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Circular-Aperture VHF-Band Synthetic Aperture Radar for Detection of Vehicles in Forest Concealment

机译:圆孔甚高频波段合成孔径雷达在森林隐蔽中检测车辆

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Circular-aperture synthetic aperture radar (SAR) imaging has been evaluated using the airborne very high frequency (VHF) band Coherent All RAdio BAnd Sensing (CARABAS)-II system (20-90 MHz). Images, as well as results, from detection of vehicles in dense forest concealment have been compared with linear-aperture SAR. Circular-aperture SAR imaging provides higher image resolution and increased object information, but complexity of signal processing and requirements on imaging geometry accuracy increases. The latter is, however, partly mitigated by using low frequencies in the VHF band. A high-quality digital elevation model is used to ensure high-quality image focusing and to avoid distorting object shape. Contrast optimization is used to reduce global focusing errors. The image resolution is observed to be about 1 m2 in agreement with theoretical predictions. Detection performance has been evaluated using image data from a full circular synthetic aperture, i.e., 360° of aspect angle variation. Results, both for single-pass detection (SPD) and change detection (CD), show a considerable advantage compared with detection based on linear-aperture SAR. The detection probability for SPD increases from 0.4 to 0.8 at a false-alarm rate (FAR) of 30/km2. For CD, the detection probability increases from 0.7 to 0.9 at a FAR of 2/km2.
机译:圆孔合成孔径雷达(SAR)成像已使用机载甚高频(VHF)频带相干全波段雷达传感(CARABAS)-II系统(20-90 MHz)进行了评估。将在茂密的森林中隐藏的车辆检测到的图像和结果与线性孔径SAR进行了比较。圆孔SAR成像可提供更高的图像分辨率和更多的对象信息,但是信号处理的复杂性以及对成像几何精度的要求不断提高。但是,通过使用VHF频段中的低频,部分缓解了后者。高质量的数字高程模型用于确保高质量的图像聚焦并避免扭曲对象形状。对比度优化用于减少全局聚焦误差。观察到的图像分辨率约为1 m 2 ,与理论预测相符。已经使用来自全圆形合成孔径,即360°纵横角变化的图像数据评估了检测性能。与基于线性孔径SAR的检测相比,单次通过检测(SPD)和变化检测(CD)的结果均显示出可观的优势。 SPD的检测概率以30 / km 2 的误报率(FAR)从0.4增加到0.8。对于CD,FAR为2 / km 2 时,检测概率从0.7增加到0.9。

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