Improving Quality of Service in 5G Resilient Communication with the Cellular Structure of Smartphones

Author:

Sangaiah Arun Kumar1,Javadpour Amir2ORCID,Pinto Pedro3,Ja'fari Forough4,Zhang Weizhe5

Affiliation:

1. School of Computing Science and Engineering, VIT University, Vellore,India and National Yunlin University of Science and Technology, 123 University Road, Section 3, Douliu, Taiwan

2. Department of Computer Science and Technology, Cyberspace Security, Harbin Institute of Technology, Shenzhen, China and Electrotechnics and Telecommunications Department, ADiT-Lab, Instituto Politico de Viana do Castelo, Porto, Portugal

3. Electrotechnics and Telecommunications Department, ADiT-Lab, Instituto Politico de Viana do Castelo, ISMAI, and INESC TEC, Porto, Portugal

4. Department of Computer Engineering, Sharif University of Technology, Tehran, Iran

5. Department of Computer Science and Technology, Cyberspace Security, Harbin Institute of Technology (Harbin) and (Shenzhen)

Abstract

Recent studies in information computation technology (ICT) are focusing on Next-generation networks, SDN (Software-defined networking), 5G, and 6G. Optimal working mode for device-to-device (D2D) communication is aimed at improving the quality of service with the frequency spectrum structure is of research areas in 5G. D2D communication working modes are selected to meet both the predefined system conditions and provide maximum throughput for the network. Due to the complexity of the direct solutions, we formulated the problem as an optimization problem and found the optimal working modes under different parameters of the system through extensive simulations. After determining the links’ optimal modes, we calculated the network throughput; because of selecting the best working modes, we obtained the highest throughput. A major finding from this research is that D2D communication pairs are more inclined to use full-duplex (FD) mode in short distances to meet system requirements, and so most communications take place in FD mode at these distances. According to these results, using FD communication at short distances offers better conditions and Quality of service (QoS) than QoS-D2D method.

Funder

National Key Research and Development Program of China

Key-Area Research and Development Program of Guangdong Province

Shenzhen Science and Technology Research and Development Foundation

National Natural Science Foundation of China

Peng Cheng Laboratory Project

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications

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