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Optimal Power Allocation for Spectrum Sharing in Frequency-Selective Unlicensed Bands

机译:频率选择无执照频段中频谱共享的最佳功率分配

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摘要

Power allocation is an important issue for spectrum sharing of unlicensed bands, in which multiple unlicensed systems may coexist and operate. Recently some works have been reported on spectrum sharing in frequency-flat unlicensed bands. However, there has not been much work on power allocation for spectrum sharing in frequency-selective unlicensed bands. In this letter, we propose an optimal power allocation strategy on frequency-selective interference channels (IC). This strategy, also referred as general power allocation (GPA), allows the transmission power density to vary within one subcarrier. By showing the duality of frequency-selective and parallel frequency- flat channels, we can therefore compute the achievable rate region of GPA. Our method can be regarded as an extension of previous results for frequency-flat scenarios. It will also be shown that over frequency-selective Gaussian IC, the proposed GPA can achieve larger rate region than conventional power allocation strategies, where the transmission power density on each subcarrier is set equal.
机译:功率分配是无执照频段频谱共享的重要问题,在该频段中,多个无执照系统可能共存并运行。最近,已经报道了一些有关在平坦的非许可频段中进行频谱共享的工作。但是,在频率选择非许可频段中用于频谱共享的功率分配方面还没有开展很多工作。在这封信中,我们提出了一种针对频率选择性干扰信道(IC)的最佳功率分配策略。这种策略,也称为通用功率分配(GPA),允许传输功率密度在一个子载波内变化。通过显示频率选择和并行频率平坦通道的对偶关系,我们可以计算出GPA的可实现速率区域。我们的方法可以看作是先前针对频率平坦场景的结果的扩展。还将显示,在频率选择性高斯IC上,与传统的功率分配策略(在每个子载波上的发射功率密度设置为相等)相比,拟议的GPA可以实现更大的速率区域。

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