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Improved frequency regulation in mini-grids with high wind contribution using online genetic algorithm for PID tuning

机译:利用在线遗传算法进行PID调谐的高风贡献,改进了迷你网格的频率调节

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Mini-grids with high wind contribution tend to be relatively more dynamic and less stable than wind integration in large interconnected grids. This instability is primarily due to frequency fluctuations introduced from highly variable wind generation, multiple single-phase distribution branches with highly unbalanced single-phase loads, large pseudo-instantaneous changes in load, over compensation of reactive power, and lower machine inertias providing less damping. The objective of this research is to investigate the use of a genetic algorithm (GA) based proportional integral derivative (PID) diesel speed controller to improve frequency regulation in standalone high contribution wind-diesel mini-grid systems. A dynamic model of a standalone high contribution wind-diesel system was developed to study frequency regulation under variable wind and load conditions. The results using GA-based PID diesel speed control demonstrate improved frequency regulation as compared to standard diesel speed controls.
机译:具有高风贡献的迷你网格往往比在大型互联网格中的风集成相对较为动态且稳定。这种不稳定性主要是由于从高度变量的风发电引入的频率波动,多个单相分布分支具有高度不平衡的单相载荷,负载的大型伪瞬时变化,无功功率补偿,以及更低的机器惯性提供更少的阻尼。该研究的目的是研究基于遗传算法(GA)比例积分衍生(PID)柴油速度控制器的使用,以改善独立高贡献风柴油系统中的频率调节。开发了独立高贡献风柴油系统的动态模型,以在可变风和负载条件下研究频率调节。与标准柴油速度控制相比,使用基于GA基PID柴油速度控制的结果表明了频率调节。

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