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Operation Management and Optimal Control Strategies for Multi-Energy Virtual Power Plants
截止日期:2025年3月28日
关键词:多能源;虚拟电厂;运行管理与优化控制
The transition to a more sustainable and resilient energy system has led to the emergence of multi-energy virtual power plants (MEVPPs), which deeply increase coupling between electricity, gas, heat, and integrate diverse energy resources, including renewable energy sources and energy storage. This innovative approach facilitates the optimization of energy production, consumption, and storage, enabling a more flexible and efficient energy system. As the demand for clean energy solutions increases, effective operation management and optimal control of MEVPPs become crucial for balancing supply and demand, reducing greenhouse gas emissions, and enhancing grid stability.
The challenges of operation management and optimal control strategies for multi-energy virtual power plants (VPPs) are multifaceted, encompassing the integration of diverse and intermittent energy sources, accurate demand forecasting, and the complexities of market participation. Additionally, VPPs must navigate regulatory compliance, develop effective communication, and control systems to coordinate various energy resources. The management of energy storage, the need for advanced analytics and forecasting, and the emphasis on sustainability further complicate operational strategies. Finally, addressing cybersecurity risks is crucial to ensure the resilience and reliability of VPP operations in an increasingly interconnected energy landscape.
This special issue aims to explore the latest advancements, challenges, and opportunities in the field, providing a platform for researchers to share their insights and contribute to the development of MEVPPs.
Architecture and modeling of multi-energy VPPs
Electricity-Carbon Synergy in Energy Management
Demand Response and Load Management with Carbon Constraints
Cloud-edge collaborative algorithms and strategies for energy management
Policy and Market Mechanisms for Electricity-Carbon Synergy
Security and privacy issues in cloud-edge collaborative energy management
Distributed Control Strategies for Multi-energy VPPs
Decentralized Coordination in Virtual Power Plant Operations
Data analytics and decision-making support in multi-energy VPPs
Cybersecurity Challenges in Distributed Control
Case studies and practical applications of multi-energy VPPs
Performance evaluation and benchmarking of multi-energy VPPs
Yang Gao
Shanghai Jiao Tong University
China
Junjie Hu
North China Electric Power University
China
Jianxiao Wang
Peking University
China
Sheng Chen
Hohai University
China
Sijie Chen
Shanghai Jiao Tong University
China
Yue Zhou
Cardiff University
Ireland
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://onlinelibrary.wiley.com/doi/toc/10.1155/ITEES.si.717528
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