孤岛微电网有效负荷分担的改进最优下垂控制

R. Zahedi, H. Rastegar
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引用次数: 0

摘要

与传统电网相比,微电网由于惯性较小,容易受到总谐波失真的影响。THD不仅会影响电能质量,还会增加负载分担误差,从而导致MG处于不稳定状态。通过这种方式,人们比以往任何时候都更需要能够克服这个问题的障碍的补偿算法。本文提出了一种基于$\alpha\beta$框架下瞬时功率理论,受非线性负载有源功率滤波器性能启发的补偿算法,以补偿非线性负载对下垂控制的影响,防止孤岛电机失稳。在此基础上,提出了求解算法最优系数的优化过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Optimal Droop Control for Effective Load Sharing in an Islanded Microgrid
Microgrids (MG) are suffering from devastative effects of the total harmonic distortion (THD) due to the low inertia compared with the conventional grids. Not only does THD affect the power quality but also increases the load sharing error which in turn could lead the MG to an unstable condition. In this way, the need for compensation algorithms that can overcome the barriers alongside this problem is felt more than ever. In this paper, a compensation algorithm that is inspired by active power filters performance for non-linear load based on the instantaneous power theory in $\alpha\beta$ frame is proposed to compensate the effects of non-linear loads on droop control and to prevent instability of islanded MGs. Further, an optimization procedure is proposed to find the optimal coefficients of the proposed algorithm.
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