Analysis of prospects for the use of the terahertz frequency range for special purpose wireless communication networks.

Author:

Saiko V.,Romanov D.,Narytnyk T.,Komarov V.,Fomin M.

Abstract

Frequencies from 100 GHz to 3 THz are promising ranges for a new generation of wireless communication systems due to wide spectrum bands. These frequencies also offer the potential for revolutionary applications made possible by new thinking and advances in devices, circuits, software, signal processing and systems. But the transition to the real use of the terahertz range as a frequency resource in the provision of communication services for applications in special purpose wireless communication networks is accompanied by many problems of spectrum management, network analysis, design and optimization of the architecture of these networks. The novelty of this work is due to the fact that, despite the fact that in recent years a number of review publications by domestic and foreign authors have been published, but in the aspects of development and specifics of possible applications of wireless communication networks of the terahertz frequency range in solving problems with power structures and forces special operations were not considered. The authors focused special attention on highlighted domestic developments in the field of wireless access systems in the terahertz range. The purpose of the work is an analytical review of the features of the transition to the real use of the terahertz frequency range as a frequency resource in the provision of communication services by resource-intensive applications by wireless communication networks for promising applications in solving special problems by power structures. In the work, a systematic analysis and classification of the main areas of promising applications of wireless communication networks of the terahertz frequency range in solving problems by special-purpose power structures is made, and scientific research tasks are given for the transition to the real use of the terahertz frequency range as a frequency resource in the provision of communication services for special purpose applications. The author's proposals developed in this work for promising applications of terahertz communication networks by special operations forces or special purpose forces are the theoretical basis for creating a methodological apparatus for substantiating recommendations for the selection of promising applications when using terahertz communication networks by special operations forces when performing special purpose tasks.

Publisher

Scientific Journals Publishing House

Reference35 articles.

1. Наритник Т. М. Аналіз терагерцових технологій та їх застосування для створення інноваційних розробок. Електронне наукове фахове видання – журнал «Проблеми телекомунікацій». 2017. № 1 (20). С. 25–30. URL: http://pt.journal.kh.ua (дата звернення: 10.01.2024).

2. Кравчук С. О., Наритник Т. М. Телекомунікаційні системи терагерцового діапазону: монографія. Житомир: ФОП «Євенок О. О.», 2015. 208 с.

3. Сайко В. Г., Наритник Т. М. Безпроводові системи зв’язку терагерцового діапазону: монографія. Німеччина: видавництво LAP Lambert Academic Publishing, 2019. 69 с.

4. Сайко В. Г., Одарченко Р. С., Абакумова А. О., Наритник Т. М., Наконечний В. С., Домрачев В. М., Толюпа С. В., Заблоцький В. Ю., Баховський П. Ф. Мережі мобільного зв’язку нового покоління 4G/5G/6G: монографія. Київ: ТОВ «Про формат», 2021. 200 с.

5. Майборода І. М., Стороженко І. П., Бабенко В. П., Кайдаш М. В. Огляд досягнень в терагерцових комунікаційних системах. Збірник наукових праць Національної академії Національної гвардії України. 2016. Вип. 1. С. 45–48.

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