论文标题

通过空中智能反射表面启用全景全角反射

Enabling Panoramic Full-Angle Reflection via Aerial Intelligent Reflecting Surface

论文作者

Lu, Haiquan, Zeng, Yong, Jin, Shi, Zhang, Rui

论文摘要

本文提出了一个新的三维(3D)网络体系结构,由空中智能反射表面(AIRS)实现,以实现来自天空的全景反射。与传统的地面IRS相比,AIRS不仅具有更高的部署灵活性,而且能够实现360美元的$^\ Circ $全景全角反射反射,并且由于其与地面节点具有更高的视线(LOS)链接的可能性更高,因此通常需要更少的反射。我们专注于在给定覆盖区域中最大化最差的信号噪声比(SNR),通过共同优化发射光束形成,播放和相移,以最大程度地提高最差的信噪比(SNR)。公式的问题是非凸,优化变量以复杂的方式相互耦合。为了解决这个问题,我们首先考虑单位SNR最大化的特殊情况以获得有用的见解,以此为其在封闭形式中获得最佳解决方案。然后,对于面积覆盖范围的一般情况,提出了有效的次优溶液,通过利用IRS相似的相似性和对常规相阵列的模拟光束形成的相似性。数值结果表明,所提出的设计可以比启发式AIRS部署方案获得显着的性能增长。

This paper proposes a new three dimensional (3D) networking architecture enabled by aerial intelligent reflecting surface (AIRS) to achieve panoramic signal reflection from the sky. Compared to the conventional terrestrial IRS, AIRS not only enjoys higher deployment flexibility, but also is able to achieve 360$^\circ$ panoramic full-angle reflection and requires fewer reflections in general due to its higher likelihood of having line of sight (LoS) links with the ground nodes. We focus on the problem to maximize the worst-case signal-to-noise ratio (SNR) in a given coverage area by jointly optimizing the transmit beamforming, AIRS placement and phase shifts. The formulated problem is non-convex and the optimization variables are coupled with each other in an intricate manner. To tackle this problem, we first consider the special case of single-location SNR maximization to gain useful insights, for which the optimal solution is obtained in closed-form. Then for the general case of area coverage, an efficient suboptimal solution is proposed by exploiting the similarity between phase shifts optimization for IRS and analog beamforming for the conventional phase array. Numerical results show that the proposed design can achieve significant performance gain than heuristic AIRS deployment schemes.

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