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Millimeter Wave Communications With Reconfigurable Intelligent Surfaces: Performance Analysis and Optimization

机译:与可重新配置智能表面的毫米波通信:性能分析和优化

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Reconfigurable Intelligent Surface (RIS) can create favorable multipath to establish strong links that are useful in millimeter wave (mmWave) communications. While previous works assumed Rayleigh or Rician fading, we use the fluctuating two-ray (FTR) distribution to model the small-scale fading in mmWave frequency. First, we obtain the statistical characterizations of the product of independent FTR random variables (RVs) and the sum of product of FTR RVs. For the RIS-aided and amplify-and-forward (AF) relay systems, we derive exact end-to-end signal-to-noise ratio (SNR) expressions. To maximize the end-to-end SNR, we propose a novel and simple way to obtain the optimal phase shifts at the RIS elements. The optimal power allocation scheme for the AF relay system is also proposed. Furthermore, we evaluate important performance metrics including the outage probability and the average bit-error probability. To validate the accuracy of our analytical results, Monte-Carlo simulations are subsequently conducted to provide interesting insights. It is found that the RIS-aided system can attain the same performance as the AF relay system with low transmit power. More interestingly, as the channel conditions improve, the RIS-aided system can outperform the AF relay system using a smaller number of reflecting elements.
机译:可重新配置的智能表面(RIS)可以创建有利的多路径,以建立在毫米波(MMWAVE)通信中有用的强烈链接。虽然以前的作品假定瑞利或瑞典衰落,但我们使用波动的双射线(FTR)分配来模拟MMWAVE频率的小规模衰落。首先,我们获得独立FTR随机变量(RV)的乘积和FTR RV的产品和的统计表征。对于RIS - 辅助和扩增和前进(AF)继电器系统,我们推出了精确的端到端信噪比(SNR)表达式。为了最大化端到端的SNR,我们提出了一种新颖而简单的方法来获得RIS元素的最佳相变。还提出了AF中继系统的最佳功率分配方案。此外,我们评估了重要的性能指标,包括中断概率和平均误码概率。为了验证我们分析结果的准确性,随后进行Monte-Carlo模拟以提供有趣的见解。发现RIS辅助系统可以获得与具有低发射功率的AF中继系统相同的性能。更有趣的是,随着频道条件的改善,RIS-ADEDS系统可以使用较少数量的反射元件来优于AF中继系统。

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