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Ramp-rate control smoothing methods to control output power fluctuations from solar photovoltaic (PV) sources-A review

机译:斜率控制平滑方法可控制太阳能光伏(PV)源的输出功率波动-A评论

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Solar photovoltaic generator is an intermittent source and mitigating its output power ramp-rate is crucial as they threaten the stability of the utility grid. This paper is aimed at bringing out the latest comprehensive review on different ramp-rate control smoothing methods under three broad classifications: (i) moving average and exponential smoothing based methods, (ii) filter based methods, and (iii) ramp-rate based algorithms. Application of moving average and low pass filter from filter based methods is widely chosen by the researchers for solar photovoltaic ramp-rate control. Therefore, a detailed analysis on these methods supported by simulation results is carried out to analyze the capability of these methods to control the solar photovoltaic ramp-rate. On application of these methods, it was found that there will be an increase in the energy storage’s degradation and size. In addition, reduction in energy storage’s operating life can also be found. Later, a detailed comparison on different techniques are summarized in the discussion section, from which it was found that the ramp-rate based algorithms are advantageous than moving average and filter based method. The advantages of the ramp-rate based algorithms are discussed as well. In addition, the disadvantages of the existing ramp-rate based algorithms are also highlighted. Finally, the necessitate for, (i) improvement in ramp-rate based algorithms, (ii) application of dual energy storage for large solar photovoltaic plant, and (iii) regulation in control of solar photovoltaic ramp-rates is suggested in this paper. These suggestions will contribute to decrease in energy storage’s capacity and degradation, and increase in its operation life.
机译:太阳能光伏发电机是一种间歇性能源,降低其输出功率斜率至关重要,因为它们威胁着公用电网的稳定性。本文旨在针对三种不同的斜率控制平滑方法进行最新的综合综述:(i)基于移动平均和指数平滑的方法,(ii)基于滤波器的方法,以及(iii)基于斜率的方法算法。研究人员广泛选择了基于滤波器的方法中的移动平均和低通滤波器的应用,用于太阳能光伏的斜率控制。因此,对这些方法的详细分析进行了仿真结果分析,以分析这些方法控制太阳能光伏斜率的能力。在应用这些方法后,发现储能装置的退化和尺寸将会增加。此外,还可以减少储能器的使用寿命。随后,在讨论部分中总结了对不同技术的详细比较,从中发现,基于斜坡速率的算法比基于移动平均值和基于滤波器的方法更具优势。还讨论了基于斜率的算法的优点。另外,还强调了现有的基于斜率的算法的缺点。最后,本文提出了以下必要:(i)改进基于斜率的算法,(ii)在大型太阳能光伏电站中双重能量存储的应用,以及(iii)调节太阳能光伏斜率的控制。这些建议将有助于减少储能装置的容量和退化,并延长其使用寿命。

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