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This Second Edition has been updated to reflect the advances that have taken place since publication of the previous edition. The book draws upon basic physics and engineering principles coupled with key economic, market, business, investment, and policy factors to explain the current status of solar cells and how their applications will expand over the next few decades. This new edition is of interest to technologists in the fields of solar cells and systems, academics studying microelectronics, semiconductors, and solar cells, and business students and investors with a technical focus.
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This Second Edition has been updated to reflect the advances that have taken place since publication of the previous edition. The book draws upon basic physics and engineering principles coupled with key economic, market, business, investment, and policy factors to explain the current status of solar cells and how their applications will expand over the next few decades. This new edition is of interest to technologists in the fields of solar cells and systems, academics studying microelectronics, semiconductors, and solar cells, and business students and investors with a technical focus.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Wiley Series in Microwave and Optical Engineering
- Verlag: Wiley & Sons
- 2. Aufl.
- Seitenzahl: 648
- Erscheinungstermin: 11. Oktober 2010
- Englisch
- Abmessung: 240mm x 161mm x 39mm
- Gewicht: 997g
- ISBN-13: 9780470446331
- ISBN-10: 0470446331
- Artikelnr.: 27870657
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
- Wiley Series in Microwave and Optical Engineering
- Verlag: Wiley & Sons
- 2. Aufl.
- Seitenzahl: 648
- Erscheinungstermin: 11. Oktober 2010
- Englisch
- Abmessung: 240mm x 161mm x 39mm
- Gewicht: 997g
- ISBN-13: 9780470446331
- ISBN-10: 0470446331
- Artikelnr.: 27870657
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- 06621 890
Lewis M. Fraas, PhD, is the founder and President of JX Crystals Inc. He has spearheaded the development of high-power-density photovoltaic cells and complete concentrating photovoltaic and thermophotovoltaic systems. Dr. Fraas wrote the first paper describing the forty percent-efficient triple-junction concentrator solar cell now entering high-volume production, and his group at Boeing demonstrated the first thirty-five percent-efficient dual-junction cell. Larry D. Partain, PhD, is Director of Marketing and Advanced Technology, initiating and managing high-risk/high-payoff R&D programs for Varian Medical Systems. A prominent researcher in solar cell and related X-ray imager technology, Dr. Partain recently led efforts to develop high-performance X-ray and flat-panel imaging medical systems, helping to create over $100 million in company sales.
I. Introduction to Solar Cells.
1. Solar Cells: A Brief History and Introduction (Lewis Fraas and Larry
Partain).
2. Solar Cell Electricity Market History, Public Policy, Projected Future
and Estimated Costs (Larry Partain and Lewis Fraas).
3. Solar Cells, Single Crystal Semiconductors, and High Efficiency (Lewis
Fraas).
4. Solar Cell Device Physics (Larry Partain).
II. Terrestrial Solar Cell Electricity.
5. Crystalline Silicon Solar Cells and Modules (Leonid Rubin).
6. Thin Film Solar Cells and Modules (Robert Birkmire).
7. Terrestrial Module Fabrication & Assembly Technologies (Christopher
Bunner).
8. Chinese Solar Cell Status (Wang Sicheng).
9. Tracking the Sun for More kWh and Lower Cost Solar Electricity (Ron
Corio, Michael Reed and Lewis Fraas).
10. Solar Cell Systems: Definition, Performance & Reliability (Jason
Strauch, Larry Moore and Elmer Collins).
11. Leveled Cost of Energy for Utility-Scale Photovoltaics (Matthew
Campbell).
III. Terrestrial Concentrator Solar Cell Systems.
12. Low Concentration Crystalline Silicon Systems (Lewis Fraas).
13. High-Concentration, III-V Multijunction Solar Cells (Geoffrey Kinsey).
14. High Concentration Fresnel Lens Assemblies and Systems (Gerhard (Peharz
and Andreas Bett).
15. High Concentration Cassengrainian Solar Cell Modules and Arrays (
Michael Ludowise and Lewis Fraas).
16. Concentrator Solar Cell Installations at University of Nevada Las Vegas
(Suresh Sadineni and Robert Boehm).
17. Concentrator Solar Cell Field Installations (Francisca Rubio, Mar¡a
Martinez and Pedro Banda).
IV. Solar Cells in Space.
18. Space Solar Cells and Applications (Sheila Bailey and Ryne Raffaelle).
V. Other Aspects & Considerations.
19. Solar Resource for Space and Terrestrial Applications (Christian
Gueymard and Daryl Myers).
20. Solar Energy Costs: The Solar Advisor Model (Paul Gilman, Nathan Blair
and Christopher Cameron).
