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Natural Sciences

Gulshan Valiyeva

Undergraduate student in radio and telecommunications engineering · Azerbaijan Technical University

Baku, Azerbaijan

Biography

Gulshan Valiyeva is a third-year undergraduate student of radio and telecommunications engineering at Azerbaijan Technical University in Baku, Azerbaijan. She completed the Baku State College of Communications and Transport with a high score in communication nodes and systems before entering the university. She takes part in its Student Scientific Society and writes on multi-channel telecommunication systems, signal processing and digital communication networks, with a focus on the mathematical modelling of signal distortion.

Publications with ICRR

Computer SciencesPublished
Mathematical Modeling of Linear and Nonlinear Signal Distortions in Multichannel Telecommunication Systems

Multichannel telecommunication systems (MCTS) underpin modern communication infrastructure by enabling the simultaneous, independent transmission of N signals over a single physical propagation medium. This article sets out the working principles of MCTS, from the conversion of individual message signals into channel signals by end-station modulators to their combination into a single group signal by a combining device. It then develops a mathematical model of the distortions this group signal accumulates as it travels through the communication channel: linear distortion, described through the Duhamel (convolution) integral of the channel's impulse response, and nonlinear distortion, expressed as a power series in the signal amplitude, together with an additive interference term. The model shows how the signal recovered at the receiving station diverges from the transmitted group signal as a function of these three contributions. The article closes by distinguishing the two channel-division strategies used to implement MCTS in practice: frequency division, characteristic of analog systems, and time division, characteristic of digital systems. The analysis is theoretical and draws on established formalisms rather than new experimental data; it is intended as a concise mathematical reference for the distortion mechanisms that channel-division system designs must contend with.

Valiyeva, G. (2026). Mathematical Modeling of Linear and Nonlinear Signal Distortions in Multichannel Telecommunication Systems. International Collegiate Research Review, 1(1), 148–153.PDF