English

RIS-aided Wireless Communication with $1$-bit Discrete Optimization for Signal Enhancement

Signal Processing 2022-09-13 v1

Abstract

In recent years, a brand-new technology, reconfigurable intelligent surface (RIS) has been widely studied for reconfiguring the wireless propagation environment. RIS is an artificial surface of electromagnetic material that is capable of customizing the propagation of the wave impinging upon it. Utilizing RIS for communication service like signal enhancement usually lead to non-convex optimization problems. Existing optimization methods either suffers from scalability issues for NN number of RIS elements large, or may lead to suboptimal solutions in some scenario. In this paper, we propose a divide-and-sort (DaS) discrete optimization approach, that is guaranteed to find the global optimal phase shifts for 11-bit RIS, and has time complexity O(Nlog(N))\mathcal{O}(N \log(N)). Numerical experiments show that the proposed approach achieves a better ``performance--complexity tradeoff'' over other methods for 11-bit RIS.

Keywords

Cite

@article{arxiv.2209.05111,
  title  = {RIS-aided Wireless Communication with $1$-bit Discrete Optimization for Signal Enhancement},
  author = {Rujing Xiong and Xuehui Dong and Tiebin Mi and Robert caiming Qiu},
  journal= {arXiv preprint arXiv:2209.05111},
  year   = {2022}
}
R2 v1 2026-06-28T01:06:48.221Z