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Stepped-frequency pulse train waveforms for improved radar range resolution

机译:步进频率脉冲串波形,用于改善雷达距离分辨率

摘要

The traditional approach of improving radar range resolution using a linear frequency modulated chirp signal requires the full width of the frequency spectrum, which is not feasible in the UHF band due to interference or frequency allocation for other purposes. In this study a linear frequency modulated chirp signal is approximated using two stepped-frequency pulse train waveforms, a continuous wave pulse train and a linear frequency modulated pulse train. The continuous wave pulse train consists of a series of single frequency pulses, each at a different frequency. It is found to be susceptible to corruption due to target motion. The linear frequency modulated pulse train consists of linear frequency modulation within pulses, each at a different center frequency. Simulations are used to demonstrate that both approaches approximate a linear frequency modulated chirp signal, and performance is degraded when there is a gap in the frequency band or if there is phase distortion due to target motion. However, it is shown that a linear frequency modulated pulse train with frequency overlaps between pulses can be used to reduce or eliminate phase distortions resulting from target motion provided the target is moving with constant velocity. The validity of the technique is demonstrated by non-coherently processing radar data from an internal moving target simulator and data from actual planes to resolve targets from their reflected image in order to estimate target height.
机译:使用线性调频线性调频信号来提高雷达距离分辨率的传统方法需要频谱的整个宽度,由于干扰或出于其他目的的频率分配,在UHF频带中这是不可行的。在这项研究中,线性调频线性调频信号使用两个步进频率脉冲序列波形,连续波脉冲序列和线性频率调制脉冲序列来近似。连续波脉冲序列由一系列单频脉冲组成,每个频率不同。发现其易于由于目标运动而损坏。线性调频脉冲序列由脉冲内的线性调频组成,每个脉冲在不同的中心频率处。通过仿真证明,这两种方法都近似于线性调频线性调频信号,并且当频段中存在间隙或目标运动导致相位失真时,性能会降低。然而,示出了在目标物以恒定速度运动的情况下,具有在脉冲之间的频率重叠的线性调频脉冲串可以用于减少或消除由目标物运动引起的相位失真。通过非相干地处理来自内部移动目标模拟器的雷达数据和来自实际飞机的数据以从其反射图像解析目标以估计目标高度的方法,证明了该技术的有效性。

著录项

  • 作者

    Ma Chung-Hsiu;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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