Power calculation algorithm for single-phase droop-operated inverters considering nonlinear loads and unsing n-order SOGI filtering

J. E. Mariachet, J. Matas, J. D. L. Hoz, Y. Al-Turki, H. Abdalgader
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引用次数: 2

Abstract

The average active and reactive powers, P and Q, are crucial parameters that have to be calculated when sharing common loads between parallelized droop-operated single-phase inverters. However, the droop method algorithm should employ low-pass filters (LPF) with very low cut-off frequency to minimize the distortion impact in the provide droop amplitude and frequency references. This situation forces the droop control to operate at a very low dynamic velocity, degrading the stability of the parallelized system. For this reason, different solutions had been proposed in literature to increase the droop velocity, but the issues derived from the sharing of nonlinear loads had not been properly considered. This work proposes a novel method to calculate P and Q based on the fundamental components of the inverter's output voltage and current and using the measured phase angle between the output voltage and current. The method is used under normal and highly distorting conditions due to the sharing non-linear loads. The fundamental components are obtained by means of the highly filtering capability provided by norder cascaded second order generalized integrators (nSOGI). The proposed method leads to faster and more accurate P and Q calculations that enhances the droop-method dynamic performance. Simulations are provided to validate the proposal.
考虑非线性负载且不采用n阶SOGI滤波的单相下垂逆变器功率计算算法
平均有功和无功功率P和Q是在并联下垂式单相逆变器之间分担共同负载时必须计算的关键参数。然而,下垂方法算法应采用截止频率非常低的低通滤波器(LPF),以尽量减少失真影响,从而提供下垂幅度和频率参考。这种情况迫使下垂控制在一个非常低的动态速度下运行,降低了并行系统的稳定性。因此,文献中提出了不同的方法来增加下垂速度,但没有很好地考虑非线性荷载分担带来的问题。本文提出了一种基于逆变器输出电压和电流的基本分量,利用输出电压和电流之间的测量相角来计算P和Q的新方法。该方法适用于正常和高畸变条件下,因为它们具有共同的非线性载荷。利用二阶级联广义积分器(nSOGI)提供的高滤波能力获得基本分量。该方法可以更快、更准确地计算P和Q,从而提高垂降法的动态性能。仿真验证了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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