Method for Coherent Compensation of Side Lobes of the Spectrum of Interfering Reflections in the Problem of Detecting Low-Speed and Inconspicuous Objects

S. R. Heister, V. V. Kirychenka
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Abstract

The detection of low-speed objects is a challenging task. The small radar cross-section of low-speed objects varying from one-thousandths to one-tens of a square meter practically excludes a successful detection of such objects against intense clutter from static objects by existing methods. In this work we present a method of coherent compensation of clutter from static objects in the sidelobes of the spectrum. The method provides successful detection of low-speed and low-visibility objects with reflective characteristics that create signals with power comparable to the power of spectral sidelobes of the clutter. The method is based on the representation of the side lobes of the spectrum of interfering reflections not in the form of noise, which determines the limiting level of “background whitening”, but in the form of a coherent spectral structure, amenable to further compensation. The proposed method must be especially effective in complicated situations such as when detecting signals reflected from low-speed and low-visibility objects (e.g., quadcopters) versus intensive clutter reflections from metal structures and buildings.
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低速不显著目标检测中干涉反射谱旁瓣的相干补偿方法
低速物体的检测是一项具有挑战性的任务。低速目标的雷达截面积很小,从千分之一平方米到十分之一平方米不等,用现有方法几乎无法在静态目标强烈杂波的情况下成功探测到这类目标。在这项工作中,我们提出了一种在频谱旁瓣中对静态物体杂波进行相干补偿的方法。该方法可以成功地检测低速和低能见度物体,这些物体具有反射特性,产生的信号功率与杂波的谱旁瓣功率相当。该方法基于非噪声形式的干涉反射光谱的旁瓣表示,这决定了“背景白化”的极限水平,而是以相干光谱结构的形式,可以进一步补偿。所提出的方法必须在复杂的情况下特别有效,例如在检测低速和低能见度物体(例如四轴飞行器)反射的信号与金属结构和建筑物反射的强杂波时。
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发文量
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审稿时长
8 weeks
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