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Sparse, Active Aperture Imaging

机译:稀疏,主动孔径成像

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摘要

We describe an approach to radar imaging of an isolated, rotating target using coherent, sparse, or highly thinned arrays of transmit/receive elements. The array elements are assumed to be randomly positioned and accurately surveyed after placement. Further, the isolated target is assumed to occupy a limited angular sector such that there is no source of backscatter beyond the sector occupied by the target. Estimates of the resolution and image quality are provided when the array elements are widely separated and operate with coherent, multiple input/multiple output (MIMO) signaling, and inverse synthetic aperture radar (ISAR) processing at each MIMO element pair. The sparse array operation can provide superior resolution when compared to ISAR processing with a modest number of sparse array elements. Several important issues relating to feasibility remain to be investigated. These include establishing coherence and timing among the widely separated array elements, adaptive beamforming and processing requirements, and coherence of the scattering phenomena with the widely separated MIMO elements.
机译:我们描述了一种使用相干,稀疏或高度缩小的发射/接收元件阵列的隔离的旋转目标的雷达成像方法。假设阵列元件在放置后随机定位和准确地进行调查。此外,假设孤立的目标占据有限的角扇区,使得没有超出目标占据的扇区的反向散射源。当阵列元件广泛分离并用相干的多个输入/多个输出(MIMO)信令和每个MIMO元素对时处理的阵列元件和操作的逆合成孔径雷达(ISAR)处理时,提供了分辨率和图像质量的估计。与具有适度稀疏阵列元素的ISAR处理相比,稀疏阵列操作可以提供卓越的分辨率。与可行性有关的几个重要问题仍有待调查。这些包括在广泛分离的阵列元件,自适应波束形成和处理要求中建立相干性和时序,以及与广泛分离的MIMO元素的散射现象的相干性。

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