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Adequacy and Economy Analysis of Distribution Systems Integrated With Electric Energy Storage and Renewable Energy Resources

机译:结合电能存储和可再生能源的配电系统的经济性分析

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The integration of renewable energy resources (RER) into an existing distribution system is an important topic in dealing with energy challenge the world is facing. With rapid development of electric energy storage (EES) technologies, there is a growing interest in integrating both EES and RER into power systems to improve their reliability and economy. In this paper, the adequacy and economy of distribution systems integrated with both EES and RER are assessed. A novel model predictive control (MPC)-based operation strategy is presented to minimize distribution system energy purchasing cost by coordinating multiple power supplies from EES, RER and external grid. An islanding operation is implemented to improve the distribution system reliability and reduce customer interruption cost. A reliability and economy assessment framework based on sequential Monte Carlo method integrated with the MPC-based operation and islanding operation is proposed. Case studies are conducted to demonstrate the reliability and economy improvement by implementing the proposed operation strategies together with integration of EES and RER, and also investigate how EES capacity, power limit, and wind turbine generation capacity affect system reliability and economy.
机译:将可再生能源(RER)集成到现有的配电系统中是应对世界面临的能源挑战的重要主题。随着电能存储(EES)技术的飞速发展,人们越来越有兴趣将EES和RER集成到电力系统中以提高其可靠性和经济性。本文评估了与EES和RER集成的配电系统的充分性和经济性。提出了一种基于模型预测控制(MPC)的新颖运行策略,通过协调来自EES,RER和外部电网的多个电源,最大限度地降低配电系统的能源购买成本。实施孤岛操作以提高配电系统的可靠性并减少客户中断成本。提出了基于顺序蒙特卡洛方法并结合基于MPC的操作和孤岛操作的可靠性和经济性评估框架。案例研究旨在通过实施建议的运行策略以及EES和RER的集成来证明可靠性和经济性的提高,并研究EES容量,功率极限和风力涡轮机发电容量如何影响系统的可靠性和经济性。

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