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Martian Dust Abrasion Damage on Solar Arrays: HALT Experimental Investigation and Opportunity Rover Performance Analysis

机译:太阳能阵列的火星防尘损坏:停止实验调查和机遇流动仪绩效分析

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We investigated the utility of ground-based highly accelerated life testing (HALT) on epitaxial lift-off (ELO) triple-junction coverglass interconnected cells (CICs) after exposure to simulated Martian dust storms. Dust storm impingement was replicated by sandblasting CICs with Mars dust simulant replicating conditions similar to the weather conditions reported by the Viking landers. We observed that even in cases when there are no observable open circuit voltage (VOC) losses, the minority carrier lifetime is reduced. Short circuit current (JSC) losses can be recovered upon cleaning, suggesting JSC losses are not linked to permanent damage, like cell cracking. This suggests a permanent degradation could be determined by quantifying the difference between recoverable and non-recoverable power loss. We mined field data from the Mars Exploration Rover, Opportunity and extracted a degradation rate to compare to our experimental data. We found exceptional agreement between 4.9 Martian years of mined field data (9.4%) and the irreversible damage observed in our HALT experiment (9.7%). We demonstrate that the laboratory method for exposing CICs to Martian dust storm conditions well represents the physical reality of long duration CIC operation on Mars.
机译:我们调查了基于基于基于的高度加速寿命测试(HALT)在暴露于模拟火山沙尘暴后的外延升降(ELO)三射覆盖玻璃相互连接的细胞(CICS)。 Sandblasting CICS用MARS灰尘模拟复制的尘埃风暴冲击复制了与Viking Landers报道的天气状况相似的复制条件。我们观察到即使在没有可观察的开路电压(V oc )损失,少数股份寿命减少。短路电流(J sc )可以在清洁后恢复损失,提示J sc 损失与永久性损害无关,如细胞开裂。这表明通过量化可回收和不可恢复的功率损失之间的差异来确定永久性降解。我们从火星勘探流动站,机会和提取了降级率,以比较我们的实验数据的挖掘现场数据。我们在4.9 Martian of Marian Field Data(9.4%)之间找到了特殊协议,并且在我们的停止实验中观察到的不可逆损坏(9.7%)。我们证明,将CICS暴露于火星防尘风暴的实验室方法很好地代表了MARS上长时间CIC操作的物理现实。

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