The millimeter wave (mmWave) radio band is promising for the next-generation heterogeneous cellular networks (HetNets) due to its large bandwidth available for meeting the increasing demand of mobile traffic. However, the unique propagation characteristics at mmWave band cause huge redundant handoffs in mmWave HetNets that brings heavy signaling overhead, low energy efficiency and increased user equipment (UE) outage probability if conventional Reference Signal Received Power (RSRP) based handoff mechanism is used. In this paper, we propose a reinforcement learning based handoff policy named SMART to reduce the number of handoffs while maintaining user Quality of Service (QoS) requirements in mmWave HetNets. In SMART, we determine handoff t...
The rapid growth in the mobile users of cellular networks has brought big challenges for the network...
Heterogeneous networks (HetNets) are expected to be a key feature of long-term evolution (LTE)-advan...
Global connectivity is on the verge of becoming a reality to provide high-speed, high-quality, and r...
The millimeter wave (mmWave) radio band is promising for the next-generation heterogeneous cellular ...
This research article published by the International Journal of Advanced Computer Science and Applic...
The millimeter-Wave (mmWave) communication with the advantages of abundant bandwidth and immunity to...
The Fifth Generation (5G) mobile networks use millimeter waves (mmWaves) to offer gigabit data rates...
An efficient channel allocation policy that prioritizes handoffs is an indispensable ingredient in f...
A Thesis Submitted in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy...
Handovers (HOs) have been envisioned to be more challenging in 5G networks due to the inclusion of m...
The dense deployment of the small base station (BS) in fifth-generation commination system can satis...
The importance of Heterogeneous Networks (HetNets) is increased after enabling the high band spectru...
Network slicing (NS) has been identified as a fundamental technology for future mobile networks to m...
Handoff decision making is critical for mobile users to reap potential benefits from heterogeneous w...
This paper presents High density heterogeneous networks (HetNet) which are the most promising techno...
The rapid growth in the mobile users of cellular networks has brought big challenges for the network...
Heterogeneous networks (HetNets) are expected to be a key feature of long-term evolution (LTE)-advan...
Global connectivity is on the verge of becoming a reality to provide high-speed, high-quality, and r...
The millimeter wave (mmWave) radio band is promising for the next-generation heterogeneous cellular ...
This research article published by the International Journal of Advanced Computer Science and Applic...
The millimeter-Wave (mmWave) communication with the advantages of abundant bandwidth and immunity to...
The Fifth Generation (5G) mobile networks use millimeter waves (mmWaves) to offer gigabit data rates...
An efficient channel allocation policy that prioritizes handoffs is an indispensable ingredient in f...
A Thesis Submitted in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy...
Handovers (HOs) have been envisioned to be more challenging in 5G networks due to the inclusion of m...
The dense deployment of the small base station (BS) in fifth-generation commination system can satis...
The importance of Heterogeneous Networks (HetNets) is increased after enabling the high band spectru...
Network slicing (NS) has been identified as a fundamental technology for future mobile networks to m...
Handoff decision making is critical for mobile users to reap potential benefits from heterogeneous w...
This paper presents High density heterogeneous networks (HetNet) which are the most promising techno...
The rapid growth in the mobile users of cellular networks has brought big challenges for the network...
Heterogeneous networks (HetNets) are expected to be a key feature of long-term evolution (LTE)-advan...
Global connectivity is on the verge of becoming a reality to provide high-speed, high-quality, and r...