ASSESSING THE CHARACTERISTICS OF 5G/6G “NEW RADIO” SYSTEMS WITH USER’S MACRO- AND MICROMOBILITY; [МЕТОД ОЦЕНКИ ХАРАКТЕРИСТИК СИСТЕМ 5G/6G «НОВОЕ РАДИО» С УЧЕТОМ МАКРО- И МИКРОМОБИЛЬНОСТИ ПОЛЬЗОВАТЕЛЕЙ]

The performance of 5G/6G cellular “new radio” systems is typically evaluated using static user location and perfectly directional antennas which are justified in the case of regular synchronisation between the user equipment (UE) and the base station (BS). However, in the case of high energy-efficient UEs with limited RedCap functionality, BS is less likely to get information about the quality of the signal received by the device which changes when the UE moves. This leads to the need to investigate the dynamics of the performance indicators of systems with RedCap UEs over time. In the paper, tools of stochastic geometry and random walk theory are used to analyze the spectral efficiency depending on the distance between the BS and the UE and the directionality of the UE antenna at a random moment of time. A numerical experiment has shown that macromobility has a significant impact on the spectral efficiency, the impact of micromobility is smaller and appears only at short time intervals, while the size of the phased antenna array on the BS side practically does not affect the obtained result. © 2024 Federal Research Center "Computer Science and Control" of Russian Academy of Sciences. All rights reserved.

Авторы
Ostrikova D.Yu. , Golos E.S. , Beschastnyi V.A. , Machnev E.A. , Shorgin V.S. , Gaidamaka Y.V.
Издательство
Федеральный исследовательский центр "Информатика и управление" РАН
Номер выпуска
2
Язык
Русский
Страницы
32-39
Статус
Опубликовано
Том
18
Год
2024
Организации
  • 1 Department of Probability Theory and Cyber Security, RUDN University, 6 Miklukho-Maklaya Str., Moscow, 117198, Russian Federation
  • 2 Federal Research Center “Computer Science and Control” of the Russian Academy of Sciences, 44-2 Vavilov Str., Moscow, 119333, Russian Federation
Ключевые слова
5G new radio; macromobility; micromobility; mmWave; spectral efficiency; sub-THz
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