Publication result detail

Synthesis of Omnidirectional Path Loss Model Based on Directional Model and Multi-Elliptical Geometry

WOJTUŃ, J.; ZIÓŁKOWSKI, C.; KELNER, J.; MIKULÁŠEK, T.; ZÁVORKA, R.; BLUMENSTEIN, J.; HORKÝ, P.; PROKEŠ, A.; CHANDRA, A.; SHUKLA, R.; GHOSH, A.

Original Title

Synthesis of Omnidirectional Path Loss Model Based on Directional Model and Multi-Elliptical Geometry

English Title

Synthesis of Omnidirectional Path Loss Model Based on Directional Model and Multi-Elliptical Geometry

Type

Paper in proceedings (conference paper)

Original Abstract

Millimeter wave (mmWave) technology offers high throughput but has a limited radio range, necessitating the use of directional antennas or beamforming systems such as massive MIMO. Path loss (PL) models using narrow-beam antennas are known as directional models, while those using omnidirectional antennas are referred to as omnidirectional models. To standardize the analysis, omnidirectional PL models for mmWave ranges have been introduced, including TR 38.901 by 3GPP, which is based on measurements from directional antennas. However, synthesizing these measurements can be complex and time-consuming. This study proposes a numerical approach to derive an omnidirectional model from directional data using multi-elliptical geometry. We assessed the effectiveness of this method against existing PL models for mmWaves that are available in the literature.

English abstract

Millimeter wave (mmWave) technology offers high throughput but has a limited radio range, necessitating the use of directional antennas or beamforming systems such as massive MIMO. Path loss (PL) models using narrow-beam antennas are known as directional models, while those using omnidirectional antennas are referred to as omnidirectional models. To standardize the analysis, omnidirectional PL models for mmWave ranges have been introduced, including TR 38.901 by 3GPP, which is based on measurements from directional antennas. However, synthesizing these measurements can be complex and time-consuming. This study proposes a numerical approach to derive an omnidirectional model from directional data using multi-elliptical geometry. We assessed the effectiveness of this method against existing PL models for mmWaves that are available in the literature.

Keywords

antenna pattern synthesis | directional PL model | millimeter waves | multi-elliptical propagation model | omnidirectional PL model | path loss (PL) model | propagation

Key words in English

antenna pattern synthesis | directional PL model | millimeter waves | multi-elliptical propagation model | omnidirectional PL model | path loss (PL) model | propagation

Authors

WOJTUŃ, J.; ZIÓŁKOWSKI, C.; KELNER, J.; MIKULÁŠEK, T.; ZÁVORKA, R.; BLUMENSTEIN, J.; HORKÝ, P.; PROKEŠ, A.; CHANDRA, A.; SHUKLA, R.; GHOSH, A.

RIV year

2026

Released

21.05.2025

Publisher

Institute of Electrical and Electronics Engineers Inc.

ISBN

9788831299107

Book

Eucap 2025 19th European Conference on Antennas and Propagation

Pages count

5

URL

BibTex

@inproceedings{BUT199819,
  author="{} and  {} and  {} and  {} and Tomáš {Mikulášek} and  {} and Radek {Závorka} and  {} and Jiří {Blumenstein} and  {} and  {} and Aleš {Prokeš} and  {} and Aniruddha {Chandra} and  {} and  {}",
  title="Synthesis of Omnidirectional Path Loss Model Based on Directional Model and Multi-Elliptical Geometry",
  booktitle="Eucap 2025 19th European Conference on Antennas and Propagation",
  year="2025",
  pages="5",
  publisher="Institute of Electrical and Electronics Engineers Inc.",
  doi="10.23919/EuCAP63536.2025.10999302",
  isbn="9788831299107",
  url="https://ieeexplore.ieee.org/document/10999302"
}