Area of research
Computer Networks and Communications · Electrical and Electronic Engineering
Research interest
Research interests include Advanced Wireless Network Optimization, Cooperative Communication and Network Coding, Advanced MIMO Systems Optimization, and Mobile Ad Hoc Networks.
Safe and Reliable Deep Reinforcement Learning for Covert Routing
Artificial Intelligence of Things: A Survey
Sampling for Remote Estimation of the Wiener Process over an Unreliable Channel
Model-Free Change Point Detection for Mixing Processes
Sampling for Remote Estimation of the Wiener Process over an Unreliable Channel
Multi-armed bandits with dependent arms
Sampling for Remote Estimation of the Wiener Process over an Unreliable Channel
Model-Free Change Point Detection for Mixing Processes
Age-Optimal Scheduling Over Hybrid Channels
Optimal Sampling for Data Freshness: Unreliable Transmissions With Random Two-Way Delay
Optimizing Sampling for Data Freshness: Unreliable Transmissions with Random Two-way Delay
Optimal Sampling and Scheduling for Timely Status Updates in Multi-Source Networks
Low-Power Status Updates via Sleep-Wake Scheduling
Minimizing Age of Information via Scheduling over Heterogeneous Channels
Balancing Queueing and Retransmission: Latency-Optimal Massive MIMO Design
Optimizing information freshness using low-power status updates via sleep-wake scheduling
Truthful Mobile Crowdsensing for Strategic Users With Private Data Quality
Minimizing the Age of Information Through Queues
The Age of Information in Multihop Networks
Age-optimal Sampling and Transmission Scheduling in Multi-Source Systems
Truthful Data Quality Elicitation for Quality-Aware Data Crowdsourcing
Designing Low-Complexity Heavy-Traffic Delay-Optimal Load Balancing Schemes
Optimizing Information Freshness using Low-Power Status Updates via\n Sleep-Wake Scheduling
Incentivizing Truthful Data Quality for Quality-Aware Mobile Data Crowdsourcing
Designing Low-Complexity Heavy-Traffic Delay-Optimal Load Balancing Schemes
High Throughput Low Delay Wireless Multicast via Multi-Channel Moving Window Codes
Designing Low-Complexity Heavy-Traffic Delay-Optimal Load Balancing Schemes
Update or Wait: How to Keep Your Data Fresh
Designing Low-Complexity Heavy-Traffic Delay-Optimal Load Balancing Schemes
Designing Low-Complexity Heavy-Traffic Delay-Optimal Load Balancing Schemes: Theory to Algorithms
Collaborative Research: NeTS: Medium: Black-box Optimization of White-box Networks: Online Learning for Autonomous Resource Management in NextG Wireless Networks
AI Institute for Future Edge Networks and Distributed Intelligence (AI-EDGE)
Collaborative Research: CNS Core: Medium: Analytics and Online Optimization at Scale for Cellular Networks
Collaborative Research: CNS Core: Medium: Information Freshness in Scalable and Energy Constrained Machine to Machine Wireless Networks
Collaborative Research: CNS Core: Medium: Combating Latency and Disconnectivity in mmWave Networks: From Theory to Implementation
CNS Core: Small: New Caching Paradigms for Distributed and Dynamic Networks
RAPID: Acoustic Communications and Sensing for COVID-19 Data Collection
CNS Core: Medium: Collaborative: Exploring and Exploiting Learning for Efficient Network Control: Non-Stationarity, Inter-Dependence, and Domain-Knowledge
CSR: NeTS: Small: Theoretical Foundations for Cache Networks: Performance Models, Algorithms, and Applications
ICN-WEN: Collaborative Research: SPLICE: Secure Predictive Low-Latency Information Centric Edge for Next Generation Wireless Networks
CPS: Synergy: Collaborative Research: Cognitive Green Building: A Holistic Cyber-Physical Analytic Paradigm for Energy Sustainability
NeTS: Large: Collaborative Research: Practical Foundations for Networking with Many-Antenna Base Stations
NeTS: Medium: Energy Efficient Operation and Control of Green Base Stations with Renewable Energy: Theory to Practice
NeTS: Small: Dynamic Spectrum Access under Uncertainty: Theory, Algorithm Development, and Evaluation
NeTS: Large: Collaborative Research: Foundations of Hierarchical Full-Duplex Wireless Networks
NeTS: Medium: Collaborative Research: Mobile Content Sharing Networks:Theory to Implementation
NeTS: Large: Collaborative Research: Foundations for Network Cooperation at Signal Scale
NeTS-Medium: Collaborative Research: Unifying Network Coding and Cross-Layer Optimization for Wireless Mesh Networks: From Theory to Distributed Algorithms to Implementation
Workshop on Future Wireless Communication Networks
NeTS-NECO: A New Resource Management Paradigm for Sensor Networks with Energy Replenishment
CT-ISG: Collaborative Research: Router Models and Downscaling Tools for Scalable Security Experiments
NeTS-NBD: A High-Performance Control Plane for Mesh Networks: Theory and Implementation
NeTS-NOSS: Collaborative Research: Energy-Efficient Distributed Sensor Network Control: Theory to Implementation
FIND: Collaborative Research: Towards An Analytic Foundation for Network Architectures