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RESEARCH ON BEAMFORMING TECHNIQUES IN 5G NETWORK
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5G networks mark a significant advancement in
telecommunications standards compared to 4G, offering data
transmission speeds of up to 10 Gbps and are expected to be
widely deployed shortly. Achieving this speed requires high-
frequency waves over a broad bandwidth, presenting various
technical challenges. One of the key technologies supporting
5G is Massive MIMO Beamforming, particularly Hybrid
Beamforming - a combination of Analog and Digital
Beamforming - that optimizes signal transmission without
distortion. In this study, the author has simulated, compared,
and evaluated the performance of three Beamforming
techniques: conventional, adaptive, and hybrid. The analysis
results help identify the most optimal method for enhancing
communication efficiency in 5G networks, contributing to this
technology's practical application and deployment.
Keywords: Beamforming; 5G mobile networks; antenna
beamforming; antenna arrays for 5G.
Title: RESEARCH ON BEAMFORMING TECHNIQUES IN 5G NETWORK
Description:
5G networks mark a significant advancement in
telecommunications standards compared to 4G, offering data
transmission speeds of up to 10 Gbps and are expected to be
widely deployed shortly.
Achieving this speed requires high-
frequency waves over a broad bandwidth, presenting various
technical challenges.
One of the key technologies supporting
5G is Massive MIMO Beamforming, particularly Hybrid
Beamforming - a combination of Analog and Digital
Beamforming - that optimizes signal transmission without
distortion.
In this study, the author has simulated, compared,
and evaluated the performance of three Beamforming
techniques: conventional, adaptive, and hybrid.
The analysis
results help identify the most optimal method for enhancing
communication efficiency in 5G networks, contributing to this
technology's practical application and deployment.
Keywords: Beamforming; 5G mobile networks; antenna
beamforming; antenna arrays for 5G.
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