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Joint Beam and Polarization Forming of Intelligent Reflecting Surfaces for Wireless Communications

机译:无线通信智能反射曲面的联合光束和偏振形成

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摘要

In this paper, we propose a novel intelligent reflecting surface ( IRS) structure, which is capable of jointly forming desirable beam and polarization of a reflected wave with the aid of massive reflecting elements. More specifically, the proposed IRS is composed of unit cells, each having multiple variable capacitors. Active tuning of capacitances of the variable capacitors in each unit cell provides the full coverage of 360 degrees in the reflection phase. Furthermore, polarization is switched from an incident wave to the reflected wave through the excitation of two orthogonal modes, enabling arbitrary phase distribution over the IRS for the desired polarization. As a result, the proposed IRS allows the increase of the signal-to-noise ratio (SNR) at the receiver in a communication scenario, by adjusting the reflection phase shift of each IRS element. Moreover, the reflection phase shifts of each IRS element are optimized with the aid of the Newton method, such that the received signal power of a receiver ismaximized. In our simulations, it is demonstrated that our proposed IRS successfully maximizes the SNR at the receiver, both in the single-user and the broadcast multi-user scenarios, where multi-user interference is absent.
机译:在本文中,我们提出了一种新颖的智能反射表面(IRS)结构,其能够借助于巨大的反射元件来共同形成所需的光束和反射波的偏振。更具体地,所提出的IRS由单元电池组成,每个单元具有多个可变电容器。每个单元电池中可变电容器的电容的主动调谐在反射阶段中提供360度的完全覆盖范围。此外,通过激励两个正交模式从入射波切换到反射波的极化,从而使IRS上的任意相位分布用于所需的偏振。结果,通过调整每个IRS元件的反射相移,所提出的IRS允许在通信场景中增加接收器处的信噪比(SNR)。此外,借助于牛顿方法优化了每个IRS元件的反射相移,使得接收器的接收信号功率ismaximized。在我们的模拟中,我们的建议IRS在单用户和广播多用户场景中成功地最大化了接收器的SNR,其中不存在多用户干扰。

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