Distributed switch-and-stay combining in cognitive relay networks under spectrum sharing constraints

Vo Nguyen Quoc Bao, T. Duong, A. Nallanathan, G. Karagiannidis
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引用次数: 8

Abstract

Distributed switch-and-stay combining (DSSC) has been envisioned as an effective transmission technique to achieve spatial diversity in a distributed fashion, with low implementation complexity. In this paper, we take a step further to incorporate DSSC into spectrum-limited environment, where the operating nodes have to share the frequency radio spectrum with licensed users. In particular, by deploying DSSC scheme in cognitive radio networks, we have shown that the low transmit power at unlicensed users, inflicted by the peak interference power constraint at licensed users, can be alleviated. We present closed-form expressions for outage probability and spectral efficiency, enabling us to evaluate and optimize the considered network performance. Numerical and simulation results show that when the switching threshold is below the outage threshold the full diversity order can be guaranteed at the secondary networks.
频谱共享约束下认知中继网络的分布式开停组合
分布式开关保持组合(DSSC)是一种以分布式方式实现空间多样性的有效传输技术,具有较低的实现复杂性。在本文中,我们进一步将DSSC纳入频谱有限的环境中,其中操作节点必须与许可用户共享频率无线电频谱。特别是,通过在认知无线网络中部署DSSC方案,我们已经证明,可以减轻无许可用户的低发射功率,这是由许可用户的峰值干扰功率约束造成的。我们提出了停机概率和频谱效率的封闭表达式,使我们能够评估和优化所考虑的网络性能。数值和仿真结果表明,当切换阈值低于中断阈值时,二级网络可以保证完整的分集顺序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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