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AE9, AP9 and SPM: New Models for Specifying the Trapped Energetic Particle and Space Plasma Environment

机译:aE9,ap9和spm:用于指定被捕获的高能粒子和空间等离子体环境的新模型

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摘要

The radiation belts and plasma in the Earth’s magnetosphere pose hazards to satellite systems which restrict design and orbit options with a resultant impact on mission performance and cost. For decades the standard space environment specification used for spacecraft design has been provided by the NASA AE8 and AP8 trapped radiation belt models. There are well-known limitations on their performance, however, and the need for a new trapped radiation and plasma model has been recognized by the engineering community for some time. To address this challenge a new set of models, denoted AE9/AP9/SPM, for energetic electrons, energetic protons and space plasma has been developed. The new models offer significant improvements including more detailed spatial resolution and the quantification of uncertainty due to both space weather and instrument errors. Fundamental to the model design, construction and operation are a number of new data sets and a novel statistical approach which captures first order temporal and spatial correlations allowing for the Monte-Carlo estimation of flux thresholds for user-specified percentile levels (e.g., 50th and 95th) over the course of the mission. An overview of the model architecture, data reduction methods, statistics algorithms, user application and initial validation is presented in this paper.
机译:地球磁层中的辐射带和等离子体对卫星系统构成了威胁,这些卫星系统限制了设计和轨道选择,从而影响了任务性能和成本。几十年来,NASA AE8和AP8捕获辐射带模型已经提供了用于航天器设计的标准空间环境规范。但是,它们的性能存在众所周知的局限性,并且一段时间以来,工程界已经认识到需要新的捕获辐射和等离子体模型。为了应对这一挑战,已开发出一套新的模型,称为AE9 / AP9 / SPM,用于高能电子,高能质子和空间等离子体。新模型提供了重大改进,包括更详细的空间分辨率以及由于空间天气和仪器误差引起的不确定性量化。模型设计,构建和操作的基础是大量新数据集和新颖的统计方法,该方法可捕获一阶时间和空间相关性,从而可以对用户指定的百分位数水平(例如,第50位和95)。本文概述了模型架构,数据减少方法,统计算法,用户应用程序和初始验证。

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