English

Enclosed mmWave Wearable Networks: Feasibility and Performance

Information Theory 2017-08-04 v2 math.IT

Abstract

This paper investigates the feasibility of mmWave frequencies for personal networks of wireless wearable devices in enclosed settings (e.g., commuter trains, subways, airplanes, airports, or offices). At these frequencies, specular reflections off surfaces are expected to contribute intended signal power and, simultaneously, to aggravate the interference at the receivers. Meanwhile, blockages by obstacles and people---including the individuals wearing the devices---are expected to shield receivers from interference. With the aid of stochastic geometry and random shape theory, we assess the interplay of surface reflections and blockages for dense deployments of wearable networks equipped with directional antenna arrays in relevant indoor settings.

Keywords

Cite

@article{arxiv.1607.04339,
  title  = {Enclosed mmWave Wearable Networks: Feasibility and Performance},
  author = {Geordie George and Kiran Venugopal and Angel Lozano and Robert W. Heath},
  journal= {arXiv preprint arXiv:1607.04339},
  year   = {2017}
}

Comments

33 pages, 17 figures, Submitted to IEEE Transactions on Wireless Communications

R2 v1 2026-06-22T14:55:20.840Z