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Interference Management in Underlay Spectrum Sharing Using Indirect Power Control Signalling

机译:使用间接功率控制信令的底层频谱共享中的干扰管理

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In this paper, we propose an interference management method for underlay spectrum sharing and evaluate its performance. In this method the secondary service has been facilitated by granting passive access to the power control signalling transmitted by the primary network base station. To exploit both slow shadowing and fast fading, the proposed method performs secondary service power management in two phases, each in different time-scales: rate optimal power allocation phase and interference reduction power adjustment phase. In the longer time-scale, rate optimal power allocation phase adaptively allocates the secondary transmit power exploiting the medium-scale channel variations (shadowing effect) of the secondary channel to maximize its capacity. In the shorter time-scale, interference reduction power adjustment phase exploits the power control commands transmitted in the primary network to adaptively adjust secondary service transmission power for reducing the effects of the secondary service transmission on the Quality-of-Service (QoS) of the primary service network. The main advantage of this method which is referred to as Adaptive Multiple Time-Scale Power Allocation (AMTPA) is that it does not require direct signaling between the two systems. We further present AMTPA analytical performance evaluation results. Practical considerations are also presented regarding the primary network requirements and its power control feasibility after adopting AMTPA in the secondary network. Extensive simulation results indicate significant improvement in the system performance by using AMTPA. Using simulations we also show how one can set AMTPA parameters so that a certain level of QoS in the primary network is satisfied.
机译:在本文中,我们提出了一种用于底层频谱共享的干扰管理方法,并评估了其性能。在该方法中,通过准许对由主网络基站发送的功率控制信令的被动访问,来辅助服务。为了同时利用慢速阴影和快速衰落,所提出的方法在两个阶段执行辅助服务功率管理,每个阶段都在不同的时间范围内:速率最优功率分配阶段和干扰降低功率调整阶段。在更长的时间范围内,速率最佳功率分配阶段会利用辅助信道的中等规模信道变化(阴影效应)来自适应地分配辅助发射功率,以使其容量最大化。在更短的时间范围内,减少干扰的功率调整阶段会利用在主网络中传输的功率控制命令来自适应地调整次服务传输功率,以减少次服务传输对服务质量(QoS)的影响。主要服务网络。被称为自适应多时标功率分配(AMTPA)的该方法的主要优点是,它不需要两个系统之间的直接信令。我们进一步介绍了AMTPA分析性能评估结果。在辅助网络中采用AMTPA之后,还提出了有关主要网络要求及其功率控制可行性的实际考虑。大量的仿真结果表明,使用AMTPA可以显着改善系统性能。通过仿真,我们还展示了如何设置AMTPA参数,以便满足主网络中特定级别的QoS。

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