A reconfigurable intelligent surface (RIS) is capable of manipulating electromagnetic waves with its flexibly configurable unit cells, thus is an appealing technology to resist fast fading caused by multi-path in wireless communications. In this paper, a two-path propagation model for RIS-assisted wireless communications is proposed by considering both the direct path from the transmitter to the receiver and the assisted path provided by the RIS. The proposed propagation model unveils that the phase shifts of RISs can be optimized by appropriate configuration for multi-path fading mitigation. In particular, four types of RISs with different configuration capabilities are introduced and their performances on improving received signal power in virtue of the assisted path to resist fast fading are compared through extensive simulation results. In addition, an RIS operating at 35 GHz is used for experimental measurement. The experimental results verify that an RIS has the ability to combat fast fading and thus improves the receiving performance, which may lay a foundation for further researches.
翻译:重新配置的智能表面(RIS)能够以其灵活配置的单元细胞来操纵电磁波,因此是一种对抗无线通信多路传输造成的快速衰减的诱人技术。在本文中,通过考虑从发报机到接收器的直接路径和RIS提供的辅助路径,提出了RIS辅助无线通信的双向传播模式。拟议的传播模式揭示了通过适当的配置来优化RIS的阶段转移,以减缓多路衰减。特别是,引入了四种配置能力不同的RIS,并且通过广泛的模拟结果比较了它们利用辅助路径改进信号功率以抵御快速衰减的性能。此外,在35千兆赫上运行的RIS用于实验测量。实验结果证实RIS有能力对抗快速减退缩,从而改进接收性能,从而为进一步的研究奠定基础。