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Passive synthetic aperture radar imaging with single frequency sources of opportunity

机译:具有单频机会源的无源合成孔径雷达成像

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1In this paper we consider passive airborne receivers that use backscattered signals from sources of opportunity transmitting fixed-frequency waveforms. Due to its combined passive synthetic aperture and the fixed-frequency nature of the transmitted waveforms, we refer to the system under consideration as Doppler Synthetic Aperture Hitchhiker (DSAH). We present a novel image formation method for DSAH. Our method first correlates the windowed signal obtained from one receiver with the windowed, filtered, scaled and translated version of the received signal from another receiver. This processing removes the transmitter related variables from the phase of the Fourier integral operator that maps the radiance of the scene to the correlated signal. We next use the microlocal analysis to reconstruct the scene radiance by the weighted-backprojection of the correlated signal. This imaging algorithm can put the visible edges of the scene radiance at the correct location, and under appropriate conditions, with correct strength. Additionally, it is an analytic reconstruction technique which can be made computationally efficient. We show that the resolution of the image is directly related to the length of the support of the windowing function and the frequency of the transmitted waveform. The image reconstruction method is applicable with both cooperative and non-cooperative sources of opportunity using one or more airborne receivers. We present numerical simulations to demonstrate the performance of the image reconstruction method and to verify the theoretical results.
机译: 1 在本文中,我们考虑了无源机载接收机,它们使用来自机会源的后向散射信号传输固定频率的波形。由于其综合了无源合成孔径和发射波形的固定频率特性,我们将所考虑的系统称为多普勒合成孔径Hitchhiker(DSAH)。我们提出了一种新颖的DSAH图像形成方法。我们的方法首先将从一个接收器获得的加窗信号与从另一接收器接收到的信号的加窗,滤波,缩放和转换版本相关联。该处理从将场景的辐射度映射到相关信号的傅立叶积分算子的相位中删除与发射机相关的变量。接下来,我们使用微局部分析通过相关信号的加权反投影来重建场景辐射。这种成像算法可以将场景辐射的可见边缘放在正确的位置,并在适当的条件下以正确的强度放置。另外,它是一种解析重建技术,可以使计算效率更高。我们表明,图像的分辨率与开窗功能的支持长度和所传输波形的频率直接相关。图像重建方法适用于使用一个或多个机载接收器的合作机会源和非合作机会源。我们目前数值模拟,以证明图像重建方法的性能,并验证理论结果。

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