Wireless power distributions in multi-cavity systems at high frequencies

Author:

Adnan Farasatul1,Blakaj Valon2,Phang Sendy3ORCID,Antonsen Thomas M.1,Creagh Stephen C.2,Gradoni Gabriele23ORCID,Tanner Gregor2

Affiliation:

1. Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD, USA

2. School of Mathematical Sciences, University of Nottingham, UK

3. George Green Institute for Electromagnetics Research, University of Nottingham, UK

Abstract

The next generations of wireless networks will work in frequency bands ranging from sub-6 GHz up to 100 GHz. Radio signal propagation differs here in several critical aspects from the behaviour in the microwave frequencies currently used. With wavelengths in the millimetre range (mmWave), both penetration loss and free-space path loss increase, while specular reflection will dominate over diffraction as an important propagation channel. Thus, current channel model protocols used for the generation of mobile networks and based on statistical parameter distributions obtained from measurements become insufficient due to the lack of deterministic information about the surroundings of the base station and the receiver-devices. These challenges call for new modelling tools for channel modelling which work in the short-wavelength/high-frequency limit and incorporate site-specific details—both indoors and outdoors. Typical high-frequency tools used in this context—besides purely statistical approaches—are based on ray-tracing techniques. Ray-tracing can become challenging when multiple reflections dominate. In this context, mesh-based energy flow methods have become popular in recent years. In this study, we compare the two approaches both in terms of accuracy and efficiency and benchmark them against traditional power balance methods.

Funder

Air Force Office of Scientific Research

Office of Naval Research

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Deviations From the Random Plane Wave Field Distribution in Electromagnetic Enclosures;IEEE Transactions on Electromagnetic Compatibility;2023-04

2. Innovative and emerging communications concepts and technologies;Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences;2021-12

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