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Near-Field Beamforming at Intelligent Re-Configurable Surface in Uplink Transmission

机译:上行链路传输中智能重新配置表面的近场波束成形

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Intelligent re-configurable surfaces (IRS) constitute electronically steerable structures that can be used to control the propagation of electromagnetic (EM) waves. Owing to their passive nature in terms of signal reflection, IRS require large-scale implementations. This means that the near-field effect, e.g., the curvature of the propagating EM wave must be considered. In this paper, a simple two-step near-field beamforming method is proposed. In the first step, the direction from the IRS center point to the user equipment (UE) is found assuming plane wave model. In the second step, the transmitted beam is focused towards the UE based on the pre-calculated constant phase contours. All operations in the proposed method can be implemented as memory operations, i.e., no complex computations are needed. The operation of the method is verified with simulations. The results show that the proposed beamforming technique is capable of focusing the beam pattern of the IRS towards the user. More specifically, the near-field focusing of a (50 ×50)-element IRS operating at 5 GHz frequency increases the received power by 3 dB when compared to a case where the near-field effect is ignored.
机译:智能可重新配置表面(IRS)构成可用于控制电磁(EM)波的传播的电子可转向结构。由于它们在信号反射方面被动性,IRS需要大规模的实现。这意味着必须考虑近场效果,例如,必须考虑传播的EM波的曲率。在本文中,提出了一种简单的两步近场波束形成方法。在第一步骤中,假设平面波模型发现来自IRS中心点到用户设备(UE)的方向。在第二步骤中,发送光束基于预先计算的恒定相位轮廓朝向UE聚焦。所提出的方法中的所有操作都可以实现为存储器操作,即,不需要复杂的计算。使用仿真验证该方法的操作。结果表明,所提出的波束形成技术能够将IRS的光束图案聚焦到用户。更具体地,与5GHz频率运行的(50×50)-Element的IRS的近场聚焦在与忽略近场效果的情况相比时增加了3dB的接收功率。

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