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Equatorial F-region plasma density estimation with incoherent scatter radar using a transverse-mode differential-phase method.

机译:非相干散射雷达使用横模差分相位方法估算赤道F区等离子体密度。

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摘要

This dissertation presents a novel data acquisition and analysis method for the Jicamarca incoherent scatter radar to measure high-precision drifts and ionospheric density simultaneously at F-region heights. Since high-precision drift measurements favor radar return signals with the narrowest possible frequency spectra, Jicamarca drifts observations are conducted using the linear-polarized transverse radar beams. Transverse-beam returns are collected using an orthogonal pair of linear-polarized antennas, and the average power as well as phase difference of the antenna outputs are fitted to appropriate data models developed based on the incoherent scatter theory and the magneto-ionic theory. The crude differential-phase model when B&ar;o is characterized in terms of straight line fields is applied to the January 2000 data. The most complete differential-phase model, which takes into account the misaligned angle between the dipole axes and geomagnetic northeast and southeast directions, as well as the radar beam width and variation of magnetic fields, is applied to the January 2000 data and June 2002 data. We present and compare the inversion results obtained with different versions of the data models and conclude that the geometrical details have only a minor impact on the inversion. We also find that the differential-phase method works better for the 15-min integrated January 2000 data than 5-min integrated June 2002 data since the former has the bigger densities, larger SNR of the backscattered signals, and more usable phase data. Our inversion results show reasonable agreement with the ionosonde data.; The full correlation method is formulated and applied to the June 2002 data. Compared to the differential-phase method, this method is different in the sense that it utilizes the real and imaginary parts of the cross-correlation of orthogonal antenna outputs at the high altitudes where SNR is low and the off-diagonal elements of the covariance matrix of measurement errors can be ignored. An advantage of this is that the cross-correlation data have Gaussian distributed errors even when the SNR is weak, whereas under the same conditions the phase errors are no longer Gaussian. The determination of noise levels has been improved with the full correlation method.
机译:本文提出了一种新的Jicamarca非相干散射雷达数据采集和分析方法,可以同时测量F区高度的高精度漂移和电离层密度。由于高精度漂移测量偏向于使用尽可能窄的频谱的雷达回波信号,因此使用线性偏振的横向雷达波束进行Jicamarca漂移观测。使用一对正交的线性极化天线收集横束回波,并将天线输出的平均功率以及相位差拟合到基于非相干散射理论和磁离子理论开发的适当数据模型。 B &ar; o < / math>的特征在于将直线字段应用于2000年1月的数据。 2000年1月和2002年6月的数据应用了最完整的差分相位模型,该模型考虑了偶极轴与东北和东南地磁方向之间的失准角以及雷达波束的宽度和磁场的变化。 。我们介绍并比较了使用不同版本的数据模型获得的反演结果,并得出结论,几何细节对反演的影响很小。我们还发现,差分相位方法对于2000年1月的15分钟积分数据比2002年6月的5分钟积分效果更好,因为前者具有更大的密度,更大的反向散射SNR SNR和更多可用的相位数据。我们的反演结果表明与离子探空仪数据合理吻合。制定了完全相关方法,并将其应用于2002年6月的数据。与差分相位方法相比,此方法的不同之处在于,它利用了SNR低的高海拔和协方差矩阵的非对角线元素的正交天线输出互相关的实部和虚部的测量误差可以忽略。这样做的优点是,即使在SNR较弱时,互相关数据也具有高斯分布误差,而在相同条件下,相位误差不再是高斯分布。完全相关法改善了噪声水平的确定。

著录项

  • 作者

    Feng, Zhaomei.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Electronics and Electrical.; Geophysics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;地球物理学;
  • 关键词

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