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SLIDING MODE CONTROL FOR IMPROVED STABILITY AND DISTURBANCE REJECTION IN RING BUS CONFIGURED MICROGRIDS

机译:用于改进环总线配置的微电网的稳定性和干扰抑制的滑动模式控制

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The increasing use of distributed energy resources has motivated the development of microgrid structures to improve the reliability of electric power distribution systems. However, as microgrids become more complex, there is increased occurrence for instabilities being induced through cascaded interconnections of multiple ac-ac converters. In particular, it has been found that back-back ac-ac converters have degraded stability margins when connected in a ringbus configuration when compared to a radial configuration. This research investigates a sliding mode control technique to stabilize the voltage levels throughout a microgrid ring-bus. A method for analyzing a microgrid with multiple interconnected converters is presented. This includes identifying the participation factors of the voltage control inputs of each converter. The system is then linearized and a sliding mode controller is designed using subspace methods. The controller design is then evaluated by application to a previously validated simulation model of the 6 MVA microgrid operated at the National Center for Reliable Electric Power Transmission at the University of Arkansas. Results confirm the benefits of the sliding mode controller for improving the voltage regulation and disturbance rejection in a ring-bus configured microgrid.
机译:分布式能源的使用越来越多的使用具有微电网结构的发展,以提高电力分配系统的可靠性。然而,随着微电网变得更复杂,由于多个AC-AC转换器的级联互连引起的不稳定性发生了增加。特别地,已经发现,当与径向配置相比,回后的AC-AC转换器在铃声配置中连接时具有降低的稳定性边距。该研究调查了滑动模式控制技术,以稳定在微电网总线上的电压水平。提出了一种利用多互连转换器分析微电网的方法。这包括识别每个转换器的电压控制输入的参与因素。然后,系统是线性化的,并且使用子空间方法设计滑动模式控制器。然后通过应用于在Arkansas大学的国家可靠电力传输中心运行的6个MVA微电网的先前验证的仿真模型来评估控制器设计。结果确认了滑动模式控制器的优势,用于改善环总线配置的微电网中的电压调节和扰动抑制。

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