Jun 1 11:00 am Computations in Riemannian space involving geodesics with their singularities and computing and visualizing singularities of dynamical systems using numerical methods based on differential geometry
Sep 22 3:00 pm Input-Output Characteristics of the Power Transmission Networks Swing Dynamics: A Graph-Theory Perspective
Oct 14 10:00 am Distributed Control of Loads to Provide Virtual Energy Storage for Renewable Integration
Mar 31 2:00 pm From Power Management to Energetic Intelligence: an evolutionary challenge for students and educators
Jun 6 10:00 am Storage in Power Systems: Frequency Control, Scheduling of Multiple Applications, and Computational Complexity
Oct 26 2:30 pm Resilient Architectures and Algorithms for Generation Control of Inertial-Less AC Microgrids
Nov 2 2:30 pm The Two-Edged Sword of Democratizing Grid Control: Distributed Inertia Control as a Cyber-Physical Attack Path
Dec 7 2:30 pm Carrots, Sticks and Other Smart Grid Tricks: The Capacity Value of Retail Demand Response
Apr 5 12:30 pm Optimizing the Participation of Distributed Energy Resources in Inertial and Primary-frequency Response
Feb 7 1:30 pm Growing Electric Networks from the Bottom-Up: Circuits and Systems for Decentralized Power Conversion
Apr 3 1:30 pm Optimal Steady-State Control with Application to Secondary Frequency Control of Power Systems
Sep 13 10:00 am - 11:00 am Functional Integration of Power Electronics and Electric Machines to Advance Energy Conversion
Oct 4 12:30 pm - 1:30 pm Resilient Distributed Optimization and Control Algorithms for Multi-Agent Power Grids
Dec 4 3:00 pm - 4:00 pm Modeling Frameworks to Enable New Opportunities in Grid Optimization and Control
Mar 15 12:00 pm - 1:30 pm Electric Powertrain: Energy Systems, Power Electronics and Drives for Hybrid, Electric and Fuel Cell Vehicles
Mar 22 3:30 pm - 4:30 pm Grid Integration of Distributed Energy Resources: Aggregate Flexibility Quantification and Market Participation
Apr 26 9:00 am - 10:00 am Considering the Spatiotemporal Vulnerability of Low-Carbon Power Grids using a Case Study for New York State