We exploit multi-path fading propagation to improve both the signal-to-interference-plus-noise-ratio and the stability of wireless communications within electromagnetic environments that support rich multipath propagation. Quasi-passive propagation control with multiple binary reconfigurable intelligent surfaces is adopted to control the stationary waves supported by a metallic cavity hosting a software-defined radio link. Results are demonstrated in terms of the error vector magnitude minimization of a quadrature phase-shift modulation scheme under no-line-of-sight conditions. It is found that the magnitude of fluctuation of received symbols is reduced to a stable constellation by increasing the number of individual surfaces, or elements, thus demonstrating channel hardening. By using a second software-defined radio device as a jammer, we demonstrate the ability of the RIS to mitigate the co-channel interference by channel hardening. Results are of particular interest in smart radio environments for mobile network architectures beyond 5G.
翻译:我们利用多路径淡化的传播来改善信号到干扰+噪声拉长的信号和无线通信在支持丰富多路径传播的电磁环境中的稳定性。我们采用多二进可重新配置智能表面的准被动传播控制来控制固定的波,由安装软件定义的无线电链接的金属洞穴支持。结果表现为在无视线条件下最大限度地减少二次相位调制系统的误差矢量。发现接收符号的波动程度通过增加单个表面或元素的数量而降低到稳定的星座,从而显示通道的硬化。我们通过使用第二个软件定义的无线电装置作为干扰器,展示了RIS通过频道加固来减轻共声波干扰的能力。在智能无线电环境对超过5G的移动网络结构特别感兴趣。