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Solar array degradation on geostationary communications satellites: the quantification of annual degradation and degradation over solar proton events

机译:对地静止通信卫星上的太阳电池阵列退化:年度退化和太阳质子事件退化的量化

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摘要

Solar array telemetry from eleven geostationary communication satellites, launched between 1990 and 1998, was analysed and used to quantify solar array degradation of gallium arsenide (GaAs) and silicon (Si) solar cells. GaAs cells had an average annual percent degradation ranging between 0.44% and 1.03%, while Si cells had an average annual percent degradation ranging between 0.71% and 1.69%. The decrease in Si cells degradation rates, based on telemetry of I_(sc) and V_(oc) levels, ~1,210% over a ten years mission suggests an update to the Si solar cell degradation design rule of thumb 25% over a ten year mission. Degradation during solar particle events (SPEs) of 10 MeV proton flux > 10,000 pfu was analysed and used to create an initial functional relationship between degradation experienced over SPEs and the accumulated fluence of these SPEs.
机译:分析了1990年至1998年发射的11颗地球静止通信卫星的太阳能电池阵列遥测技术,并将其用于量化砷化镓(GaAs)和硅(Si)太阳能电池的太阳能电池阵列退化。 GaAs电池的年平均劣化百分比在0.44%至1.03%之间,而Si电池的年平均劣化百分比在0.71%至1.69%之间。基于I_(sc)和V_(oc)水平的遥测,在十年的任务中Si电池降解率下降了约1,210%,这表明对Si太阳能电池降解设计法则的更新是在十年内提高25%任务。分析了10 MeV质子通量> 10,000 pfu的太阳粒子事件(SPE)期间的降解,并用于在经历过SPE的降解与这些SPE的累积通量之间建立起初始的功能关系。

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