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Three-dimensional SAR imaging using linear array in transverse motion

机译:横向运动中使用线性阵列的三维SAR成像

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摘要

A new three-dimensional (3-D) synthetic aperture radar (SAR) imaging technique is presented. It utilizes a linear array in transverse motion to synthesize a two-dimensional (2-D) synthetic array. Elements of the linear array are fired sequentially (one element at a time), while all elements receive in parallel. A 2-D information sequence is computed from the equiphase two-way signal returns. A new signal model based on a third-order Taylor series expansion about incremental relative time, azimuth, elevation and target height is used. Scatterers are detected as peaks in the amplitude spectrum of the information sequence. Detection is performed in two stages. First, all scatterers within a footprint are detected using an incomplete signal model where target height is set to zero. Then, processing using the complete signal model is performed only on range bins containing significant scatterer returns. The difference between the two images is used to measure target height. Computer simulation shows that this technique is accurate and virtually impulse invariant. An example is used to demonstrate this approach.
机译:提出了一种新的三维(3-D)合成孔径雷达(SAR)成像技术。它利用横向运动中的线性阵列合成二维(2-D)合成阵列。线性数组的元素顺序触发(一次触发一个元素),而所有元素并行接收。从等相双向信号返回中计算出二维信息序列。使用了基于三阶泰勒级数展开式的新信号模型,该展开式涉及增量相对时间,方位角,仰角和目标高度。散射体被检测为信息序列幅度谱中的峰值。检测分两个阶段进行。首先,使用目标高度设置为零的不完整信号模型检测足迹内的所有散射体。然后,仅在包含大量散射返回的测距仓上执行使用完整信号模型的处理。两个图像之间的差异用于测量目标高度。计算机仿真表明,该技术是准确的,并且实际上是脉冲不变的。举一个例子来说明这种方法。

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