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Time-frequency method for detecting an accelerating target in sea clutter

机译:检测海杂波中加速目标的时频方法

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摘要

The authors design a time-frequency (TF) method for use in high-frequency surface-wave radar (HFSWR) for detecting a small accelerating target in sea clutter. The clutter is modelled by pseudo targets moving with Bragg velocity towards and away from the radar. The design is based on the Wigner distribution (WD) defined by Chan (type-III WD, in our terminology) rather than the WD defined by Claasen and Mecklenbrauker (1980) (2times type-I WD, in our terminology). Like the type-I WD, the type-III WD also concentrates a chirp signal onto a straight line in the TF plane. The type-III WD has the following advantages: 1) Its range of unambiguously measurable frequencies (RUMF) is [-pi,pi] rad/s, whereas for the type-I WD the RUMF is [-pi/2,pi/2] rad/s. 2) It allows a target separated from the clutter by pi rad/s to be detected, whereas the type-I WD coalesces such a target with the clutter and thereby mask it. An ambiguity function (AF) was defined corresponding to the type-III WD and use it to derive a smoothed type-III WD that mitigates the clutter. The smoothed type-III WD method is applied to real radar data and shown to be superior to the conventional Fourier transform method. The advantages of the type-III WD over the type-I WD are also demonstrated. The design principles laid out in the paper can also be used to develop a TF method for use in air traffic control radar (ATCR) for detecting an accelerating target in land clutter
机译:作者设计了一种时频(TF)方法,用于高频表面波雷达(HFSWR)中,用于检测海杂波中的小加速目标。杂波由伪目标建模,伪目标以布拉格速度朝向和远离雷达移动。该设计基于Chan定义的Wigner分布(WD)(在我们的术语中为III型WD),而不是由Claasen和Mecklenbrauker(1980)定义的WD(在我们的术语中为I型WD的2倍)。与I型WD一样,III型WD也将线性调频信号集中到TF平面中的直线上。 III型WD具有以下优点:1)其明确可测量的频率(RUMF)的范围是[-pi,pi] rad / s,而对于I型WD,RUMF是[-pi / 2,pi / 2] rad / s。 2)它可以检测到与pi rad / s分开的杂物,而I型WD将这种杂物与杂物合并,从而将其掩盖。定义了对应于III型WD的歧义函数(AF),并使用它来获得平滑的III型WD,以减轻混乱。平滑的III型WD方法应用于实际雷达数据,并显示出优于传统的Fourier变换方法。还展示了III型WD相对于I型WD的优势。本文提出的设计原理还可以用于开发用于空中交通管制雷达(ATCR)的TF方法,以检测地面杂波中的加速目标

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