Probability of Error Analysis for NOMA Systems in Rayleigh Fading Channels: Enabling IoT in Civil Engineering
Amr Abdelbari, B\"ulent Bilgehan, Fadi Al-Turjman

TL;DR
This paper derives error probability formulas for two-user NOMA systems in Rayleigh fading channels, aiding IoT reliability in civil engineering by improving communication accuracy and efficiency.
Contribution
It provides a unified method to calculate error probabilities for NOMA in Rayleigh fading, tailored for IoT applications in civil engineering.
Findings
Derived error probability formulas for NOMA in Rayleigh fading.
Enhanced IoT communication reliability in civil engineering applications.
Facilitated real-time monitoring through optimized protocols.
Abstract
In the realm of digital communication, understanding and mitigating the probability of error is crucial, particularly in Rayleigh fading channels where signal impairments are common. This paper presents a unified approach to derive the probability of error formulations for two-users NOMA systems operating in Rayleigh fading channels. The methodologies and findings outlined in this study are essential for IoT applications in construction and civil engineering. Specifically, the derived error probability formulations can be employed to enhance the reliability and efficiency of IoT-based monitoring systems in these sectors. By optimizing communication protocols, the proposed approach ensures accurate data transmission, thereby facilitating real-time monitoring and decision-making processes in construction sites and civil infrastructure projects.
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Taxonomy
TopicsIndustrial Vision Systems and Defect Detection · Digital Transformation in Industry · Advanced Signal Processing Techniques
