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Impact of imperfect CSI on resource allocation in cognitive radio channels

机译:CSI不完善对认知无线电信道中资源分配的影响

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Channel state information (CSI) is essential for efficient power and spectrum allocation policies. In cognitive radio (CR) channels, although perfect CSI of the direct link (between the secondary transmitter and the secondary receiver) is a reasonable assumption at the secondary transmitter (ST), however, perfect knowledge of its interfering links to the primary receivers (PRs) is not. Power allocation and scheduling algorithms are often based on perfect global CSI at the secondary transmitter (ST). In this paper, we analyze the impact of channel estimation errors on both the secondary and primary users. On the one hand, the robustness of water-filling type of algorithms allowing the secondary user (SU) to minimize its power consumption under QoS and CR interference power constraints to channel estimation errors in the SU interfering links is analyzed. On the other hand, the impact of these estimation errors on the PU interference constraints is also analyzed. To this aim, we consider the worst case with respect to these estimation errors. Our analysis shows that the water-filling algorithm provides robustness in terms of power consumption and scheduling of the SU given the realistic estimation error models especially when the SU is overestimating the interfering power gains. We also provide possible solutions to ensure that the created interference is below the tolerated thresholds.
机译:信道状态信息(CSI)对于有效的功率和频谱分配策略至关重要。在认知无线电(CR)信道中,尽管在次要发送器(ST)上(在次要发送器和次要接收器之间)直接链路的完美CSI是一个合理的假设,但是,其与主要接收器之间的干扰链路的完整知识( PRs)不是。功率分配和调度算法通常基于辅助发射机(ST)上的完美全局CSI。在本文中,我们分析了信道估计误差对次要和主要用户的影响。一方面,分析了充水型算法的鲁棒性,该算法允许次要用户(SU)在QoS和CR干扰功率约束下,对SU干扰链路中的信道估计误差最小化其功耗。另一方面,还分析了这些估计误差对PU干扰约束的影响。为此,我们考虑了有关这些估计误差的最坏情况。我们的分析表明,考虑到实际的估计误差模型,尤其是当SU高估干扰功率增益时,注水算法在SU的功耗和调度方面提供了鲁棒性。我们还提供可能的解决方案,以确保所产生的干扰低于容许阈值。

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