Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Robustness (evolution) and Control theory (sociology), with related work in Cyber-physical system, Battery (electricity), Adaptive control. Notable publications include 'Adaptive Control of Quadrotor UAVs: A Design Trade Study With Flight Evaluations', 'A systems and control perspective of CPS security', and 'Online capacity estimation of lithium-ion batteries with deep long short-term memory networks'.
Control for Societal-Scale Challenges: Road Map 2030
Distribution System Behind-the-Meter DERs: Estimation, Uncertainty Quantification, and Control
Physics-informed Graph Neural Network for Dynamic Reconfiguration of power systems
Adaptive Control and Intersections with Reinforcement Learning
Integration of Adaptive Control and Reinforcement Learning for Real-Time Control and Learning
DER Forecast Using Privacy-Preserving Federated Learning
A reactive power market for the future grid
A Distributed-Optimization-Based Architecture for Management of Interconnected Energy Hubs
One-shot battery degradation trajectory prediction with deep learning
A Review of Current Research Trends in Power-Electronic Innovations in Cyber–Physical Systems
Distributed Optimization in Distribution Systems: Use Cases, Limitations, and Research Needs
A historical perspective of adaptive control and learning
Online capacity estimation of lithium-ion batteries with deep long short-term memory networks
Cyber-enabled grids: Shaping future energy systems
Active boundary and interior absorbers for one-dimensional wave propagation: Application to transmission-line metamaterials
A systems and control perspective of CPS security
Hierarchical Hybrid Architecture for Volt/Var Control of Power Distribution Grids
Tunable and reconfigurable mechanical transmission-line metamaterials via direct active feedback control
Electricity Markets in the United States: A Brief History, Current Operations, and Trends
Convergence Properties of Adaptive Systems and the Definition of Exponential Stability
Controls for Smart Grids: Architectures and Applications
A Dynamic Regulation Market Mechanism for improved financial settlements in wholesale electricity markets
1 Adaptive Output Feedback based on Closed-loop Reference Models
2016cited by 75position: middle
An Integrated Dynamic Market Mechanism for Real-Time Markets and Frequency Regulation
A Dynamic Market Mechanism for the Integration of Renewables and Demand Response
Adaptive Output Feedback Based on Closed-Loop Reference Models for Hypersonic Vehicles
A Hierarchical Transactive Control Architecture for Renewables Integration in Smart Grids: Analytical Modeling and Stability
<inline-formula> <tex-math notation="TeX">${\rm L}_{1}$</tex-math></inline-formula>-Adaptive Control: Stability, Robustness, and Interpretations
On Adaptive Control With Closed-Loop Reference Models: Transients, Oscillations, and Peaking