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The Challenges of Integrating Instrumentation with Inflatable Aerodynamic Decelerators

机译:仪表与充气式空气动力减速器集成的挑战

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New Entry, Decent, and Landing (EDL) technologies are being explored to facilitate the landing of high mass vehicles. Current EDL technologies are limited due to mass and volume constraints dictated by launch vehicle fairings. Therefore, past and present technologies are now being considered to provide a mass and volume efficient solution, including Inflatable Aerodynamic Decelerators (IADs). To better define the instrumentation challenges posed by IAD technology development, a survey was conducted to identify valuable measurements for ground and flight testing of the flexible materials and structures used in their design. From this survey many sensing technologies and systems were explored specific to the stacked torus IAD, resulting in a down-selection to the most viable prospects. The majority of these systems, including wireless data acquisition, were then rapid prototyped and evaluated during component level testing to determine the best integration techniques specific to a 3m and 6m diameter stacked toroid IAD. Each sensing system was then integrated in support of the Hypersonic Inflatable Aerodynamic Decelerator ground test campaign. In this paper these IAD instrumentation systems are described along with their challenges in comparison to traditional rigid aeroshell systems. Requirements resulting from the survey are listed and instrumentation integration techniques and data acquisition are discussed.
机译:正在探索新的进入、体面和着陆(EDL)技术,以促进大质量车辆的着陆。由于运载火箭整流罩的质量和体积限制,目前的EDL技术受到限制。因此,过去和现在的技术正在被考虑提供质量和体积效率的解决方案,包括充气式空气动力减速器(IAD)。为了更好地定义IAD技术发展带来的仪器挑战,进行了一项调查,以确定在设计中使用的柔性材料和结构的地面和飞行测试的有价值测量。从这项调查中,我们探索了许多特定于叠加环面IAD的传感技术和系统,从而选择了最可行的前景。这些系统中的大多数,包括无线数据采集,然后在组件级测试期间进行快速原型化和评估,以确定针对直径为3m和6m的堆叠环形IAD的最佳集成技术。然后,每个传感系统都被整合起来,以支持高超音速充气式空气动力减速器地面试验活动。本文描述了这些IAD仪器系统,以及与传统刚性弹壳系统相比所面临的挑战。列出了调查产生的要求,并讨论了仪器集成技术和数据采集。

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