遥感和诊断医学中的多静态回波成像

M. Soumekh
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引用次数: 3

摘要

只提供摘要形式。研究了由空间域中任意坐标的一组相控阵组成的成像系统(多静态结构)的回波成像问题。每个相控阵都有一个有限孔径,用于发射、接收或两种功能。接收相控阵可以对后向散射信号进行同步或异步检测。该成像问题的任务是整合相控阵收集的数据,并将其与所研究的对象联系起来。成像问题首先是在双基地配置平面波源公式。这些结果推广到多静态成像系统的辐射模式。对后向散射信号进行处理,以减少由于相控阵尺寸有限而造成的重构图像伪影。相位处理技术已经研究了在非相干环境中检测后向散射信号的情况。研究表明,这些阵列处理原理可用于建立包含波前曲率的合成孔径雷达成像系统模型和反演。
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Multistatic echo imaging in remote sensing and diagnostic medicine
Summary form only given. The problem of echo imaging when the imaging system is composed of a group of phased arrays with arbitrary coordinates in the spatial domain (multistatic configuration) has been addressed. Each phase array has a finite aperture and is used for transmitting, receiving, or both functions. A receiving phased array may make a synchronous or asynchronous detection of the backscattered signal. The task in this imaging problem is to integrate the data collected by the phased arrays and relate them to the object under study. The imaging problem is first formulated for a plane wave source in a bistatic configuration. These results are extended for the radiation patterns of a multistatic imaging system. Methods for processing the backscattered signals to reduce the artifacts in the reconstructed image caused by the finite size of the phased arrays have been developed. Phase processing techniques have been examined for the case in which the backscattered signal is detected in a noncoherent environment. It has been shown that these array processing principles can be utilized to formulate a system model and inversion for synthetic aperture radar imaging that incorporates wavefront curvature.<>
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