参数和拓扑不确定性的微电网鲁棒初级控制:对弹性的探索

H. Baghaee, A. Parizad, M. Shafie‐khah, P. Siano, A. Senatore
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引用次数: 4

摘要

本文针对参数和拓扑不确定性的鲁棒性能和鲁棒稳定性,在层次控制方案的一级提出了一种基于鲁棒垂度的鲁棒控制结构,以1)提高鲁棒稳定性和鲁棒性能2)解决先前报道方法的缺点。在考虑下垂控制方案的基础上,建立了传统的分层控制结构,并在考虑参数和拓扑不确定性的情况下,对该控制方案的有效性进行了研究。为了描绘一幅图画来说明我们如何实现一个弹性微电网,包括一个分层控制结构,并对上述不确定性、信号干扰和不同类型的非线性提供足够的鲁棒性,还提供了一些特殊的建议。最后,为了证明所提出控制器的有效性,在包含多个具有局部负荷的分布式发电机组的微电网上进行了仿真研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Primary Control of Microgrids for Parametric and Topological Uncertainties: A Quest for Resilience
In this paper, a robust droop-based control structure is developed in primary level of a hierarchical control scheme for robust performance and robust stability against parametric and topological uncertainties to 1) improve the robust stability and robust performance 2) resolve drawbacks of previously reported methods. Considering droop control scheme, the conventional hierarchical control structure is developed and the effectiveness of the proposed control scheme is investigated considering parametric and topological uncertainties. For the sake of drawing a picture to address how we can realize a resilient microgrid including a hierarchical control structure and providing enough robustness against mentioned uncertainties, signal disturbances, and different types of nonlinearity, some special recommendations are also provided. Finally, to prove the usefulness of the proposed controller, simulation studies are done on a microgrid which includes several distributed generation units with local loads.
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