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Hypervelocity Impact Studies on Solar Cell ModulesSpace environmental effects have caused severe problems as satellites move toward increased power and operating voltage levels. The greatest unknown, however, is the effect of high velocity micrometeoroid impacts on high voltage arrays (>200V). Understanding such impact phenomena is necessary for the design of future reliable, high voltage solar arrays, especially for Space Solar Power applications. Therefore, the objective of this work was to study the effect of hypervelocity impacts on high voltage solar arrays. Initially, state of the art, 18% efficient GaAs solar cell strings were targeted. The maximum bias voltage on a two-cell string was -200 V while the adjacent string was held at -140 V relative to the plasma potential. A hollow cathode device provided the plasma. Soda lime glass particles 40-120 micrometers in diameter were accelerated in the Hypervelocity Impact Facility to velocities as high as 11.6 km/sec. Coordinates and velocity were obtained for each of the approximately 40 particle impact sites on each shot. Arcing did occur, and both discharging and recharging of arcs between the two strings was observed. The recharging phenomena appeared to stop at approximately 66V string differential. No arcing was observed at 400 V on concentrator cell modules for the Stretched Lens Array.
Document ID
20010056310
Acquisition Source
Glenn Research Center
Document Type
Contractor or Grantee Report
Authors
Brandhorst, Henry W., Jr.
(Auburn Univ. AL United States)
Best, Stevie R.
(Auburn Univ. AL United States)
Date Acquired
September 7, 2013
Publication Date
March 25, 2001
Subject Category
Energy Production And Conversion
Report/Patent Number
AU-4-21839
Report Number: AU-4-21839
Funding Number(s)
CONTRACT_GRANT: NAS3-99200
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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