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Feasibility study of eigenmode propagation through 2D models of vegetation

Oliver Csernyava (Department of Broadband Infocommunications and Electromagnetic Theory (HVT), Faculty of Electrical Engineering and Informatics, Budapest University of Technology and Economics, Budapest, Hungary)
Jozsef Pavo (Department of Broadband Infocommunications and Electromagnetic Theory, Budapest University of Technology and Economics, Budapest, Hungary)
Zsolt Badics (Tensor Research LLC, Andover, Massachusetts, USA and Department of Broadband Infocommunications and Electromagnetic Theory, Budapest University of Technology and Economics, Budapest, Hungary)

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering

ISSN: 0332-1649

Article publication date: 29 September 2023

Issue publication date: 21 November 2023

48

Abstract

Purpose

This study aims to model and investigate low-loss wave-propagation modes across random media. The objective is to achieve better channel properties for applying radio links through random vegetation (e.g. forest) using a beamforming approach. Thus, obtaining the link between the statistical parameters of the media and the channel properties.

Design/methodology/approach

A beamforming approach is used to obtain low-loss propagation across random media constructed of long cylinders, i.e. a simplified two dimensional (2D) model of agroforests. The statistical properties of the eigenmode radio wave propagation are studied following a Monte Carlo method. An error quantity is defined to represent the robustness of an eigenmode, and it is shown that it follows a known Lognormal statistical distribution, thereby providing a base for further statistical investigations.

Findings

In this study, it is shown that radio wave propagation eigenmodes exist based on a mathematical model. The algorithm presented can find such modes of propagation that are less affected by the statistical variation of the media than the regular beams used in radio wave communication techniques. It is illustrated that a sufficiently chosen eigenmode waveform is not significantly perturbed by the natural variation of the tree trunk diameters.

Originality/value

As a new approach to obtain low-loss propagation in random media at microwave frequencies, the presented mathematical model can calculate scattering-free wave-propagation eigenmodes. A robustness quantity is defined for a specific eigenmode, considering a 2D simplified statistical forest example. This new robustness quantity is useful for performing computationally low-cost optimization problems to find eigenmodes for more complex vegetation models.

Keywords

Acknowledgements

Funding: This work was supported by the Hungarian Ministry for Innovation and Technology, NVKDP NKFI Found, and the Hungarian Scientific Research Fund under Grant K-135307.

Citation

Csernyava, O., Pavo, J. and Badics, Z. (2023), "Feasibility study of eigenmode propagation through 2D models of vegetation", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 42 No. 5, pp. 1212-1224. https://doi.org/10.1108/COMPEL-01-2023-0024

Publisher

:

Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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