点和目标节点数量对系统性能的影响及其对最佳中继位置的影响。注意到当使用多个天线时,对系统性能和频谱效率的折衷考虑。更具体地说,一方面,通过增加源节点处的天线数量,可以获得更好的中断行为。另一方面,系统在频谱效率方面有所损失。

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