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In-Space Structural Validation Plan for a Stretched-Lens Solar Array Flight Experiment

机译:用于拉伸镜头太阳能阵列飞行实验的空间空间结构验证计划

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This paper summarizes in-space structural validation plans for a proposed Space Shuttle-based flight experiment. The test article is an innovative, lightweight solar array concept that uses pop-up, refractive stretched-lens concentrators to achieve a power/mass density of at least 175 W/kg, which is more than three times greater than current capabilities. The flight experiment will validate this new technology to retire the risk associated with its first use in space. The experiment includes structural diagnostic instrumentation to measure the deployment dynamics, static shape, and modes of vibration of the 8m-long solar array and several of its lenses. These data will be obtained by photogrammetry using the Shuttle payload-bay video cameras and miniature video cameras on the array. Six accelerometers are also included in the experiment to measure base excitations and small-amplitude tip motions.
机译:本文总结了建议航天飞机的飞行实验的空间结构验证计划。该测试制品是一种创新的轻质太阳能阵概念,使用弹出,折射拉伸透镜集中器来实现至少175W / kg的功率/质量密度,这比电流能力大超过三倍。飞行实验将验证这项新技术,以退出与空间中首次使用相关的风险。该实验包括结构诊断仪器,以测量8米长的太阳能阵列的部署动力学,静态形状和振动模式和其几种镜头。这些数据将通过摄影测量使用阵列上的班车有效载荷 - 托架摄像机和微型摄像机获得。实验中还包括六个加速度计,以测量基础激发和小幅度尖端运动。

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