一种将MPPT控制法获得的光伏发电功率向串联超电双层电容器充电的控制方法

N. Mutoh, Takayoshi Inoue
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引用次数: 19

摘要

介绍了一种不受天气影响而能高效获取电能的光伏发电系统。该光伏发电系统由两个控制器组成,即最大功率点跟踪(MPPT)控制器,该控制器可以在任何时候,无论天气如何,都可以获取太阳能电池板可以产生的最大功率,而控制器可以在保持太阳能电池板当时可以产生的电量的同时,将MPPT控制器获得的最大功率快速充电到串联的超电双层电容器(ultraedlc)。MPPT控制器控制太阳能电池阵列的输出电流,使输出功率收敛于根据最大输出功率与最优电流之间的线性关系预先确定的预测线上的最大功率。与传统的爬坡方式相比,MPPT控制器的特点是能够扩大输出功率的可控范围,以降低太阳辐射。充电控制器对电流和电压进行控制,使每个串联的EDLC在控制最大电压和允许温度的同时,以当时产生的功率进行充电,这种组合控制方式使太阳能电池阵列产生的最大功率充电成为可能。仿真和实验验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A controlling method for charging photovoltaic generation power obtained by a MPPT control method to series connected ultraelectric double layer capacitors
A photovoltaic (PV) generation system which can efficiently acquire the electric energy irrespective of the weather is described. The PV generation system is characterized by two controllers, namely, a maximum power point tracking (MPPT) controller which makes it possible to take the maximum power which solar arrays can generate at any time irrespective of the weather, and a controller which quickly charges the maximum power obtained by the MPPT control to series connected ultraelectric double layer capacitors (ultraEDLCs) while maintaining the electric capacity which solar arrays can generate at that time. The MPPT controller controls the output current of the solar arrays so that the output power converges on the maximum power in the prediction line previously determined based on the linearity between the maximum output power and the optimal current. The MPPT controller is characterized by having the ability to enlarge the controllable range of the output power to lower solar radiation in comparison with the conventional hill-climbing method. The charging controller controls the current and voltage so as to be charged at around the power generated at that time while supervising the maximum voltage and allowable temperature of each series connected EDLC, The combined control method makes it possible to charge with the maximum power generation from solar arrays into ultraEDLCs. Effectiveness of the methods is verified by simulations and experiments.
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