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Design and applications of a versatile HF radar calibration target in low Earth orbit

机译:低地球轨道多功能HF雷达标定目标的设计与应用

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摘要

High frequency (HF) radars are used to detect ionospheric irregularities, meteor trails, and moving targets. The Precision Expandable Radar Calibration Sphere (PERCS) is a simple radar target in space to help determine the operational parameters of ground HF radars. PERCS will have a known radar cross section that is independent of observation direction within 0.5 dB. The PERCS satellite can be launched in a stowed configuration that has about 1 m in diameter. After launch, the PERCS will expand to a diameter of almost 10 m. Upon expansion, a stable wire frame is formed to act as a radar scatter target in the form of a polyhedral sphere. The simplest version of the sphere has 60 vertices (V60) that are joined to 90 rigid segments. Each segment is hinged so that the PERCS can be folded into a compact package for launch. Analysis of the V60 wire frame with a 10 m diameter shows that the radar cross section (RCS) is nearly independent of viewing angle up to 30 MHz. Another design with 240 vertices produces even better performance. Radar systems will be calibrated using the radar echo data and the precise knowledge of the target RCS, position, and velocity. The PERCS can reflect radar signals from natural targets such as field aligned and current driven irregularities not presently accessible from ground-based radars. The wire frame structure has several advantages over a metalized spheroid “balloon” with (1) much less drag, (2) larger radar cross section, and (3) lower fabrication cost.
机译:高频(HF)雷达用于检测电离层不规则,流星迹和移动目标。精密可扩展雷达校准球(PERCS)是太空中的一个简单雷达目标,可帮助确定地面HF雷达的运行参数。 PERCS将具有一个已知的雷达横截面,该横截面与0.5 dB以内的观察方向无关。 PERCS卫星可以以直径约1 m的收起配置发射。发射后,PERCS的直径将扩大到近10 m。扩展后,形成稳定的线框,以多面体球的形式充当雷达散射目标。球体的最简单版本具有60个顶点(V60),这些顶点连接到90个刚性线段。每个节段都是铰接的,因此可以将PERCS折叠成紧凑的包装以进行发射。对直径为10 m的V60线框的分析表明,雷达横截面(RCS)几乎与30 MHz以下的视角无关。具有240个顶点的另一种设计可产生更好的性能。雷达系统将使用雷达回波数据以及目标RCS,位置和速度的精确知识进行校准。 PERCS可以反射来自自然目标的雷达信号,例如磁场对准和当前驱动的不规则信号,目前地面雷达无法访问。相对于金属化球形“气球”,线框结构具有多个优势,其优点是:(1)阻力小得多;(2)雷达横截面更大;(3)降低了制造成本。

著录项

  • 来源
    《Radio Science》 |2008年第1期|1-23|共23页
  • 作者单位

    Plasma Physics Division, Naval Research Laboratory, Washington, D. C., USA.;

    Plasma Physics Division, Naval Research Laboratory, Washington, D. C., USA.;

    Radar Division, Naval Research Laboratory, Washington, D. C., USA.;

    Radar Division, Naval Research Laboratory, Washington, D. C., USA.;

    Space Science Division, Naval Research Laboratory, Washington, D. C., USA.;

    Space Engineering Department, Naval Research Laboratory, Washington, D. C., USA.;

    Space Engineering Department, Naval Research Laboratory, Washington, D. C., USA.;

    Hoberman Associates, Inc., New York, New York, USA.;

    Hoberman Associates, Inc., New York, New York, USA.;

    Department of Earth and Atmospheric Sciences and School of Electrical Engineering, Cornell University, Ithaca, New York, USA.;

    Department of Earth and Atmospheric Sciences and School of Electrical Engineering, Cornell University, Ithaca, New York, USA.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Radar cross-sections; Calibration; Wires; Spaceborne radar; Face; Space vehicles;

    机译:雷达横截面;校准;电线;星载雷达;面部;航天器;

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