首页> 外文会议>AMOS 2013;Advanced Maui Optical and Space Surveillance Technologies Conference >Structural, Thermal Optical Modeling of CUBESAT GEO Based Orbit Camera Payload 14th annual Advanced Maui Optical and Space Surveillance Technologies (AMOS) Conference, September 10-13,2013, Maui, Hawaii Manuscript Number 1203299
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Structural, Thermal Optical Modeling of CUBESAT GEO Based Orbit Camera Payload 14th annual Advanced Maui Optical and Space Surveillance Technologies (AMOS) Conference, September 10-13,2013, Maui, Hawaii Manuscript Number 1203299

机译:结构,热光学建模立方基于Geo基于轨道摄像机有效载荷14th年度高级毛伊光学和空间监视技术(AMOS)会议,9月10日至3,2013,毛伊岛,夏威夷稿件1203299

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This paper presents the results of a team of students at California State Polytechnic University at Pomona (Cal Poly Pomona) who have been working on a multi-disciplinary team capstone senior project sponsored by Caltech's NASA Jet Propulsion Laboratory (JPL). Results obtained from Structural, Thermal Optical (STOP) Modeling of a CUBESAT GEO based orbit instrumentation payload using SIEMENS PLM NX Space Systems Thermal and NX NASTRAN Finite Element Analysis (FEA) tool suite is the focus of this paper. Results from environmental loading used to predict the thermal performance of a 4U-CUBESAT instrument payload composed of and IR camera surveillance based sub-system are presented. These thermal predictions are used to perform top-level STOP analysis in order to form an optical Figure of Merit (FOM) parameter for performance characterization.
机译:本文介绍了加州州立工业大学的一支学生团队的结果,在波莫纳(Cal Poly Pomona),他们一直致力于由Caltech NASA Jet推进实验室(JPL)赞助的多学科团队Capstone高级项目。 从结构,热光学(STOP)模型获得的结果,使用西门子PLM NX空间系统热量和NX Nastran有限元分析(FEA)工具套件是本文的重点。 介绍了用于预测由IR相机监控基于子系统组成的4U立方体仪器有效载荷的环境负载的导致。 这些热预测用于执行顶级停止分析,以便形成用于性能表征的Merit(FOM)参数的光学图。

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