Physical-layer security · Resilient wireless intelligence
Yuhang Shen
PhD Student in Electrical and Computer Engineering
Khalifa University · Abu Dhabi, United Arab Emirates
I am a PhD researcher in electrical and computer engineering at Khalifa University. My work focuses on physical-layer security and resilient learning-enabled wireless systems for energy-constrained IoT and IoE, building on earlier research in edge and fog computing, online optimization, and signal analysis.
Current research
I study how future wireless systems can remain secure and dependable under tight energy, sensing, and decision constraints. Selected accepted and published results are listed below.
PhD in Engineering — Electrical & Computer Engineering
View research profile →- 01 Physical-layer security for energy-constrained wireless systems
- 02 Resilient learning-enabled communications under adversarial interference
- 03 Wireless optimization, resource allocation, and online decision-making
- 04 Edge and fog systems, with foundations in nonlinear signal analysis
Interactive aside · Link acquisition
Catch a signal between sections
Start an orbital pass and lock the satellite inside the acquisition window. Two clicks turn a short reading pause into a live sketch of timing in wireless link acquisition.
Explore the full playgroundRecent accepted & published work
- 2026
Outsmarting the Smart: Intelligent Jamming Strategies Against AI-Empowered Anti-Jamming Frameworks
Open publication - 2026
Robust DRL-Based Anti-Jamming Under Adversarial State Manipulation Attacks
Proceedings link pending - 2026
Semantic Prediction Driven Resilience in SAGSIN Scenario under Adversarial Jamming
Proceedings link pending
Research programs & systems
Physical-layer security and resilient learning-enabled communications for energy-constrained wireless systems. Public output includes a JSAC Early Access article and two ICMLCN acceptances.
Open work ↗ M.Eng. research · systems and learning OpenRaaS and FogComA connected research line on exposing heterogeneous compute and storage resources as cooperative services, with OpenRaaS as the system foundation and FogCom as the experimental scheduling environment.
Open work ↗ Mechanism design · online optimization Collaborative and wireless-powered edge computingA continuing line spanning incentives, social-welfare-aware resource allocation, and energy-aware online scheduling in collaborative edge systems.
Open work ↗ First-author research · spectral methods Nonlinear signal analysis for wave interactionsAlgorithmic bispectral analysis for nonlinear wave coupling and plasma turbulence, reflected in two first-author journal papers and subsequent collaborative work.
Open work ↗