首页> 外文会议>International astronautical congress >THE EXO-BRAKE AS A DE-ORIBT MECHANISM: ANALYSIS AND RECENT FLIGHT EXPERIENCE THROUGH SOAREX AND TECHEDSAT FLIGHT TESTS
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THE EXO-BRAKE AS A DE-ORIBT MECHANISM: ANALYSIS AND RECENT FLIGHT EXPERIENCE THROUGH SOAREX AND TECHEDSAT FLIGHT TESTS

机译:exo-brake作为de-oribt机制:通过Soadax和Techedsat飞行测试分析和最近的飞行经验

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The Exo-Brake is an exo-atmosphere braking device to permit the rapid de-orbit of an object/satellite in Low Earth Orbit (LEO). It was originally conceived as a safer means of assisting in de-orbiting small sample caniste.rs from the International Space Station (ISS). Specifically, more traditional propulsive means of performing the de-orbit maneuver - such as cold-gas or hot-gas (rocket motor) would face significant safety challenges as the device would have to be processed either inside or in close-proximity of the ISS. The Exo-Brake also does not require attitude stabilization as the aerodynamic torque exerted by the aft-mounted device fixes the de-orbiting system directly on the path of the flight velocity vector. Recently acquired flight data with TechEdSat-3 and -4 using a sub-scale Exo-Brake mounted to 3U nano-satellites is presented. Techniques for further control and improved targeting using timing, drag-modulation, and other means are described. These techniques will be advanced in TechEdSat-5 (to be jettisoned from the ISS in 2016) and TcchEdSat-6. Lastly, future work leading to routine payload sample return from orbital platforms is outlined (SPQR - Small Payload Quick Return) and compared to other concepts.
机译:外定制动器是外切气氛制动装置,以允许在低地球轨道(LEO)的对象/卫星的快速脱离轨道。它最初被设想为脱离轨道距离国际空间站(ISS)小样本caniste.rs协助的较安全的方法。具体而言,执行该解轨道机动更传统的推进装置 - 例如冷气体或热气体(火箭发动机)将面临显著安全挑战该装置将具有内或在ISS的近距离进行任一处理。飞行速度矢量的路径上的外切制动也不需要姿态稳定由所施加的空气动力学力矩船尾安装设备修复的脱离轨道系统直接。最近获得的飞行数据与TechEdSat-3和-4使用分刻度外切制动安装到3U纳米卫星被呈现。用于进一步控制,并使用定时,拖调制改进的定位和其他装置的技术。这些技术将在TechEdSat-5(以从ISS在2016年抛弃)和TcchEdSat-6被推进。最后,未来的工作从轨道平台导致常规有效载荷取样返回概述(SPQR - 小型有效载荷快速返回),并且与其他概念。

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