Call for Papers

Track 1 Grid-Forming Control Strategies and Stability Analysis


Track 2 Modeling, Simulation, and AI-Enabled Methods

· Small-signal and transient stability analysis of GFM converter systems

· Wide-frequency oscillation mechanisms, analysis, and suppression in GFM-dominated systems

· Large-signal stability analysis and transient behavior of GFM inverters

· Interaction dynamics between grid-forming and grid-following converters

· Synthetic inertia emulation, voltage regulation, and black-start capability

· Stability analysis and enhancement in weak grids and low-inertia systems

· Adaptive and robust control strategies for GFM converters under varying grid conditions

Track 3 System Integration, Protection, and Grid Applications

· Electromagnetic transient (EMT) modeling and reduced-order models of GFM converters

· Real-time simulation and hardware-in-the-loop (HIL) validation of GFM systems

· Multi-timescale dynamic analysis and descriptor state-space modeling

· Impedance-based modeling and stability assessment of GFM converter systems

· Parameter optimization and configuration of GFM converters in power systems

· Digital twin technologies for GFM converter design and operation

· Machine learning and AI applications in GFM converter control, fault diagnosis, and stability prediction

· Data-driven modeling and control of GFM-dominated power systems

· Open-source simulation tools and benchmarking frameworks for GFM studies

Track 4 Industrial Applications, Field Demonstrations, and Emerging Technologies

· Large-scale deployment and field demonstrations of GFM converters in real power systems

· GFM battery energy storage systems (BESS) for grid support and system restoration

· Microgrid and islanded system applications of GFM converters

· Black-start and system restoration strategies using GFM inverters

· Medium-voltage and high-power GFM converter topologies and designs

· Fault ride-through performance and grid support services in utility-scale applications

· Design optimization, thermal management, and reliability of GFM converters

· Electrification of industrial processes and e-mobility applications of GFM technologies

· Emerging power conversion technologies and applications

· Field validation and performance assessment of GFM technologies

· Case studies on GFM integration in renewable-rich power systems

· GFM technologies for wind, solar PV, and hybrid renewable power plants

· Grid-forming control for voltage-source converters (VSCs) in HVDC and multi-terminal DC (MTDC) systems

· Coordinated control strategies for hybrid AC/DC grids

· Synergistic operation between GFM converters, grid-following converters, and synchronous generators

· Protection scheme adaptation and coordination for GFM-dominated grids

· Optimal placement and sizing of GFM resources in power systems

· Cyber-physical system security in converter-based grids

· Planning and configuration of grid-following/grid-forming hybrid systems

· Frequency stability control of systems dominated by GFM and GFL converters

· Power quality and ancillary services provided by GFM converters

· Grid code compliance, standardization, and testing of GFM technologies