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首页> 外文期刊>EURASIP journal on advances in signal processing >Multiresolution Signal Processing Techniques for Ground Moving Target Detection Using Airborne Radar
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Multiresolution Signal Processing Techniques for Ground Moving Target Detection Using Airborne Radar

机译:机载雷达探测地面运动目标的多分辨率信号处理技术

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摘要

Synthetic aperture radar (SAR) exploits very high spatial resolution via temporal integration and ownship motion to reduce the background clutter power in a given resolution cell to allow detection of nonmoving targets. Ground moving target indicator (GMTI) radar, on the other hand, employs much lower-resolution processing but exploits relative differences in the space-time response between moving targets and clutter for detection. Therefore, SAR and GMTI represent two different temporal processing resolution scales which have typically been optimized and demonstrated independently to work well for detecting either stationary (in the case of SAR) or exo-clutter (in the case of GMTI) targets. Based on this multiresolution interpretation of airborne radar data processing, there appears to be an opportunity to develop detection techniques that attempt to optimize the signal processing resolution scale (e.g., length of temporal integration) to match the dynamics of a target of interest. This paper investigates signal processing techniques that exploit long CPIs to improve the detection performance of very slow-moving targets.
机译:合成孔径雷达(SAR)通过时间积分和自有运动利用非常高的空间分辨率,以减少给定分辨率单元中的背景杂波功率,从而可以检测出不动的目标。另一方面,地面移动目标指示器(GMTI)雷达采用的分辨率较低,但是利用了移动目标和杂波之间的时空响应的相对差异进行检测。因此,SAR和GMTI代表了两个不同的时间处理分辨率标度,这些标度通常已经过优化和独立演示,可以很好地用于检测静止(在SAR情况下)或异波(在GMTI情况下)目标。基于机载雷达数据处理的这种多分辨率解释,似乎有机会开发检测技术,以尝试优化信号处理分辨率规模(例如时间积分的长度)以匹配感兴趣目标的动态。本文研究了利用长CPI来改善非常缓慢移动的目标的检测性能的信号处理技术。

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