This paper proposes an energy-efficient multi-level sleep mode control for periodic transmission (MSC-PUT) in private fifth-generation (5G) networks. In general, private 5G networks meet IIoT requirements but face rising energy consumption due to dense base station (BS) deployment, particularly impacting operating expenses (OPEX). An approach of BS sleep mode has been studied to reduce energy consumption, but there has been insufficient consideration for the periodic uplink transmission of industrial Internet of Things (IIoT) devices. Additionally, 5G New Reno’s synchronization signal interval limits the effectiveness of the deepest sleep mode in reducing BS energy consumption. By addressing this issue, the aim of this paper is to propose a...
Deploying dense network is a promising technique of fifth-generation communication to meet the chall...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...
Today, dense network deployment is being considered as one of the effective strategies to meet the c...
Nowadays, dense network deployment is being considered as one of the effective strategies to meet ca...
Nowadays, dense network deployment is being considered as one of the effective strategies to meet c...
The importance of energy efficiency has grown alongside awareness of climate change due to the rapid...
The growing importance of energy efficient networks with high data rate requirements is a major conc...
The growing importance of energy efficient networks with high data rate requirements is a major conc...
The current base station centric cellular network architecture hinders the implementation of effecti...
The current base station centric cellular network architecture hinders the implementation of effecti...
International audienceWe study in this paper optimal control strategy for Advanced Sleep Modes (ASM)...
International audienceWe study in this paper optimal control strategy for Advanced Sleep Modes (ASM)...
Islam, N ORCiD: 0000-0002-5469-8104Energy efficiency is a key factor in the next generation wireless...
Energy efficiency is a key factor in the next generation wireless communication systems. Sleep mode ...
Deploying dense network is a promising technique of fifth-generation communication to meet the chall...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...
Today, dense network deployment is being considered as one of the effective strategies to meet the c...
Nowadays, dense network deployment is being considered as one of the effective strategies to meet ca...
Nowadays, dense network deployment is being considered as one of the effective strategies to meet c...
The importance of energy efficiency has grown alongside awareness of climate change due to the rapid...
The growing importance of energy efficient networks with high data rate requirements is a major conc...
The growing importance of energy efficient networks with high data rate requirements is a major conc...
The current base station centric cellular network architecture hinders the implementation of effecti...
The current base station centric cellular network architecture hinders the implementation of effecti...
International audienceWe study in this paper optimal control strategy for Advanced Sleep Modes (ASM)...
International audienceWe study in this paper optimal control strategy for Advanced Sleep Modes (ASM)...
Islam, N ORCiD: 0000-0002-5469-8104Energy efficiency is a key factor in the next generation wireless...
Energy efficiency is a key factor in the next generation wireless communication systems. Sleep mode ...
Deploying dense network is a promising technique of fifth-generation communication to meet the chall...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...
Multi-tier heterogeneous Networks (HetNets) with dense deployment of small cells in 5G networks are ...