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A coordinated control of hybrid ac/dc microgrids with PV-wind-battery under variable generation and load conditions

机译:可变发电量和负荷条件下带风能电池的交流/直流混合微电网的协调控制

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摘要

Traditional power generation and consumption are undergoing major transformation. One of the tendencies is to integrate microgrids into the distribution network with high penetration of renewable energy resources. This paper proposes a coordinated control strategy for a microgrid with hybrid energy resources and ac/dc loads. First, a local-level coordinated control strategy of distributed converters is presented, where a model predictive power and voltage control (MPPVC) method is developed for the ac/dc interlinking converter to provide high quality voltages and to ensure smooth power transfer between the dc and ac subgrids. Meanwhile, smooth grid synchronization and connection can be achieved. After that, a system-level energy management scheme (EMS) is adopted to ensure stable operation under variable power generation and consumption conditions. Simulation studies based on a 3.5 MW system demonstrate the effectiveness of the proposed control strategy.
机译:传统的发电和消费正在经历重大变革。一种趋势是将微电网集成到具有可再生能源高渗透率的配电网络中。本文提出了一种具有混合能源和交流/直流负载的微电网的协调控制策略。首先,提出了分布式转换器的局部协调控制策略,其中为交流/直流互连转换器开发了模型预测功率和电压控制(MPPVC)方法,以提供高质量的电压并确保直流之间的平稳功率传输和交流子电网。同时,可以实现平滑的网格同步和连接。之后,采用系统级能源管理方案(EMS)以确保在可变的发电和消耗条件下稳定运行。基于3.5 MW系统的仿真研究证明了所提出的控制策略的有效性。

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