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Enhancing active reconfigurable intelligent surface

机译:增强主动可重构智能表面

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A Reconfigurable Intelligent Surface (RIS) panel comprises many independent Reflective Elements (REs). One possible way to implement an RIS is to use a binary passive load impedance connected to an antenna element to achieve the modulation of reflected radio waves. Each RE reflects incoming waves (incident signal) by using on/off modulation between two passive loads and adjusting its phase using a Phase Shifter (PS). However, this modulation process reduces the amplitude of the reflected output signal to less than unity. Therefore, recent RIS works have employed Reflection Amplifiers (RAs) to compensate for the losses incurred during the modulation process. However, these systems only improve the reflection coefficient for a single modulation state, resulting in suboptimal RE efficacy. Thus, this paper proposes a strategy for optimising RE by continuously activating the RA regardless of the switching load state. The performance of the proposed scheme is evaluated in two scenarios: (1) In the first scenario (Sc1), the RA only operates to compensate for high-impedance loads, and (2) in the second scenario (Sc2), the RA runs continuously regardless of the RE loads. To benchmark the performance of Sc1 and Sc2, various metrics are compared, including signal-to-noise ratio, insertion loss, noise figure, communication range, and power-added efficiency. Numerical examples are provided to demonstrate the effectiveness of the proposed scheme. It is found that the proposed system in Sc2 leads to better overall performance compared to Sc1 due to the increased gain of the RIS reflection.
机译:可重构智能表面(RIS)面板由许多独立反光元素(REs)。使用二进制被动负载阻抗连接天线元素实现的调制反射无线电波。波(事件信号)通过使用开/关两个被动加载和之间调制调整其阶段使用移相器(PS)。然而,这种调制过程减少了少反映了输出信号的振幅比团结。使用反射放大器(RAs)弥补损失的调制过程。改善单一反射系数调制状态,导致非最优再保险功效。为优化再保险不断激活RA无论开关负载状态。评估该方案的性能在两个场景:(1)在第一个场景中(那么),RA只操作来弥补高阻抗负载,和(2)在第二场景(星际2)RA连续运行无论负载。那么和星际2,各种指标相比,包括信噪比,插入损耗、噪声图、沟通范围,power-added效率。还提供了示例来演示该方案的有效性。星际2,拟议的系统会导致更好的那么由于相比整体性能增加获得RIS的反射。

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  • 来源
    《Intelligent and Converged Networks 》 |2022年第4期| 351-363| 共13页
  • 作者

    Muhammad I. Khalil;

  • 作者单位

    School of Electrical and Electronic Engineering, University of Royal Melbourne Institute of Technology (RMIT), Melbourne, VIC, Australia;

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  • 正文语种 英语
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