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Impact of the Trapped Proton Anisotropy on the Ionizing Dose at Low Earth Orbits

机译:被捕获的质子各向异性对低地轨道电离剂量的影响

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The trapped proton anisotropy is not commonly taken into account in the radiation hardness assurance process for Low Earth Orbit missions. In this study, the impact of considering this characteristic of the trapped proton population is evaluated for the TID, Total Ionizing Dose, risk assessment at electronic component level. A specific development has been made in the OMERE tool and the realistic 3-dimensional radiation model of the SAC-D satellite (660 km, 98°) has been used to take into account the shielding around the components. It is shown that considering the proton anisotropy has no important impact on the TID result.
机译:在低地球轨道任务的辐射硬度保证过程中,捕获的质子各向异性通常不考虑。在这项研究中,考虑捕获质子群的这种特征的影响是针对TID,总电离剂量,电子元素水平的风险评估的影响。在OMERE工具和SAC-D卫星的现实三维辐射模型(660公里,98°)中已经采用了特定的开发,已经过去用于考虑部件周围的屏蔽。结果表明,考虑质子各向异性对TID结果没有重要影响。

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