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Review of crop growth and soil moisture monitoring from a ground-based instrument implementing the Interference Pattern GNSS-R Technique

机译:通过实施干扰模式GNSS-R技术的地面仪器回顾作物生长和土壤湿度监测

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摘要

Reflectometry using Global Navigation Satellite Systems signals (GNSSR) has been the focus of many studies during the past few years for a number of applications over different scenarios as land, ocean or snow and ice surfaces. In the past decade, its potential has increased yearly, with improved receivers and signal processors, from generic GNSS receivers whose signals were recorded in magnetic tapes to instruments that measure full Delay Doppler Maps (the power distribution of the reflected GNSS signal over the 2-D space of delay offsets and Doppler shifts) in real time. At present, these techniques are considered to be promising tools to retrieve geophysical parameters such as soil moisture, vegetation height, topography, altimetry, sea state and ice and snow thickness, among others. This paper focuses on the land geophysical retrievals (topography, vegetation height and soil moisture) performed from a ground-based instrument using the Interference Pattern Technique (IPT). This technique consists of the measurement of the power fluctuations of the interference signal resulting from the simultaneous reception of the direct and the reflected GNSS signals. The latest experiment performed using this technique over a maize field is shown in this paper. After a review of the previous results, this paper presents the latest experiment performed using this technique over a maize field. This new study provides a deeper analysis on the soil moisture retrieval by observing three irrigation-drying cycles and comparing them to different depths soil moisture probes. Furthermore, the height of the maize, almost 300 cm, has allowed testing the capabilities of the technique over dense and packed vegetation layers, with high vegetation water content.
机译:在过去的几年中,使用全球导航卫星系统信号(GNSSR)的反射法已成为许多研究的重点,涉及陆地,海洋或雪冰表面等不同场景下的许多应用。在过去的十年中,它的潜力逐年增加,包括改进的接收器和信号处理器,从将其信号记录在磁带上的通用GNSS接收器,到测量完整延迟多普勒图的仪器(反射的GNSS信号在2-延迟偏移和多普勒频移的D空间是实时的。目前,这些技术被认为是检索地球物理参数(如土壤湿度,植被高度,地形,测高,海况以及冰雪厚度等)的有前途的工具。本文着重介绍了使用干扰模式技术(IPT)从基于地面的仪器进行的陆地地球物理检索(地形,植被高度和土壤湿度)。该技术包括对直接接收和反射的GNSS信号的同时接收导致的干扰信号功率波动的测量。本文显示了使用该技术在玉米田上进行的最新实验。在回顾了先前的结果之后,本文介绍了使用该技术在玉米田上进行的最新实验。这项新的研究通过观察三个灌溉-干燥循环并将它们与不同深度的土壤湿度探头进行比较,对土壤水分的回收进行了更深入的分析。此外,玉米的高度(将近300厘米)已经可以在具有高植被含水量的密集且密集的植被层上测试该技术的功能。

著录项

  • 来源
    《Radio Science》 |2011年第6期|p.RS0C03.1-RS0C03.11|共11页
  • 作者单位

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

    Remote Sensing Laboratory, Department of Signal Theory and Communications, Politechnical University of Catalonia and IEEC-CRAE/UPC, Building D3. Barcelona E-08034, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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