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Stability Analysis of Primary Plug-and-Play and Secondary Leader-Based Controllers for DC Microgrid Clusters

机译:直流微电网集群的主要即插即用和基于辅助领导者的控制器的稳定性分析

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In this paper, we propose a new hierarchical control scheme for microgrid (MG) clusters, given by the interconnection of atomic dc MGs with ZIP loads, each composed by both grid-forming and grid-feeding converters. In the primary level, we develop a new Plug-and-Play (PnP) voltage/current controller in order to achieve simultaneous voltage support and current feeding function with local references. The coefficients of each stabilizing controller are characterized by explicit inequalities, which are related only to local electrical parameters of the MG. Moreover, we provide a sufficient condition on the ZIP loads to guarantee passivity and asymptotic stability of electric system. The robustness of performance to system uncertainties is also demonstrated. In the secondary level, a leader-based voltage/current controller is proposed to achieve both voltage and current regulation for the MG cluster without specifying the individual setpoints for each MG. The proposed distributed controller requires a communication network where each regulator exchanges information with its communication neighbors only. With the proposed scheme, each MG can plug-in/out seamlessly, irrespective of the power line parameters and models of other MGs. Closed-loop stability proof of MG clusters is formally proved independently of the cluster topology. Moreover, theoretical results are validated by extensive hardware-in-loop tests showing robustness of the closed-loop cluster against perturbations in the loads, PnP operations, and noises/delays in the communication network.
机译:在本文中,我们提出了一种新的微电网(MG)集群的分层控制方案,该方案由原子DC MG与ZIP负载的互连给出,ZIP负载分别由网格形成转换器和网格馈送转换器组成。在初级阶段,我们开发了一种新的即插即用(PnP)电压/电流控制器,以实现具有本地基准的同时电压支持和电流馈送功能。每个稳定控制器的系数都由明显的不等式表征,这些不等式仅与MG的局部电参数有关。此外,我们为ZIP负载提供了充分的条件,以确保电气系统的无源性和渐近稳定性。还证明了性能对系统不确定性的鲁棒性。在第二级中,提出了一种基于领导者的电压/电流控制器,以实现MG群集的电压和电流调节,而无需为每个MG指定单独的设定点。所提出的分布式控制器需要一个通信网络,其中每个调节器仅与其通信邻居交换信息。利用所提出的方案,每个MG可以无缝地插入/插入,而与其他MG的电源线参数和型号无关。正式证明了MG群集的闭环稳定性证明与群集拓扑无关。此外,理论结果通过大量的硬件在环测试得到了验证,这些测试显示了闭环群集针对负载,PnP操作以及通信网络中的噪声/延迟扰动的鲁棒性。

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