下垂控制微电网的稳定性、电力共享与分布式二次控制

J. Simpson-Porco, F. Dörfler, F. Bullo, Q. Shafiee, J. Guerrero
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引用次数: 80

摘要

受近年来人们对微电网日益增长的兴趣的驱使,我们研究了在孤岛感应微电网中液滴控制直流/交流逆变器的运行。给出了同步稳态存在唯一且局部指数稳定的充分必要条件。我们讨论了控制器增益的选择,这导致发电机之间的功率共享,并表明这种比例选择强制逆变器的驱动约束。此外,我们还提出了一种基于平均算法的分布式积分控制器,可以在时变负载存在时动态调节系统频率。值得注意的是,该分布平均积分控制器还保持了主下垂控制器的功率共享特性。最后,我们展示了验证我们的控制器设计的实验结果,以及扩展场景的模拟。我们的结果不需要假设均匀的线路导纳、逆变器额定功率或电压幅度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability, power sharing, & distributed secondary control in droop-controlled microgrids
Motivated by the recent and growing interest in microgrids, we study the operation of droop-controlled DC/AC inverters in an islanded inductive microgrid. We present a necessary and sufficient condition for the existence of a synchronized steady state that is unique and locally exponentially stable. We discuss a selection of controller gains which leads to a sharing of power among the generators, and show that this proportional selection enforces actuation constraints for the inverters. Moreover, we propose a distributed integral controller based on averaging algorithms which dynamically regulates the system frequency in the presence of a time-varying load. Remarkably, this distributed-averaging integral controller has the additional property that it maintains the power sharing properties of the primary droop controller. Finally, we present experimental results validating our controller design, along with simulations of extended scenarios. Our results hold without assumptions on uniform line admittances, inverter power ratings, or voltage magnitudes.
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