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Solar Cell Capacitance Determination Based on an RLC Resonant Circuit

机译:基于RLC谐振电路的太阳能电池电容确定

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摘要

The capacitance is one of the key dynamic parameters of solar cells, which can provide essential information regarding the quality and health state of the cell. However, the measurement of this parameter is not a trivial task, as it typically requires high accuracy instruments using, e.g., electrical impedance spectroscopy (IS). This paper introduces a simple and effective method to determine the electric capacitance of the solar cells. An RLC (Resistor Inductance Capacitor) circuit is formed by using an inductor as a load for the solar cell. The capacitance of the solar cell is found by measuring the frequency of the damped oscillation that occurs at the moment of connecting the inductor to the solar cell. The study is performed through simulation based on National Instruments (NI) Multisim application as SPICE simulation software and through experimental capacitance measurements of a monocrystalline silicon commercial solar cell and a photovoltaic panel using the proposed method. The results were validated using impedance spectroscopy. The differences between the capacitance values obtained by the two methods are of 1% for the solar cells and of 9.6% for the PV panel. The irradiance level effect upon the solar cell capacitance was studied obtaining an increase in the capacitance in function of the irradiance. By connecting different inductors to the solar cell, the frequency effect upon the solar cell capacitance was studied noticing a very small decrease in the capacitance with the frequency. Additionally, the temperature effect over the solar cell capacitance was studied achieving an increase in capacitance with temperature.
机译:电容是太阳能电池的关键动态参数之一,其可以提供关于细胞的质量和健康状态的基本信息。然而,该参数的测量不是琐碎的任务,因为它通常需要使用高精度仪器,例如电阻抗光谱(是)。本文介绍了一种简单有效的方法来确定太阳能电池的电容。通过使用电感器作为太阳能电池的负载形成RLC(电阻器电感电容器)电路。通过测量在将电感器连接到太阳能电池的时刻发生的阻尼振荡的频率来发现太阳能电池的电容。该研究是通过基于国家仪器(NI)MultiSim应用作为Spice仿真软件的仿真和使用该方法的单晶硅商业太阳能电池和光伏板的实验电容测量来进行。使用阻抗光谱验证结果。通过两种方法获得的电容值之间的差异为太阳能电池的1%,并且PV面板为9.6%。研究了对太阳能电池电容的辐照度水平效应获得了辐照度功能的电容增加。通过将不同的电感器连接到太阳能电池,研究了太阳能电池电容对太阳能电池电容的频率效应,注意到频率非常小的电容减小。另外,研究了太阳能电池电容上的温度效应,实现了温度的电容增加。

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