English

mmWave Communications for Indoor Dense Spaces: Ray-Tracing Based Channel Characterization and Performance Comparison

Information Theory 2022-02-18 v1 math.IT

Abstract

In this paper, the indoor dense space (IDS) channel at 28 GHz is characterized through extensive Ray-Tracing (RT) simulations. We consider IDS as a specific type of indoor environment with confined geometry and packed with humans, such as aircraft cabins and train wagons. Based on RT simulations, we characterize path loss, shadow fading, root-mean-square delay spread, Rician K-factor, azimuth/elevation angular spread of arrival/departure considering different RT simulation scenarios of the fuselage geometry, material, and human presence. While the large-scale fading parameters are similar to the state-of-the-art channel models, the small-scale fading parameters demonstrate richer multipath scattering in IDS, resulting in poorer bit error rate performance in comparison to the 3GPP indoor channel model.

Keywords

Cite

@article{arxiv.2202.08774,
  title  = {mmWave Communications for Indoor Dense Spaces: Ray-Tracing Based Channel Characterization and Performance Comparison},
  author = {Ozan Alp Topal and Mustafa Ozger and Dominic Schupke and Emil Björnson and Cicek Cavdar},
  journal= {arXiv preprint arXiv:2202.08774},
  year   = {2022}
}
R2 v1 2026-06-24T09:43:02.857Z