The fifth generation (5G) mobile networks are envisioned to support the deluge of data traffic with reduced energy consumption and improved quality of service (QoS) provision. To this end, key enabling technologies, such as heterogeneous networks (HetNets), massive multiple-input multiple-output (MIMO), and millimeter wave (mmWave) techniques, have been identified to bring 5G to fruition. Regardless of the technology adopted, a user association mechanism is needed to determine whether a user is associated with a particular base station (BS) before data transmission commences. User association plays a pivotal role in enhancing the load balancing, the spectrum effi- ciency, and the energy efficiency of networks. The emerging 5G ne...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Fifth generation (5G) wireless networks will target at energy and spectrum efficient solutions to c...
5G wireless networks will be extremely dense, given the projected increase in the number of users an...
The approaching 5G era of cellular communications is posing stringent performance requirements. New ...
PhDThe fifth generation (5G) mobile networks expect significantly higher transmission rate and energ...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Fifth generation (5G) cellular networks promise to support multi-radio access technologies (multi-RA...
This paper considers a hybrid heterogeneous network (HetNet), where macro cells adopt massive multip...
The evolution towards 5G mobile communication networks will be characterized by increasing number of...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Fifth generation (5G) wireless networks will target at energy and spectrum efficient solutions to c...
5G wireless networks will be extremely dense, given the projected increase in the number of users an...
The approaching 5G era of cellular communications is posing stringent performance requirements. New ...
PhDThe fifth generation (5G) mobile networks expect significantly higher transmission rate and energ...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Fifth generation (5G) cellular networks promise to support multi-radio access technologies (multi-RA...
This paper considers a hybrid heterogeneous network (HetNet), where macro cells adopt massive multip...
The evolution towards 5G mobile communication networks will be characterized by increasing number of...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
International audience5G ultra-dense multi-Radio access technology (Multi-RAT) HetNets are considere...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Due to the dense small cell deployment to cope with the increased data traffic of fifth generation (...
Fifth generation (5G) wireless networks will target at energy and spectrum efficient solutions to c...