A Calibrated and Automated Simulator for Innovations in 5G

Fuente: arXiv
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Autori principali: Boeira, Conrado, Hasan, Antor, Papry, Khaleda, Ju, Yue, Zhu, Zhongwen, Haque, Israat
Natura: Preprint
Pubblicazione: 2024
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author Boeira, Conrado
Hasan, Antor
Papry, Khaleda
Ju, Yue
Zhu, Zhongwen
Haque, Israat
author_facet Boeira, Conrado
Hasan, Antor
Papry, Khaleda
Ju, Yue
Zhu, Zhongwen
Haque, Israat
contents The rise of 5G deployments has created the environment for many emerging technologies to flourish. Self-driving vehicles, Augmented and Virtual Reality, and remote operations are examples of applications that leverage 5G networks' support for extremely low latency, high bandwidth, and increased throughput. However, the complex architecture of 5G hinders innovation due to the lack of accessibility to testbeds or realistic simulators with adequate 5G functionalities. Also, configuring and managing simulators are complex and time consuming. Finally, the lack of adequate representative data hinders the data-driven designs in 5G campaigns. Thus, we calibrated a system-level open-source simulator, Simu5G, following 3GPP guidelines to enable faster innovation in the 5G domain. Furthermore, we developed an API for automatic simulator configuration without knowing the underlying architectural details. Finally, we demonstrate the usage of the calibrated and automated simulator by developing an ML-based anomaly detection in a 5G Radio Access Network (RAN).
format Preprint
id arxiv_https___arxiv_org_abs_2404_10643
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Calibrated and Automated Simulator for Innovations in 5G
Boeira, Conrado
Hasan, Antor
Papry, Khaleda
Ju, Yue
Zhu, Zhongwen
Haque, Israat
Networking and Internet Architecture
Signal Processing
The rise of 5G deployments has created the environment for many emerging technologies to flourish. Self-driving vehicles, Augmented and Virtual Reality, and remote operations are examples of applications that leverage 5G networks' support for extremely low latency, high bandwidth, and increased throughput. However, the complex architecture of 5G hinders innovation due to the lack of accessibility to testbeds or realistic simulators with adequate 5G functionalities. Also, configuring and managing simulators are complex and time consuming. Finally, the lack of adequate representative data hinders the data-driven designs in 5G campaigns. Thus, we calibrated a system-level open-source simulator, Simu5G, following 3GPP guidelines to enable faster innovation in the 5G domain. Furthermore, we developed an API for automatic simulator configuration without knowing the underlying architectural details. Finally, we demonstrate the usage of the calibrated and automated simulator by developing an ML-based anomaly detection in a 5G Radio Access Network (RAN).
title A Calibrated and Automated Simulator for Innovations in 5G
topic Networking and Internet Architecture
Signal Processing
url https://arxiv.org/abs/2404.10643