English

Mobility-Enhanced Simultaneous Lightwave Information and Power Transfer

Signal Processing 2021-02-19 v1

Abstract

Simultaneous lightwave information and power transfer (SLIPT) has been regarded as a promising technology to deal with the ever-growing energy consumption and data-rate demands in the Internet of Things (IoT). We propose a resonant beam based SLIPT system (RB-SLIPT), which deals with the conflict of high deliverable power and mobile receiver positioning with the existing SLIPT schemes. At first, we establish a mobile transmission channel model and depict the energy distribution in the channel. Then, we present a practical design and evaluate the energy/data transfer performance within the moving range of the RB-SLIPT. Numerical evaluation demonstrates that the RB-SLIPT can deliver 5 W charging power and enable 1.5 Gbit/s achievable data rate with the moving range of 20-degree field of view (FOV) over 3 m distance. Thus, RB-SLIPT can simultaneously provide high-power energy and high-rate data transfer, and mobile receiver positioning capability.

Keywords

Cite

@article{arxiv.2102.09306,
  title  = {Mobility-Enhanced Simultaneous Lightwave Information and Power Transfer},
  author = {Mingqing Liu and Mingliang Xiong and Qingwen Liu},
  journal= {arXiv preprint arXiv:2102.09306},
  year   = {2021}
}
R2 v1 2026-06-23T23:17:06.136Z