Open Datasets for AI-Enabled Radio Resource Control in Non-Terrestrial Networks

Fuente: arXiv
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Autores principales: Shahid, Husnain, Vazquez, Miguel Angel, Reynaud, Laurent, Parzysz, Fanny, Shaat, Musbah
Formato: Preprint
Publicado: 2024
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author Shahid, Husnain
Vazquez, Miguel Angel
Reynaud, Laurent
Parzysz, Fanny
Shaat, Musbah
author_facet Shahid, Husnain
Vazquez, Miguel Angel
Reynaud, Laurent
Parzysz, Fanny
Shaat, Musbah
contents By effectively implementing the strategies for resource allocation, the capabilities, and reliability of non-terrestrial networks (NTN) can be enhanced. This leads to enhance spectrum utilization performance while minimizing the unmet system capacity, meeting quality of service (QoS) requirements and overall system optimization. In turn, a wide range of applications and services in various domains can be supported. However, allocating resources in a multi-constellation system with heterogeneous satellite links and highly dynamic user traffic demand pose challenges in ensuring sufficient and fair resource distribution. To mitigate these complexities and minimize the overhead, there is a growing shift towards utilizing artificial intelligence (AI) for its ability to handle such problems effectively. This calls for the development of an intelligent decision-making controller using AI to efficiently manage resources in this complex environment. In this context, real-world open datasets play a pivotal role in the development of AI models addressing radio control optimization problems. As a matter of fact, acquiring suitable datasets can be arduous. Therefore, this paper identifies pertinent real-world open datasets representing realistic traffic pattern, network performances and demand for fixed and dynamic user terminals, enabling a variety of uses cases. The aim of gathering and publishing the information of these datasets are to inspire and assist the research community in crafting the advance resource management solutions. In a nutshell, this paper establishes a solid foundation of commercially accessible data, with the potential to set benchmarks and accelerate the resolution of resource allocation optimization challenges.
format Preprint
id arxiv_https___arxiv_org_abs_2404_12813
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Open Datasets for AI-Enabled Radio Resource Control in Non-Terrestrial Networks
Shahid, Husnain
Vazquez, Miguel Angel
Reynaud, Laurent
Parzysz, Fanny
Shaat, Musbah
Networking and Internet Architecture
Signal Processing
By effectively implementing the strategies for resource allocation, the capabilities, and reliability of non-terrestrial networks (NTN) can be enhanced. This leads to enhance spectrum utilization performance while minimizing the unmet system capacity, meeting quality of service (QoS) requirements and overall system optimization. In turn, a wide range of applications and services in various domains can be supported. However, allocating resources in a multi-constellation system with heterogeneous satellite links and highly dynamic user traffic demand pose challenges in ensuring sufficient and fair resource distribution. To mitigate these complexities and minimize the overhead, there is a growing shift towards utilizing artificial intelligence (AI) for its ability to handle such problems effectively. This calls for the development of an intelligent decision-making controller using AI to efficiently manage resources in this complex environment. In this context, real-world open datasets play a pivotal role in the development of AI models addressing radio control optimization problems. As a matter of fact, acquiring suitable datasets can be arduous. Therefore, this paper identifies pertinent real-world open datasets representing realistic traffic pattern, network performances and demand for fixed and dynamic user terminals, enabling a variety of uses cases. The aim of gathering and publishing the information of these datasets are to inspire and assist the research community in crafting the advance resource management solutions. In a nutshell, this paper establishes a solid foundation of commercially accessible data, with the potential to set benchmarks and accelerate the resolution of resource allocation optimization challenges.
title Open Datasets for AI-Enabled Radio Resource Control in Non-Terrestrial Networks
topic Networking and Internet Architecture
Signal Processing
url https://arxiv.org/abs/2404.12813