21. Challenges of Large-Scale Solar Cell Electricity Production (David
Faiman).
VI. Thin Films & X-ray Imager Technologies.
22. Market Overview of Flat Panel Detectors for X-Ray Imaging (Carl
LaCasce, Larry Partain and Chuck Blouir).
23. Amorphous Silicon Transistors and Photodiodes (Robert Street).
24. Amorphous Silicon Digital X-ray Imaging (Richard Colbeth).
25. Photoconductor Digital X-ray Imaging (George Zentai).
VII. Summary.
26. Summary, Conclusions, and Recommendations (Lewis Fraas and Larry
Partain).
1. Solar Cells: A Brief History and Introduction (Lewis Fraas and Larry
Partain).
2. Solar Cell Electricity Market History, Public Policy, Projected Future
and Estimated Costs (Larry Partain and Lewis Fraas).
3. Solar Cells, Single Crystal Semiconductors, and High Efficiency (Lewis
Fraas).
4. Solar Cell Device Physics (Larry Partain).
II. Terrestrial Solar Cell Electricity.
5. Crystalline Silicon Solar Cells and Modules (Leonid Rubin).
6. Thin Film Solar Cells and Modules (Robert Birkmire).
7. Terrestrial Module Fabrication & Assembly Technologies (Christopher
Bunner).
8. Chinese Solar Cell Status (Wang Sicheng).
9. Tracking the Sun for More kWh and Lower Cost Solar Electricity (Ron
Corio, Michael Reed and Lewis Fraas).
10. Solar Cell Systems: Definition, Performance & Reliability (Jason
Strauch, Larry Moore and Elmer Collins).
11. Leveled Cost of Energy for Utility-Scale Photovoltaics (Matthew
Campbell).
III. Terrestrial Concentrator Solar Cell Systems.
12. Low Concentration Crystalline Silicon Systems (Lewis Fraas).
13. High-Concentration, III-V Multijunction Solar Cells (Geoffrey Kinsey).
14. High Concentration Fresnel Lens Assemblies and Systems (Gerhard (Peharz
and Andreas Bett).
15. High Concentration Cassengrainian Solar Cell Modules and Arrays (
Michael Ludowise and Lewis Fraas).
16. Concentrator Solar Cell Installations at University of Nevada Las Vegas
(Suresh Sadineni and Robert Boehm).
17. Concentrator Solar Cell Field Installations (Francisca Rubio, Mar¡a
Martinez and Pedro Banda).
IV. Solar Cells in Space.
18. Space Solar Cells and Applications (Sheila Bailey and Ryne Raffaelle).
V. Other Aspects & Considerations.
19. Solar Resource for Space and Terrestrial Applications (Christian
Gueymard and Daryl Myers).
20. Solar Energy Costs: The Solar Advisor Model (Paul Gilman, Nathan Blair
and Christopher Cameron).
21. Challenges of Large-Scale Solar Cell Electricity Production (David
Faiman).
VI. Thin Films & X-ray Imager Technologies.
22. Market Overview of Flat Panel Detectors for X-Ray Imaging (Carl
LaCasce, Larry Partain and Chuck Blouir).
23. Amorphous Silicon Transistors and Photodiodes (Robert Street).
24. Amorphous Silicon Digital X-ray Imaging (Richard Colbeth).
25. Photoconductor Digital X-ray Imaging (George Zentai).
VII. Summary.
26. Summary, Conclusions, and Recommendations (Lewis Fraas and Larry
Partain).
I. Introduction to Solar Cells.
1. Solar Cells: A Brief History and Introduction (Lewis Fraas and Larry
Partain).
2. Solar Cell Electricity Market History, Public Policy, Projected Future
and Estimated Costs (Larry Partain and Lewis Fraas).
3. Solar Cells, Single Crystal Semiconductors, and High Efficiency (Lewis
Fraas).
4. Solar Cell Device Physics (Larry Partain).
II. Terrestrial Solar Cell Electricity.
5. Crystalline Silicon Solar Cells and Modules (Leonid Rubin).
6. Thin Film Solar Cells and Modules (Robert Birkmire).
7. Terrestrial Module Fabrication & Assembly Technologies (Christopher
Bunner).
8. Chinese Solar Cell Status (Wang Sicheng).
9. Tracking the Sun for More kWh and Lower Cost Solar Electricity (Ron
Corio, Michael Reed and Lewis Fraas).
10. Solar Cell Systems: Definition, Performance & Reliability (Jason
Strauch, Larry Moore and Elmer Collins).
11. Leveled Cost of Energy for Utility-Scale Photovoltaics (Matthew
Campbell).
