Dense deployment of small cells operating on different frequency bands based on multiple technologies provides a fundamental way to face the imminent thousand-fold traffic augmentation. This heterogeneous network (HetNet) architecture enables efficient traffic offloading among different tiers and technologies. However, research on multi-tier HetNets where various tiers share the same microwave spectrum has been well-addressed over the past years. Therefore, our work is targeted towards novel multi-tier HetNets with disparate spectrum (microwave and millimeter wave). In fact, despite the huge capacity brought by millimeter-wave technology, the latter will fail to provide universal coverage, especially indoor, and so mmWave will inevitably co...
Fifth generation (5G) cellular networks promise to support multi-radio access technologies (multi-RA...
The existing cellular networks are being modified under the umbrella of fifth generation (5G) networ...
Millimetre wave (mm-Wave) bands and sub-6 GHz are key technologies in solving the spectrum critical ...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Ultra densification in heterogeneous networks (HetNets) and the advent of millimeter wave (mmWave) t...
Driven by growing mobile traffic, millimeter wave (mmWave) communications have recently been develop...
Heterogeneous cellular networks (HCNs) with millimeter wave (mm-wave) communications included are em...
Ultra densification in HetNets and the advent of mmWave technology for 5G networks have led research...
Millimeter wave (mmWave) technology integrated with heterogeneous networks (HetNets) has emerged as ...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
The approaching 5G era of cellular communications is posing stringent performance requirements. New ...
Fifth generation (5G) cellular networks promise to support multi-radio access technologies (multi-RA...
The existing cellular networks are being modified under the umbrella of fifth generation (5G) networ...
Millimetre wave (mm-Wave) bands and sub-6 GHz are key technologies in solving the spectrum critical ...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Dense deployment of small cells operating on different frequency bands based on multiple technologie...
Ultra densification in heterogeneous networks (HetNets) and the advent of millimeter wave (mmWave) t...
Driven by growing mobile traffic, millimeter wave (mmWave) communications have recently been develop...
Heterogeneous cellular networks (HCNs) with millimeter wave (mm-wave) communications included are em...
Ultra densification in HetNets and the advent of mmWave technology for 5G networks have led research...
Millimeter wave (mmWave) technology integrated with heterogeneous networks (HetNets) has emerged as ...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
5G cellular networks aim to improve the connection speed to ensure ultra-low latency (e.g., to suppo...
The approaching 5G era of cellular communications is posing stringent performance requirements. New ...
Fifth generation (5G) cellular networks promise to support multi-radio access technologies (multi-RA...
The existing cellular networks are being modified under the umbrella of fifth generation (5G) networ...
Millimetre wave (mm-Wave) bands and sub-6 GHz are key technologies in solving the spectrum critical ...