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Exploiting Power Adaptation With Transmit Antenna Selection for Interference-Outage Constrained Underlay Spectrum Sharing

机译:利用传输天线选择对干扰 - 中断约束底层频谱共享的电力适应

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In underlay spectrum sharing, the interference constraint limits transmissions by the secondary transmitter, which concurrently accesses the spectrum, to protect the primary user from excessive interference. Transmit antenna selection enables a secondary user to overcome the limitations imposed by the interference constraint using low-complexity hardware. We develop an optimal and novel joint antenna selection and power adaptation rule that minimizes the average symbol error probability (SEP) of a secondary user that is subject to two practically well-motivated constraints. The first is the less-studied but general interference-outage constraint, which limits the probability that the interference power at the primary receiver exceeds a threshold. The second constraint limits the peak transmit power of the secondary transmitter. We show that the optimal rule for the interference-outage constraint has a novel structure that is markedly different from the rules considered in the literature. We then present an insightful geometric interpretation of its structure. Using this, we also propose a practically amenable and near-optimal variant of the optimal rule called the linear rule, and analyze its performance. Our numerical results show that the optimal rule reduces the average SEP by one to two orders of magnitude compared to the rules in the literature.
机译:在底边频谱共享中,干扰约束限制了辅助发射器的传输,其同时访问频谱,以保护主用户免受过度干扰。传输天线选择使辅助用户能够克服使用低复杂性硬件克服干扰约束施加的限制。我们开发了最佳和新的联合天线选择和功率适应规则,其最小化辅助用户的平均符号误差概率(SEP),其受到两个实际激励的约束。首先是较少研究但一般的干扰 - 中断约束,其限制了主接收器处的干扰功率超过阈值的概率。第二约束限制辅助发射器的峰值发射功率。我们表明干扰 - 中断约束的最佳规则具有与文献中所考虑的规则显着不同的新颖结构。然后,我们对其结构的富有洞察力的几何解释。使用此项,我们还提出了一种实际上可容纳和近最佳的最佳变量,称为线性规则,并分析其性能。我们的数值结果表明,与文献中的规则相比,最优规则将平均SEP减少一到两个数量级。

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