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Radar Technology for Coastal Areas and Open Sea Monitoring

Radar Technology for Coastal Areas and Open Sea Monitoring

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Monitoring oceans and coastal areas has a fundamental social impact, and this scenario is made still more challenging with the present and future issues related to climate change. In this context, radar systems have gained increasing interest, since they are remote sensing devices capable of providing information about sea waves, currents, tides, bathymetry, and wind. Moreover, radar systems can be designed to perform both large-scale and small-scale monitoring, with different spatial and temporal resolutions, and can be installed on different observation platforms (ship-based, ground-based, airborne, satellite or drones). In this regard, this book aims at engendering a virtual forum for ocean radar researchers, where state-of-the-art methodologies and applications concerning ocean monitoring by means of radar technologies are reviewed and discussed.

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Keywords

  • ADCP
  • alboran sea
  • artificial neural network
  • Atlantic Jet
  • augmented observatory
  • Circulation
  • cloudiness
  • coastal surface currents
  • current velocity measurement
  • Doppler anomaly
  • flow reversal
  • frequency band adaptation
  • Gibraltar
  • Gulf of Naples
  • HF radar
  • high frequency radar
  • high-frequency (HF) radar oceanography
  • high-frequency ocean radar
  • History of engineering & technology
  • hypertrophic ecosystem
  • interference mitigation
  • intertidal foreshore slope
  • inversion
  • marine radar
  • modified temporal waterline method
  • Monitoring
  • monostatic radar
  • numerical model
  • ocean wave directional spectrum
  • orbital velocities
  • Quality control
  • Radar
  • radar altimeter
  • radar cross-section
  • radar Doppler altimeter
  • Remote sensing
  • scum
  • sea state monitoring
  • sea surface current
  • sea surface currents
  • Sea Surface Temperature
  • sensitivity experiments
  • Sentinel-1
  • Sentinel-2
  • Sentinel-3
  • shoreline position
  • significant wave height
  • Soft computing
  • south-west Australia
  • spatial wave fields
  • surface currents
  • swell
  • synthetic aperture radar
  • Technology, engineering, agriculture
  • Technology: general issues
  • TensorFlow
  • tidal variation
  • wave buoy
  • wave directional spectra
  • wave field
  • wave run-up correction
  • waveforms
  • X-band radar

Links

DOI: 10.3390/books978-3-03936-973-7

Editions

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