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Advanced Control Methods for Power Converters in DG Systems and Microgrids

机译:DG系统和Mi​​croGrid中的电源转换器的高级控制方法

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摘要

In recent years, different advanced control methods have been successfully proposed as alternatives to conventional cascaded linear controllers for power converters in distributed generation systems and microgrids. The prime movers of this research are strong capabilities of advanced controllers to improve the dynamic performance and robustness of power electronic converters in these applications. This article first introduces the key roles and functionalities of voltage source converters in distributed generation systems and microgrids. Then, it describes how these functionalities are traditionally achieved by using linear controllers, and addresses their fundamental dynamic performance limitations. Afterward, the most prominent advanced control methods are overviewed. In this context, the implementation principles, advantages, and disadvantages of prominent model- and data-based advanced control methods are critically discussed and experimentally compared. This article ends with a discussion about promising research directions in the area of advanced control for power electronic converters.
机译:近年来,已成功提出了不同的先进控制方法作为传统的分布式发电系统和微电网的电力转换器的传统级联线性控制器的替代方案。本研究的主要搬运工是先进控制器的强大功能,以提高这些应用中电力电子转换器的动态性能和稳健性。本文首先介绍了分布式发电系统和微电网中电压源转换器的关键角色和功能。然后,它描述了如何通过使用线性控制器来实现这些功能的传统上实现,并解决了它们的基本动态性能限制。之后,概述了最突出的先进控制方法。在这种情况下,突出模型和基于数据的先进控制方法的实施原则,优点和缺点是批评和实验相比讨论的。本文结束于关于电力电子转换器的先进控制领域的有希望的研究方向的讨论。

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