首页> 外文会议>ESA Symposium on European Rocket and Balloon Programmes and Related Research >STRATHSAT-R2: DEPLOYABLE STRUCTURE DEMONSTRATOR ON REXUS 15
【24h】

STRATHSAT-R2: DEPLOYABLE STRUCTURE DEMONSTRATOR ON REXUS 15

机译:STRATHSAT-R2:REXUS 15上可部署的结构演示器

获取原文

摘要

The primary objective for StrathSat-R2 was to deploy two novel inflatable structures in milli-gravity and near vacuum conditions. These structures were to inflate by harnessing the pressure exerted by a small quantity of air, contained inside sealed sections, that expands when exposed to greatly reduced external pressure. To achieve the necessary vacuum conditions for this residual air inflation, two CubeSat-based ejectables carried the inflatable structures onboard the REXUS 15 sounding rocket. The ejectables were then launched from the rocket at around 80 km altitude with structure deployment filmed from on-board the rocket as well as by each Free-Flying Unit (FFU). The structures were selected as demonstrators for novel mission concepts; the first was a pyramidal structure that was intended for use as a passive orbit transfer and de-orbiting device, and the second contained a mor-phing inflatable with multiple cells, which used air distribution to alter its state. The experiment design focused on delivering a reliable ejection and structure deployment mechanism as well as a recovery system with sufficient redundancy. The recovery system consisted of a GPS receiver, Globalstar antenna and RF beacon, and through the successful operation of this system an ejectable was recovered in spite of its non-ideal landing. Contact with the other ejectable was lost at lift-off and highlighted weaknesses in the design that were only exposed during this, the second launch, for this experimental setup.
机译:StrathSat-R2的主要目标是在毫重力和接近真空的条件下部署两个新颖的充气结构。这些结构要通过利用密封区域内部包含的少量空气施加的压力来膨胀,当暴露于大大降低的外部压力时会膨胀。为了获得必要的真空条件,以使残留的空气充入,两个基于CubeSat的可抛物在REXUS 15探空火箭上搭载了充气结构。然后,将可发射物从海拔约80公里的火箭发射出去,并从火箭上以及每个自由飞行单位(FFU)拍摄结构部署。这些结构被选为新型任务概念的演示者;第一个是金字塔结构,旨在用作被动轨道转移和去轨道设备,第二个包含带有多个单元的充气形态,该单元利用空气分配来改变其状态。实验设计的重点是提供可靠的弹出和结构部署机制以及具有足够冗余的恢复系统。回收系统由GPS接收器,Globalstar天线和RF信标组成,通过该系统的成功运行,尽管其非理想着陆状态,仍可回收可抛物。在升空时与另一个可抛物的接触消失了,并突出了设计的弱点,该弱点仅在此实验设置的第二次发射期间才暴露出来。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号