JOURNAL ARTICLE

Digital Twin-Based Multiple Access Optimization and Monitoring via Model-Driven Bayesian Learning

Abstract

Commonly adopted in the manufacturing and aerospace sectors, digital twin (DT) platforms are increasingly seen as a promising paradigm to control and monitor software-based, "open", communication systems, which play the role of the physical twin (PT). In the general framework presented in this work, the DT builds a Bayesian model of the communication system, which is leveraged to enable core DT functionalities such as control via multi-agent reinforcement learning (MARL) and monitoring of the PT for anomaly detection. We specifically investigate the application of the proposed framework to a simple case-study system encompassing multiple sensing devices that report to a common receiver. The Bayesian model trained at the DT has the key advantage of capturing epistemic uncertainty regarding the communication system, e.g., regarding current traffic conditions, which arise from limited PT-to-DT data transfer. Experimental results validate the effectiveness of the proposed Bayesian framework as compared to standard frequentist model-based solutions.

Keywords:
Computer science Bayesian optimization Bayesian probability Artificial intelligence Machine learning

Metrics

8
Cited By
3.52
FWCI (Field Weighted Citation Impact)
31
Refs
0.85
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

IoT and Edge/Fog Computing
Physical Sciences →  Computer Science →  Computer Networks and Communications
Digital Transformation in Industry
Physical Sciences →  Engineering →  Industrial and Manufacturing Engineering
Age of Information Optimization
Physical Sciences →  Computer Science →  Computer Networks and Communications
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