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Evaluation and Comparison of the Low-Frequency Oscillation Damping Methods for the Droop-Controlled Inverters in Distributed Generation Systems

机译:分布式发电系统下垂控制逆变器低频振荡阻尼方法的评估与比较

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摘要

The droop-based control strategy is widely applied in the interfacing inverters for distributed generation. This can be a problem since low-frequency stability issues may be encountered in droop-based microgrid. The objective of this paper is to classify, evaluate and compare various low-frequency damping methods. First, low-frequency stability problems are analyzed and an equivalent model of a droop-controlled inverter is investigated to classify the damping methods into the source-type damping strategies and the impedance-type damping strategies. Moreover, the lead-lag compensation network insertion control is proposed as a beneficial part of the source-type damping strategies. Then, the advantages and disadvantages of the different types of damping methods are theoretically evaluated and experimentally tested. Furthermore, the damping methods are comprehensively compared to illustrate the application field of each method. Finally, the synthesis of different damping methods to enhance the low-frequency stability is discussed and experimental validation is presented.
机译:基于下垂的控制策略被广泛应用于分布式发电的接口逆变器中。这可能是一个问题,因为在基于下垂的微电网中可能会遇到低频稳定性问题。本文的目的是对各种低频阻尼方法进行分类,评估和比较。首先,分析了低频稳定性问题,研究了下垂控制逆变器的等效模型,将阻尼方法分为源型阻尼策略和阻抗型阻尼策略。此外,提出了超前-滞后补偿网络插入控制作为源型阻尼策略的有益部分。然后,对不同类型的阻尼方法的优缺点进行了理论评估和实验测试。此外,对阻尼方法进行了全面比较,以说明每种方法的应用领域。最后,讨论了用于增强低频稳定性的各种阻尼方法的综合方法,并进行了实验验证。

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