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Design of a Generalized Control Algorithm for Parallel Inverters for Smooth Microgrid Transition Operation

机译:平滑微电网过渡运行的并联逆变器通用控制算法设计

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摘要

A modified hierarchical control structure for distributed generation (DG) in microgrid is applied in accordance to the recommendations by the IEEE Std. 1676. In the inverter control layer, a generalized control algorithm is developed to enable the DGs to operate in all three modes (i.e., grid-forming, grid-feeding, and grid-supporting modes) with a single control structure, facilitating the seamless transition between the operating modes. This feature is obtained by designing the multiloop controller in the inverter control layer using inverse plant modeling techniques so that the dynamics of the inverter and the filter are fully compensated, virtually transforming the controlled DG in the unity gain from the application layer perspective. Thus, effects of disturbances associated with the mode transitions are thus fully eliminated. The effectiveness of the proposed control algorithm is validated by numerical simulations and hardware-in-the-loop experiments. The results show that the DGs can fulfill the tasks defined in the system control layer with fast dynamics, desired accuracy, and good transient behavior.
机译:根据IEEE Std的建议,应用了微电网中分布式发电(DG)的改进的分层控制结构。 1676.在逆变器控制层中,开发了一种通用控制算法,以使DG可通过单一控制结构在所有三种模式(即网格形成,网格馈送和网格支持模式)下运行,从而实现了无缝连接。在操作模式之间转换。通过使用逆工厂建模技术在逆变器控制层中设计多环控制器,从而可以完全补偿逆变器和滤波器的动态,从而从应用层的角度虚拟地将受控DG转换为单位增益,就可以实现此功能。因此,因此完全消除了与模式转换相关的干扰的影响。数值仿真和半实物实验验证了所提控制算法的有效性。结果表明,DG可以快速,动态,期望的精度和良好的瞬态行为来完成系统控制层中定义的任务。

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