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A Hybrid AC/DC Microgrid and Its Coordination Control

机译:交/直流混合微电网及其协调控制

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This paper proposes a hybrid ac/dc micro grid to reduce the processes of multiple dc–ac–dc or ac–dc–ac conversions in an individual ac or dc grid. The hybrid grid consists of both ac and dc networks connected together by multi-bidirectional converters. AC sources and loads are connected to the ac network whereas dc sources and loads are tied to the dc network. Energy storage systems can be connected to dc or ac links. The proposed hybrid grid can operate in a grid-tied or autonomous mode. The coordination control algorithms are proposed for smooth power transfer between ac and dc links and for stable system operation under various generation and load conditions. Uncertainty and intermittent characteristics of wind speed, solar irradiation level, ambient temperature, and load are also considered in system control and operation. A small hybrid grid has been modeled and simulated using the Simulink in the MATLAB. The simulation results show that the system can maintain stable operation under the proposed coordination control schemes when the grid is switched from one operating condition to another.
机译:本文提出了一种混合型AC / DC微电网,以减少单个AC或DC电网中多次DC-AC-DC或AC-DC-AC转换的过程。混合电网由通过双向双向转换器连接在一起的交流和直流网络组成。交流电源和负载连接到交流网络,而直流电源和负载连接到直流网络。储能系统可以连接到直流或交流链路。提出的混合电网可以在并网或自主模式下运行。提出了协调控制算法,以在交流和直流链路之间实现平稳的功率传输,并在各种发电和负载条件下实现稳定的系统运行。在系统控制和操作中,还应考虑风速,太阳辐射水平,环境温度和负载的不确定性和间歇性特征。使用MATLAB中的Simulink对小型混合网格进行了建模和仿真。仿真结果表明,当电网从一种运行状态切换到另一种运行状态时,系统可以在所提出的协调控制方案下保持稳定的运行。

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