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Hypersonic Vehicle Telemetry Blackout Analysis

机译:高超音速车辆遥测停电分析

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摘要

During certain hypersonic flight regimes, shock heating of air creates a plasma sheath, resulting in telemetry attenuation or blackout. The severity of the signal attenuation is dependent on vehicle configuration and orientation, flight trajectory, and transmission frequency. With the promise of airbreathing hypersonic vehicles looming on the horizon, telemetry solutions must be found to address safety considerations for flight testing (that is, flight termination and/or catastrophe analysis). This attenuation phenomena are investigated with a focus on the nonequilibrium plasma sheath properties (electron concentration, plasma frequency, collision frequency, and temperature) for a range of flight conditions and vehicle design considerations. Trajectory and transmission frequency requirements for airbreathing hypersonic vehicle design are then addressed, with comparisons made to both shuttle orbiter and Radio Attenuation Measurements C-II reentry flights. The effects of an applied magnetic field normal to the plasma interface are shown over a range of flight conditions. It is shown that a combination of vehicle shaping effects, high transmission frequency, and an applied right-hand circularly polarized magnetic field (less than 1 T) show promise toward mitigating the telemetry blackout.
机译:在某些高超音速飞行状态下,空气的冲击加热会形成等离子体鞘,从而导致遥测衰减或停电。信号衰减的严重程度取决于车辆的配置和方向,飞行轨迹以及传输频率。随着即将出现呼吸超音速飞行器的希望,必须找到遥测解决方案来解决飞行测试(即飞行终止和/或灾难分析)的安全考虑。针对一系列飞行条件和飞行器设计考虑,研究了这种衰减现象,重点是非平衡等离子体鞘层特性(电子浓度,等离子体频率,碰撞频率和温度)。然后,通过对航天飞机轨道飞行器和无线电衰减测量C-II再入飞行的比较,解决了呼吸式超音速飞行器设计对轨迹和传输频率的要求。在飞行条件范围内显示了垂直于等离子体界面的施加磁场的影响。结果表明,车辆整形效果,高传输频率和所施加的右旋圆极化磁场(小于1 T)的组合显示出减轻遥测停电的希望。

著录项

  • 来源
    《Journal of Spacecraft and Rockets》 |2015年第2期|426-438|共13页
  • 作者

    Starkey Ryan P.;

  • 作者单位

    Univ Colorado, Dept Aerosp Engn Sci, Boulder, CO 80309 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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