Advances in Power System Flexibility and Resilience
A special issue of Energies (ISSN 1996-1073). This special issue belongs to the section "F3: Power Electronics".
Deadline for manuscript submissions: closed (31 July 2024) | Viewed by 314
Special Issue Editors
Interests: energy system operation and planning; energy system optimization; power system flexibility; renewable energy resource integration into power system; sensitivity analysis
Interests: gid-forming inverter; ESS for power system integration; planning and operation of power electronic equipment (HVDC and FACTS); electro-magnetic simulation; hardware-in-the loop test with real-time simulator; DC grid planning and operation; control and protection of modular-multilevel converter HVDC
Special Issue Information
Dear Colleagues,
The evolving landscape of power systems underscores the increasing significance of research on flexibility and resilience, particularly as the global reliance on electricity grows. This is further emphasized by the integration of variable renewable energy sources and smart grid technologies into the power grid. Flexible power systems continue to demonstrate their capability to swiftly adapt to changes in demand and supply, ensuring efficient responses.
This Special Issue aims to showcase and disseminate the latest advancements in power system flexibility and resilience. Reliable power systems that provide continuous and sufficient power supply are inherent to this discourse, but we aim to provide a redefined perspective, exploring avenues that enhance adaptability and recovery.
Potential topics for publication include, but are not limited to:
- Advanced modeling and optimization techniques;
- Demand-side flexibility solutions;
- Electric vehicles and energy storage systems as contributors to flexibility and resilience;
- Analysis of energy policies shaping the power sector;
- Strategies for managing high levels of renewable energy integration;
- Market designs fostering power system flexibility and resilience;
- Development of metrics for quantifying flexibility and resilience;
- Optimal control techniques for dynamic power systems;
- Techniques for power system recovery and restoration.
Dr. Changgi Min
Dr. Heejin Kim
Dr. Wookwon Kim
Guest Editors
Manuscript Submission Information
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Keywords
- artificial intelligence
- climate change
- DC grid
- distributed energy resource
- energy storage system
- flexibility
- grid-forming inverter
- HVDC
- market design
- photovoltaics
- power market and policy
- power system operation and planning
- renewable energy resource
- resilience
- smart grid
- transmission system operation
- wind power
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