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首页> 外文期刊>Radio Science >Simulating the effects of scintillation on transionospheric signals with a two-way phase screen constructed from ALTAIR phase-derived TEC
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Simulating the effects of scintillation on transionospheric signals with a two-way phase screen constructed from ALTAIR phase-derived TEC

机译:利用由ALTAIR相衍生的TEC构建的双向相位屏蔽屏模拟闪烁对电离层信号的影响

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摘要

Severe scintillation on transionospheric radio signals caused by small-scale plasma irregularities can greatly disrupt wideband communication, surveillance, and navigation systems. Development of techniques to mitigate the effects of scintillation requires accurate characterization of the ionospheric propagation channel. To achieve this goal, multiple campaigns were conducted as part of the joint U.S. -UK Wideband Ionospheric Distortion Experiment to obtain ionospheric signatures from various instruments located on Kwajalein Atoll. We use tracking data from the VHF/UHF Advanced Research Project Agency Long-Range Tracking and Instrumentation Radar for overflights of passive calibration spheres in low-Earth orbit to demonstrate the validity of a one-dimensional (1-D) phase screen model to represent the propagation channel through a disturbed ionosphere. The 1-D phase screen is constructed from radar phase-derived estimates of the total electron content. We present a detailed comparison of simulated radar cross section after propagation through the phase screen with observed radar returns under both disturbed and quiet ionospheric conditions. Successful reproduction of radar amplitude enhancements and fades adds to our understanding of small-scale plasma irregularities and moves us toward our goal of providing precise predictions of radar system performance. Doing so will allow for the development of better mitigation/ compensation algorithms for detrimental ionospheric effects. Result from this study also provide an assessment of the tools required for incorporating in situ density measurements along with phase screen theory into situational awareness products to offer an accurate nowcast/forecast of system impacts to users in the communication, navigation, and surveillance communities.
机译:由小规模等离子体不规则引起的跨电离层无线电信号的严重闪烁会极大地破坏宽带通信,监视和导航系统。减轻闪烁影响的技术的发展要求电离层传播通道的准确表征。为了实现这一目标,作为美国-英国联合开展的宽带电离层畸变实验的一部分,开展了多次运动,以从位于夸贾林环礁上的各种仪器获得电离层特征。我们使用来自VHF / UHF高级研究计划局的远程跟踪和仪器雷达的跟踪数据,对低地球轨道上的无源校准球进行飞越,以证明一维(1-D)相屏模型代表的有效性穿过电离层的传播通道。一维相位屏蔽由雷达相位衍生的总电子含量估算值构成。我们在扰动和安静电离层条件下,将通过相屏传播后的模拟雷达横截面与观察到的雷达回波进行了详细的比较。成功再现雷达幅度增强和衰减,增加了我们对小规模等离子体不规则现象的理解,并使我们朝着提供精确预测雷达系统性能的目标迈进。这样做将允许开发出更好的缓解/补偿算法,以应对有害的电离层效应。这项研究的结果还评估了将现场密度测量与相屏蔽理论结合到态势感知产品中所需的工具,以向通信,导航和监视社区的用户提供准确的系统影响预测/预测。

著录项

  • 来源
    《Radio Science》 |2010年第1期|p.RS0A12.1-RS0A12.9|共9页
  • 作者单位

    Atmospheric and Environmental Research, Inc., Lexington, Massachusetts, USA Space Vehicles Directorate, Air Force Research Laboratory, Hanscom Air Force Base, Massachusetts, USA;

    rnAtmospheric and Environmental Research, Inc., Lexington, Massachusetts, USA Institute for Scientific Research, Boston College, Chestnut Hill, Massachusetts, USA;

    rnAtmospheric and Environmental Research, Inc., Lexington, Massachusetts, USA;

    rnSpace Vehicles Directorate, Air Force Research Laboratory, Hanscom Air Force Base, Massachusetts, USA;

    rnSpace Vehicles Directorate, Air Force Research Laboratory, Hanscom Air Force Base, Massachusetts, USA Now at Creare Inc., Hanover, New Hampshire, USA;

    rnKwajalein Range Services LLC, Kwajalein Atoll, Marshall Islands;

  • 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
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