Area of research
Electrical and Electronic Engineering · Computer Networks and Communications
Research interest
Research focused on Computer network and Cellular network, with related work in Handover, Base station, Stochastic geometry. Notable publications include 'Modeling and Analysis of Cellular Networks Using Stochastic Geometry: A Tutorial', 'Handover Management in 5G and Beyond: A Topology Aware Skipping Approach', and 'Velocity-Aware Handover Management in Two-Tier Cellular Networks'.
On the Impact of Orbital Motion on Handoff and Coverage in Multi-antenna LEO Satellite Systems
Uncoordinated Massive Wireless Networks: Spatiotemporal Models and Multiaccess Strategies
Latency in Downlink Cellular Networks with Random Scheduling
Optimal Caching in 5G Networks With Opportunistic Spectrum Access
Green Internet of Things (IoT): Enabling Technologies, Architectures, Performance, and Design Issues
Flexible Design of Millimeter-Wave Cache Enabled Fog Networks
Velocity-Aware Handover Management in Two-Tier Cellular Networks
On the scalability of uncoordinated multiple access for the Internet of Things
Mobility-Aware User Association in Uplink Cellular Networks
Optimal Caching in Multicast 5G Networks with Opportunistic Spectrum Access
Stochastic geometry model for multi-channel fog radio access networks
Modeling and Analysis of Cellular Networks Using Stochastic Geometry: A Tutorial
Handover Management in 5G and Beyond: A Topology Aware Skipping Approach
A Hybrid Energy Sharing Framework for Green Cellular Networks
Cooperative Handover Management in Dense Cellular Networks
Handover Management in 5G and Beyond: A Topology Aware Skipping Approach
Mobility-Aware Modeling and Analysis of Dense Cellular Networks With $C$ -Plane/ $U$ -Plane Split Architecture
Mobility-Aware Modeling and Analysis of Dense Cellular Networks with\n C-plane/U-plane Split Architecture
Modeling virtualized downlink cellular networks with ultra-dense small cells