Technology for Large Space Systems
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Published: 1990
Total Pages: 280
ISBN-13:
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Author:
Publisher:
Published: 1990
Total Pages: 280
ISBN-13:
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Publisher:
Published: 1992
Total Pages: 592
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Published: 1995
Total Pages: 1040
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Published: 1991
Total Pages: 666
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DOWNLOAD EBOOKAuthor: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Published: 2018-07-25
Total Pages: 228
ISBN-13: 9781724243959
DOWNLOAD EBOOKAddressed are some of the space electrical power system technologies that should be developed for the U.S. space program to remain competitive in the 21st century. A brief historical overview of some U.S. manned/unmanned spacecraft power systems is discussed to establish the fact that electrical systems are and will continue to become more sophisticated as the power levels appoach those on the ground. Adaptive/Expert power systems that can function in an extraterrestrial environment will be required to take an appropriate action during electrical faults so that the impact is minimal. Manhours can be reduced significantly by relinquishing tedious routine system component maintenance to the adaptive/expert system. By cataloging component signatures over time this system can set a flag for a premature component failure and thus possibly avoid a major fault. High frequency operation is important if the electrical power system mass is to be cut significantly. High power semiconductor or vacuum switching components will be required to meet future power demands. System mass tradeoffs have been investigated in terms of operating at high temperature, efficiency, voltage regulation, and system reliability. High temperature semiconductors will be required. Silicon carbide materials will operate at a temperature around 1000 K and the diamond material up to 1300 K. The driver for elevated temperature operation is that radiator mass is reduced significantly because of inverse temperature to the fourth power. Maisel, James E. Unspecified Center NASA-CR-183003, NAS 1.26:183003 NAG3-714...
Author: United States. National Aeronautics and Space Administration. Office of University Affairs
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Total Pages: 396
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Published:
Total Pages: 400
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Published: 1989
Total Pages: 1006
ISBN-13:
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