Details
Photovoltaic Modules
Technology and Reliability1. Aufl.
162,95 € |
|
Verlag: | De Gruyter |
Format: | EPUB |
Veröffentl.: | 12.09.2016 |
ISBN/EAN: | 9783110383980 |
Sprache: | englisch |
Anzahl Seiten: | 223 |
DRM-geschütztes eBook, Sie benötigen z.B. Adobe Digital Editions und eine Adobe ID zum Lesen.
Beschreibungen
<p>Photovoltaic Modules: Technology and Reliability provides unique insights into concepts, material design strategies, manufacturing techniques, quality and service life analysis of wafer-based photovoltaic modules. Taking an interdisciplinary approach, the authors focus on two main topics. Part I – Crystalline Silicone Module Technology offers photovoltaics fundamentals: solar cell properties, module design, materials and production, basic module characterization, module power as well as efficiency and module performance. Part II, on the other hand, illustrates the state-of-the-art of module reliability by characterization of modules and degradation effects, examination of PV-Module loads, accelerated aging tests as well as reliability testing of materials and modules. A separate chapter is dedicated to PV module and component certification. </p>
<p>From the Contents:</p>
<p>- Fundamentals<br>- History of PV modules<br>- Buildup and specifications<br>- Solar cells properties<br>- Types of solar cells<br>- Properties<br>- Electrical properties <br>- Mechanical and thermo-mechanical properties<br>- Interconnection<br>- Materials (ribbons/wires, JB)<br>- Processes<br>- Industrial Tools<br>- Encapsulation<br>- Materials (glass, encapsulants, backsheets)<br>- Processes<br>- Industrial Tools<br>- Module characterisation and QA<br>- Flasher measurement<br>- Peel, Gel content<br>- Module efficiency<br>- Electrical models<br>- Optical models<br>- Cell-to-Module efficiency<br>- Module yield<br>- Yield models<br>- Module performance ratio<br>- Reliability <br>- Module and component testing<br>- Climatic loads in module operation<br>- Module failures in the field<br>- Accelerated testing<br>- Module and component certification<br>- IEC 61215, 61730</p>
<p> </p>
<p>- Fundamentals<br>- History of PV modules<br>- Buildup and specifications<br>- Solar cells properties<br>- Types of solar cells<br>- Properties<br>- Electrical properties <br>- Mechanical and thermo-mechanical properties<br>- Interconnection<br>- Materials (ribbons/wires, JB)<br>- Processes<br>- Industrial Tools<br>- Encapsulation<br>- Materials (glass, encapsulants, backsheets)<br>- Processes<br>- Industrial Tools<br>- Module characterisation and QA<br>- Flasher measurement<br>- Peel, Gel content<br>- Module efficiency<br>- Electrical models<br>- Optical models<br>- Cell-to-Module efficiency<br>- Module yield<br>- Yield models<br>- Module performance ratio<br>- Reliability <br>- Module and component testing<br>- Climatic loads in module operation<br>- Module failures in the field<br>- Accelerated testing<br>- Module and component certification<br>- IEC 61215, 61730</p>
<p> </p>
<p><strong>Harry Wirth,</strong> <strong>Karl-Anders Weiß</strong> and <strong>Cornelia Wiesmeier</strong>, Fraunhofer ISE, Freiburg, Germany. </p>
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