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Inertia Response Improvement in AC Microgrids: A Fuzzy-Based Virtual Synchronous Generator Control

机译:交流微电网惯性响应的改进:基于模糊的虚拟同步发电机控制

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The absence of rotational masses from synchronous generators in converter-interfaced microgrids leads to a lack of inertia. Consequently, the system exhibits steeper frequency variations and higher frequency nadir, which may degrade the dynamic performance and challenge the operation of sensitive equipment such as protective relays in the grid. Virtual synchronous generator is introduced as an effective solution to increase the inertial response of converter interfaced renewable energy sources. This article proposed a fuzzy controller, which is augmented on the virtual synchronous generator topology to damp the perturbation during transients by increasing the inertia of the system. The proposed fuzzy control adds a correction term to the governors output power that increases the system inertia during transients. In order to compare the inertial response improvement, a comparison between proposed fuzzy control technique and cost function based inertia and damping coefficient optimization is done on a virtual synchronous generator platform. It is shown that online measurement based adaptive methods have a better inertial response against other time-consuming techniques. To further verification, a number of experiments are done, which confirm the merits of the proposed fuzzy based virtual synchronous generator control method.
机译:转换器接口的微电网中同步发电机没有旋转质量,导致缺乏惯性。因此,该系统呈现出更陡峭的频率变化和更高的最低点,这可能会降低动态性能并挑战敏感设备(例如电网中的保护继电器)的运行。引入虚拟同步发电机作为增加转换器接口可再生能源惯性响应的有效解决方案。本文提出了一种模糊控制器,该控制器在虚拟同步发电机拓扑上得到了增强,以通过增加系统的惯性来抑制瞬态过程中的扰动。所提出的模糊控制为调速器的输出功率添加了一个校正项,该校正项会增加瞬态过程中的系统惯量。为了比较惯性响应的改善,在虚拟同步发电机平台上对提出的模糊控制技术与基于成本函数的惯性和阻尼系数进行了比较。结果表明,与其他耗时的技术相比,基于在线测量的自适应方法具有更好的惯性响应。为了进一步验证,做了许多实验,证实了所提出的基于模糊的虚拟同步发电机控制方法的优点。

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