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Autores principales: Reifert, Robert-Jeron, Roth, Stefan, Ahmad, Alaa Alameer, Sezgin, Aydin
Formato: Preprint
Publicado: 2022
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Acceso en línea:https://arxiv.org/abs/2202.07951
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author Reifert, Robert-Jeron
Roth, Stefan
Ahmad, Alaa Alameer
Sezgin, Aydin
author_facet Reifert, Robert-Jeron
Roth, Stefan
Ahmad, Alaa Alameer
Sezgin, Aydin
contents Future sixth generation (6G) wireless communication networks face the need to similarly meet unprecedented quality of service (QoS) demands while also providing a larger energy efficiency (EE) to minimize their carbon footprint. Moreover, due to the diverseness of network participants, mixed criticality QoS levels are assigned to the users of such networks. In this work, with a focus on a cloud-radio access network (C-RAN), the fulfillment of desired QoS and minimized transmit power use is optimized jointly within a rate-splitting paradigm. Thereby, the optimization problem is non-convex. Hence, a low-complexity algorithm is proposed based on fractional programming. Numerical results validate that there is a trade-off between the QoS fulfillment and power minimization. Moreover, the energy efficiency of the proposed rate-splitting algorithm is larger than in comparative schemes, especially with mixed criticality.
format Preprint
id arxiv_https___arxiv_org_abs_2202_07951
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Energy Efficiency in Rate-Splitting Multiple Access with Mixed Criticality
Reifert, Robert-Jeron
Roth, Stefan
Ahmad, Alaa Alameer
Sezgin, Aydin
Information Theory
Future sixth generation (6G) wireless communication networks face the need to similarly meet unprecedented quality of service (QoS) demands while also providing a larger energy efficiency (EE) to minimize their carbon footprint. Moreover, due to the diverseness of network participants, mixed criticality QoS levels are assigned to the users of such networks. In this work, with a focus on a cloud-radio access network (C-RAN), the fulfillment of desired QoS and minimized transmit power use is optimized jointly within a rate-splitting paradigm. Thereby, the optimization problem is non-convex. Hence, a low-complexity algorithm is proposed based on fractional programming. Numerical results validate that there is a trade-off between the QoS fulfillment and power minimization. Moreover, the energy efficiency of the proposed rate-splitting algorithm is larger than in comparative schemes, especially with mixed criticality.
title Energy Efficiency in Rate-Splitting Multiple Access with Mixed Criticality
topic Information Theory
url https://arxiv.org/abs/2202.07951