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Centralized Control for Parallel Operation of Distributed Generation Inverters in Microgrids

机译:微电网中分布式发电逆变器并联运行的集中控制

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This paper presents a centralized control system that coordinates parallel operations of different distributed generation (DG) inverters within a microgrid. The control design for the DG inverters employs a new Model Predictive Control algorithm that allows faster computational time for large power systems by optimizing the steady-state and the transient control problems separately. An overall energy management system is also implemented for the microgrid to coordinate load sharing among different DG units during both grid-connected and islanded operations. The design concept of the proposed control system is evaluated through simulation studies under different test scenarios. The impact of the increased penetration of DG units on the distribution grid is also investigated using the proposed microgrid. The simulation results show that the operations of the DG units within the microgrid can be coordinated effectively under the proposed control system to ensure stable operation of the overall microgrid.
机译:本文提出了一种集中控制系统,该系统可协调微电网中不同分布式发电(DG)逆变器的并联运行。 DG逆变器的控制设计采用了新的模型预测控制算法,该算法通过分别优化稳态和瞬态控制问题,可以为大型电力系统提供更快的计算时间。还为微电网实施了一个整体能源管理系统,以在并网运行和孤岛运行期间协调不同DG单元之间的负荷分配。通过在不同的测试场景下进行仿真研究,对所提出的控制系统的设计概念进行了评估。使用建议的微电网,还研究了DG装置渗透率增加对配电网的影响。仿真结果表明,在所提出的控制系统下,微电网内DG单元的运行可以得到有效协调,以保证整个微电网的稳定运行。

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