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Lessons learned from three university experiments onboard the REXUS/BEXUS sounding rockets and stratosphere balloons

机译:从REXUS / BEXUS探空火箭和平流层气球上的三个大学实验中学到的经验教训

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Over the last three years the authors have been involved in three experiments that were or will be launched on sounding rockets and high altitude balloons with the REXUS/BEXUS program (Rocket-borne / Balloon-borne Experiments for University Students). The first experiment, called Suaineadh was launched from Esrange (Kiruna, Sweden) onboard REXUS 12 in March 2012. Suaineadh had the purpose of deploying a web in space by using centrifugal forces. The payload was lost during re-entry but was recovered 18 month later in early September 2013. StrathSat-R is the second experiment, which had the purpose of deploying two cube satellites with inflatable structures from the REXUS 13 sounding rocket, was launched first in May 2013 and will be launched a second time in spring 2014. The last experiment is the iSEDE experiment which has the goal of deploying an inflatable structure with disaggregated electronics from the high altitude balloon BEXUS15/16 in October 2013. All these experiments have been designed, built and flown in a timeframe of one and a half to two years. This paper will present the lessons learned in project management, outreach, experiment design, fabrication and manufacturing, software design and implementation, testing and validation as well as launch, flight and post-flight. Furthermore, the lessons learned during the recovery mission of Suaineadh will be discussed as well. All these experiments were designed, built and tested by a large group of university students of various disciplines and different nationalities. StrathSat-R and iSEDE were built completely at Strathclyde but the Suaineadh experiment was a joint project between Glasgow and Stockholm which was especially tricky during integration while approaching the experiment delivery deadline. This paper should help students and professionals across various disciplines to build and organise these kinds of projects more efficiently without making the same, sometimes expensive, mistakes all over again.
机译:在过去的三年中,作者通过REXUS / BEXUS程序参与了三个已经或将要在探空火箭和高空气球上进行的实验(针对大学生的火箭/气球实验)。第一个名为Suaineadh的实验于2012年3月在REXUS 12上从Esrange(瑞典基律纳,瑞典)发射升空。Suaineadh的目的是利用离心力在空间中部署网。有效载荷在重新进入时丢失,但在2013年9月初的18个月后被回收。StrathSat-R是第二个实验,其目的是从REXUS 13探空火箭部署两颗具有充气结构的立方体卫星,于2001年首次发射。 2013年5月,并将在2014年春季第二次启动。最后一个实验是iSEDE实验,其目的是在2013年10月部署带有高空气球BEXUS15 / 16的分解电子设备的充气结构。所有这些实验均已设计,建造和飞行时间为一年半到两年。本文将介绍在项目管理,外展,实验设计,制造和制造,软件设计和实施,测试和验证以及发射,飞行和飞行后的过程中获得的经验教训。此外,还将讨论在Suaineadh的恢复任务中汲取的经验教训。所有这些实验都是由一大批不同学科和不同国籍的大学生设计,建造和测试的。 StrathSat-R和iSEDE完全在Strathclyde建造,但是Suaineadh实验是格拉斯哥和斯德哥尔摩之间的联合项目,在接近实验交付截止日期的过程中特别棘手。本文应帮助跨学科的学生和专业人士更有效地构建和组织这类项目,而不会再犯相同的,有时是昂贵的错误。

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