back reflection
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2021 ◽  
Vol 15 ◽  
pp. 627
Author(s):  
Andre Fragalli ◽  
Liliane Ventura

There is no reliable and universal method to assess and compare protective properties of lenses, which is generally communicated to the purchasers by sunglasses categories based on lenses only, classifying the entire sun transmission spectrum (ultraviolet, infrared and visible), without accounting the geometry of the frame, nor the back reflection of the lenses, which is a serious problem. The present work develops a fuzzy classification system whose purpose is to create a reliable method to rate and compare sunglasses through their sun protective properties. This system treats the pre-acquired data relative to the lenses, i.e. ultraviolet transmittance and back reflection, in addition to the frame coverage data through the fuzzification interface, followed by the fuzzy inference process and later by the defuzzification interface. The output is an alphabetic rate of the protective eyewear to inform consumers, in a simple way to understand, regarding the sun protective properties of the sunglasses they purchase. Through the results it was possible to prove the effectiveness of choosing a fuzzy system for this classification system, as it was able to translate, in mathematical terms, the linguistic rules, classifying each of the various possible combinations of the inputs to one of the six factors stipulated for the ocular sun protection factor (OSPF) proposed in this work.


2021 ◽  
pp. 207-211
Author(s):  
V.S. Boldasov ◽  
A.I. Kuzmichev ◽  
M.S. Melnichenko ◽  
V.M. Shulaev

The kinetic simulation of high-voltage beam discharge at low pressure of nitrogen is fulfilled. The characteristics of particle flows to the tantalum cathode and back reflection of fast nitrogen atoms are calculated. The reflection coefficient equals tens of percents at voltages up to 100 kV. The generation of fast nitrogen atoms may be used for metals and dielectrics nitriding with implantation effect.


2021 ◽  
pp. 1144-1157
Author(s):  
Hardan T. Ganem ◽  
Aiad Salh

CZTS / CdS / ZnO / ITO solar cell was studied using Solar Cell Capacitance Simulato-1D (SCAPS-1D) program. We performed an improvement on the theoretical cell by increasing the doping and thickness of some layers. As a result, the efficiency was shifted from 2.18% to 6.17% and several back reflection layers (BSL) were introduced on the enhanced cell until. We obtained a highest conversion efficiency of 13.99%.  The best reflection layer (CZTSSe) was combined with the best buffer layer (CdSe), with thickness of 0.9µm, on the enhanced cell. Thereby, we obtained a cell with a conversion efficiency of 16.53%. A second improvement was made to the best obtained cell, where the CZTSSe with thickness of 0.05µm and the CdSe with thickness of 0.9µm were combined. Consequently, the efficiency was increased from 16.53% to 21.76%. By comparing the experimental results with those obtained with the program, it was found that the program simulates reality, i.e. the experimental and theoretical results matched.


IEEE Access ◽  
2021 ◽  
Vol 9 ◽  
pp. 28897-28903
Author(s):  
Changkun Feng ◽  
Danni Liu ◽  
Peiren Ni ◽  
Hui Li ◽  
Lishuang Feng

2020 ◽  
Vol 19 (12) ◽  
pp. 2329-2333
Author(s):  
Ayse Ecem Bezer ◽  
Mehmet Abbak ◽  
Tugrul Gursoy ◽  
Umut Aydin

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