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Journal ArticleDOI

A three diode model for industrial solar cells and estimation of solar cell parameters using PSO algorithm

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TLDR
In this paper, a lumped-parameter equivalent circuit model using three-diodes is presented for large area (∼154.8 cm 2 ) industrial silicon solar cells.
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This article is published in Renewable Energy.The article was published on 2015-06-01. It has received 299 citations till now. The article focuses on the topics: Solar cell.

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Cell modelling and model parameters estimation techniques for photovoltaic simulator application: A review

TL;DR: In this paper, a review of the important works on the modelling and parameters estimation of photovoltaic (PV) cells for PV simulation is presented, which provides the concepts, features, and highlights the advantages and drawbacks of three main PV cell models, namely the single diode RS-, RP- and the two-diode.
Journal ArticleDOI

Parameter estimation of solar photovoltaic (PV) cells: A review

TL;DR: In this paper, the existing research works on PV cell model parameter estimation problem are classified into three categories and the research works of those categories are reviewed based on the conducted review, some recommendations for future research are provided.
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An efficient salp swarm-inspired algorithm for parameters identification of photovoltaic cell models

TL;DR: An efficient approach based on Salp Swarm Algorithm for extracting the parameters of the electrical equivalent circuit of PV cell based double-diode model is proposed and several evaluation criteria show that the SSA algorithm provides the highest value of accuracy and has merits in designing SPVSs.
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Parameters extraction of the three diode model for the multi-crystalline solar cell/module using Moth-Flame Optimization Algorithm

TL;DR: A proper optimization algorithm, called Moth-Flame Optimizer (MFO), is proposed as a new optimization algorithm for the parameter extraction process of the three tested models based on data measured at laboratory and other data reported at previous literature.
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Parameter identification and sensitivity analysis of solar cell models with cat swarm optimization algorithm

TL;DR: In this article, an optimization technique based on cat swarm optimization (CSO) algorithm is proposed to estimate the unknown parameters of single and double diode models, and the evaluation for the quality of identified parameters is also given.
References
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Book

Computational Intelligence: An Introduction

TL;DR: Computational Intelligence: An Introduction, Second Edition offers an in-depth exploration into the adaptive mechanisms that enable intelligent behaviour in complex and changing environments, encompassing swarm intelligence, fuzzy systems, artificial neutral networks, artificial immune systems and evolutionary computation.
Journal ArticleDOI

MATLAB-Based Modeling to Study the Effects of Partial Shading on PV Array Characteristics

TL;DR: In this paper, a MATLAB-based modeling and simulation scheme is presented for studying the I-V and P-V characteristics of a PV array under a nonuniform insolation due to partial shading.
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Simple, fast and accurate two-diode model for photovoltaic modules

TL;DR: The main contribution of this work is the simplification of the current equation, in which only four parameters are required, compared to six or more in the previously developed two-diode models.
Journal ArticleDOI

New method to extract the model parameters of solar cells from the explicit analytic solutions of their illuminated I–V characteristics

TL;DR: In this article, the intrinsic and extrinsic model parameters of illuminated solar cells containing parasitic series resistance and shunt conductance were extracted based on calculating the Co-content function (CC) from the exact explicit analytical solutions of the illuminated current-voltage (I-V) characteristics.
Journal ArticleDOI

A comprehensive MATLAB Simulink PV system simulator with partial shading capability based on two-diode model

TL;DR: A new two-diode model is utilized to represent the PV cell in a comprehensive MATLAB Simulink simulator for photovoltaic (PV) system that supports a large array combination that can be interfaced to MPPT algorithms and power electronic converters.
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