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Banquet address: amp;#x201C;Return-to-flight electromagnetic measurements amp;#x2014; The NASA shuttle ascent debris radar systemamp;#x201D;

机译:宴会地址:“返回飞行电磁测量—美国宇航局班斯上升碎片雷达系统”

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The NASA Debris Radar (NDR) system was developed to characterize ascent debris liberated during the Shuttle's ascent into space. Radar is well suited for characterizing ascent debris, and is essential during night launches when optical sensors are severely degraded. The NDR mission presents challenging radar requirements in terms of target detection, tracking, minimum detectable radar cross-section (RCS), calibration accuracy, power profile management, and operational readiness. After revisiting the Columbia accident investigation, I describe the NDR system, consisting of a stationary C-band radar located at Kennedy Space Center and two sea-based X-band radars. During the 3 year development effort, the NDR team examined static and dynamic radar signatures of the shuttle and liberated debris, and executed an “in-situ” Electromagnetic Interference Measurement on the Orbiter “Discovery” to certify its safety from radar EMI. Since Shuttle Mission Managers needed definitive safety assessments within 24-30 hrs of launch, analysis tools and software provided shuttle metric data in real-time, visualize metric and signature data during post-mission analysis, automatically detect and characterize debris tracks in signature data, determine ballistic numbers for detected debris objects, and assess material type, size, release location and threat to the orbiter based on radar scattering and ballistic properties of the debris.
机译:开发了NASA碎片雷达(NDR)系统,以在班车上升到空间中的上升碎片。雷达非常适合于表征上升碎片,当光学传感器严重降低时,夜间推出是必不可少的。 NDR任务在目标检测,跟踪,最小可检测雷达横截面(RCS),校准精度,功率曲线管理和操作准备方面具有具有挑战性的雷达要求。在重新审视哥伦比亚事故调查后,我描述了NDR系统,该系统由位于肯尼迪航天中心和两个基于海的X波段雷达的固定式C波段雷达组成。在3年的开发工作中,NDR团队审查了穿梭和解放的碎片的静态和动态雷达签名,并在轨道采用“发现”上的“原位”电磁干扰测量,以证明其从雷达EMI安全。由于班次特派团经理在推出的24-30小时内需要最终的安全评估,分析工具和软件在任务后的分析期间,在任务后的分析期间,可视化度量标准数据,可视化度量标准数据,自动检测和表征签名数据中的碎片跟踪,确定检测到的碎屑物体的弹道数字,并根据碎片的雷达散射和弹道性能评估材料类型,尺寸,释放位置和对轨道器的威胁。

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