首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium >A Complex of Multi-Frequency at 3GHz, 5.6GHz, 20GHz and 37GHz, Polarimetric, Combined, Short Pulse, Short Range Action Radar-Radiometers for Soil and Snow Remote Sensing and Surveillance
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A Complex of Multi-Frequency at 3GHz, 5.6GHz, 20GHz and 37GHz, Polarimetric, Combined, Short Pulse, Short Range Action Radar-Radiometers for Soil and Snow Remote Sensing and Surveillance

机译:在3GHz,5.6GHz,20GHz和37GHz,Polarimetric,合并,短脉冲,短距离动作雷达辐射仪,用于土壤和雪遥感和监测的多频率

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摘要

A complex of polarimetric (dual polarization), spatio-temporally combined active-passive devices of S (~3GHz), C (~5.6GHz), Ku (~20GHz), and Ka (~37GHz) band of frequencies is represented, for bare and vegetated soils, waved water surface and land snow cover microwave reflective and emissive characteristics multi-frequency, polarimetric, simultaneous and spatially coincident measurements. The complex is dedicated to solve problems applied to soil (bear and vegetated) and snow moistures retrieval, to near water surface wind and wave field parameters retrieval, by synergetic application of various kind microwave means of remote sensing, as well as applied to surface and sub-surface targets detection and identification tasks solution. The complex is set in ECOSERV Remote Observation Centre's control-test experimental site, in Armenia, which is equipped by facilities for microwave devices absolute calibration, by spatially distributed stations for in-situ measurements of soil and moistures and temperatures, and has a local meaning small weather station. This paper has an aim to attract attention of researchers who are interested in such kind measurements and to invite them to perform their own or joint measurements using available facilities.
机译:偏振(双极化),Spatio-inumparally组合的S(〜3GHz),C(〜5.6GHz),Ku(〜20GHz)和Ka(〜37GHz)和频带的频带的复合物被表示为裸露植被的土壤,挥动水面和陆地雪覆盖微波反射和发光特性多频,偏振,同时和空间巧合的测量。该复杂致力于解决应用于土壤(熊和植被)和雪湿度检索的问题,以靠近水面风和波场参数检索,通过协同应用遥感的各种微波手段,以及应用于表面和表面子表面目标检测和识别任务解决方案。该综合体在Ecoserv远程观察中心的控制测试实验部位,在亚美尼亚,通过用于微波器件绝对校准的设施,通过空间分布的地站,用于原位测量土壤和水分和温度,并具有局部意义小气象站。本文旨在吸引对对此类测量感兴趣的研究人员的注意力,并邀请他们使用可用设施执行自己或联合测量。

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