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Voltage and frequency control of islanded microgrid based on combined direct current vector control and droop control

机译:基于直流矢量控制和下垂控制的孤岛微电网电压和频率控制

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The increased integration of distributed energy sources into microgrids presents a major challenge in voltage and frequency stability of the microgrids, especially in islanded conditions. Microgrid control is typically classified into a three-level hierarchical control involving primary, secondary, and tertiary control, where primary and secondary levels are related to the operation of a microgrid itself, and tertiary level takes care of the coordinated operation of network microgrids. A key challenge associated with the microgrid control is how to maintain voltage and frequency stability in microgrid islanded operation conditions. This paper proposes to integrate a direct current vector control mechanism with the droop control method to overcome the challenges. Compared to the conventional control methods, the proposed method improves microgrid stability, relibility, and power quality. Simulation study shows the effectiveness and excellent performance of combining direct current vector control with droop control for islanded microgrids.
机译:分布式能源进入微电网的较大集成在微电网的电压和频率稳定性中提高了主要挑战,特别是在岛状条件下。微电网控制通常被分类为涉及初级,次级和三级控制的三级分层控制,其中初级和次级与微电网本身的操作有关,并且第三级负责网络微普林的协调操作。与微电网控制相关的关键挑战是如何在微电网中的操作条件下保持电压和频率稳定性。本文建议将直流载体控制机制与下垂控制方法集成,以克服挑战。与传统的控制方法相比,所提出的方法改善了微电网稳定性,可靠性和功率质量。仿真研究表明,将直流载体控制与孤岛微电网的下垂控制相结合的有效性和优异性能。

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