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A Consensus-Based Algorithm for Power Sharing and Voltage Regulation in DC Microgrids

机译:一种基于协商的DC微电网的电力共享和电压调节算法

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摘要

In dc microgrids, load power sharing and bus voltage regulation are two common control objectives. In this article, a consensus-based algorithm is presented to achieve proportional power sharing and regulation of weighted geometric mean of bus voltages in dc microgrids with ZIP (constant impedance, constant current, and constant power) loads simultaneously. By using the virtue of the Laplacian matrices of undirected connected graphs, a lemma is derived to assist the stability analysis of the dc microgrids. Thus, a sufficient condition that stabilizes the system with ZIP loads is established. In addition, with the help of a distributed voltage regulation error estimator, the tuning of the bus voltages can be realized without the requirement on initial voltage conditions. Through the Lyapunov synthesis, the large-signal stability of the closed-loop system is theoretically ensured for a wide range of load conditions. Finally, simulation studies are performed to validate the merits of the proposed consensus-based algorithm.
机译:在DC微电网中,负载功率共享和总线电压调节是两个常见的控制目标。在本文中,提出了一种基于共识的算法,以实现与Zip(恒定阻抗,恒定电流和恒定功率)负载的直流微电网中的总线电压的加权几何平均值的比例功率共享和调节。通过使用无向连接图的拉普拉斯矩阵的范围,导出引物以帮助DC微电网的稳定性分析。因此,建立了稳定系统具有拉链载荷的充分条件。另外,在分布式电压调节误差估计器的帮助下,可以实现总线电压的调谐,而无需对初始电压条件的要求。通过Lyapunov综合,理论上,闭环系统的大信号稳定性在各种负载条件下都是确保的。最后,进行仿真研究以验证所提出的基于共识的算法的优点。

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