Publication result detail

Framework for Indoor Wireless Propagation Modeling through Wireless Insite®

MACAIA, A.; NARAYAN, N.; SHUKLA, R.; CHANDRA, A.; ZELENÝ, O.; ZÁVORKA, R.; BLUMENSTEIN, J.; PROKEŠ, A.; WOJTUŃ, J.; KELNER, J.; ZIÓŁKOWSKI, C.

Original Title

Framework for Indoor Wireless Propagation Modeling through Wireless Insite®

English Title

Framework for Indoor Wireless Propagation Modeling through Wireless Insite®

Type

Paper in proceedings (conference paper)

Original Abstract

Multipaths, reflections, diffractions, and material interactions complicate indoor wireless propagation modelling. More than 80% of wireless data is consumed indoors; hence, planning successful deployments and maximizing network performance depends on accurate propagation modelling of indoor environments. This work explains a complete framework for indoor wireless propagation modelling via ray tracing simulation in a step-by-step manner. The ray tracing simulations are conducted with Wireless Insite (R), a proprietary electromagnetic propagation software, whereas SketchUp (R) is used at the input side for layout construction from the field measurements, and MATLAB (R) is used at the output side for portraying channel model parameters such as power delay profile (PDP). A whole floor of the authors' department is modelled, and different transmitter-receiver locations were tested for possible use cases such as coverage hole prediction.

English abstract

Multipaths, reflections, diffractions, and material interactions complicate indoor wireless propagation modelling. More than 80% of wireless data is consumed indoors; hence, planning successful deployments and maximizing network performance depends on accurate propagation modelling of indoor environments. This work explains a complete framework for indoor wireless propagation modelling via ray tracing simulation in a step-by-step manner. The ray tracing simulations are conducted with Wireless Insite (R), a proprietary electromagnetic propagation software, whereas SketchUp (R) is used at the input side for layout construction from the field measurements, and MATLAB (R) is used at the output side for portraying channel model parameters such as power delay profile (PDP). A whole floor of the authors' department is modelled, and different transmitter-receiver locations were tested for possible use cases such as coverage hole prediction.

Keywords

Ray tracing, power delay profile, coverage hole prediction

Key words in English

Ray tracing, power delay profile, coverage hole prediction

Authors

MACAIA, A.; NARAYAN, N.; SHUKLA, R.; CHANDRA, A.; ZELENÝ, O.; ZÁVORKA, R.; BLUMENSTEIN, J.; PROKEŠ, A.; WOJTUŃ, J.; KELNER, J.; ZIÓŁKOWSKI, C.

RIV year

2026

Released

23.05.2025

Publisher

IEEE

Location

NEW YORK

ISBN

979-8-3315-4447-8

Book

International Conference on Radioelektronika

Pages from

1

Pages to

6

Pages count

6

URL

BibTex

@inproceedings{BUT199779,
  author="{} and  {} and Rajeev {Shukla} and Aniruddha {Chandra} and Ondřej {Zelený} and Radek {Závorka} and Jiří {Blumenstein} and Aleš {Prokeš} and Jarosław {Wojtuń} and Jan M. {Kelner} and Cezary {Ziółkowski}",
  title="Framework for Indoor Wireless Propagation Modeling through Wireless Insite®",
  booktitle="International Conference on Radioelektronika",
  year="2025",
  pages="1--6",
  publisher="IEEE",
  address="NEW YORK",
  doi="10.1109/RADIOELEKTRONIKA65656.2025.11008377",
  isbn="979-8-3315-4447-8",
  url="https://ieeexplore.ieee.org/abstract/document/11008377"
}