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Distributed voltage regulation of islanded inertialess AC microgrids with lossy networks

机译:具有损耗网络的孤岛式惯性交流微电网的分布式电压调节

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In this paper, we propose a distributed controller for voltage regulation in islanded ac microgrids with lossy electrical lines. The stability analysis presented takes into account the controller in charge of regulating the frequency in the microgrid, i.e., we do not assume decoupled operation of the proposed voltage controller and the frequency controller. We show that the frequency controller achieves active power load sharing by driving the power flows to a certain manifold, while the voltage controller moves along this manifold and adjusts the voltage magnitudes at the inverter buses to maintain a healthy voltage profile throughout the microgrid, i.e., voltage magnitudes at all buses are within some prescribed limits. Since achieving voltage regulation and reactive power sharing are known to be conflicting objectives, in this paper, we pursue the voltage regulation objective. However, reactive power sharing can be recovered to some extent by tuning a certain parameter in the voltage controller.
机译:在本文中,我们提出了一种分布式控制器,用于在有损耗电线的孤岛式交流微电网中进行电压调节。提出的稳定性分析考虑了负责调节微电网中频率的控制器,即,我们不假定所提出的电压控制器和频率控制器的操作是解耦的。我们表明,频率控制器通过驱动流向某个歧管的功率来实现有功功率负载分配,而电压控制器沿着该歧管移动并调整逆变器总线上的电压幅度,以维持整个微电网的健康电压曲线,即,所有母线的电压幅值均在规定的范围内。由于已知实现电压调节和无功功率共享是相互矛盾的目标,因此在本文中,我们追求电压调节的目标。但是,通过调节电压控制器中的某个参数,可以在某种程度上恢复无功功率共享。

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