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Multi-platform real-time microgrid simulation testbed with hierarchical control of distributed energy resources featuring energy storage balancing

机译:多平台实时微电网仿真测试,具有能量存储平衡的分布式能源分布式能源的层次控制

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摘要

The continued rise of renewable power generation requires the invention of smart grid technologies, among which communication and remote control are key. Multilevel control strategies improve grid stability and provide the necessary flexibility to address changing demand, contingency, and renewable generation variability. To test these strategies while avoiding damage to existing infrastructure or lab equipment, simulation is employed to facilitate large-scale control and protection applications. In this work, a hierarchical control strategy is tested in a real-time simulation environment implementing a moderately large microgrid with 100% renewable generation penetration, using both physical and software-based controllers, in both local- and remote-control configurations. Additionally, an adaptation is made to the existing hierarchical control strategy to accommodate energy storage balancing amongst distributed resources. The scalability of the testbed and adaptability of the control strategy are tested, and stable operation is observed.
机译:可再生能源的持续上升需要智能电网技术的发明,其中通信和遥控是关键。多级控制策略可提高电网稳定性,并提供解决不断变化的需求,应急和可再生发电变异性的必要灵活性。为了避免对现有基础设施或实验室设备造成损坏的同时测试这些策略,采用仿真来促进大规模控制和保护应用。在这项工作中,在实时仿真环境中测试了分层控制策略,在本地和遥控配置中使用了100%可再生的生成渗透,使用了100%可再生的生成渗透,在本地和远程控制配置中使用了100%的可再生生成渗透。另外,对现有的分层控制策略进行适应,以适应分布式资源之间的能量存储平衡。测试了测试用的伸缩性和控制策略的适应性,并观察到稳定的操作。

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