Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research interests include Causality (physics), Computer science, Environmental science, Operations research, and Reliability engineering.
A Decision-Dependent Hydrogen Supply Infrastructure Planning Approach Considering Causality Between Vehicles and Stations
A Bilevel Virtual Platoon Based Coordination Framework for CAVs at Unsignalized Intersection
Hybrid modeling-based temperature and humidity adaptive control for a multi-zone HVAC system
To Transmit or Predict: An Efficient Industrial Data Transmission Scheme With Deep Learning and Cloud-Edge Collaboration
Distributionally Robust Management of Hybrid Energy Station Under Exogenous-Endogenous Uncertainties and Bounded Rationality
Distributionally Robust Optimization Based Model Predictive Control for Stochastic Mixed Traffic Flow
Energy management based on multi-agent deep reinforcement learning for a multi-energy industrial park
Asynchronous Decentralized Federated Learning for Collaborative Fault Diagnosis of PV Stations
A compressed sensing and CNN‐based method for fault diagnosis of photovoltaic inverters in edge computing scenarios
Multi-level coordinated energy management for energy hub in hybrid markets with distributionally robust scheduling
Stochastic gradient-based fast distributed multi-energy management for an industrial park with temporally-coupled constraints
How to Share: Balancing Layer and Chain Sharing in Industrial Microservice Deployment
Distributionally robust heat-and-electricity pricing for energy hub with uncertain demands
Distributionally robust chance-constrained energy management of an integrated retailer in the multi-energy market
Energy trading in microgrids for synergies among electricity, hydrogen and heat networks
Subcarrier-Pairing-Based Resource Optimization for OFDM Wireless Powered Relay Transmissions With Time Switching Scheme