Solar Cell Capacitance Determination Based on an RLC Resonant Circuit

被引:21
作者
Cotfas, Petru Adrian [1 ]
Cotfas, Daniel Tudor [1 ]
Borza, Paul Nicolae [1 ]
Sera, Dezso [2 ]
Teodorescu, Remus [2 ]
机构
[1] Transilvania Univ Brasov, Dept Elect & Comp, Eroilor 29, Brasov 500036, Romania
[2] Aalborg Univ, Dept Energy Technol, Pontoppidanstr 101, DK-9220 Aalborg, Denmark
关键词
solar cells; AC parameters; underdamped oscillation; impedance spectroscopy; TIME-DOMAIN TECHNIQUE; AC PARAMETERS; IMPEDANCE SPECTROSCOPY; GAAS/GE; BSFR;
D O I
10.3390/en11030672
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
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.
引用
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页数:13
相关论文
共 33 条
[1]   A novel hybrid PV-distillation system [J].
Al-Nimr, Moh'd A. ;
Al-Ammari, Wahib A. .
SOLAR ENERGY, 2016, 135 :874-883
[2]  
Bayhan H., 2003, Turkish J. Phys, V27, P529
[3]   Capacitance and conductance studies on silicon solar cells subjected to 8 MeV electron irradiations [J].
Bhat, P. Sathyanarayana ;
Rao, Asha ;
Sanjeev, Ganesh ;
Usha, G. ;
Priya, G. Krishna ;
Sankaran, M. ;
Puthanveettil, Suresh E. .
RADIATION PHYSICS AND CHEMISTRY, 2015, 111 :28-35
[4]   Admittance spectroscopy of thin film solar cells [J].
Burgelman, M ;
Nollet, P .
SOLID STATE IONICS, 2005, 176 (25-28) :2171-2175
[5]   A COMPARATIVE-STUDY OF EXTRACTION METHODS FOR SOLAR-CELL MODEL PARAMETERS [J].
CHAN, DSH ;
PHILLIPS, JR ;
PHANG, JCH .
SOLID-STATE ELECTRONICS, 1986, 29 (03) :329-337
[6]  
Chenvidhya D., 2004, P 14 INT PHOT SCI EN
[7]   Methods and techniques to determine the dynamic parameters of solar cells: Review [J].
Cotfas, D. T. ;
Cotfas, P. A. ;
Kaplanis, S. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 61 :213-221
[8]   Methods to determine the dc parameters of solar cells: A critical review [J].
Cotfas, D. T. ;
Cotfas, P. A. ;
Kaplanis, S. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2013, 28 :588-596
[9]   Explicit Expressions for Solar Panel Equivalent Circuit Parameters Based on Analytical Formulation and the Lambert W-Function [J].
Cubas, Javier ;
Pindado, Santiago ;
de Manuel, Carlos .
ENERGIES, 2014, 7 (07) :4098-4115
[10]  
Das N., 2013, P IEEE POW EN SOC GE