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A power smoothing control method for a photovoltaic generation system using a water electrolyzer and its filtering characteristics

机译:使用水电解槽的光伏发电系统电力平滑控制方法及其滤波特性

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摘要

This paper proposes a novel power smoothing control method for a photovoltaic generation (PV) system using a water electrolyzer (ELY). This method realizes that the long-period components of the PV power fluctuation are supplied to the power grid and the short-period components of the PV power fluctuation are supplied to the ELY. The power supplied to the ELY is converted to hydrogen for fuel cell vehicles. The results of the power smoothing control method are evaluated in terms of the power in the load frequency control (LFC) band and the ability of generating hydrogen. Furthermore, filtering characteristics of the proposed method are clarified. As the result, the proposed method has reduced the power in LFC band by 83.7% compared to the PV power without the power smoothing control. The filter characteristics of the proposed method have shown that fluctuating components with periods less than 1000 seconds, in which the step voltage regulator does not perform, can be sufficiently eliminated from the PV power fluctuation components. When applying the proposed method for a PV system rated at 800 kW, the ability of generating hydrogen was about 2.30% of the hydrogen required for one hydrogen station.
机译:本文提出了一种使用水电解槽(ely)的光伏发电(PV)系统的新型电力平滑控制方法。该方法意识到PV功率波动的长周期分量被提供给电网,并且PV功率波动的短时间分量被提供给ELY。提供给伊素的电力被转换为燃料电池车辆的氢气。功率平滑控制方法的结果在负载频率控制(LFC)带中的功率和产生氢气的能力方面进行评估。此外,阐明了所提出的方法的过滤特性。结果,与PV功率相比,所提出的方法在LFC带中的功率降低了83.7%,而没有功率平滑控制。所提出的方法的滤波器特性表明,从PV功率波动部件中,可以充分地消除具有小于1000秒的周期的波动部件,其中步进电压调节器不执行。当施加到800 kW的PV系统的提出方法时,产生氢气的能力为一个氢气站所需的氢的2.30%。

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