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Performance assessment of along-track interferometry for detecting ground moving targets

机译:沿轨道干涉测量检测地面移动目标的性能评估

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Along-track interferometry (ATI) is an interferometric synthetic aperture radar technique that can be used to measure Earth-surface velocities. As such, the ATI technique holds promise for the detection of slowly moving ground targets. However, the models often used to characterize ATI performance were developed mainly in the context of mapping ocean currents, and they do not necessarily apply to the case of discrete, moving ground targets amidst clutter. We provide expressions for more accurately modeling the behavior of an ATI system in the context of ground moving target indication. Analysis and design equations are given for topics including target defocus, signal-to-noise and signal-to-clutter ratios, interferometric correlation, interferometric phase bias, target detection, geolocation accuracy, and area coverage rate.
机译:沿轨道干涉测量法(ATI)是一种干涉式合成孔径雷达技术,可用于测量地面速度。因此,ATI技术保持了检测缓慢移动地目标的承担。然而,经常用于表征ATI性能的模型主要在映射海洋电流的背景下开发,并且它们不一定适用于杂乱的离散的情况,移动地面目标。我们提供表达式,以便在地面移动目标指示的上下文中更准确地建模ATI系统的行为。给出了包括目标散焦,信号对噪声和信号到杂波比,干涉相关,干涉相位偏置,目标检测,地理位置精度和面积覆盖率的主题分析和设计方程。

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