Design and Development of the Solar Dynamics Observatory (SDO) Electrical Power System
Author(s) -
Denney Keys,
Michael B. Burns,
Bradford Kercheval
Publication year - 2009
Publication title -
7th international energy conversion engineering conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2009-4535
Subject(s) - observatory , solar observatory , power (physics) , dynamics (music) , computer science , electric power system , aerospace engineering , electrical engineering , environmental science , systems engineering , engineering , physics , astronomy , quantum mechanics , magnetic field , acoustics
The SDO spacecraft was designed to help us understand the Sun's influence on Earth and Near-Earth space by studying the solar atmosphere on small scales of space and time and in many wavelengths simultaneously. It will perform its operations in a geosynchronous orbit of the earth. This paper will present background on the SDO mission, an overview of the design and development activities associated specifically with the SDO electrical power system (EPS), as well as the major driving requirements behind the mission design. The primary coverage of the paper will be devoted to some of the challenges faced during the design and development phase. This will include the challenges associated with development of a compatible CompactPCI (cPCI) interface within the Power System Electronics (PSE) in order to utilize a "common" processor card, implementation of new solid state power controllers (SSPC) for primary load distribution switching and over current protection in the PSE, and the design approach adopted to meet single fault tolerance requirements for all of the SDO EPS functions.
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