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Power flow control of microgrid with wind generation using a DSTATCOM-UCES

机译:使用DSTATCOM-UCES的风力发电微电网功率控制

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High penetration of wind power in microgrids causes fluctuations of power flow and significantly affects the power system operation. This can lead to severe problems, such as system frequency oscillations, and/or violations of power lines capability. With proper control, a distribution static synchronous compensator (DSTATCOM) integrated with ultracapacitor energy storage (UCES) is capable to significantly enhance the dynamic security of the power system. This paper proposes the use of a UCES system in combination with a DSTATCOM as effective distributed energy storage for stabilization and control of the tie-line power flow of microgrids incorporating wind generation. A full detailed model of the DSTATCOM-UCES device is presented and a novel three-level control scheme is designed, comprising a full decoupled current control strategy in the d-q reference frame and an enhanced power system frequency controller. The dynamic performance of the proposed control schemes is completely validated through digital simulation in MATLAB/Simulink.
机译:风能在微电网中的高度渗透会导致潮流波动,并严重影响电力系统的运行。这会导致严重的问题,例如系统频率振荡和/或电源线功能的破坏。通过适当的控制,与超级电容器储能(UCES)集成的配电静态同步补偿器(DSTATCOM)能够显着增强电力系统的动态安全性。本文提出将UCES系统与DSTATCOM结合使用作为有效的分布式能量存储,以稳定和控制结合风力发电的微电网的联络线潮流。提出了DSTATCOM-UCES器件的完整详细模型,并设计了一种新颖的三级控制方案,包括d-q参考系中的完全去耦电流控制策略和增强型电力系统频率控制器。通过MATLAB / Simulink中的数字仿真,可以完全验证所提出控制方案的动态性能。

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