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Microgrid Dynamic Modeling and Islanding Control With Synchrophasor Data

机译:同步相量数据的微电网动态建模和孤岛控制

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This paper illustrates the application of synchrophasor data to formulate reduced order dynamic models and use these models to design control algorithms that allow automated islanding and grid reconnection of a microgrid. The dynamics of the phasors at the point of common coupling (PCC) excited by the controllable assets in the microgrid are captured in reduced order models estimated from phasor data. The controllable assets are taken to be a hybrid set of distributed energy resources (DER) with different operational constraints and dynamics. In turn, the reduced order models are used to design a self-tuning feedback control algorithm to control the phasors at the PCC to allow seamless islanding and reconnection of the microgrid. The approach is illustrated on a hardware-in-the-loop setup with energy storage (ES) and diesel generator (DG) to validate the effectiveness of the modeling and control algorithms.
机译:本文说明了同步相量数据在制定降阶动态模型中的应用,并使用这些模型来设计控制算法,以实现微电网的自动孤岛化和电网重新连接。由微电网中的可控资产激发的公共耦合点(PCC)处的相量动态在从相量数据估算的降阶模型中捕获。可控制资产被视为具有不同操作约束和动态特性的分布式分布式能源(DER)的混合集。反过来,降阶模型用于设计自整定反馈控制算法,以控制PCC处的相量,以实现微电网的无缝孤岛和重新连接。在带有能量存储(ES)和柴油发电机(DG)的硬件在环设置中说明了该方法,以验证建模和控制算法的有效性。

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