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Line Impedance Estimation Based Adaptive Droop Control Method for Parallel Inverters

机译:基于线阻抗估计的并联逆变器自适应下垂控制方法

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This paper presents a new load sharing control for use between paralleled three-phase inverters in an islanded microgrid based on the online line impedance estimation by the use of a Kalman filter. In this study, the mismatch of power sharing when the line impedance changes due to temperature, frequency, significant differences in line parameters and the requirements of the Plug-and-Play mode for inverters connected to a microgrid has been solved. In addition, this paper also presents a new droop control method working with the line impedance that is different from the traditional droop algorithm when the line impedance is assumed to be pure resistance or pure inductance. In this paper, the line impedance estimation for parallel inverters uses the minimum square method combined with a Kalman filter. In addition, the secondary control loops are designed to restore the voltage amplitude and frequency of a microgrid by using a combined nominal value SOGI-PLL with a generalized integral block and phase lock loop to monitor the exact voltage magnitude and frequency phase at the PCC. A control model has been simulated in Matlab/Simulink with three voltage source inverters connected in parallel for different ratios of power sharing. The simulation results demonstrate the accuracy of the proposed control method.
机译:本文基于卡尔曼滤波器的在线线路阻抗估算,提出了一种新的负载分担控制方法,用于岛状微电网中并联的三相逆变器之间。在这项研究中,解决了由于温度,频率,线路参数的显着差异以及连接到微电网的逆变器的即插即用模式的要求而导致线路阻抗发生变化时功率分配不匹配的问题。此外,本文还提出了一种新的使用线阻抗的下垂控制方法,该方法不同于传统的下垂算法(假定线阻抗是纯电阻或纯电感时)。在本文中,并行逆变器的线阻抗估计使用最小二乘法结合卡尔曼滤波器。此外,次级控制环路设计为通过结合使用标称值SOGI-PLL和广义积分块和锁相环来恢复微电网的电压幅度和频率,以监控PCC上的确切电压幅度和频率相位。在Matlab / Simulink中模拟了一个控制模型,其中三个电压源逆变器并联连接以实现不同的功率共享比率。仿真结果证明了该控制方法的准确性。

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