Photovoltaics for Space: Key Issues, Missions and Alternative Technologies
Editat de Sheila G. Bailey, Aloysius F. Hepp, Dale Ferguson, Ryne P. Raffaelle, Steven M. Durbinen Limba Engleză Paperback – 26 oct 2022
This book outlines the knowledge required for practitioners and advanced students interested in learning about the background, materials, devices, environmental challenges, missions, and future for photovoltaics for space exploration.
- Provides an update to state-of-the-art and emerging solar cell technologies
- Features comprehensive coverage of solar cells for space exploration and materials/device technology options available
- Explains the extreme conditions and mission challenges to overcome when using photovoltaics in space
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Specificații
ISBN-13: 9780128233009
ISBN-10: 0128233001
Pagini: 534
Ilustrații: 100 illustrations (50 in full color)
Dimensiuni: 191 x 235 mm
Greutate: 0.91 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128233001
Pagini: 534
Ilustrații: 100 illustrations (50 in full color)
Dimensiuni: 191 x 235 mm
Greutate: 0.91 kg
Editura: ELSEVIER SCIENCE
Cuprins
PART ONE Introduction: technologies, issues, and applications 1. An introduction to space photovoltaics: technologies, issues, and missions 2. Space solar arrays and spacecraft charging 3. Air mass zero (AM0) studies and solar cell calibration 4. Space applications of III-V single- and multijunction solar cells 5. Perovskite solar cells: background and prospects for space power applications 6. Photovoltaics and nuclear energy conversion for space power: background and issues
PART TWO Materials: focus on new technologies and advanced processing 7. Perovskite solar cells on the horizon for space power systems 8. Thermophotovoltaic energy conversion in space 9. Thin-film materials for space power applications 10. Inverted lattice-matched GaInP/GaAs/GaInNAsSb triple-junction solar cells: epitaxial lift-off thin-film devices and potential space applications 11. Summary of the design principles of betavoltaics and space applications
PART THREE Near earth and deep-space missions 12. Solar array designs for deep space science missions 13. Lunar science based on Apollo solar cell measurements 14. Space photovoltaics for extreme high-temperature missions 15. Space photovoltaic concentrators for outer planet and near-Sun missions using ultralight Fresnel lenses 16. Technological relevance and photovoltaic production potential of high-quality silica deposits on Mars 17. Space nuclear power: radioisotopes, technologies, and the future
PART TWO Materials: focus on new technologies and advanced processing 7. Perovskite solar cells on the horizon for space power systems 8. Thermophotovoltaic energy conversion in space 9. Thin-film materials for space power applications 10. Inverted lattice-matched GaInP/GaAs/GaInNAsSb triple-junction solar cells: epitaxial lift-off thin-film devices and potential space applications 11. Summary of the design principles of betavoltaics and space applications
PART THREE Near earth and deep-space missions 12. Solar array designs for deep space science missions 13. Lunar science based on Apollo solar cell measurements 14. Space photovoltaics for extreme high-temperature missions 15. Space photovoltaic concentrators for outer planet and near-Sun missions using ultralight Fresnel lenses 16. Technological relevance and photovoltaic production potential of high-quality silica deposits on Mars 17. Space nuclear power: radioisotopes, technologies, and the future