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High-Altitude Radar Measurements of Ice Thickness Over the Antarctic and Greenland Ice Sheets as a Part of Operation IceBridge

机译:高空雷达测量的南极和格陵兰冰原上冰厚的一部分,作为操作冰桥的一部分

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The National Aeronautics and Space Administration (NASA) initiated a program called Operation IceBridge for monitoring critical parts of Greenland and Antarctica with airborne LIDARs until ICESat-II is launched in 2016. We have been operating radar instrumentation on the NASA DC-8 and P-3 aircraft used for LIDAR measurements over Antarctica and Greenland, respectively. The radar package on both aircraft includes a radar depth sounder/imager operating at the center frequency of 195 MHz. During high-altitude missions flown to perform surface-elevation measurements, we also collected radar depth sounder data. We obtained good ice thickness information and mapped internal layers for both thicker and thinner ice. We successfully sounded 3.2-km-thick low-loss ice with a smooth surface and also sounded about 1-km or less thick shallow ice with a moderately rough surface. The successful sounding required processing of data with an algorithm to obtain 56-dB or lower range sidelobes and array processing with a minimum variance distortionless response algorithm to reduce cross-track surface clutter. In this paper, we provide a brief description of the radar system, discuss range-sidelobe reduction and array processing algorithms, and provide sample results to demonstrate the successful sounding of the ice bottom interface from high altitudes over the Antarctic and Greenland ice sheets.
机译:美国国家航空航天局(NASA)启动了一项名为IceBridge的计划,该计划利用机载LIDAR监视格陵兰岛和南极洲的关键地区,直到2016年ICESat-II发射为止。我们一直在NASA DC-8和P- 3架分别用于南极和格陵兰岛LIDAR测量的飞机。两架飞机上的雷达套件均包含以195 MHz的中心频率运行的雷达测深仪/成像仪。在执行高空任务以执行表面高程测量的过程中,我们还收集了雷达测深仪数据。我们获得了良好的冰厚信息,并为较厚和较薄的冰绘制了内部层。我们成功地测出了3.2公里厚,表面光滑的低损耗冰,也成功地测出了大约1公里或更厚,表面中等粗糙度的浅冰。成功的探测需要使用一种算法来处理数据以获得56 dB或更小范围的旁瓣,并使用最小方差无失真响应算法进行阵列处理以减少跨轨表面杂波。在本文中,我们对雷达系统进行了简要说明,讨论了距离旁瓣减小和阵列处理算法,并提供了示例结果来演示从南极和格陵兰冰原上的高海拔地区成功完成冰底界面的探测。

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