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Performance analysis of multi-user diversity in heterogeneous cooperative communication systems

机译:异构协作通信系统中多用户分集的性能分析

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摘要

The heterogeneous cooperative relaying technique can be utilized to complete the hierarchical convergence for the multi-radio access networks, where the single heterogeneous cooperative relay is selected and the maximal-ratio combining (MRC) scheme is utilized to achieve the cooperative diversity gain. In order to evaluate performances of the hierarchical convergence mechanism, this paper theoretically investigates the key factors of the multiuser diversity (MUD) gain, the heterogeneous cooperative diversity gain and the large scale fading of the first and second links. The tight closed-form expressions in terms of the outage probability and the average symbol error rate are derived for evaluating how and with what factors impact on the system performance. The analytical and simulation results show that the number of heterogeneous cooperative relay nodes (HCRNs)M and the number of destination stations (DSs)K have great impacts on performances, and the order of outage probability is (M + 1)K. The large scale fading ratio of the first hop to the second hop also has a big impact on performances. Thus in the real network, we can utilize advanced radio resource management schemes tornachieve a high multi-user diversity, instead of configuring too many HCRNs for the heterogeneous cooperative diversity gain. Furthermore, we can guarantee the transmission quality between the BS and HCRNs via the network planning to optimize the overall network performance.
机译:可以利用异构协作中继技术来完成多无线电接入网络的分层收敛,其中选择单个异构协作中继,并利用最大比合并(MRC)方案来实现协作分集增益。为了评估分层收敛机制的性能,本文从理论上研究了多用户分集(MUD)增益,异构合作分集增益和第一和第二链路大规模衰落的关键因素。根据中断概率和平均符号错误率得出紧密的封闭式表达式,以评估影响系统性能的方式和因素。分析和仿真结果表明,异构协作中继节点(HCRN)M的数量和目的站(DSs)K的数量对性能有很大影响,中断概率的顺序为(M +1)K。第一跳和第二跳的大比例衰落比对性能也有很大影响。因此,在实际网络中,我们可以利用高级无线电资源管理方案来实现较高的多用户分集,而不必为异构合作分集增益配置太多的HCRN。此外,我们可以通过网络规划来保证BS与HCRN之间的传输质量,从而优化整体网络性能。

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