III. Terrestrial Concentrator Solar Cell Systems.
12. Low Concentration Crystalline Silicon Systems (Lewis Fraas).
13. High-Concentration, III-V Multijunction Solar Cells (Geoffrey Kinsey).
14. High Concentration Fresnel Lens Assemblies and Systems (Gerhard (Peharz
and Andreas Bett).
15. High Concentration Cassengrainian Solar Cell Modules and Arrays (
Michael Ludowise and Lewis Fraas).
16. Concentrator Solar Cell Installations at University of Nevada Las Vegas
(Suresh Sadineni and Robert Boehm).
17. Concentrator Solar Cell Field Installations (Francisca Rubio, Mar¡a
Martinez and Pedro Banda).
IV. Solar Cells in Space.
18. Space Solar Cells and Applications (Sheila Bailey and Ryne Raffaelle).
V. Other Aspects & Considerations.
19. Solar Resource for Space and Terrestrial Applications (Christian
Gueymard and Daryl Myers).
20. Solar Energy Costs: The Solar Advisor Model (Paul Gilman, Nathan Blair
and Christopher Cameron).
21. Challenges of Large-Scale Solar Cell Electricity Production (David
Faiman).
VI. Thin Films & X-ray Imager Technologies.
22. Market Overview of Flat Panel Detectors for X-Ray Imaging (Carl
LaCasce, Larry Partain and Chuck Blouir).
23. Amorphous Silicon Transistors and Photodiodes (Robert Street).
24. Amorphous Silicon Digital X-ray Imaging (Richard Colbeth).
25. Photoconductor Digital X-ray Imaging (George Zentai).
VII. Summary.
26. Summary, Conclusions, and Recommendations (Lewis Fraas and Larry
Partain).
1. Solar Cells: A Brief History and Introduction (Lewis Fraas and Larry
Partain).
2. Solar Cell Electricity Market History, Public Policy, Projected Future
and Estimated Costs (Larry Partain and Lewis Fraas).
3. Solar Cells, Single Crystal Semiconductors, and High Efficiency (Lewis
Fraas).
4. Solar Cell Device Physics (Larry Partain).
II. Terrestrial Solar Cell Electricity.
5. Crystalline Silicon Solar Cells and Modules (Leonid Rubin).
6. Thin Film Solar Cells and Modules (Robert Birkmire).
7. Terrestrial Module Fabrication & Assembly Technologies (Christopher
Bunner).
8. Chinese Solar Cell Status (Wang Sicheng).
9. Tracking the Sun for More kWh and Lower Cost Solar Electricity (Ron
Corio, Michael Reed and Lewis Fraas).
10. Solar Cell Systems: Definition, Performance & Reliability (Jason
Strauch, Larry Moore and Elmer Collins).
11. Leveled Cost of Energy for Utility-Scale Photovoltaics (Matthew
Campbell).
III. Terrestrial Concentrator Solar Cell Systems.
12. Low Concentration Crystalline Silicon Systems (Lewis Fraas).
13. High-Concentration, III-V Multijunction Solar Cells (Geoffrey Kinsey).
14. High Concentration Fresnel Lens Assemblies and Systems (Gerhard (Peharz
and Andreas Bett).
15. High Concentration Cassengrainian Solar Cell Modules and Arrays (
Michael Ludowise and Lewis Fraas).
16. Concentrator Solar Cell Installations at University of Nevada Las Vegas
(Suresh Sadineni and Robert Boehm).
17. Concentrator Solar Cell Field Installations (Francisca Rubio, Mar¡a
Martinez and Pedro Banda).
IV. Solar Cells in Space.
18. Space Solar Cells and Applications (Sheila Bailey and Ryne Raffaelle).
V. Other Aspects & Considerations.
19. Solar Resource for Space and Terrestrial Applications (Christian
Gueymard and Daryl Myers).
20. Solar Energy Costs: The Solar Advisor Model (Paul Gilman, Nathan Blair
and Christopher Cameron).
21. Challenges of Large-Scale Solar Cell Electricity Production (David
Faiman).
VI. Thin Films & X-ray Imager Technologies.
22. Market Overview of Flat Panel Detectors for X-Ray Imaging (Carl
LaCasce, Larry Partain and Chuck Blouir).
23. Amorphous Silicon Transistors and Photodiodes (Robert Street).
24. Amorphous Silicon Digital X-ray Imaging (Richard Colbeth).
25. Photoconductor Digital X-ray Imaging (George Zentai).
VII. Summary.
26. Summary, Conclusions, and Recommendations (Lewis Fraas and Larry
Partain).