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【正文】
Near-Optimal Operation of Distributed Energy Resources Based on Microgrids
截止日期:2025年1月3日
关键词:Distributed resource aggregation; Microgrid planning, operation, and control; Electricity market mechanism; Optimization of active distribution networks
Distributed energy resources are currently being deployed on a large scale to meet the requirements of increased energy demand and achieve socio-economic benefits for sustainable development. The integration of such distributed energy sources into the utility grid paves the way for microgrids, which are considered self-sustained systems for the efficient integration and management of distributed energy sources and multiple types of loads. Through microgrid technology, it is possible to achieve near-optimal operation of distributed energy sources and collaboration with distribution networks. However, the volatility, intermittency, and heterogeneity of distributed renewable energy pose significant challenges to the planning, operation, control, and market transactions of microgrids. How to maximize the value of microgrids and support efficient utilization of clean energy has attracted significant attention from academic and industry researchers.
This Special Issue aims to present and disseminate the most recent advances related to the theory and application of near-optimal operation of distributed energy resources based on microgrids.
Distributed resource aggregation and planning;
Electricity market design for the efficient integration and management of distributed energy sources; Advanced optimization theory for microgrids planning and operations; Advanced optimization theory for active distribution networks with large-scale distributed energy sources; Grid-forming technologies for distributed energy sources and microgrids.
Tianjin University
China
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投稿链接(阅读原文):
https://www.mdpi.com/journal/energies/special_issues/LE0K6KNA33
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