Control of power inverter in islanded microgrids based on online line impedance estimation

P. L. Minh, Hoa Pham Thi Xuan, Duy Hoang Vo Duc, H. Minh
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引用次数: 3

Abstract

In this paper, proposed an adaptive droop control method using estimated the line impedance in real time and compensate for the mismatch in voltage drops across line impedance, to enhance reactive power sharing accuracy in island microgrids. The block of line parameter estimation using the current and voltage parameters in the microgrid and estimation algorithm recursive least squares method (LSM). The Second-order generalized integrator-phase-locked loop (SOGI-PLL) is used to monitor such amplitude voltage phases and frequency at the point of common coupling (PCC) of the inverters. The line parameters are a mixture of resistance and reactance and has been estimated in real time. Therefore, the adaptive droop control method is more real, providing good performance under all conditions of load and line. The feasibility and effectiveness of the proposed method are demonstrated by using simulation on Matlab/Simulink.
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基于在线线路阻抗估计的孤岛微电网逆变器控制
本文提出了一种实时估计线路阻抗并补偿线路阻抗间电压降失配的自适应下垂控制方法,以提高孤岛微电网无功共享精度。利用微电网中电流和电压参数的块线参数估计及其估计算法递推最小二乘法(LSM)。利用二阶广义积分器锁相环(SOGI-PLL)监测逆变器共耦合点的幅值、电压相位和频率。线路参数是电阻和电抗的混合,并且是实时估计的。因此,自适应下垂控制方法更加真实,在负载和线路的所有条件下都具有良好的性能。通过Matlab/Simulink仿真验证了该方法的可行性和有效性。
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