English

Wireless Communications with Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement

Signal Processing 2020-10-16 v2 Information Theory math.IT

Abstract

Reconfigurable intelligent surfaces (RISs) comprised of tunable unit cells have recently drawn significant attention due to their superior capability in manipulating electromagnetic waves. In particular, RIS-assisted wireless communications have the great potential to achieve significant performance improvement and coverage enhancement in a cost-effective and energy-efficient manner, by properly programming the reflection coefficients of the unit cells of RISs. In this paper, free-space path loss models for RIS-assisted wireless communications are developed for different scenarios by studying the physics and electromagnetic nature of RISs. The proposed models, which are first validated through extensive simulation results, reveal the relationships between the free-space path loss of RIS-assisted wireless communications and the distances from the transmitter/receiver to the RIS, the size of the RIS, the near-field/far-field effects of the RIS, and the radiation patterns of antennas and unit cells. In addition, three fabricated RISs (metasurfaces) are utilized to further corroborate the theoretical findings through experimental measurements conducted in a microwave anechoic chamber. The measurement results match well with the modeling results, thus validating the proposed free-space path loss models for RIS, which may pave the way for further theoretical studies and practical applications in this field.

Keywords

Cite

@article{arxiv.1911.05326,
  title  = {Wireless Communications with Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement},
  author = {Wankai Tang and Ming Zheng Chen and Xiangyu Chen and Jun Yan Dai and Yu Han and Marco Di Renzo and Yong Zeng and Shi Jin and Qiang Cheng and Tie Jun Cui},
  journal= {arXiv preprint arXiv:1911.05326},
  year   = {2020}
}

Comments

Accepted by IEEE Transactions on Wireless Communications. On the Path Loss of Reconfigurable Intelligent Surfaces-Assisted Wireless Communications: Modeling and Experimental Assessment