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Rank one phase error estimation for range-Doppler imaging

机译:距离多普勒成像的一阶相位误差估计

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摘要

A range-Doppler image is corrupted when each pulse in the corresponding range-time array contains a single time-dependent phase error. A previously devised algorithm, the rank one phase estimation (ROPE) technique developed by F. Dyson, et al. (1992), estimates the phase errors, which are then removed so that range-Doppler imaging can proceed in the usual manner. The iterative algorithm works homogeneously across the two-dimensional range-time array (no bright scatterers are necessary for focusing). The estimation technique is model based, but image recovery is successful for many images that do not fit the model. Extensions of both theory and application of the previously devised algorithm are presented. Theoretical insights pertaining to convergence, initialization, optimality, and recovery for images that do not fit the model are presented. Several examples, drawn from simulations, postmission corrupted field data, and field data that are intrinsically corrupted, are also contained herein.
机译:当相应的范围时间阵列中的每个脉冲都包含一个与时间相关的相位误差时,范围多普勒图像就会损坏。 F. Dyson等人开发的一种先前设计的算法,即秩相位估计(ROPE)技术。 (1992年),估计相位误差,然后将其删除,以便可以按照通常的方式进行距离多普勒成像。迭代算法可在二维范围-时间阵列上均匀工作(聚焦不需要明亮的散射体)。估计技术是基于模型的,但是对于许多不适合模型的图像,图像恢复是成功的。提出了先前设计的算法的理论和应用的扩展。提出了与不适合模型的图像的收敛,初始化,最优性和恢复性有关的理论见解。本文还包含了一些示例,这些示例来自模拟,事后损坏的现场数据和本质上损坏的现场数据。

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