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Spaced-antenna wind estimation using an X-band active phased-array weather radar.

机译:使用X波段有源相控阵天气雷达的间隔天线风估计。

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摘要

Over the past few decades, several single radar methods have been developed to probe the kinematic structure of storms. All these methods trade angular-resolution to retrieve the wind-field. To date, the spaced-antenna method has been employed for profiling the ionosphere and the precipitation free lower atmosphere. This work focuses on applying the spaced-antenna method on an X-band active phased-array radar for high resolution horizontal wind-field retrieval from precipitation echoes.;The ability to segment the array face into multiple displaced apertures allows for flexible spaced-antenna implementations. The methodology employed herein comprises of Monte-Carlo simulations to optimize the spaced-antenna system design and analysis of real data collected with the designed phased-array system. The contribution that underpins this dissertation is the demonstration of qualitative agreement between spaced-antenna and Doppler beam swinging retrievals based on real data.;First, simulations of backscattered electric fields at the antenna array elements are validated using theoretical expressions. Based on the simulations, the degrees of freedom in the spaced-antenna system design are optimized for retrieval of mean baseline wind. We show that the designed X-band spaced-antenna system has lower retrieval uncertainty than the existing S-band spaced-antenna implementation on the NWRT. This is because of the flexibility to synthesize small overlapping apertures and the ability to obtain statistically independent samples at a faster rate at X-band. We then demonstrate a technique to make relative phase-center displacement measurements based on simulations and real data from the phased-array spaced-antenna system. This simple method uses statistics of precipitation echoes and apriori beamwidth measurements to make field repeatable phase-center displacement measurements.;Finally, we test the hypothesis that wind-field curvature effects are common to both the spaced-antenna and Doppler beam swinging methods. Based on a close-range winter storm data set, we find that the spaced-antenna and fine-resolution Doppler beam swinging retrievals are in qualitative agreement. The correlation between the spaced-antenna and fine-resolution Doppler beam swinging retrievals was 0.57. The lowered correlation coefficient was, in part, due to the high standard deviation of the DBS retrievals. At high wind-speeds, the spaced-antenna retrievals significantly departed from variational retrievals of mean baseline wind.
机译:在过去的几十年中,已经开发了几种单雷达方法来探测风暴的运动学结构。所有这些方法都以角分辨率为代价来获取风场。迄今为止,已采用间隔天线方法对电离层和无沉淀的低层大气进行剖析。这项工作的重点是在X波段有源相控阵雷达上应用间隔天线方法,以从降水回波中获取高分辨率水平风场。;将阵列面分割为多个位移孔径的能力实现了灵活的间隔天线实现。本文采用的方法包括蒙特卡罗模拟,以优化间隔天线系统的设计,并分析利用设计的相控阵系统收集的真实数据。论文的基础是对间隔天线和多普勒波束摆动反演结果的定性证明。基于实测数据。首先,利用理论表达式对天线阵列单元的反向散射电场进行了仿真。基于仿真,优化了间隔天线系统设计中的自由度,以获取平均基线风。我们表明,与NWRT上现有的S波段间隔天线实施方案相比,设计的X波段间隔天线系统具有较低的检索不确定性。这是因为合成小重叠孔径的灵活性以及在X波段以更快的速率获得统计上独立的样本的能力。然后,我们演示一种基于相控阵间隔天线系统的模拟和真实数据进行相对相中心位移测量的技术。这种简单的方法使用降水回波和先验波束宽度测量值的统计数据来进行现场可重复的相中心位移测量。最后,我们检验了以下假设:间隔天线和多普勒波束摆动方法都普遍存在风场曲率效应。基于近距离冬季风暴数据集,我们发现间隔天线和高分辨率多普勒波束摆动反演在质量上是一致的。间隔天线与高分辨率多普勒波束摆动回波之间的相关性为0.57。较低的相关系数部分是由于DBS检索的高标准偏差。在高风速下,间隔天线的取回明显不同于平均基线风的变分取回。

著录项

  • 作者

    Venkatesh, Vijay.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Remote Sensing.;Physics Electricity and Magnetism.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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