

Welcome to NEGIT 2027
2027 International Conference on New Energy Grid Integration Technology
Countdown to the Conference:
2027 International Conference on New Energy Grid Integration Technology (NEGIT 2027) will be held in Hangzhou, China, from May 28 to 30, 2027. The conference aims to bring together researchers, academics, engineers, and industry representatives from around the world in the field of new energy grid integration to engage in in-depth discussions on the key technical challenges faced by power systems in the context of high penetration of renewable energy.
As the share of renewable energy generation such as wind and photovoltaic power continues to rise in the global power mix, the operating characteristics of power systems are undergoing profound changes. Issues such as low-inertia operation, wide-band oscillations, and insufficient voltage and frequency support are becoming increasingly prominent. New energy grid integration technology has become a critical enabling technology for achieving the energy transition and the “dual carbon” goals of carbon peaking and carbon neutrality. NEGIT 2027 will focus on cutting-edge research findings and engineering practices in the field of new energy grid integration, providing a high-level international platform for exchange and collaboration.
NEGIT 2027 warmly invites researchers, engineers, and industry professionals from around the world to submit papers and attend the conference, and to jointly explore innovative pathways for advancing new energy grid integration technology.
Full Paper
Submission Date
March
13
2027
Notification of
Acceptance
April
13
2027
Final Paper
Submission Date
April
28
2027
Registration
Deadline
May
13
2027
Conference
Dates
May
28-30
2027
The topics of interest for submission include, but are not limited to:
📚︎Topic 1: Grid-Connected Control and Stable Operation of New Energy Generation
· Grid-forming and grid-following grid-connected control technologies
· Grid-connected control of wind power, photovoltaic power, and other new energy sources
· Frequency, voltage, and reactive power support technologies
· Virtual synchronous machines and inertia emulation technologies
· Grid-connected control under weak-grid and complex-grid conditions
· Coordinated operation and control of new energy plants
· Stability analysis of power systems with high penetration of new energy
· Dynamic characteristics and control of power-electronics-dominated power systems
· Mechanisms and mitigation technologies for oscillations in new energy grid integration
· Fault ride-through and recovery technologies for new energy grid-connected systems
📚︎Topic 2: New Energy Power Forecasting, Dispatching, and Energy Storage Coordination Technologies
· Power forecasting technologies for wind power, photovoltaic power, and other new energy sources
· Artificial intelligence and data-driven forecasting methods
· Modeling and handling of uncertainties in new energy operation
· Optimal dispatching of power systems with high penetration of new energy
· Coordinated operation technologies for source-grid-load-storage systems
· New energy accommodation and flexibility assessment technologies
· Multi-timescale optimal operation and coordinated dispatching
· Grid-connected technologies for electrochemical energy storage and hydrogen energy storage
· Grid-connected control and operation optimization of energy storage systems
· Energy storage participation in peak shaving, frequency regulation, and coordinated operation
📚︎Topic 3: Protection, Modeling, Testing, and Equipment for New Energy Grid-Connected Systems
· Fault characteristics and protection technologies of inverter-based power sources
· Impacts of new energy integration on relay protection and corresponding countermeasures
· Protection technologies for new energy plants and collector systems
· Modeling, equivalencing, and parameter identification of new energy systems
· Simulation and digital twin technologies for new energy grid-connected systems
· Hardware-in-the-loop simulation and grid-connected performance testing technologies
· Flexible DC and high-voltage direct current (HVDC) transmission technologies
· DC collection and transmission technologies for new energy generation
· New power electronic transformers and grid-connected equipment
· Wide-bandgap devices and novel converter topology technologies
📚︎Topic 4: Smart Grids, Digital Technologies, and New Energy Generation Equipment
· Sensing, monitoring, and situational awareness technologies for smart grids
· Wide-area measurement and advanced metering technologies
· Applications of artificial intelligence in power systems
· Power system big data, cloud computing, and edge computing technologies
· Digital twin and virtual power plant technologies
· Fault diagnosis and intelligent O&M technologies for new energy systems
· Power system communication and information security technologies
· Overvoltage and insulation coordination technologies for new energy plants
· Condition monitoring and life assessment technologies for power equipment
· Wind power generation, photovoltaic power generation, and new generation technologies
All accepted full papers will be published in the conference proceedings and will be submitted to EI Compendex / Scopus for indexing.
Note: All submitted articles should report original research results, experimental or theoretical, not previously published or under consideration for publication elsewhere. Articles submitted to the conference should meet these criteria. We firmly believe that ethical conduct is the most essential virtue of academics. Hence, any act of plagiarism or other misconduct is totally unacceptable and cannot be tolerated.