Arcing in Leo - Does the Whole Array Discharge?

نویسندگان

  • Dale C. Ferguson
  • Barry Hillard
چکیده

The conventional wisdom about solar array arcing in LEO is that only the parts of the solar array that are swept over by the arc-generated plasma front are discharged in the initial arc. This limits the amount of energy that can be discharged. Recent work done at the NASA Glenn Research Center has shown that this idea is mistaken. In fact, the capacitance of the entire solar array may be discharged, which for large arrays leads to very large and possibly debilitating arcs, even if no sustained arc occurs. We present the laboratory work that conclusively demonstrates this fact by using a grounded plate that prevents the arc-plasma front from reaching certain array strings. Finally, we discuss the dependence of arc strength and arc pulse width on the capacitance that is discharged, and provide a physical mechanism for discharge of the entire array, even when parts of the array are not accessible to the arcplasma front. Mitigation techniques are also presented. A = c = F = I = LEG 4 = 7 = t = x = v = Nomenclature Amperes of current Capacitance Farads of capacitance current = Low Earth Orbit charge pulse width time dimensionless time voltage, electrical potential relative to space plasma

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تاریخ انتشار 2005