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An Improved Droop Control Strategy Based on Changeable Reference in Low-Voltage Microgrids

机译:低压微电网中基于可变参考的改进的下垂控制策略

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摘要

This paper proposes an improved droop control strategy based on changeable reference in low-voltage microgrids. To restore running frequency of distributed generation to a rated value without affecting its reactive power output, changeable frequency reference, mainly compensating for frequency deviation, are proposed corresponding to various load demands. In terms of active power sharing inaccuracy associated with mismatched line impedance, changeable voltage amplitude reference is proposed to obtain a droop line suitable for the actual voltage of distributed generations. By further improvement of the active droop coefficient, power sharing is accurate with a difference in actual voltages of distributed generations. Virtual negative inductance is used to neutralize the redundant line inductance for strictly improving sharing accuracy. A robust control method based on Lyapunov function is used to handle the robustness problem in case of load variation. The control scheme is entirely decentralized, so communication links among distributed generations are redundant. Finally, simulation studies demonstrate the effectiveness of a control strategy.
机译:本文提出了一种基于可变参考的低压微电网下垂控制策略。为了在不影响其无功功率输出的情况下将分布式发电的运行频率恢复到额定值,针对各种负载需求,提出了主要补偿频率偏差的可变频率基准。考虑到与线路阻抗不匹配相关的有功功率共享不准确度,提出了可变电压幅度基准以获得适合于分布式发电实际电压的下垂线路。通过进一步改善有源下垂系数,功率分配变得准确,分布式发电的实际电压有所不同。虚拟负电感用于抵消冗余线路电感,以严格提高共享精度。一种基于李雅普诺夫函数的鲁棒控制方法被用于处理负载变化情况下的鲁棒性问题。控制方案是完全分散的,因此分布式世代之间的通信链接是多余的。最后,仿真研究证明了控制策略的有效性。

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