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On the variability of Doppler spectra in HF groundwave radar remote sensing over the ocean surface: An investigation based on pulsed and frequency modulated sources.

机译:关于海面HF地面波雷达遥感中多普勒频谱的可变性:基于脉冲和调频源的研究。

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摘要

An examination of the fluctuations of the Bragg peaks in high frequency (HF) radar received backscatter spectra from the ocean surface is considered in the light of recent cross section models. It is well known that there are likely several factors giving rise to this phenomenon. In the first part of the research work, the effect that is purely caused by the use of a pulsed Doppler radar waveform is examined. The radar received signal is assumed to be scattered from a time-varying random rough surface represented as a zero-mean, Gaussian random process. Numerical examinations of the existence and distribution of Bragg fluctuations are carried out first. Various radar operating frequencies and pulse widths are selected to simulate the time series for different conditions. Doppler spectra (power spectral density, PSD) are estimated as periodograms. The centroids of the Bragg peaks are obtained and compared with theoretical values and the Bragg fluctuations from time to time are observed. The statistical properties of the centroid positions are indicated and compared with resolutions of the fast Fourier transform (FFT) algorithm to reveal their significance. Then the physical processes which underlie the observed variability of the HF sea echo over short time periods are examined. It will be seen that, by implementing both numerical and analytical techniques, interrogation of such a surface via a pulsed signal inherently leads to temporal variation of echo power at every frequency position of the Doppler spectrum.;The second part of the research work is an investigation of the Bragg fluctuations when HF radar uses the frequency modulated waveforms, which include frequency modulated continuous wave (FMCW) and frequency modulated interrupted continuous wave (FMICW) sources. Such waveforms are often employed in practical radar systems. The mathematical expressions of the cross sections for the FMCW and FMICW waveforms are worked out and their properties are addressed. Then, similar to the previous analysis for the pulsed waveform, time series of the radar received electric field signals are simulated and the PSDs are calculated. Centroid positions of the Bragg peak regions are located and compared to the theoretical values. Statistical properties of the Bragg fluctuations are investigated and comparison with respect to that for the pulsed waveform is carried out. Field data from the Wellen Radar (WERA) are used to verify the simulation results and the fluctuations of the Bragg peaks for the FMCW waveform.
机译:根据最近的横截面模型,考虑了对来自海面的高频(HF)雷达接收到的反向散射光谱的布拉格峰波动的检查。众所周知,可能有多种因素导致这种现象。在研究工作的第一部分中,研究了纯粹由使用脉冲多普勒雷达波形引起的影响。假定雷达接收信号是从随时间变化的随机粗糙表面散射的,该表面表现为零均值,高斯随机过程。首先对布拉格波动的存在和分布进行数值检验。选择各种雷达工作频率和脉冲宽度以模拟不同条件下的时间序列。多普勒频谱(功率频谱密度,PSD)估计为周期图。获得布拉格峰的质心,并将其与理论值进行比较,并观察到不时的布拉格波动。指出了质心位置的统计属性,并将其与快速傅立叶变换(FFT)算法的分辨率进行比较以揭示其重要性。然后检查了在短时间内观察到的HF海回波变化性的物理过程。可以看出,通过实施数值和分析技术,通过脉冲信号对这样的表面进行询问会固有地导致在多普勒频谱的每个频率位置处回波功率随时​​间的变化。 HF雷达使用调频波形时的布拉格波动的研究,其中包括调频连续波(FMCW)和调频间断连续波(FMICW)源。在实际的雷达系统中经常采用这种波形。得出了FMCW和FMICW波形的横截面的数学表达式,并讨论了它们的特性。然后,类似于先前对脉冲波形的分析,模拟了雷达接收到的电场信号的时间序列,并计算了PSD。确定布拉格峰区域的质心位置,并将其与理论值进行比较。研究布拉格波动的统计特性,并与脉冲波形进行比较。来自Wellen雷达(WERA)的现场数据用于验证模拟结果以及FMCW波形的Bragg峰值的波动。

著录项

  • 作者

    Zhang, Jianjun.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Physical Oceanography.;Remote Sensing.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

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