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A Control Method for Inverter-Based Islanded Microgrids Based on V-I Droop Characteristics

机译:基于V-I下垂特性的基于逆变器的孤岛微电网控制方法

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摘要

Microgrids’ performance and stability mostly depend on power-flow control strategy. In order to allow for coordinated control while maintaining reliable operation, decentralized control methods based on and droop characteristics have been utilized. Inherently, the power droop control methods have slow dynamics. In this paper, a novel control method based on V-I characteristics is introduced to exploit the flexibility and fast dynamics of the inverter-based distributed energy resources. In the proposed method, the direct and quadrature axis voltage components are drooped with the corresponding currents according to a piecewise linear droop function. Eigenvalue analysis of a sample microgrid shows that the proposed method features faster dynamics and improved damping compared to the conventional droop scheme. Simulation results are presented to verify the efficacy of the proposed method.
机译:微电网的性能和稳定性主要取决于功率流控制策略。为了允许在保持可靠操作的同时进行协调控制,已经利用了基于和下垂特性的分散控制方法。本质上,功率下垂控制方法的动力学很慢。本文介绍了一种基于V-I特性的新型控制方法,以利用基于逆变器的分布式能源的灵活性和快速动态性。在提出的方法中,根据分段线性下降函数,用相应的电流对直流和正交轴电压分量进行下降。样本微电网的特征值分析表明,与传统的下垂方案相比,该方法具有更快的动力学特性和改进的阻尼。仿真结果表明了该方法的有效性。

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