Abstract
This article discusses the possible formats of signals of 5G mobile communication networks (NR, IMT-2020): configurations of the number of resource blocks and frequency shifts of subcarriers. modulation schemes, organizations of the physical level, as well as the broadband signals of these networks and, as a result, the need for introducing a margin on the linearity of the transceiver’s paths to eliminate distortion or the manifestation of blocking effects when the signal interferes with third-party means. We analyze the characteristics of the dynamic range of the signals from IMT-2020 ground mobile systems and make a conclusion about the noise-like signals. To find the ratio of the maximum amplitude to its average value and a given ratio not exceeded with a given probability, the Matlab mathematical models were used. We infer that the law of probability distribution of the module of the instantaneous amplitude of the 5G signals corresponds to the distribution characteristic of narrow-band radio noise. Based on the study, the peak factor of the signal of the IMT-2020 ground mobile systems for various variations is obtained and a sufficient level of power reserve is provided to ensure, with high probability, the transmission of the 5G signals through radio paths, eliminating signal distortion. The results of this study were applied in the examination of the electromagnetic compatibility of radio electronic devices of cellular mobile communications with existing and promising electronic means of civil and special purposes and in the study of the protection of ground satellite stations from the effects of radio electronic means of IMT-2020 cellular mobile telecommunication networks located at border territories.
Highlights
This article discusses the possible formats of signals of 5G mobile communication networks
the manifestation of blocking effects when the signal interferes with third-party means
We analyze the characteristics of the dynamic range of the signals
Summary
В статье рассмотрены вопросы возможных форматов сигналов сетей мобильной связи 5G (NR, IMT-2020): конфигурации числа ресурсных блоков и частотных сдвигов поднесущих, модуляционные схемы, организации физического уровня, а также широкополосность сигналов данных сетей и, как следствие, необходимость в введении запаса на линейность приемо-передающих трактов для исключения искажений или проявления эффектов блокирования при помеховых воздействиях данного сигнала на сторонние средства. Проанализированы характеристики динамического диапазона сигналов систем сухопутной подвижной службы стандарта IMT-2020, сделан вывод о шумоподобности сигналов. Авторами сделан вывод о соответствии закона распределения вероятностей модуля мгновенной амплитуды сигналов системы связи 5-го поколения распределению, характерному для узкополосного радиошума. На основании проведенного исследования получены значения пик-фактора сигнала систем сухопутной подвижной службы стандарта IMT-2020 для различных их вариаций и определен достаточный уровень запаса мощности для обеспечения, с высокой вероятностью, прохождения сигналов сетей мобильной связи пятого поколения через радиотракты, исключающий искажения сигналов. Пик-фактор сигналов систем сухопутной подвижной службы 5G. Belarusian State University of Informatics and Radioelectronics (Minsk, Republic of Belarus)
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