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The aim of the research work was to study and select the existing adaptation options for
transmission parameters, in order to reduce the influence of shortcomings of the short-wave radio
line, it is advisable to use the methods of digital signal processing as efficiently as possible. According
to the results of the characteristics of analog-to-digital converters (ADCs), it became a
study of the available hardware for constructing extended radio links, it was concluded that with
an increase in the performance of FPGAs on which digital signal processing is implemented, it is
possible to implement the technology of creating an active antenna array (AAR), consisting of the
Nth number of independent antenna modules, which is a conceptual task in solving the issue of
adapting information and technical characteristics to constantly changing parameters of
ionospheric transmission, for a more energy-efficient approach to designing an ionospheric radio
communication system. Improving the performance of the radio system by improving communication
protocols, solving the problem of optimal channel load from the time of formation and reception
of signals. The main idea of such an AAR is to digitize or generate a high-frequency signal in
the immediate vicinity of the antenna, as part of the antenna modules. The indicated results make
it possible to replace separately tuned radios and transceivers built according to a complex superheterodyne
circuit with a limited number of available hardware units operating under software
model of a software-configurable radio channel. In the next work, it is planned to conduct studies
to assess the passage of OFDM signals through multipath communication channels with fading of
Rayleigh and Rice. The resulting model will allow us to evaluate the noise immunity at different
lengths of the cyclic prefix of the OFDM symbol and to observe the behavior of the signal constellation
under the influence of various instabilities.