ZF and MMSE detection study in MIMO systems

Автор: Tyukhtyaev Dmitriy A., Ermakova Nadezhda N., Semenov Evgeniy S.

Журнал: НБИ технологии @nbi-technologies

Рубрика: Инновации в информатике, вычислительной технике и управлении

Статья в выпуске: 1 т.17, 2023 года.

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Theproliferation of obstacles in urban environments, such as buildings, wires, and trees, can cause signal re-reflection, resulting in difficulties in detecting the original one. Multipath propagation occurs when electromagnetic waves hit natural and man-made obstacles, leading to the reflection, scattering, and diffraction of waves. This can result in multiple waves arriving at the receiving antenna with different delays, attenuations, and phases. To address this problem, the widely used in modern wireless communication systems MIMO technology (Multiple Input Multiple Output) can beutilized. It uses multiple transmittingand receivingantennas to increasecommunication channel throughput and reduce errors that occur during data transmission. This paper examines a receiver with decorrelation (ZF receiver) and a receiver that minimizes the minimum mean square error (MMSE). Additionally, an algorithm for a MIMO transmission system model using ZF and MMSE receivers is presented. In the final section of the article, the results of Bit Error Rate (BER) modeling are presented for different numbers of transmitting and receiving antennas. The presented algorithmcan significantly reduce errors that occur during data transmission in urban environments, where multipath propagation is common because of signal re-reflection. The use of MIMO technology with decorrelation and MMSE receivers can increase the efficiency of communication channels and make wireless communication more reliable in urban environments.

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Mimo, ber, zf, mmse

Короткий адрес: https://sciup.org/149142564

IDR: 149142564   |   DOI: 10.15688/NBIT.jvolsu.2023.1.6

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