An Investigating of 5G Multi-Access Edge Computing (MEC) and Subcarrier Spacing to Improve Wireless Communications

International journal of intelligent engineering and systems · 2024

In this paper the feasibility and investigation of 5th generation Multi-Access Edge Computing (MEC) and subcarrier spacing for enhanced communication for cellular communication standard in software was being carried out.Specifically, an enhanced 5G wireless communication in metropolitan areas.Research work attempts to achieve stringent latency requirements through implementation on MATLAB software, algorithmic and platform specific optimizations.Direct implementation of Multi-Access Edge Computing (MEC) and Hybrid Simulated Annealing (HSA) techniques with subcarrier spacing analysis by presenting a detailed mathematical modelling for implementation using MATLAB programming language which results in excellent performance.To obtain best performance in terms of lower latency access for enhanced wireless communication, these techniques were modified and reformulated to suit processor architecture and software implementation for 5G communication.Optimizations reduced the worst-case latency of 5G wireless communication encoding with MEC chain from 451µs to 40µs which is more than 10x reduction in latency for better 5G wireless communication.The research combines MEC and HSA techniques for significant latency contributing components into primitive operations and enhanced 5G wireless communication.These primitive operations were optimized with software optimizations and mapped to specialized functional units of a general-purpose processor to achieve best performance for wireless communication on MATLAB platform.

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