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Published By MDPI AG

2673-9941

Solar ◽  
2022 ◽  
Vol 2 (1) ◽  
pp. 1-11
Author(s):  
Johanna Zikulnig ◽  
Wolfgang Mühleisen ◽  
Pieter Jan Bolt ◽  
Marcel Simor ◽  
Martin De Biasio

Renewable energy sources such as photovoltaic (PV) technologies are considered to be key drivers towards climate neutrality. Thin-film PVs, and particularly copper indium gallium selenide (CIGS) technologies, will play a crucial role in the turnaround in energy policy due to their high efficiencies, high product flexibility, light weight, easy installation, lower labour-intensiveness, and lower carbon footprint when compared to silicon solar cells. Nonetheless, challenges regarding the CIGS fabrication process such as moderate reproducibility and process tolerance are still hindering a broad market penetration. Therefore, cost-efficient and easily implementable in-line process control methods are demanded that allow for identification and elimination of non-conformal cells at an early production step. As part of this work, a practical approach towards industrial in-line photoluminescence (PL) imaging as a contact-free quality inspection tool is presented. Performance parameters of 10 CIGS samples with 32 individually contacted cells each were correlated with results from PL imaging using green and red excitation light sources. The data analysis was fully automated using Python-based image processing, object detection, and non-linear regression modelling. Using the red excitation light source, the presented PL imaging and data processing approach allows for a quantitative assessment of the cell performance.


Solar ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 41-51
Author(s):  
Reza Hassanian ◽  
Morris Riedel ◽  
Nashmin Yeganeh ◽  
Runar Unnthorsson

In this study, recorded empirical data were applied with a practical approach to investigate the optimal tilt angle of the flat plate collectors facing south for a long period in Tehran, Iran. The data included 20 years of recorded average total radiation on the horizontal plane in Tehran’s meteorological station. Based on the previous studies, the annual optimum tilt angle for Tehran was estimated at 33 degrees annually; however, this estimation does not focus on the energy absorption and effectiveness of changing the tilt angle monthly, seasonally, and bi-annually via measured data. This paper aims to explain this distinction between various radiation receptions with different tilt angle adjustments. This study shows that annual solar cumulative radiation energy gained via a monthly tilt angle can be approximately 7% higher than that achieved with an annual tilt angle setup. Additionally, the seasonal and bi-annual tilt angles have about 6% more annual cumulative radiation absorption than the annual tilt angle setup. Moreover, with consideration of similar monthly received radiation, the results illustrate that the radiation gained with a monthly tilt angle set up was 20% greater in the summer months than an annual tilt angle adjustment.


Solar ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 30-40
Author(s):  
Jaime G. Cuadra ◽  
Samuel Porcar ◽  
Diego Fraga ◽  
Teodora Stoyanova-Lyubenova ◽  
Juan B. Carda

Doped ZnO are among the most attractive transparent conductive oxides for solar cells because they are relatively cheap, can be textured for light trapping, and readily produced for large-scale coatings. Here, we focus on the development of alternative Na and K-doped ZnO prepared by an easy low-cost spray pyrolysis method for conducting oxide application. To enhance the electrical properties of zinc oxide, alkali-doped Zn1−x MxO (x = 0.03) solid solutions were investigated. The resulting layers crystallize in a single hexagonal phase of wurtzite structure with preferred c-axis orientation along a (002) crystal plane. Dense, well attached to the substrate, homogeneous and highly transparent layers were obtained with great optical transmittance higher than 80%. The optical energy band gap of doped ZnO films increase from 3.27 to 3.29 eV by doping with Na and K, respectively. The electrical resistivity of the undoped ZnO could be decreased from 1.03 × 10−1 Ω.cm to 5.64 × 10−2 Ω.cm (K-doped) and 3.18 × 10−2 (Na-doped), respectively. Lastly, the carrier concentrations increased from 5.17 × 1017 (undoped ZnO) to 1 × 1018 (doped ZnO).


Solar ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 4-29
Author(s):  
Adrian B. Boivin ◽  
Jonathan F. Holzman

This work considers an emerging value-based paradigm for solar generation under high penetration, in light of its conflicting cycles of supply and demand. The resulting swings in electricity prices, in locales such as California, call into question the aim of optimizing solar arrays solely in terms of accumulated electrical power. Thus, this work studies solar arrays in terms of value, as an accumulated product of electrical power and price, where solar arrays that generate greater electrical power over more profitable early- and late-day hours yield improved value. Experimental, theoretical, and economic analyses are given to characterize the industry-standard angled-panel, an alternative V-groove, and a new U-groove array over a 5-year study. The trends and projections suggest that the industry-standard angled-panel array realizes the best value-based performance at present, although it will likely be outperformed in the foreseeable future by the V-groove array.


Solar ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 2-3
Author(s):  
Juergen H. Werner

Climate change and the consequential environmental catastrophes are real, not only in less developed countries of the so-called “Global South” but also in so-called industrialized and “well-developed” areas of the world! Just within the last few months and years, we have seen high-temperature records in the United States, fire disasters in Canada, Australia, Greece, Italy, and Spain [...]


Solar ◽  
2021 ◽  
Vol 1 (1) ◽  
pp. 1-1
Author(s):  
Yu Lin ◽  
Giulia Stefenelli ◽  
Liliane Auwerter
Keyword(s):  

Solar energy is the basis for life on earth [...]


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