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Distributed Robust Finite-Time Secondary Voltage and Frequency Control of Islanded Microgrids

机译:孤岛微电网的分布式鲁棒有限时间二次电压和频率控制

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This paper presents a distributed, robust, finite-time secondary control for both voltage and frequency restoration of an islanded microgrid with droop-controlled inverter-based distributed generators (DGs). The distributed cooperative secondary control is fully distributed (i.e., uses only the information of neighboring DGs that can communicate with one another through a sparse communication network). In contrast to existing distributed methods that require a detailed model of the system (such as line impedances, loads, other DG units parameters, and even the microgrid configuration, which are practically unknown), the proposed protocols are synthesized by considering the unmodeled dynamics, unknown disturbances, and uncertainties in their models. The other novel idea in this paper is that the consensus-based distributed controllers restore the islanded microgrid's voltage magnitudes and frequency to their reference values for all DGs within finite time, irrespective of parametric uncertainties, unmodeled dynamics, and disturbances, while providing accurate real-power sharing. Moreover, the proposed method considers the coupling between the frequency and voltage of the islanded microgrid. Unlike conventional distributed controllers, the proposed approach quickly reaches consensus and exhibits a more accurate robust performance. Finally, we verify the proposed control strategy's performance using the MATLAB/SimPowerSystems toolbox.
机译:本文提出了一种分布式的,鲁棒的,有限时间的二次控制,该二次控制可通过下垂控制的基于逆变器的分布式发电机(DG)对孤岛微电网的电压和频率进行恢复。分布式协作辅助控制是完全分布式的(即,仅使用可以通过稀疏通信网络相互通信的相邻DG的信息)。与需要系统详细模型(例如线路阻抗,负载,其他DG单位参数,甚至微电网配置,实际上是未知的)的现有分布式方法相反,建议的协议是通过考虑未建模的动力学来合成的,未知的干扰,以及模型的不确定性。本文的另一个新颖思想是,基于共识的分布式控制器在有限的时间内将孤岛的微电网的电压幅值和频率恢复为所有DG的参考值,而与参数不确定性,未建模的动力学和扰动无关,同时提供了准确的实测值。权力共享。此外,所提出的方法考虑了孤岛微电网的频率和电压之间的耦合。与传统的分布式控制器不同,所提出的方法迅速达成共识,并表现出更准确的鲁棒性能。最后,我们使用MATLAB / SimPowerSystems工具箱来验证所提出的控制策略的性能。

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