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Hybrid Modeling, Stability Analysis, and Control Design of Future Microgrids with Distributed Renewable Energy Sources Integration
截止日期:2024年12月30日
关键词:Distributed Renewable Energy Source (DRES), Microgrid, Smart Grid, Wind Turbine, Solar Photovoltaic, Hybrid Modeling, Stability Analysis, Control Design
The microgrid has long been seen as one of the most promising solutions to convert distributed renewable energy sources (DRESs) like solar, wind, and battery storage into electrical power due to the capability of providing flexible and controllable means to integrate DRESs with power electronics technologies, which contributes substantially to the word’s sustainable energy development. However, with the increasing penetration level of DRESs, the physical inertia traditionally provided by synchronous generators (SGs) reduces sharply, resulting in significant challenges of future microgrids in system modeling, stability analysis, and control design. Since the system modeling is the prerequisite for stability analysis and control design, precise and computationally efficient models are essentially necessary to be built by incorporating distinct properties of each category of renewable energy sources. Hybrid modeling methods are prospective but are not fully revealed, both for DRESs and their interactions with electrical networks. For the stability analysis, diverse key performance indicators (KPIs), such as robustness, reliability, sensibility, and resiliency, should be focused on, with the particular attention to different system variables (e.g., voltage and frequency), while the investigation on these aspects are not comprehensive. For the control design, the realization of KPIs for microgrids should be studied in the context of DRESs coordinated with the networked topology, while most current studies ignored the potential topology change and the intermittent communications. To better integrate DRESs into future microgrids, this Special Issue encourages researchers to advance the state-of-the-art studies from hybrid modeling, stability analysis, and control design perspectives.
Advanced sustainable energy development
Hybrid modeling of microgrids
Stability analysis of hybrid energy systems
Data-driven monitoring and control for smart grids
Autonomous power inspection robotics
Operation and protection of solar PV system
Integration of new energy in urban design
Consumer behavior in new energy
Fault detection and diagnosis of power grid equipment ·
Condition monitoring and performance evaluation
Zhijian Hu
Nanyang Technological University
Singapore
Renjie Ma
Harbin Institute of Technology
China
Shumei Zhang
Tianjin University
China
请登录期刊官网投稿,并在投稿栏目下拉列表中选择特刊标题。
投稿链接(阅读原文):
https://www.mdpi.com/journal/energies/special_issues/N1K9EDPGJK
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