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On-orbit flight testing of the Roll-Out Solar Array

机译:推出太阳能阵列的轨道飞行测试

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The Roll-Out Solar Array (ROSA) is an innovative, lightweight solar array with a flexible substrate that makes use of the stored strain energy in its composite structural members to provide deployment without the use of motors while still packaging efficiently. The ROSA flight experiment was launched to the International Space Station (ISS) on June 3rd, 2017 as a part of the eleventh SpaceX commercial resupply mission. After two weeks of storage, ROSA was extracted from the Dragon spacecraft, deployed, and put through a week of tests to verify its structural characteristics as well as the performance of photovoltaics. The structural dynamics experiments included active excitation of out-of-plane bending modes, and a study of the thermal-structural interaction of the structure during day-night transitions. Data was gathered from a small number of accelerometers located at key points on the solar array and from cameras observing numerous photogrammetry targets spread out over the structure and the photovoltaic blanket. The goal in this effort was to better understand the performance of ROSA and to improve modeling efforts for future designs of similar solar arrays. Of particular interest are the first few system modes and mode shapes of the array, the amount of structural damping present, and degree of structural-thermal interaction seen during eclipse exit.
机译:推出的太阳能阵列(ROSA)是一种创新的轻质太阳能阵列,其具有柔性基板,其在其复合结构构件中利用所存储的应变能量,以在不使用电动机的情况下提供部署,同时仍然有效地包装。 ROSA飞行实验于2017年6月3日推出到国际空间站(ISS),作为第十一个Spacex商业补给使命的一部分。经过两周的储存,ROSA从龙航天器,部署,并通过一周的测试,以验证其结构特性以及光伏的性能。结构动力学实验包括与平面外弯曲模式的主动激发,以及在日夜过渡期间结构的热结构相互作用。从位于太阳能阵列的关键点的少数加速度计中收集数据,观察到展开结构和光伏毯子的众多摄影测量靶的摄像机。这项努力的目标是更好地了解ROS的表现,并提高未来设计类似太阳阵列的设计的建模努力。特别感兴趣的是阵列的前几种系统模式和模式形状,结构阻尼的存在量,以及在Eclipse出口期间看到的结构热交互程度。

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