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A scalable, line-independent control design algorithm for voltage and frequency stabilization in AC islanded microgrids

机译:交流岛微电网电压和频率稳定的可扩展,线路独立控制设计算法

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We propose a decentralized control synthesis procedure for stabilizing voltage and frequency in AC Islanded microGrids (ImGs) composed of Distributed Generation Units (DGUs) and loads interconnected through power lines. The presented approach enables Plug-and-Play (PnP) operations, meaning that DGUs can be added or removed without compromising the overall ImG stability. The main feature of our design algorithm is that it does not depend on line parameters. This implies that (i) the synthesis of each local controller requires only the model of the corresponding DGU, and (ii) whenever a new DGU is plugged in, neighboring DGUs do not have to retune their regulators because of the new power line connected to them. Moreover, we formally prove that stabilizing local controllers can be always computed, independently of the electrical parameters. Theoretical results are validated by simulating in PSCAD the behavior of a 10-DGUs ImG. (C) 2019 Elsevier Ltd. All rights reserved.
机译:我们提出了分散的控制合成程序,用于稳定由分布发电单元(DGU)组成的AC岛微电网(IMG)中的电压和频率和通过电力线互连的负载。 所提出的方法使即插即用(PNP)操作能够进行即可,这意味着可以在不影响整体IMG稳定性的情况下添加或消除DGU。 我们设计算法的主要特点是它不依赖于线路参数。 这意味着(i)每个本地控制器的合成只需要相应的DGU和(ii)的模型,每当一个新的DGU插入时,相邻的DGU不必因为连接到的新电源线而不必重温它们的调节器 他们。 此外,我们正式证明可以始终从电参数始终计算稳定局部控制器。 通过在PSCAD中模拟10-DGU IMG的行为来验证理论结果。 (c)2019年elestvier有限公司保留所有权利。

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