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An Adaptive Ramp-Rate Control for Photovoltaic System to Mitigate Output Fluctuation

机译:光伏系统的自适应斜坡速率控制,可减轻输出波动

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With high penetration level of grid-connected photovoltaic (PV) system, the stability of power grid is easily affected by the variable irradiation which furthers the power fluctuations with high ramp-rate. Hence, in order to extent the proportion of solar energy in power grid, a method for controlling ramp-rate is necessary to be installed in PV system. Normally, energy storage system (ESS) is employed without a direct control and controllable ramp-rate in prior-arts. Meanwhile, the state of charge (SoC) of ESS could also influence the fluctuation mitigation performance. In this paper, an adaptive ramp-rate control is proposed with integrated ESS for fluctuation mitigation. This control blends a direct ramp-rate control to reduce the fluctuation caused by PV side irradiation change to a desired level and a SoC control with variable ramp-rate to improve the performance in unexceptional SoC. The proposed control is verified by the simulations based on a typical PV micro-grid with ESS.
机译:随着并网光伏系统的高渗透水平,可变辐射容易影响电网的稳定性,从而以高斜率增加功率波动。因此,为了扩展太阳能在电网中的比例,必须在光伏系统中安装一种用于控制斜坡率的方法。通常,在现有技术中使用能量存储系统(ESS)而没有直接的控制和可控的斜率。同时,ESS的充电状态(SoC)也可能影响波动缓解性能。在本文中,提出了一种带有集成ESS的自适应斜坡率控制来减轻波动。此控制将直接斜坡速率控制(以将PV侧辐射变化引起的波动减小至所需水平)与具有可变斜坡速率的SoC控制(以提高非凡SoC的性能)混合在一起。通过基于具有ESS的典型PV微电网的仿真,对提出的控制进行了验证。

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