Massive MIMO Wireless Solutions in Backhaul for the 5G Networks

Author:

Biradar Arun1,Murthy Nimmagadda Sathyanarayana2,Awasthi Parul3,Srivastava Ajeet Kumar3,Akram Patan Saleem4,Lakshminarayana M.5,Abidin Shafiqul6,Vadi Vikas Rao7,Sisay Asefa8ORCID

Affiliation:

1. School of Computer Science and Engineering, REVA University, Bengaluru, Karnataka 560064, India

2. Department of Electronics and Communications Engineering, V R Siddhartha Engineering College, Vijayawada, Andhra Pradesh 520007, India

3. Department of Electronics and Communications Engineering, CSJM University, Kanpur, Uttar Pradesh 208024, India

4. Department of Electronics and Communications Engineering, Koneru Lakshmiah Education Foundation (Deemed to Be University), Vaddeswaram, Andhra Pradesh 522302, India

5. Department of Electronics and Communications Engineering, SJB Institute of Technology, Bengaluru, Karnataka 560060, India

6. Department of Computer Science and Engineering, Aligarh Muslim University, Aligarh, Uttar Pradesh 202002, India

7. Department of Computer Science and IT, Bosco Technical Training Society, Don Bosco Technical School, Okhla Road, New Delhi, Delhi 110025, India

8. Department of Electrical and Computer Engineering, Kombolcha Institute of Technology, Wollo University, Ethiopia

Abstract

In general, the MIMO technology is used to transfer data from a protocol such as Wi-Fi in 5G networks. This is due to the increased bandwidth and capacity. The 802.11n protocol, which, using the technology described in it, allows you to reach speeds of up to 350 megabits/second. The quality of data transmission has improved even in areas where the reception signal is low. An external access point with a MIMO antenna is a well-known one. The WiMAX network can now transmit information at speeds of up to 40 megabits/second, using MIMO. It uses MIMO technology up to 8 × 8 . Thanks to this, a higher transfer rate is achieved—over 35 megabits/second. In addition, reliable and high quality connection of the best quality is guaranteed. In this paper, we continue to work and enhance technical configurations of MIMO in 5G networks. The proposed model will improve spectrum performance, improve network capability, and speed up data rates. In a saturation point, the proposed method achieves that the signal to noise interference ratio is just 42.4%, the receiver signal strength is 92.94%, the downstream traffic is 48.76%, the upstream traffic is 45.62%, the bandwidth utilization is 97.43%, the speed is 95.79%, the connectivity between the access point is 90.6%, and the network security is 96.42%.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

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