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Generator emulation controls for photovoltaic inverters

机译:光伏逆变器的发电机仿真控制

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State-of-the-art inverter controls for grid-tied photovoltaic (PV) systems pose a number of challenges to grid stability if deployed on a large scale. This paper addresses large-scale integration of PV and other distributed generation (DG) into the grid. A new control scheme for grid-tied DG inverters is proposed to embed various load-following functions. This control scheme, dubbed Generator Emulation Controls (GEC), allows DG inverters to perform voltage regulation support, reactive power compensation, and fault ride-through. GEC also allows DG inverters to form scalable inverter-dominated micro-grids. These micro-grids are capable of operating in grid-tied mode or of separating and supporting an islanded load. Dynamic modeling of synchronous generators is presented, and used to guide GEC implementation. Experimental results are presented to demonstrate some of the main features of GEC.∗
机译:用于网格绑定光伏(PV)系统的最先进的逆变器控制器对网格稳定性的若干挑战构成,如果部署大规模。 本文介绍了PV和其他分布式生成(DG)的大规模集成到网格中。 提出了一种新的网格DG逆变器控制方案,以嵌入各种负载后的功能。 该控制方案被称为发电机仿真控制(GEC),允许DG逆变器执行电压调节支撑,无功功率补偿和故障骑行。 GEC还允许DG逆变器形成可伸缩的逆变器主导的微网格。 这些微电网能够以网格绑定模式或分离和支撑岛状负载。 呈现了同步发电机的动态建模,并用于指导GEC实现。 提出了实验结果以证明GEC的一些主要特征。∗

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