Area of research
Computer Networks and Communications · Electrical and Electronic Engineering
Research interest
Research interests include Energy Efficient Wireless Sensor Networks, Mobile Ad Hoc Networks, Vehicular Ad Hoc Networks (VANETs), and Distributed systems and fault tolerance.
A Method for the Rapid Propagation of Emergency Event Notifications in a Long Vehicle Convoy
Resilient and Reliable Communication for First Responders with Ad-Hoc Network and MPTCP
Preliminary Study on Indoor Localization using Smartphone-Based IEEE 802.11mc
An empirical study of DSRC V2V performance in truck platooning scenarios
Comparing Programmer Productivity in Openacc and Cuda : An Empirical Investigation
Performance Comparison between Broadcast Authentication Methods for Vehicular Networks
Efficient authentication approach for highly dynamic vehicular ad hoc networks
Jamming and anti-jamming techniques in wireless networks: a survey
A survey of broadcast authentication schemes for wireless networks
A distributed middleware for self-configurable wireless sensor networks
Location‐preserved contention‐based routing in vehicular ad hoc networks
An empirical study of reliable networking for vehicular networks using IEEE 802.11n
Self-organizing TCP with multiple wireless LAN
An Empirical Study on Ad Hoc Performance of DSRC and Wi-Fi Vehicular Communications
MobSched: Customizable scheduler for mobile cloud computing
Enabling actionable analytics for mobile devices: performance issues of distributed analytics on Hadoop mobile clusters
Distributed composition services for self-adaptation wireless sensor networks
Interconnection between IP Networks and Wireless Sensor Networks
Reliability and performance of IEEE 802.11n for vehicle networks with multiple nodes
TOA Ranging Using Real Time Application Interface (RTAI) in IEEE 802.11 Networks
Rate Adaptation with Collision Differentiation for IEEE 802.11 wireless network
Driver layer approach to time-of-arrival ranging in IEEE 802.11g networks
I-Corps: Positioning System in GPS-denied Environments using Euclidean TOA Ranging and Linear Matrix Inequalities
Distributed Composition Services for Self-Organizing Sensor Network Applications
CAREER: Operating System Support and Programming Environment for Evolutionary Parallel and Distributed Applications
CAREER: Operating System Support and Programming Environment for Evolutionary Parallel and Distributed Applications