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Performance Tradeoffs Offered by Beamforming in Cognitive Radio Systems: An Analytic Approach

机译:认知无线电系统中波束成形所提供的性能折衷:一种分析方法

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This paper studies the design of beamforming weights for a multi-antenna secondary transmitter in an underlay cognitive setting that simultaneously maximizes the secondary received-power while limiting the primary interference to some threshold ε. With perfect channel state information (CSI), a closed-form expression for the maximum secondary received-power is found. Under imperfect CSI and when the beamforming weights are computed using the channel estimates, the actual secondary received-power, G, and the actual primary interference-power, I, are derived. We show that the mean {sf E}[G] has a term that grows linearly with the number of secondary antennas, N, and additional terms dependent on {ε}. Consequently, we obtain tradeoffs between E[G] and ε. Under perfect CSI, we show that small increases in ε from zero lead to moderate enhancements in E[G] for small N. However, increasing N reduces the enhancements. Under imperfect CSI, the gain in E[G] is less compared to the perfect CSI case. Furthermore, we show that the dominant parts of E[I] are independent of N. Thus, we conclude that there is no significant loss for the secondary to perform null-steering beamforming instead. Moreover, it can employ additional antennas to improveE[G] without generating significant extra interference on the primary.
机译:本文研究了在认知认知环境下多天线辅助发射机的波束赋形权重的设计,该认知同时最大化辅助接收功率,同时将主要干扰限制在某个阈值ε。利用完美的信道状态信息(CSI),可以找到最大二次接收功率的闭式表达式。在不完美的CSI下,当使用信道估计来计算波束成形权重时,会得出实际的次要接收功率G和实际的主要干扰功率I。我们表明,平均值{sf E} [G]的项随辅助天线的数量N线性增长,并且其附加项取决于{ε}。因此,我们获得了E [G]和ε之间的权衡。在完美CSI下,我们显示出ε的值从零的小幅增加会导致小N的E [G]适度增强。但是,增加N会降低这种增强。在不完善的CSI下,与理想CSI情况相比,E [G]的增益要小。此外,我们表明E [I]的主要部分与N无关。因此,我们得出结论,对于次级执行零方向控制波束成形,次级没有明显的损失。此外,它可以采用额外的天线来改善E [G],而不会在主天线上产生明显的额外干扰。

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