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Improving the Energy Storage of Standalone PV Systems while Enhancing the Charging Efficiency using Supercapacitors

机译:使用超级电容器提高独立光伏系统的能量存储,同时使用超级电容器提高充电效率

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Usually a battery is used as the energy storage device in typical standalone solar photovoltaic (PV) systems. It is charged by a solar charge controller. The charging efficiency of the system depends on the efficiency of the DC-DC converter of solar charge controller. However, a considerable amount of usable energy is wasted during the charging process. In this work, a method is proposed to utilize this wasted energy and thereby to enhance the charging efficiency. In the case of an empty capacitor being charged by an external source, it stores only half of the energy delivered by the source as compared to that of an electrochemical battery. Therefore, it wastes 50% of useful energy. A portion of this wasted energy can be collected and utilized if a useful resistive load is connected in series to this capacitor charging loop. In this study, a DC-DC converter and battery bank is connected as the useful resistive load in the capacitor charging loop. A supercapacitor (SC) bank is used replacing the conventional capacitor. Therefore, total energy loss in capacitor charging loop can be minimized by storing energy in both battery bank and SC bank. This concept is introduced into a typical PV system for reducing its energy losses. Experimental results show an enhancement in charging efficiency when this new method is employed. The energy stored in the SC bank could be used for driving loads with required electronics.
机译:通常,电池用作典型的独立太阳能光伏(PV)系统中的能量存储装置。它由太阳能电荷控制器充电。系统的充电效率取决于太阳能电荷控制器的DC-DC转换器的效率。但是,在充电过程中浪费了相当大量的可用能量。在这项工作中,提出了一种方法来利用这种浪费的能量,从而提高充电效率。在由外部源充电的空电容器的情况下,与电化学电池的电容相比,它仅存储由源传递的能量的一半。因此,它浪费了50%的有用能量。如果有用的电阻载荷串联连接到该电容器充电环路,则可以收集和利用这种浪费的能量的一部分。在该研究中,DC-DC转换器和电池组作为电容器充电环中的有用电阻负载连接。将超级电容器(SC)块用于更换传统电容器。因此,通过在电池组和SC库中存储能量,可以最小化电容器充电环中的总能量损失。该概念被引入典型的PV系统中,以降低其能量损失。实验结果表明,采用这种新方法时的充电效率提高。存储在SC银行中的能量可用于用所需电子器件驱动负载。

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