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Achievable Rates of UAV-Relayed Cooperative Cognitive Radio MIMO Systems

机译:无人机中继合作式认知无线电MIMO系统的可达到速率

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摘要

We study the achievable rate of an uplink MIMO cognitive radio system where the primary user (PU) and the secondary user (SU) aim to communicate to the closest primary base station (BS) via a multi-access channel through the same unmanned aerial vehicle (UAV) relay. The SU message is then forwarded from the primary BS to the secondary network with a certain incentive reward as a part of the cooperation protocol between both networks. A special linear precoding scheme is proposed to enable the SU to exploit the PU free eigenmodes. We analyze two scenarios in which the UAV relay gain matrix is either fixed or optimized. We derive the optimal power allocation that maximizes the achievable rate of the SU respecting power budget, interference, and relay power constraints. Numerical results highlight the cognitive rate gain of our proposed scheme with respect to various problem parameters. We also highlight the effect of UAV altitude on the SU and PU rates. Finally, when the relay matrix is optimized, we show that the PU rate is remarkably enhanced and that the SU rate is only improved at high power regime.
机译:我们研究了上行MIMO认知无线电系统的可实现速率,其中主要用户(PU)和次要用户(SU)旨在通过同一无人飞行器通过多路访问信道与最近的主要基站(BS)通信(UAV)中继。然后,SU消息以一定的激励奖励从主BS转发到辅助网络,作为两个网络之间合作协议的一部分。提出了一种特殊的线性预编码方案,以使SU能够利用不含PU的本征模式。我们分析了无人机固定增益矩阵固定或优化的两种情况。我们推导出最佳功率分配,该功率分配在考虑功率预算,干扰和中继功率约束的情况下最大化SU的可实现速率。数值结果突出了我们提出的方案在各种问题参数方面的认知率增益。我们还强调了无人机高度对SU和PU率的影响。最后,当优化中继矩阵时,我们显示出PU速率显着提高,而SU速率仅在高功率状态下得到改善。

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