基于负荷估计的微电网二次控制

Teng Wu, Jinjun Liu, Zeng Liu, Shike Wang, Baojin Liu
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引用次数: 10

摘要

众所周知的有功工频无功电压幅降控制被广泛应用于微电网并联逆变器的协调控制中。然而,这种传统的下垂方法可能会导致频率和电压偏差,从而影响电源的精度。本文提出了一种新的二次控制策略来补偿这种偏差。这种策略模仿主从控制,但不需要在并联逆变器之间通信线路。主逆变器采用常规下垂法(利用功率控制频率和电压幅值)作为电压源进行控制,从逆变器采用反下垂法(利用频率和电压幅值控制功率)作为电流源进行控制。在负荷需求估计的基础上,在线设计了从逆变器的下垂特性偏置。通过这种方法,可以消除频率和电压偏差,实现各从逆变器之间的功率共享。仿真和实验结果验证了所提控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load power estimation based secondary control for microgrids
The well-known active power-frequency and reactive power-voltage amplitude droop control is widely used in the coordinative control of parallel inverters in microgrids. However, this conventional droop method may cause frequency and voltage deviation, which affects the accuracy of power supply. This paper proposes a novel secondary control strategy to compensate this deviation. This strategy mimics the Master-Slave control but requires no communication lines among the parallel inverters. The master inverter adopts conventional droop method (using power to control frequency and voltage amplitude) and is controlled as a voltage source while the slave inverters adopt reversed droop method (using frequency and voltage amplitude to control power) and are controlled as current sources. The droop characteristic bias of slave inverters is designed online based on the estimation of load power demand. Through this method, frequency and voltage deviation can be eliminated and power sharing can be realized among all the slave inverters. Simulation and experimental results are provided to prove the effectiveness of the proposed control strategy.
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