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Optical Modeling and Simulation of Thin-Film Photovoltaic Devices
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Optical Modeling and Simulation of Thin-Film Photovoltaic Devices

Book Details

Format Hardback or Cased Book
ISBN-10 1439818495
ISBN-13 9781439818497
Publisher Taylor & Francis Inc
Imprint CRC Press Inc
Country of Manufacture US
Country of Publication GB
Publication Date Apr 5th, 2013
Print length 272 Pages
Weight 586 grams
Dimensions 24.30 x 15.60 x 2.10 cms
Ksh 34,200.00
Werezi Extended Catalogue 0 in stock

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This work provides readers with a thorough guide to performing optical modeling and simulations of thin-film solar cells and PV modules. The authors offer insight on examples of existing optical models, demonstrate the applicability of optical modeling, and present concrete directions and solutions for improving the devices. Many practical examples illustrate the use of simulations with the developed models, helping readers better understand and develop their own models as well as appreciate innovative concepts in light management in thin-film PV devices.

In wafer-based and thin-film photovoltaic (PV) devices, the management of light is a crucial aspect of optimization since trapping sunlight in active parts of PV devices is essential for efficient energy conversions. Optical modeling and simulation enable efficient analysis and optimization of the optical situation in optoelectronic and PV devices.



Optical Modeling and Simulation of Thin-Film Photovoltaic Devices provides readers with a thorough guide to performing optical modeling and simulations of thin-film solar cells and PV modules. It offers insight on examples of existing optical models, demonstrates the applicability of optical modeling, and presents concrete directions and solutions for improving the devices.





Along with giving practical hints, the book highlights significant research, development, and production in the field. It covers numerous approaches of one-, two-, and three-dimensional optical modeling, including one-dimensional semi-coherent modeling and two-dimensional modeling based on the finite element method (FEM). Many practical examples illustrate the use of simulations with the developed models, helping readers better understand and develop their own models as well as appreciate innovative concepts in light management in thin-film PV devices.


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