首页> 外文会议>Conference on Modeling and Systems Engineering for Astronomy; 20040624-20040625; Glasgow; GB >INTEGRATED MODELING APPROACH FOR THE TERRESTRIAL PLANET FINDER MISSION
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INTEGRATED MODELING APPROACH FOR THE TERRESTRIAL PLANET FINDER MISSION

机译:地面行星探测任务的综合建模方法

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Because of the complexity of the Terrestrial Planet Finder (TPF) design concepts, the project will rely heavily on the use of engineering and science simulations to predict on-orbit performance. Furthermore, current understanding of these missions indicates that the 3m to 8m class optical systems need to be as stable as picometers in wavefront and sub-milli arcsec in pointing. These extremely small requirements impose on the models a level of predictive accuracy heretofore never achieved, especially in the area of microgravity effects, material property accuracy, thermal solution convergence, and all other second order modeling effects typically ignored. New modeling tools and analysis paradigms are developed which emphasize computational accuracy and fully integrated analytical simulations. The process is demonstrated on sample problems using the TPF Coronagraph design concept. The TPF project is also planning a suite of testbeds through which various aspects of the models and simulations will be verified.
机译:由于陆地行星搜索器(TPF)设计概念的复杂性,该项目将在很大程度上依靠工程和科学模拟的使用来预测在轨性能。此外,目前对这些任务的了解表明,3m至8m类光学系统需要与波阵面和皮秒亚毫秒弧度的指向一样稳定。这些极小的要求在模型上施加了迄今为止从未达到的预测精度,尤其是在微重力效应,材料特性精度,热溶液收敛性以及所有其他通常被忽略的二阶建模效应方面。开发了新的建模工具和分析范例,它们强调计算精度和完全集成的分析模拟。使用TPF日冕仪设计概念对样品问题进行了演示。 TPF项目也正在计划一套测试平台,通过该平台可以验证模型和仿真的各个方面。

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