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Dynamic Multistatic Synthetic Aperture Radar (DMSAR) with Image Reconstruction Algorithms and Analysis

机译:具有图像重建算法和分析的动态多静学合成孔径雷达(DMSAR)

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The imaging of ground objects by circular synthetic aperture radar (CSAR) is a well-known technique that can benefit from the use of multiple receivers in a multistatic configuration. Although static receivers have been employed to determine the location of one or more airborne objects, the use of multiple dynamically positioned airborne receivers with an airborne transmitter represents a novel application of SAR technology for the detection of ground objects. This paper presents theory, algorithms, and experimental results for dynamic multistatic synthetic aperture radar (DMSAR) for airborne sensing of ground-based objects. We emphasize the proper placement of receivers in relationship to the transmitter and object area, in order to achieve a specific quality of image reconstruction. Additionally, we discuss performance issues pertaining to the computation of DMSAR on high-performance platforms such as clusters of graphics processing units or hybrid processors. Example results and analysis are taken from synthetic or public-domain data.
机译:通过圆形合成孔径雷达(CSAR)对地对象的成像是一种众所周知的技术,可以从多晶配置中使用多个接收器。尽管已经采用静态接收器来确定一个或多个空中物体的位置,但是使用具有空气传输器的多个动态定位的空机接收器代表SAR技术用于检测接地物体的新颖应用。本文介绍了动态多晶体合成孔径雷达(DMSAR)的理论,算法和实验结果,用于基于地面物体的空​​气传感。我们强调接收器的适当放置在与发射器和对象区域的关系中,以实现图像重建的特定质量。此外,我们讨论了与高性能平台上DMSAR计算有关的性能问题,例如图形处理单元集群或混合处理器。示例结果和分析来自合成或公共域数据。

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