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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Characterization and Mitigation of RFI Signals in Radar Depth Sounder Data of Greenland Ice Sheet
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Characterization and Mitigation of RFI Signals in Radar Depth Sounder Data of Greenland Ice Sheet

机译:格陵兰冰原雷达深度测深仪数据中RFI信号的表征和缓解

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摘要

Accurate measurements of fast flowing outlet glaciers in Greenland and Antarctica are of vital importance to improve ice-sheet models that predict the ice-sheets’ contribution to sea-level rise over the next century. Radars with high sensitivity and advanced processing capabilities are required to sound ice in fast-flowing glaciers. We developed the multichannel coherent radar depth sounder/imager (MCoRDS/I) for ice thickness measurements and 3-D imaging of bedrock over important areas of Greenland and Antarctica. Radio frequency interference (RFI) degrades the sensitivity of the MCoRDS/I system, thus affecting the quality of the data collected. Data from the 2010 Greenland field season exhibited a degraded signal-to-noise ratio (SNR), requiring extensive RFI analysis, investigation, and mitigation for the MCoRDS/I system. Measurements were taken in an electromagnetic interference (EMI) chamber on individual sections of the MCoRDS/I system to isolate the sources of RFI. Then, RFI mitigation techniques were implemented for the offending sections and EMI chamber measurements verified the integrity of the solution prior to the 2011 Greenland deployment. Recorded data from the 2011 Greenland field season also verified that the RFI mitigation resulted in more than 20 dB improvement in the SNR compared to the 2010 Greenland data. The reduction of EMI emissions has also been beneficial to data collection in subsequent deployments.
机译:准确测量格陵兰岛和南极洲快速流动的出口冰川,对于改善冰盖模型至关重要,因为冰盖模型可以预测冰盖对下一世纪海平面上升的贡献。为了在快速流动的冰川中发出冰声,需要具有高灵敏度和先进处理能力的雷达。我们开发了多通道相干雷达测深仪/成像仪(MCoRDS / I),用于格陵兰和南极重要地区的冰厚度测量和基岩的3D成像。射频干扰(RFI)会降低MCoRDS / I系统的灵敏度,从而影响所收集数据的质量。 2010年格陵兰田间季节的数据显示信噪比(SNR)下降,因此需要对MCoRDS / I系统进行大量的RFI分析,调查和缓解。在MCoRDS / I系统各个部分的电磁干扰(EMI)室中进行测量,以隔离RFI源。然后,针对有问题的部分实施了RFI缓解技术,EMI室测量结果证明了在2011年格陵兰部署之前解决方案的完整性。 2011年格陵兰野外季节的记录数据还证实,与2010年格陵兰数据相比,减轻RFI导致SNR改善了20 dB以上。减少EMI排放也有利于后续部署中的数据收集。

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