An Overview of GNSS Remote Sensing

Abstract

The Global Navigation Satellite System (GNSS) signals are always available, globally, and the signal structures are well known, except for those dedicated to military use. They also have some distinctive characteristics, including the use of L-band frequencies, which are particularly suited for remote sensing purposes. The idea of using GNSS signals for remote sensing - the atmosphere, oceans or Earth surface - was first proposed more than two decades ago. Since then, GNSS remote sensing has been intensively investigated in terms of proof of concept studies, signal processing methodologies, theory and algorithm development, and various satellite-borne, airborne and ground-based experiments. It has been demonstrated that GNSS remote sensing can be used as an alternative passive remote sensing technology. Space agencies such as NASA, NOAA, EUMETSAT and ESA have already funded, or will fund in the future, a number of projects/missions which focus on a variety of GNSS remote sensing applications. It is envisaged that GNSS remote sensing can be either exploited to perform remote sensing tasks on an independent basis or combined with other techniques to address more complex applications. This paper provides an overview of the state of the art of this relatively new and, in some respects, underutilised remote sensing technique. Also addressed are relevant challenging issues associated with GNSS remote sensing services and the performance enhancement of GNSS remote sensing to accurately and reliably retrieve a range of geophysical parameters.

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Document Details

Document Type
Technical Report
Publication Date
Aug 27, 2014
Accession Number
ADA613342

Entities

People

  • Andrew G. Dempster
  • Chris Rizos
  • Derek Burrage
  • Kefei Zhang
  • Kegen Yu
  • Markus Markgraf

Organizations

  • United States Naval Research Laboratory

Tags

Communities of Interest

  • Space

DTIC Thesaurus Topics

  • Accuracy
  • Artificial Satellites
  • Climate Change
  • Databases
  • Electrical Engineering
  • Global Navigation Satellite Systems
  • Low Earth Orbits
  • Measurement
  • Meteorology
  • Navigation
  • Navigation Satellites
  • Ocean Currents
  • Radio Signals
  • Satellite Orbits
  • Signal Processing
  • Waveforms
  • Weather Forecasting

Fields of Study

  • Environmental science

Readers

  • Aerospace Engineering.
  • Sensor Fusion and Tracking Systems.
  • Systems Analysis and Design

Technology Areas

  • Space