Solar-Array Arcing Due to Plasma Created by Space-Debris Impact
Дуговой разряд в солнечной батарее, вызванный плазмой, образовавшейся при ударе космического мусора
2008-10-01
SCID: 54.1/vt77aata
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hypervelocity impactpermanent sustained arcplasma-induced electrical damagesolar-array arcingspace-debris impact
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Abstract (AI)
A solar-array paddle has a high probability of a space-debris impact because it has a large area. The space-debris impact on the solar array causes not only mechanical damage but also electrical damage such as solar-array arcing through the local high-density plasma created by hypervelocity impact. In the worst case, Joule heating of the arcing carbonizes an insulation layer, and a permanent short-circuit path is created. This is permanent sustained arc (PSA). However, no PSA caused by space-debris impact in orbit has been reported. This paper evaluates the possibility of PSA caused by debris impact. Hypervelocity-impact tests on solar-array coupons in the condition of pseudopower generation were conducted. We ascertained that a space-debris impact can lead to PSA on the solar array.
Key Findings
1
Although no in-orbit impact-induced PSA had previously been reported, the experiments establish its feasibility on solar arrays.
2
Hypervelocity impacts can generate a localized high-density plasma capable of triggering solar-array arcing under pseudopower-generation conditions.
3
Hypervelocity-impact tests on solar-array coupons demonstrated that space-debris impacts can produce PSA.
4
Joule heating from impact-induced arcing can carbonize the insulation layer and create a permanent short-circuit path, known as permanent sustained arc (PSA).
5
Large-area solar-array paddles are particularly vulnerable to space-debris impacts, which can cause both mechanical and electrical damage.
Research Object
solar arrays subjected to hypervelocity space-debris impact
Research Subject
the possibility and formation of permanent sustained arcing and short-circuit paths caused by impact-generated high-density plasma
Publication Details
Publication Date
2008-10-01
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