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Effective Capacity of Cognitive Radio Systems with GSC Diversity under Imperfect Channel Knowledge

机译:不完全信道知识下具有GSC分集的认知无线电系统的有效容量

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摘要

In this paper, we investigate the effective capacity of opportunistic spectrum sharing with generalized selection combining (GSC) diversity at the secondary receiver in fading environments. In particular, we study the impact of outdated channel information between the secondary transmitter and the primary receiver on the performance of the secondary user. An exact closed-form expression for the effective capacity of the secondary user with GSC diversity is derived under the peak interference constraint at the primary receiver. Comparisons done using simulations show the effect of the uncertainty of channel information on the effective capacity. Specially, the performance gap due to imperfect channel information becomes smaller with the increase of the number of selected antennas {k}. Theoretic analysis and simulations show that the system performance is robust against imperfect channel information and selection combining (SC) should be adopted under strict delay quality of service (QoS) requirements.
机译:在本文中,我们研究了衰落环境中辅助接收机上机会频谱共享和广义选择组合(GSC)分集的有效容量。特别是,我们研究了次要发送器和主要接收器之间过时的信道信息对次要用户性能的影响。在主要接收方的峰值干扰约束下,得出了具有GSC分集的次要用户有效容量的精确闭式表达式。使用模拟进行的比较显示了信道信息的不确定性对有效容量的影响。特别地,由于选择的天线{k}的数量增加,由不完美的信道信息引起的性能差距变小。理论分析和仿真表明,系统性能对于不完美的信道信息具有鲁棒性,在严格的延迟服务质量(QoS)要求下,应采用选择组合(SC)。

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