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Decoupled State-Feedback Based Control Scheme for the Distributed Generation System

机译:分布式发电系统的基于解耦状态反馈的控制方案

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This article presents a new development for the decoupled state-feedback control to operate the distribution generation unit (DGU) within an efficient distribution generation system (DGS). The developed decoupled state-feedback is better than the conventional voltage vector control and sliding mode control for dealing with active and reactive power. Therefore, it is embraced to form a new control scheme, which is employed to effectively decouple and precisely control the injected active and reactive power to the distribution system. A five-level diode-clamped inverter is adopted to build the DGU in order to minimize the injected harmonics, facilitate the operation of the proposed control scheme, and ease the design of its passive filter. The proposed control scheme enables the DGS to be functional in several operational modes such as grid-connected, intentional islanding, unintentional islanding, anti-islanding, and ride-through modes. The effectiveness of the proposed control scheme is proved through the simulation results for all foregoing modes. Experimental results are provided to show how the proposed concepts are practically implemented to control the voltage of the DGU so that the active power and reactive power are exchanged between the power grid and the DGS in the grid-connected mode.
机译:本文提出了一种分离的状态反馈控制的新开发方法,以在高效的配电系统(DGS)中运行配电生成单元(DGU)。所开发的解耦状态反馈在处理有功功率和无功功率方面优于传统的电压矢量控制和滑模控制。因此,它被接受以形成一种新的控制方案,该方案被用来有效地去耦并精确地控制注入配电系统的有功和无功功率。采用五级二极管钳位逆变器来构建DGU,以最大程度地减少注入的谐波,简化所提出​​的控制方案的操作,并简化其无源滤波器的设计。所提出的控制方案使DGS可以在几种运行模式下运行,例如并网,有意孤岛,无意孤岛,防孤岛和穿越模式。通过上述所有模式的仿真结果证明了所提出控制方案的有效性。提供的实验结果表明,如何在实践中实施所提出的概念以控制DGU的电压,从而在并网模式下在电网和DGS之间交换有功功率和无功功率。

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